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JIPテクノサイエンス

EstablishmentApril 1, 2003
capital30000Ten thousand
number of employees236
addressTokyo/Chiyoda-ku/3-1, Kyudanminami 1-chome
phone03-6272-8230
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last updated:May 25, 2022
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JIPテクノサイエンス List of Products and Services

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Steel Bridge Design (JSP Series) Steel Bridge Design (JSP Series)
BIM/CIM BIM/CIM
Steel bridge design Steel bridge design
Concrete bridge design Concrete bridge design
Bridge seismic analysis Bridge seismic analysis
Road and railway alignment Road and railway alignment
Maintenance management Maintenance management
Structural analysis Structural analysis
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Ground analysis structural model input generator JFIG-GEO

Automate complex structural shapes and staged construction, with rapid and accurate PLAXIS 3D input!

The automation of creating complex structural shapes and setting up staged construction in the study of excavation methods and shield tunnel methods using 3D ground FEM analysis allows for the creation of input data for PLAXIS 3D accurately and quickly with simple inputs. 【Features】 - Automatic creation of structural models for excavation methods with simple inputs - Automatic execution of staged construction and material settings - Automatic creation of structural models for shield tunnel methods with simple inputs - Automatic execution of load effects, surface shrinkage, and staged construction settings

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JTS Tech Conference 2024

Let's create a resilient and flexible society against disasters!

In recent years, large-scale natural disasters have occurred one after another, and the importance of disaster prevention and reduction is increasingly recognized. This event will be held as a conference themed "Disaster Prevention and Resilience," where we will consider what is necessary to achieve a resilient society and what industries, companies, and individuals can do, with guest speakers sharing their insights while engaging with participants. ◆ Keynote Speaker: Naoya Sekiya (Professor, Center for Integrated Disaster Information Research, Graduate School of Interdisciplinary Information Studies, University of Tokyo) ◆ Theme Lecture 1: Shunichi Yoshimura (Professor, International Research Institute of Disaster Science, Tohoku University) ◆ Theme Lecture 2: Sojiro Hori (Director, Value-Added Information Creation Division, Japan Agency for Marine-Earth Science and Technology) ◆ Special Lecture: Dr. Demi (Civil Engineer/YouTuber on Civil Engineering/Disaster Prevention Specialist)

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AR-based FEM analysis result display app "JTSTAR"

Projecting FEM analysis results onto experimental specimens, models, and actual structures. Achieving real-time visualization of internal strain, stress, and cracks.

"JTSTAR" is an iPad application that allows you to display data created with the structural analysis system "DIANA" in combination with images of experimental specimens, models, and actual structures. It enables real-time projection of various analysis results and experimental outcomes, such as concrete crack propagation analysis and elasto-plastic finite displacement analysis of steel structures. In addition to observing cracks inside test specimens, rebar stress, and failure modes, it can also be used to understand shear stress and damage indicators. 【Features】 ■ Overlay analysis results on experimental specimens and actual structures ■ Continuous playback for observing time-dependent changes and dynamic analysis ■ Outputs load values and displacements along with displayed analysis images ■ Solid elements and shell elements can be displayed transparently *You can view the materials from the <PDF download>. Please feel free to contact us with any inquiries.

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FEM Analysis Work Efficiency Tool JFAT2 for DIANA

Output of load-displacement curve, creation of an animation that simultaneously displays the load-displacement curve and the contour plot of the analysis results (DIANA version).

This is a dedicated efficiency tool for DIANA that automates the output of labor-intensive load-displacement curves. It not only creates graphs of load-displacement curves but also outputs contour maps of analysis results tailored to the load-displacement curves, which can be combined into an animation.

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FEM Analysis Input Generator JFIG-Beam for DIANA

Even with limited experience in data creation using DIANA, crack analysis of reinforced concrete beams is easy.

The analysis input generator "JFIG-Beam for DIANA" allows users to operate an intuitive and easy-to-understand GUI to input necessary conditions such as shape, rebar, loads, and materials, automatically generating input files for the structural analysis system "DIANA." Even users with limited experience in creating data using DIANA can easily create data for crack analysis of reinforced concrete beams. Furthermore, not only can analyses be conducted directly with the generated files, but they can also be re-edited in DIANA before analysis. 【Features】 ■ Smooth integration until analysis execution ■ Input can be confirmed on-screen with cross-sectional shapes ■ Material properties of rebar can be selected from a dropdown menu ■ Supports distributed crack models (orthogonal fixed, rotation, Maekawa-Fukuura) ■ Material properties of concrete can be selected from four types (Standard Concrete Design Guidelines, Maekawa-Fukuura model, Multilinear, Basic) *Please refer to various materials as well. Feel free to contact us with any inquiries.

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FEM Analysis Work Efficiency Tool JFAT1 for PLAXIS

Automatically output analysis result contour diagrams and automatically paste them into Microsoft Word files! (PLAXIS version)

This is a productivity tool specifically designed for the geotechnical analysis software PLAXIS, which automates the labor-intensive process of outputting analysis results as images. It automatically generates images such as contour maps and deformation diagrams and pastes them into Microsoft Word files.

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FEM Analysis Work Efficiency Tool JFAT1 for DIANA

Automatically output analysis result contour diagrams and automatically paste them into a Microsoft Word file! (DIANA version)

This is a productivity tool specifically designed for the general linear and nonlinear structural analysis system DIANA, which automates the labor-intensive process of outputting analysis result images. It automatically generates images such as contour plots and deformation diagrams and pastes them into Microsoft Word files.

  • Scientific Calculation and Simulation Software

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PC girder bridge BIM/CIM modeling system 'BeCIM/CB'

Responding to the full application of BIM/CIM principles promoted by the Ministry of Land, Infrastructure, Transport and Tourism! Automatically generating BIM/CIM models of concrete bridges to strongly support design work!

This is a modeling system that automatically generates BIM/CIM models (with a detail level of 200-300) for T-girder bridges, slab bridges, and PC composite bridges without using CAD, by inputting linear information and structural member dimensions. It can efficiently generate models thanks to its rich data input support features. The export function of the BIM/CIM model allows for integration with general-purpose CAD and other companies' BIM/CIM software, making it easy to integrate with separately prepared models of substructures, terrain, and surrounding environments. It is expected to improve the quality of deliverables, expedite discussions and consensus among stakeholders, and can also be utilized as a superstructure model for maintenance management. 【Features】 ■ Capable of modeling T-girders, slab girders, and composite girders ■ Enhanced detail level with linear input functionality ■ Efficiency improvement with standard value setting for input data ■ Rich verification diagrams and checking functions to reduce errors ■ Speed enhancement through design data linkage *For more details, please refer to the PDF materials or feel free to contact us.

  • Scientific Calculation and Simulation Software

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PC bed version segmented construction support design system 'JSP-6W SC'

Steel girder deck replacement work, supporting the design and segmented construction of precast PC slabs!

The "JSP-6W SC" is a design support system that accommodates segmented construction for steel girder deck replacement work. To respond to the deck replacement work ordered by NEXCO, it allows for the design of PC decks considering segmented construction based on the Road Bridge Guidelines and Commentary Volume I Common Edition, Volume II Steel Bridges and Steel Components Edition, and Design Guidelines Volume II. *Catalogs are available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000796751).

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Steel Bridge BIM/CIM Modeling System 'BeCIM/MBPlus'

Responding to the full application of BIM/CIM principles promoted by the Ministry of Land, Infrastructure, Transport and Tourism! Pursuing high-precision modeling and high functionality! Strongly supporting steel bridge BIM/CIM design work.

This is a modeling system that automatically generates BIM/CIM models for plate girder bridges and box girder bridges instantly without using CAD, by linking data from the steel girder bridge design system (HyBRIDGE/design), the outline automatic design of non-composite girders (JSP-1W), and the outline automatic design of simple composite girders (JSP-4W). With the export function of the BIM/CIM model, integration with general-purpose CAD and other companies' BIM/CIM software is possible, making it easy to integrate with separately prepared models of substructures, terrain, and surrounding environments. It is expected to improve the quality of deliverables, expedite discussions among stakeholders, and facilitate consensus building, and can also be utilized as a superstructure model for maintenance management. 【Features】 ■ No CAD operation required due to linked design data ■ Support for high-detail modeling ■ Support for accessory modeling ■ Three-dimensional quantity calculation and generation of quantity calculation documents ■ Improved accuracy of outline model vertical and horizontal gradients *For more details, please refer to the PDF materials or feel free to contact us.

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~Video Introduction~ Concrete Crack Analysis

We are introducing the features of the general-purpose structural analysis system [DIANA] using the finite element method, along with analysis examples!

DIANA is a structural analysis system developed by DIANA FEA (Netherlands) using the finite element method. In this video, we will introduce features that support crack analysis of concrete, as well as case studies of crack analysis for simple beams and slabs made of reinforced concrete, box culverts, shear walls, tank structures, and more using DIANA. *If you would like to watch the video, please scroll down or follow the related links!*

  • Scientific Calculation and Simulation Software
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~Introduction in a video~ Analysis of offshore wind power foundation structures

We are introducing case studies of offshore wind power foundation structures using the geotechnical analysis software PLAXIS!

PLAXIS is a geotechnical analysis software developed by Bentley Systems. It supports both two-dimensional and three-dimensional analyses and can be applied to various scenarios, including excavation analysis for retaining walls, consolidation settlement analysis due to embankments, pile foundation analysis, slope stability analysis, impact assessment during tunnel excavation, and seismic response analysis. In this video, we will introduce case studies of offshore wind turbine foundation structures analyzed using the geotechnical analysis software PLAXIS. We will present a case study of a monopile foundation analysis that considers uncertainties, as well as a case study of a jacket-type plus suction pile foundation analysis. *If you would like to watch the video, please scroll down or follow the related links!*

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Ground analysis software 'PLAXIS' *Introduction of slope stability analysis case studies

Create analysis models with simple operations. CAD data can also be imported. Overview and analysis case videos and materials are currently available.

"PLAXIS" is a geotechnical analysis software that supports analysis using the shear strength reduction method and limit equilibrium method. It offers "PLAXIS 2D" for two-dimensional analysis and "PLAXIS 3D" for three-dimensional analysis. In slope stability analysis, it visualizes slope failure through incremental deformation vector diagrams, incremental deformation contour maps, and incremental shear strain contour maps. Additionally, it can handle analyses for excavation support, consolidation settlement due to embankments, pile foundation analysis, impact assessment during tunnel excavation, and seismic response analysis. 【Features】 ■ Can be used for countermeasure planning by calculating safety factors ■ Easy-to-use interface allows for simple creation of analysis models with a CAD-like feel ■ Can import shape data from CAD files ■ Creating mesh data is also straightforward *We are currently sharing a video introducing examples of slope stability analysis! Please scroll down to view it. If you would like a PDF version, it is available for download.

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~Video Introduction~ Ground Excavation Analysis

We are introducing excavation analysis cases using the geotechnical analysis software PLAXIS!

PLAXIS is a geotechnical analysis software developed by Bentley Systems. It supports both 2D and 3D analyses and can be applied to excavation analysis for retaining walls, consolidation settlement analysis due to embankments, pile foundation analysis, slope stability analysis, impact assessment during tunnel excavation, seismic response analysis, and more. In this video, we will introduce excavation analysis examples using the geotechnical analysis software PLAXIS. We will cover 2D and 3D excavation analysis examples, automation of model creation using the command runner feature, and automation of result output using Python scripting. *If you would like to watch the video, please scroll down or follow the related links.*

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DIANA Assist Tools

We will reduce the pre-post work of the software DIANA!

This is a pre-post processing support tool using the Python script of the software DIANA. It is designed to improve the efficiency of DIANA's pre-post operations, featuring a function to automatically search for contact surfaces and create interface elements with a single command, a function to output materials, load conditions, constraint conditions, etc., in bulk, and a function to output contour diagrams for all steps in bulk with a single command, totaling 72 features. *For more details, please refer to the PDF materials or contact us. The PDF materials are available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000744060).

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~Video Introduction~ Automatic Model Creation of Concrete Composite Structures with Python

We are introducing an example of automatic model creation using a Python script with the general-purpose structural analysis system [DIANA] based on the finite element method!

DIANA is a general-purpose structural analysis system developed by DIANA FEA B.V. (Netherlands) using the finite element method. In this video, we will introduce an example of automatic model creation for a steel-concrete composite structure (RC beam S structure) using DIANA's Python scripting capabilities. 【DIANA Product Page】 https://www.jip-ts.co.jp/diana/index.... *If you would like to watch the video, please scroll down or follow the related links!

  • Reinforced concrete structural systems (including PCa)

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Bridge Inspection Field Support App - Ten-Suke

This is an app that supports bridge inspection work on-site through intuitive operability using a tablet and collaboration with products from Chojuro/BG and Hashishiro.

Dianzu is a tablet application that can streamline various tasks at bridge inspection sites. By collaborating with Chojuro/BG and Hashishiro, it allows for the integration of specifications and past inspection results, significantly improving the efficiency of inputting inspection results on-site. Features: - Efficiency in on-site work through collaboration with Chojuro/BG and Hashishiro By integrating with Chojuro/BG and Hashishiro, users can input inspection results while checking specification information and past inspection results, greatly enhancing on-site work efficiency. - Intuitive operability and diverse input methods The tablet app features intuitive operability. Users can choose from three input methods: "handwriting," "voice," and "selection." - Adoption of new technologies It is possible to measure damage dimensions using LiDAR sensors. Additionally, it allows for the display of drawings in real space using AR. Furthermore, an AI-based damage assessment function is also under development. *For more details, please refer to the PDF materials or feel free to contact us. The PDF materials can be obtained from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000738908).

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Deterioration Prediction Formula Estimation Tool

A tool for creating deterioration prediction formulas using multiple theories and methods, independent of specific facilities or structural components, and for easily generating deterioration curves.

Our Long-Life Series products, which support the development of longevity (functional maintenance) plans for various civil engineering structures, include a function for creating deterioration curves. This is a package software that can be used in various fields without depending on specific facilities or structures. It allows for the estimation of deterioration prediction formulas based on various theories. You can input data into a simple dedicated Excel sheet, and after analysis, you can view the deterioration curve tables and graphs on the screen, with the option to output them to an Excel file.

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Arbitrary Shape PC Bridge Analysis System 'JIP-AP/ACOSTRA'

A general shape prestressed concrete bridge analysis system that supports various types of bridges! It can output framework diagrams, section force diagrams, and stress diagrams as DXF files.

"JIP-AP/ACOSTRA" is an arbitrary shape prestressed concrete bridge analysis system. Based on an arbitrary shape plane frame analysis program, it targets prestressed concrete bridges of arbitrary shapes (such as cable-stayed bridges, extradosed bridges, arch bridges, inclined slab bridges, bifurcated girder bridges, composite girder bridges, etc.) and allows for detailed design (section force analysis, design calculations). It performs section force analysis following the construction stages, creep and drying shrinkage calculations, and prestress calculations, enabling the aggregation of section forces and stress levels in any combination. 【Features】 ■ Supports arbitrary plane frame shapes and arbitrary segmented construction ■ Allows input data and output reports in text format ■ Capable of outputting frame diagrams, section force diagrams, and stress diagrams as DXF files *For more details, please refer to the related links page or feel free to contact us.

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Long-Life Planning Support System for Park Facilities "Chōjūrō/PK"

Realization of a database for park facilities! Support system for formulating long-term maintenance plans for park facilities.

"Chōjūrō / PK" is a support system for formulating long-term maintenance plans for park facilities in accordance with the "Guidelines for Formulating Long-Term Maintenance Plans for Park Facilities (Draft)." By creating a database of the health assessment and evaluation results of park facilities and setting and inputting planning conditions, it enables cost comparisons between preventive maintenance and reactive maintenance scenarios, calculates LCC (Life Cycle Cost) by park and facility, and generates report files in accordance with Forms 0 to 3 of the Guidelines for Formulating Long-Term Maintenance Plans for Park Facilities (Draft). It allows for centralized management of all facilities under the management of facility managers, including parks and park facilities that are not subject to the long-term maintenance plan. 【Features】 ■ Realization of database for park facilities ■ Ability to view inspection history and output health assessment forms ■ Input of inspection results on-site using tablets ■ Formulation of long-term maintenance plans for park facilities ■ Output of forms in accordance with the Guidelines for Formulating Long-Term Maintenance Plans for Park Facilities (Draft) *For more details, please refer to the PDF materials or feel free to contact us. The PDF materials are available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626564).

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Harbor Facility Maintenance Management Plan Development Support System 'Chōjūrō/HB'

Support system for formulating maintenance management plans for port facilities, compatible with various deterioration models!

"Chojuro/HB" is a support tool that allows for a consistent process from various inspections in accordance with the "Guidelines for Creating Maintenance Management Plans for Port Facilities" to the creation of a port facility ledger, and further to deterioration prediction and the formulation of maintenance management plans. The "Maintenance Management Plan Formulation System" corresponds to the preventive maintenance plans formulated for each port, enabling budget leveling simulations that take into account the importance and condition of the facilities. By facilitating efficient inspection data collection, rapid database construction, accommodating various deterioration models, calculating LCC, and conducting budget simulations, it strongly supports the formulation of maintenance management plans. 【Features】 ■ Port Facility Ledger System - A facility ledger system that accommodates various port facilities, including outer structures, mooring, and port transportation facilities. - Not only can it manage facility information for a single port, but it can also centrally manage information for multiple ports, with a standard map function included. - Accumulated data can be easily searched, displayed, and edited. *For more details, please refer to the PDF materials or feel free to contact us. The PDF is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626454).

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Long-Life Plan Development Support System for River Gates "Chōjūrō / GT"

It is also possible to add components not on the list! We strongly support the formulation of longevity plans with a variety of features.

"Chojuro / GT" is a support system for formulating long-term maintenance plans for river gates. By simply selecting the type of facility (roller gate, slide gate, lift gate, pump), corresponding components can be easily registered, and it is also possible to add components that are not listed. Based on diagnostic results, it robustly supports the formulation of long-term maintenance plans with various functions, including creating countermeasure scenarios for multiple facilities and equipment, calculating lifecycle costs for arbitrary evaluation periods, and changing the timing of countermeasure implementation. [Features] ■ Input of facilities and components - By simply selecting the type of facility (roller gate, slide gate, lift gate, pump), corresponding components can be easily registered. - It is also possible to add components that are not listed. *For more details, please refer to the PDF materials or feel free to contact us. The PDF materials can be obtained from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626445).

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Support system for formulating functional preservation plans for fishing port facilities "Chojuro/FP"

Multiple scenario settings are possible! Support system for formulating functional preservation plans for fishing port facilities.

"Chōjūrō/FP" is a support tool that allows for a consistent process from various inspections to ledger creation, and further from deterioration prediction to the formulation of functional maintenance plans, in accordance with the "Guidelines for Developing Functional Maintenance Plans (Draft)." The "Information Management System" is a facility ledger system that accommodates various fishing port facilities, including outer structures, mooring, and transportation facilities, allowing for easy search, display, and editing of accumulated data. By enabling efficient collection of inspection data, rapid database construction, LCC calculation across multiple scenarios, and budget simulations, it strongly supports the formulation of functional maintenance plans. 【Features】 ■ Information Management System - A facility ledger system that accommodates various fishing port facilities, including outer structures, mooring, and transportation facilities - Capable of centralized management of facility information for multiple fishing ports, not just one, with standard map functionality - Allows for easy search, display, and editing of accumulated data *For more details, please refer to the PDF materials or feel free to contact us. The PDF materials are available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626437).

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Concrete Bridge Cross Beam Design System "PCBOX-CrossG"

Design support software for the end and intermediate supports of cast-in-place concrete bridges. Significant efficiency improvements for the cumbersome design of cross beams are possible!

"PCBOX-CrossG" is software that supports the analysis and design of sectional forces on the end and intermediate supports of concrete bridges. It assists in the analysis and design of sectional forces on the end and intermediate supports of cast-in-place concrete bridges. By automatically creating calculation models specified in the Concrete Road Bridge Design Guidelines for analysis and design, it allows for the creation of compact design report-style documents with simple input and operation, significantly improving the efficiency of the often cumbersome design of concrete bridge girders. 【Features】 ■ Significant efficiency improvement with simple input and operation ■ Supports various girder shapes for cast-in-place concrete bridges ■ Complies with calculation models specified in the "Concrete Road Bridge Design Guidelines" ■ Creates compact calculation report-style documents *For more details, please refer to the PDF materials or feel free to contact us. The PDF materials are available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626429).

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Road Structure Management Support System "Michi no Suke"

We support the management of vast amounts of data and the comprehensive inspection and regular inspection tasks for each structure!

"Michinosuke" is a road structure management support system. It consists of an inspection support module for each facility, an information management system that manages specifications and inspection results for all facilities, and a project planning system that enables the formulation of plans. It also supports the output of various documents in accordance with the "General Inspection Implementation Guidelines (Draft)" and "Periodic Inspection Guidelines (Draft)," thereby improving the efficiency of on-site inspection work, streamlining document creation, and reducing labor in project planning. [Features] ■ Centralized management of information for multiple facilities as a road facility ledger ■ Improved inspection efficiency using a field input system ■ Support for document creation for general inspection and periodic inspection tasks, and management of inspection history ■ Formulation of maintenance management plans for road facilities *For more details, please refer to the PDF materials or feel free to contact us. The PDF is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626421).

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Long-lasting / AG: Support System for Developing Agricultural Water Management Facility Function Preservation Plans

A system that supports the development of functional maintenance plans for agricultural water management facilities, capable of multiple deterioration model settings and diverse scenario creation!

"Chōjūrō/AG" is a support system for formulating functional preservation plans for agricultural water facilities, in accordance with the "Guidelines for Extending the Lifespan of Agricultural Water Management Facilities." It allows for the setting of multiple deterioration models, and users can freely configure the timing of countermeasures, construction methods, and post-measure recovery levels, enabling the creation of diverse scenarios. Based on functional diagnosis results, it strongly supports the formulation of functional preservation plans through various features, including the creation of multiple functional preservation scenarios, selection of countermeasures according to deterioration mechanisms, calculation of functional preservation costs over arbitrary evaluation periods, and the ability to adjust the timing of countermeasures. [Features] ■ Ability to set multiple deterioration models and create diverse scenarios ■ Capability to plot deterioration curves for each facility and group ■ Ability to calculate functional preservation costs for each facility and group ■ Adjustment of countermeasure timing possible after execution of calculations *For more details, please refer to the PDF materials or feel free to contact us. The PDF materials are available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000626418).

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PLAXIS Monopile Designer

Optimization design tool for monopile foundations

This is an optimization design tool for monopile foundations developed by Bentley Systems, which performs one-dimensional analysis based on the results of the PISA Joint Industry Research Project. It can be used in conjunction with the three-dimensional ground analysis software PLAXIS 3D. 【Main Features】 - Capable of one-dimensional analysis for large-diameter monopile foundations - Considers nonlinear ground reaction curves based on horizontal distributed loads, distributed moments, shear forces at the pile tip, and moments at the pile tip - Allows for model creation in the three-dimensional ground analysis software PLAXIS 3D - Enables visualization and output of nonlinear ground reaction curves, load-displacement relationships, and bending moments - Standard API/DNV-GL P-Y curves are available for clay and sandy soils *For more details, please refer to the PDF materials or contact us.

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2D ground analysis software "PLAXIS 2D"

Rich track record in ground analysis both domestically and internationally.

It is a two-dimensional ground analysis software developed by Bentley Systems, capable of applications such as excavation analysis for retaining walls, consolidation settlement analysis due to embankments, slope stability analysis using shear strength reduction methods or limit equilibrium methods, analysis of surrounding effects during tunnel excavation, and thermal conduction analysis. It is dedicated to two-dimensional problems and allows for easy creation of analysis models with a user-friendly interface that feels like CAD. 【Main Features】 - Easy creation of analysis models with a user-friendly interface that feels like CAD - Simple modeling of tunnel shapes - Equipped with specialized elements for piles, anchors, tunnels, etc. - Capable of consolidation analysis, unsteady seepage flow analysis, dynamic analysis, thermal conduction analysis, and slope stability analysis using limit equilibrium methods - Outputs numerical data in tabular format, allowing for easy copy and paste into spreadsheet software *For more details, please refer to the PDF materials or contact us. The PDF materials can be obtained from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000623725).

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General-purpose 3D dynamic analysis program "TDAPIII/FDAPIII"

High reliability backed by extensive usage track record.

This is a general-purpose 3D dynamic analysis program for civil engineering and architecture, featuring a wide range of elements and material nonlinear models specifically designed for the civil engineering and architecture fields. It broadly supports 2D and 3D models, axisymmetric models, structural elements such as frames and shells, ground elements including various boundaries, and liquid elements, offering high versatility in modeling. 【Main Features】 〇 Numerous implementations in public research institutions, universities, construction companies, design offices, and consulting firms 〇 Over 100 implemented material nonlinear models 〇 Equipped with pre-post tools for input waveform processing and result visualization 〇 Capable of analyzing time history response analysis and frequency response analysis using the same structural data *For more details, please refer to the PDF materials or contact us. The PDF materials can be obtained from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000623004). *TDAPIII/FDAPIII is a product jointly developed by Taisei Corporation and Ark Information Systems Co., Ltd.

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General-purpose linear and nonlinear structural analysis system "DIANA"

A general-purpose structural analysis system developed for the civil engineering and architecture fields, accompanied by materials introducing crack analysis features.

This is a general structural analysis system developed by DIANA FEA BV (Netherlands) using the Finite Element Method (FEM). It has a significant track record of use in Japan, particularly in the civil engineering and construction fields, and has received high praise for its nonlinear analyses, especially in concrete crack propagation analysis, elasto-plastic finite displacement analysis of steel structures, and staged construction analysis of ground. 【Main Features】 - Integrated pre-post functionality from model creation to result processing - Easy modeling of reinforcement (embedded reinforcement elements) - Capable of concrete crack models (distributed crack model, discrete crack model) - Consideration of adhesion between different materials (interface elements)

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Road Patrol and Complaint Request Response Support System 'DRIMS/PT'

Manage daily patrol information and reports from residents in one place!

Utilizing a dedicated mobile app, patrol information such as road damage, fallen objects, and drainage issues can be registered. By sending the data to a web system, the location, condition, treatment details, and photos of the inspection points can be easily shared. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000568291).

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Smartphone-based pavement survey system 'DRIMS'

Achieving low-cost inspections of road pavement, which many municipalities have identified as an issue! Reducing staff burden through efficient road management [NETIS registered].

In the autumn of 2016, the national pavement inspection guidelines designated the inspection targets, making measures against the aging of road pavements an urgent issue. Are you facing challenges such as "the inspection range is broad and visual checks have limitations," "it's difficult to secure a budget for road repair work," "investigations using specialized vehicles are extremely expensive," or "unable to respond quickly to reports from residents"? 'DRIMS' is a system that uses the accelerometer of a smartphone to convert surface irregularities into a high-precision international index (IRI) and visualize it on a map. Furthermore, by utilizing AI for image analysis, it is possible to calculate crack rates and understand the causes of surface damage. This allows for the near-real-time monitoring of the condition of a wide road network, including residential roads, achieving advanced road management and reducing inspection costs. 【Features】 ■ Improve accuracy by identifying the characteristics of the measurement vehicle during initial setup ■ Achieve high IRI estimation accuracy regardless of where it is installed inside the vehicle ■ All smartphone-mounted devices and communication equipment are provided on loan, no need to purchase equipment ■ High-precision surveys are possible through a combination of options for damage extraction and crack rate calculation ■ Road surface conditions are clearly visible on the web, enabling map-based management *For more details, please download the PDF or feel free to contact us.

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Study on the Erection of Steel Girders - 'JSP-53W'

We will conduct an examination and verification of the cross-section of the steel girder erection method and the buckling of the web plates.

The steel girder launching construction study "JSP-53W" automatically calculates the sectional forces for the entire process of the launching construction method using a hand-launching machine for steel box girders and plate girders, based on the Steel Structure Erection Design Guidelines (2012, Japan Society of Civil Engineers). It also conducts checks and evaluations for buckling of sections and web plates. The buckling checks for web plates are based on the Road Bridge Design Specifications and Commentary I Common Edition, II Steel Bridges and Steel Members Edition, DASt Richtlinie 012 Stability Checks for Steel Plates (October 1978, West German Steel Structure Committee), and the Steel Structure Erection Design and Construction Guidelines (2012 edition, Japan Society of Civil Engineers). For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095779).

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Joint calculation of steel box girders 'JSP-49W'

We will perform the joint calculation of the box girder.

The joint calculation for steel box girders "JSP-49W" is conducted based on the provisions of the Road Bridge Design Guidelines and their Commentary I General Edition, II Steel Bridges and Steel Members Edition (November 2017). JIP Techno Science Corporation develops, sells, and supports information systems related to bridges, buildings, and other structures, as well as providing information processing services and ASP services. Aiming to improve customer satisfaction, we define analysis services and social infrastructure maintenance management services as key focus areas and are committed to establishing a new brand with the collective effort of our employees. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095778).

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Design of Diaphragm & Reinforcement Material 'JSP-45W'

We will carry out the detailed design of the diaphragm and reinforcement materials.

The design of the diaphragm and stiffeners "JSP-45W" is based on the Steel Road Bridge Design Manual (revised August 1980) and the Stiffener Design for Steel Structures (edited by Sadao Komatsu) for the diaphragm design, which includes detailed checks for (1) spacing, (2) rigidity, and (3) stress levels. Additionally, for the design of stiffeners, it follows the Road Bridge Design Guidelines and Commentary I General Edition, II Steel Bridge Edition (March 2002) and the design standards of the Nagoya Public Corporation, which includes detailed checks for (1) cross-section analysis, (2) stress levels, and (3) examination of welded joints. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095777).

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Design of RC Slab 'JSP-42W'

We will carry out the detailed design of the RC deck slab for the steel girder bridge.

The design of the RC slab "JSP-42W" is based on the Road Bridge Design Guidelines and Commentary I General Edition, II Steel Bridges and Steel Members Edition (November 2017), and conducts detailed design of each part of the RC slab for steel girder bridges. In the design of the slab, considerations are made for the effects of uneven settlement of the supporting girders, including the examination of slab thickness, calculation of design bending moments, verification of durability performance, and verification of load-bearing performance. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095776).

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Design of Steel Bridge Pier Corner Sections 'JSP-34W'

We will calculate and verify the stress levels at the planar and three-dimensional corner sections of the steel bridge pier.

The design of the steel bridge pier corner section "JSP-34W" calculates and verifies the stress at the plane and spatial corner sections of steel bridge piers subjected to design section forces, based on the provisions of the Road Bridge Design Guidelines and Commentary I Common Edition, II Steel Bridges and Steel Members Edition (November 2017), and the Civil Engineering Society Paper No. 153 "Stress Calculation for Thin Plate Structural Frame Corner Sections" (by Toshie Okumura and Naruo Ishizawa). For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095775).

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Design of the base (anchor frame) - 'JSP-31W'

We will consistently carry out the detailed design of the base of the corner column and the cylindrical column.

The design of the base of the column (anchor frame) "JSP-31W" is consistently carried out based on the Road Bridge Design Guidelines and Commentary I General Edition, II Steel Bridges and Steel Members Edition (November 2017), materials related to seismic design of road bridges (March 1997, Japan Road Association), and the design standards of Metropolitan Expressway Company Limited, Hanshin Expressway Company Limited, Nagoya Expressway Public Corporation, and Fukuoka Kitakyushu Expressway Public Corporation, including detailed design of square and circular column bases (anchor bolts, base plates, anchor frames, and footings). For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095774).

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Buckling check of the belly plate 'JSP-30W'

We will conduct a buckling check of the web plate subjected to bending, shear, and reaction forces, as well as a check of the cross-section of the horizontal bracing members.

The buckling check for web plates "JSP-30W" is conducted based on the Road Bridge Design Guidelines and their Commentary I Common Edition, II Steel Bridges and Steel Members Edition (November 2017), DASt Richtlinie 012 Stability Check for Steel Plates (October 1978, West German Steel Structure Committee), and the Steel Structure Erection Design Guidelines (2012 Edition, Japan Society of Civil Engineers). It performs buckling checks for web plates subjected to bending, shear, or bending, shear, and reaction forces, as well as checks for the cross-sections of horizontal bracing materials. JIP Techno Science Corporation develops, sells, and supports information systems related to bridges, buildings, and other structures, as well as providing information processing services and ASP services. Aiming to improve customer satisfaction, we define analysis services and social infrastructure maintenance management services as key focus areas and are committed to establishing our new brand with the collective effort of our staff. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095773).

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Automatic Design of Expansion Joints 'JSP-18W'

We will consistently carry out the detailed design of steel finger joints (cantilever type).

The automatic design of expansion joints 'JSP-18W' consistently performs detailed design of steel finger joints (cantilever type) based on the Road Bridge Design Guidelines and their Commentary I Common Edition, II Steel Bridges and Steel Members Edition (November 2017), the Design Guide for Steel Bridge Expansion Devices (April 2005, Japan Bridge Construction Association), the Design Guidelines for Steel Finger Joints (February 2003, NEXCO), the Design Standards for Steel Structures (October 1999, Nagoya Expressway Public Corporation), and the Design Guidelines for Steel Structures (Draft) (February 2000, Nagoya Expressway Public Corporation). For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095772).

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Non-synthetic and synthetic digit connection calculation 'JSP-11W'

We will perform connection calculations for non-composite plate girders, non-composite box girders, simple composite plate girders, and simple composite box girders.

The connection calculation for non-composite and composite girders, "JSP-11W," is based on the Road Bridge Design Guidelines and their Commentary I Common Edition, II Steel Bridge Edition (November 2017), as well as the Steel Road Bridge Design Manual (revised edition August 1980, Japan Road Association). It performs connection calculations for non-composite plate girders, non-composite box girders, simple composite plate girders, and simple composite box girders (flange, web, vertical ribs). JIP Techno Science Corporation develops, sells, and supports information systems related to bridges, buildings, and other structures, as well as providing information processing services and ASP services. Aiming to improve customer satisfaction, we define analysis services and social infrastructure maintenance management services as key focus areas and will work together as a company to establish our new brand. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095771).

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Design of the PC Bed Version 'JSP-6W'

We will design the PC deck slab for the plate girder bridge in the bridge axis direction and perpendicular to the bridge axis direction.

The design of the PC slab version 'JSP-6W' allows for the design of PC slabs used in plate girder bridges with a steel minor girder shape, based on the Road Bridge Design Guidelines and Commentary I Common Edition, II Steel Bridges and Steel Members Edition, III Concrete Bridges and Concrete Members Edition (November 2017). This program indicates slabs designed with the bridge axis perpendicular direction as PC/PRC structures and the bridge axis direction as RC structures. *Currently, only PC structures are supported. PRC structures are planned for future consideration and support. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095770).

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Automatic Design of Steel Floor Plates 'JSP-3W'

It automatically designs vertical ribs, horizontal ribs, and steel floor slabs.

The automatic design of steel deck slabs, 'JSP-3W', automatically performs the design of vertical ribs, horizontal ribs, and steel deck slabs based on the Road Bridge Design Guidelines and their Commentary I Common Edition, II Steel Bridges and Steel Members Edition. The method for calculating sectional forces is performed using the Finite Strip Method (FSM). JIP Techno Science Corporation develops, sells, and supports information systems related to bridges, buildings, and other structures, as well as providing information processing services and ASP services. Aiming to improve customer satisfaction, we define analysis services and social infrastructure maintenance management services as key focus areas, and all employees are united in establishing our new brand. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095769).

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M-φ calculation of steel bridge pier cross-section 'JIP-TOOLS-2'

This is a program for calculating the M-φ section of steel bridge piers.

The M-φ calculation for steel bridge pier sections using "JIP-TOOLS-2" is a program that performs M-φ calculations based on the Road Bridge Design Guidelines and their Commentary I Common Edition, II Steel Bridges and Steel Members Edition, and V Seismic Design Edition (November 2017). By selecting the section shape, setting the section dimensions, the presence or absence of concrete filling, and the minimum necessary axial force data, M-φ can be easily calculated. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095765).

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M-φ calculation of concrete cross-section 'JIP-TOOLS-1'

Calculating the bending moment and curvature of the concrete cross-section.

The M-φ calculation for concrete cross-sections in "JIP-TOOLS-1" calculates the bending moment and curvature of concrete cross-sections based on the Road Bridge Design Guidelines and their Commentary I Common Edition, III Concrete and Concrete Member Edition, and V Seismic Design Edition (November 2017). It allows for the easy calculation of M-φ for arbitrary cross-sections by freely combining rectangular, circular, and polygonal shapes. Reinforcement and PC steel can be arranged freely. Additionally, the created combination shapes can be rotated freely, and the principal axis can be set in any direction. It is also an effective tool for checking the seismic performance of curved girders. For more details, please download the catalog. *The catalog is available from the "Urban Development Database Site" (https://kensetsu.ipros.jp/product/detail/2000095764).

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