Design Software Product List and Ranking from 47 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 29, 2025~Nov 25, 2025
This ranking is based on the number of page views on our site.

Design Software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 29, 2025~Nov 25, 2025
This ranking is based on the number of page views on our site.

  1. 綜合システム 本社 Osaka//others
  2. 構造ソフト 本社 Tokyo//Information and Communications
  3. エムティシー Tokyo//others
  4. 4 くいんと Tokyo//others
  5. 5 メガソフト 大阪本社、東京オフィス Osaka//others

Design Software Product ranking

Last Updated: Aggregation Period:Oct 29, 2025~Nov 25, 2025
This ranking is based on the number of page views on our site.

  1. 3D Rebar Design Software 'Site Navigation 3D Rebar' 構造ソフト 本社
  2. Civil engineering design software "Detention Basin (Disaster Prevention Detention Basin) Capacity Calculation System" 綜合システム 本社
  3. Comprehensive Catalog: APS-21 Series Civil Engineering Design Software Package エムティシー
  4. 4 Civil engineering software "Design calculations for consolidation settlement" 綜合システム 本社
  5. 5 Logistics Warehouse 3D メガソフト 大阪本社、東京オフィス

Design Software Product List

46~60 item / All 155 items

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Civil engineering design software 'SECT-RC RC Section Design'

It is possible to perform section checks that correspond to the "partial coefficient method" in the Road Bridge Design Guidelines (H29 edition).

"SECT-RC RC Cross-Section Design" is a civil engineering design software that can perform four types of performance checks: allowable stress method, limit state design method, seismic design method, and partial coefficient method. The increase in allowable shear stress can be selected to be considered or not in the stress calculation. The consideration of shear span ratio is also possible. Additionally, changes in concrete stress-strain for column members and the allowable tensile strain for reinforcement can be taken into account. [Check Contents] ■ Allowable Stress Method Assumes concrete members as elastic bodies and checks that the stress is within allowable limits. ■ Limit State Design Method A design method that evaluates performance rationally using safety factors. ■ Seismic Design Method A design method that statically designs loads due to earthquakes, considering the deformation performance in the nonlinear range of structures based on the Road Bridge Design Specifications (2012 edition). ■ Partial Coefficient Method Based on the Road Bridge Design Specifications (2017 edition), it performs durability and load-bearing performance checks for reinforced concrete cross-sections. *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Drainage Design / Drainage Design (Light Version)"

Calculate the catchment area and channel length, and compute the rainwater runoff! Based on this runoff, we will determine the flow capacity of the drainage section.

"Drainage Design / Drainage Design (Light Version)" is a civil engineering design software that can determine the flow capacity of drainage sections set in each watershed. It also allows for the examination of flow through culvert sections, the spacing of drainage inlet installations, and the calculation of underground drainage volume. Furthermore, flow velocity calculations can be selected from the "Manning's equation" or "Culvert equation." 【Features】 ■ Calculates catchment area and flow path length by setting the catchment area, and computes rainwater runoff volume. ■ Based on the runoff volume, it can determine the flow capacity of drainage sections. ■ Allows for the examination of flow through culvert sections, the spacing of drainage inlet installations, and the calculation of underground drainage volume. ■ By registering, you can call up sections when inputting "runoff volume," "flow capacity," and "culvert flow." (Sections that can be registered) - Rectangular (Hanch, r-shape, invert) - Circular - Standard horseshoe - Arbitrary horseshoe - Hollow (I) - Hollow (II) - U-shaped (r, Hanch, bottom R) - U-shaped (U-shaped ditch, bench flume) - Free slope ditch - Road gutter - DO pipe - Oval pipe * For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Design of Inverted T-Type Abutments"

Design considering partial coefficients is possible! Arbitrary loads can handle concentrated loads, distributed loads, and moment loads.

"The design of reverse T-type abutments" is a civil engineering software that allows for the design of reverse T-type abutments based on the Road Bridge Design Guidelines (2017) using the partial coefficient method. When the ground is determined to be subject to persistent and variable actions, as well as liquefaction, a check for Level 2 seismic motion is conducted. Additionally, the earth pressure coefficients can accommodate Coulomb, modified Mohr-Coulomb, Okabe (optional), and simplified methods from the guidelines. 【Features】 ■ Design that considers partial coefficients ■ Design for conditions dominated by persistent actions, variable actions, and accidental actions ■ The earth pressure used in the design corresponds to the following methods: - Earth pressure only - Earth pressure + triangular water pressure - Earth pressure + residual water pressure ■ Arbitrary loads can include concentrated loads, distributed loads, and moment loads ■ Superimposed loads can be set up to three types, including snow loads ■ A diagram of the approach area behind the abutment can be created *For more details, please refer to the PDF document or feel free to contact us.

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Civil engineering design software "Calculation of Natural Period"

You can perform calculations for the natural period and strength verification based on the number of digits.

The "Calculation of Natural Period" is a civil engineering design software that calculates the natural period based on the "Design Guidelines for Road Bridges (2017)" and allows for the computation of design seismic intensity, inertial forces, and more. In the case of perpendicular directions, calculations are only performed under conditions where multiple substructures support the vibration units. By inputting standard cross-sections, the software automatically calculates the cross-sectional area, second moment of area, and torsional constant of the superstructure. 【Features】 ■ Calculates the natural period and performs strength checks based on the girder span length. ■ The natural period is calculated based on the design seismic intensity units. ■ Capable of calculating design horizontal seismic intensity, inertial forces, and more. ■ In the case of perpendicular directions, calculations are only performed under conditions where multiple substructures support the vibration units. ■ Supports calculations multiplied by dead load coefficients, with the option to choose whether or not to apply the dead load coefficient. *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Design of RC Pier"

Design of single-column RC bridge piers using load factors and partial factors method.

The "RC Pier Design" is a civil engineering design software based on the Road Bridge Design Guidelines and Commentary (November 2017). It consists of the calculation of acting forces, stability calculations for direct foundations and pile foundations, design of beams, columns, bottom slabs, and bridge seats. It introduces load coefficients (γp, γq) and the partial coefficient method introduced in the Road Bridge Design Guidelines of November 2017, allowing for design under permanent and variable actions, Level 2 seismic motions, and accidental actions considering collision loads. 【Features】 - Design of single-column RC piers using load coefficients and partial coefficient methods is possible. - Considers flow pressure and hydrodynamic pressure during earthquakes. - Asymmetric beams in the direction perpendicular to the bridge axis are possible. - Steps can be incorporated in the bridge axis direction. - The results of acting force aggregation can be confirmed on the screen. *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering software "Seismic Design of Pile Foundations"

We will conduct a verification of the pile foundation using the seismic lateral resistance method for a Level 2 earthquake.

The 'Seismic Design of Pile Foundations' is a civil engineering design software that allows for the verification of pile foundations during Level 2 earthquakes, based on the Road Bridge Design Guidelines and their Commentary (November 2017). It can perform calculations in conjunction with the H29 Road Design compliant versions of 'Design of RC Bridge Piers' and 'Design of Reverse T-Type Abutments.' Additionally, it can also examine liquefaction. 【Features】 ■ Conducts liquefaction assessment during earthquakes and calculates reduction factors De for Level 1 and Level 2 ■ Allows selection between determining FL values based on average or minimum values ■ Supports input of up to 30 layers and 80 N values ■ Capable of verifying pile foundations during Level 2 earthquakes ■ Also able to examine liquefaction *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Calculation of Natural Period (H24 Version)"

Our substructure and foundation program can be linked with data! It performs calculations for design horizontal seismic intensity, inertial forces, and more.

The calculation of the natural period (H24 version) is a civil engineering design software that can perform calculations of the natural period, girder span length, reaction force distribution, and strength checks using the equivalent linearization method for bridge piers, based on the Road Bridge Design Guidelines and its commentary, V Seismic Design Edition. In the calculation of the natural period, it links with our substructure and foundation programs to automatically calculate necessary section constants and other parameters. Please utilize it for calculations of design horizontal seismic intensity and inertial forces. [Features] ■ Calculates the natural period based on design vibration units and computes design horizontal seismic intensity and inertial forces ■ Can also calculate the natural period during seismic isolation design ■ Capable of calculating up to 1 superstructure with 20 spans and 20 substructures ■ Considers up to 3 cross-section variations for the superstructure ■ Bearing conditions can be selected from fixed bearings, movable bearings, rubber bearings, and seismic isolation bearings *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Design of Direct Foundations (Improved)"

It can operate with the force (V, H, M) and the minimum necessary input, so it will demonstrate its effectiveness in urgent considerations.

The design of 'Direct Foundation (Improvement)' is a civil engineering design software that can perform stability calculations, calculations of the thickness of ground improvement layers, calculations for deep mixing improvement, and calculations of soil types based on each guideline. In each calculation, it can operate with the minimum necessary input of acting forces (V, H, M), making it effective for urgent assessments. Additionally, the following calculation items can be executed and output independently. [Features] ■ Ability to examine stability against overturning, sliding, and the bearing capacity of the supporting ground ■ Capability to assess projections and replacement foundations ■ Calculation of soil types can be performed in accordance with each guideline ■ Calculations before ground improvement (improvement thickness of 0m) are possible ■ Assessment of design strength for improvement bodies and examination of punching failure are possible *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Design of RC Bridge Piers (H24 Road Guidelines Version)"

The column cross-section corresponds to six types: rectangular, rectangular hollow, circular, circular hollow, oval, and oval hollow.

The design of RC bridge piers (H24 version of the guidelines) is a civil engineering design software that enables the design of single-column RC bridge piers using the seismic intensity method and the seismic horizontal bearing capacity method. It is composed of calculations for acting forces, stability calculations for direct foundations, stability calculations for pile foundations, beam design, column design, and slab design, based on the Road Bridge Design Guidelines and Commentary IV Substructure Edition (March 2012). Design considerations are conducted using the allowable stress method for normal conditions, storm conditions, and Level 1 earthquakes, while Level 2 earthquake considerations are verified using the seismic horizontal bearing capacity method. [Features] ■ Based on the Road Bridge Design Guidelines and Commentary IV Substructure Edition (March 2012) ■ Stability checks for overturning, sliding, and ground reaction forces can be performed ■ Calculation of ultimate bearing capacity considering eccentric loading can be performed ■ Option to perform or not perform ground bearing capacity calculations ■ Stability calculations for direct foundations with stepped footings can be performed *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Design of Deep Foundations"

Applicable to stratigraphic fold points and strata! We will design deep foundation piles during both persistent and fluctuating actions, as well as during accidental actions.

"The design of deep foundation piles" is a civil engineering design software that allows for the design of deep foundation piles based on the Road Bridge Design Guidelines and their commentary (November 2017), considering both persistent and variable action conditions as well as accidental action conditions (Level 2 seismic motion). The analysis model considers the nonlinearity of the foundation and ground, analyzing it as an in-plane and out-of-plane frame structure. It can accommodate combined pile deep foundations and columnar deep foundations (large diameter deep foundations). Additionally, it can be applied to geological layer breakpoints and various soil types (sandy soil, clayey soil, soft rock, hard rock). 【Features】 ■ Capable of designing deep foundation piles under persistent and variable actions as well as accidental actions (L2 seismic) ■ Supports combined pile deep foundations and columnar deep foundations (large diameter deep foundations) ■ Can accommodate up to 3 piles ■ Reinforcement can be designed for both persistent and variable actions, as well as Level 2 seismic motion, with up to 3 layers of reinforcement ■ The ground layers can be up to 5 layers, and the geological layer surface can be constructed with up to 18 points of polyline *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Design of Deep Foundations (H24 Version)"

Design of deep foundation piles during seismic intensity measurement and Level 2 earthquakes is possible! Up to 3 piles can be used.

The design of deep foundation piles (H24 version) is a civil engineering design software that allows for the design of deep foundation piles for normal conditions, Level 1 earthquakes, and Level 2 earthquakes, based on guidelines such as the second volume of design instructions. It supports combined pile deep foundations and columnar deep foundations (large diameter deep foundations), and also performs design for base slabs and calculations for pile head connections. Additionally, rebar can be arranged in up to three layers. 【Features】 ■ Up to 3 piles can be used ■ Up to 5 layers of strata can be defined, with each layer composed of coordinates for up to 18 points ■ Pile diameters range from 0.5m to 20m, and pile lengths range from 3m to 40m ■ Design for bridge abutments (reverse T-type and gravity type) against Level 2 seismic motion is possible ■ Cross-section design for base slabs is available *For more details, please refer to the PDF documentation or feel free to contact us.

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Civil engineering design software "Integrated Length Calculation"

"Welding, adhesion, and fusion joining" and "joining by disengagement prevention joints" are selectable options.

The "Integrated Length Calculation" is a civil engineering design software that conducts an examination of thrust forces on pipes, including both pressure and non-pressure pipes, based on the design standards and operational guidelines for land improvement project planning, such as "Pipeline." It assesses areas such as bends, branches, drop sections, T-pipes, valve sections, and vertical S-bend pipes to determine the necessity of countermeasures. Additionally, for the integrated length calculation, options for "joining by welding, adhesion, or fusion" and "joining with anti-disengagement joints" are available. 【Features】 ■ Pipe data can be added and edited by pipe type. ■ Input data files for "thrust block design" can also be imported. *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering software "Design of Thrust Blocks"

We will conduct an examination of thrust force, as well as studies on sliding, lifting, and sinking.

The "Thrust Block Design" is a civil engineering software that conducts an examination of thrust forces on curved sections, branching sections, T-pipes, one-sided drop sections, valve sections, and vertical S-bend pipes, targeting both pressure and non-pressure pipes, based on the land improvement project planning design standards and operational guidelines such as "Pipeline." It determines the necessity of countermeasures. Additionally, as part of the thrust block design, it examines sliding, uplift, and settlement. 【Features】 ■ Determines the necessity of countermeasures ■ Pipe data can be added and edited by pipe type ■ Input data files for "integrated length calculation" can also be imported ■ Users with a subscription can convert output reports to Microsoft Word, Microsoft Excel, PDF, HTML, and Docuworks files *For more details, please refer to the PDF materials or feel free to contact us.

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Civil engineering design software "Pipe Seismic Design"

Seismic design in the longitudinal direction of buried pipes will be conducted for both the main and auxiliary pipes.

The "Seismic Design of Pipes" is a civil engineering software that enables seismic design of buried pipes in the longitudinal direction, targeting both pressure pipes and non-pressure pipes, based on the design standards and operational guidelines for land improvement project planning, as well as seismic countermeasures and explanations for sewer facilities. It conducts assessments for liquefaction determination and buoyancy due to liquefaction, as well as examinations of the joints between manholes and pipelines, or between pipelines, and evaluates the strength in the pipe axis direction. 【Features】 ■ Capable of examining "permanent loads," "Level 1 earthquakes," and "Level 2 earthquakes" ■ Standard pipes are pre-registered ■ Other than standard pipes can also be registered as needed ■ Capable of examining axial stress and axial strain in pipelines ■ Joint methods can be selected freely *For more details, please refer to the PDF materials or feel free to contact us.

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Wellpoint Deep Well Method Design System

Supports up to 50 layers! The automatic placement function of drainage wells around the excavation area designs optimal positions.

This system is a program for the design and calculation of consolidation settlement for well point and deep well methods, as well as the calculation of recharge water volume. In the well point and deep well methods, suitable positions are designed through an automatic placement function of drainage wells surrounding the excavation area, in accordance with the standards. The consolidation settlement calculation computes the amount of settlement due to groundwater level decline, while the recharge water volume calculation is divided into cases of confined layers and unconfined water surfaces. 【Features】 ■ Well Point and Deep Well Methods - Suitable positions are designed through an automatic placement function of drainage wells surrounding the excavation area. - The decline in water levels around the excavation can be confirmed with contour maps. - Water level decline can be simulated by changing well placements or adding wells within the excavation. ■ The consolidation settlement calculation computes the amount of settlement due to groundwater level decline. ■ The recharge water volume calculation is divided into cases of confined layers and unconfined water surfaces. *For more details, please refer to the PDF document or feel free to contact us.

  • Analysis and prediction system
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