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  6. Milling Mall Method Construction Case: New Pipeline Construction for Oi Thermal Power Plant Substation

Milling Mall Method Construction Case: New Pipeline Construction for Oi Thermal Power Plant Substation

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last updated:Apr 27, 2022

ヤスダエンジニアリング
ヤスダエンジニアリング
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It's not surprising if anything comes out; the entire site is an example of land reclamation excavation.

This document introduces the construction achievements related to the new pipeline installation work at the Oi Thermal Power Plant. This project involved the installation of new pipelines within the Oi Thermal Power Plant, and due to the site being filled, it was uncertain whether sheet piles or H-beams would be encountered; it was possible to find concrete debris or metal fragments, among other things. In reality, only pine piles and what appeared to be concrete debris from some base were encountered, and the use of expansion jacks was not necessary. 【Construction Case】 ■ Project Name: New Pipeline Installation Work Related to Oi Thermal Power Plant ■ Client: Tokyo Electric Power Company Holdings, Inc. ■ Contractor: Wakachiku Construction Co., Ltd. Tokyo Branch ■ Pipe Diameter: 1350 mm ■ Pushing Length: 190.5 m ■ Soil Type: Clayey Soil ■ N Value / Gravel Ratio / Maximum Gravel Diameter: N=2–10 G=0% φmax=100 mm ■ Construction Period: August 2015 to October 2015 (2.5 months) ■ Type of Obstacles: Insurance Method, Pine Piles, Concrete Debris, Wood Pieces *For more details, please refer to the PDF document or feel free to contact us.

    Site and ground investigationCivil Engineering MethodSpecial Construction Method
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Milling Mall Method Construction Case: New Pipeline Construction for Oi Thermal Power Plant Substation

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  • Related Link - http://www.milling-mole.jp/results-b.html

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【Milling Mall Method: Four Special Functions】 ◎ Exploration: Detecting metal obstacles ahead while advancing the excavation ◎ Improvement: Ground improvement from within the tunneling machine before and after the obstacles ◎ Cutting: Crushing and discharging metal obstacles ◎ Guidance: Guiding the tunneling machine to the designated position of the vertical pile *For more details, please refer to the PDF document or feel free to contact us.

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Underground Obstacle Adaptable Slurry Shield Method "Milling Mall Method"

Underground Obstacle Adaptable Slurry Shield Method "Milling Mall Method"

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Japan Construction International Award Certificate

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Sewer Exhibition '18 Kitakyushu

We exhibited at the Sewer Exhibition '18 in Kitakyushu!

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Yasuda Engineering showcased the underground obstacle-responsive mud-based thrusting method, featuring the milling mole method and the jet method, which uses a CCD camera sensor to instantly measure the position of the tunneling machine on sharp curves! 【Exhibited Products】 ■ Underground Obstacle-Responsive Mud-Based Thrusting Method The milling mole method is used in urban development and is a mud-based thrusting method that safely conducts construction by cutting through obstacles that remain underground. It can detect obstacles ahead of the thrusting excavation and discharge them as cutting powder of about 1 cm, and if necessary, it allows for the injection of chemical solutions from within the machine and guidance of the tunneling machine using GPS. ■ Jet Method The jet method, which uses a CCD camera sensor to instantly measure the position of the tunneling machine on sharp curves, enables long-distance and sharp curve construction in small-diameter thrusting. By using a dedicated pump tube and lubricant injection pipe for the jet method, it reduces the load on the pipe, making long-distance thrusting possible even with small diameters. It is the most excellent all-around thrusting method that does not limit construction sites due to internal measurements of the pipe.

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Sewer Exhibition '18 Kitakyushu

We exhibited at the Sewerage Exhibition '18 in Kitakyushu City, Fukuoka Prefecture!

  • Seminar・Event

*******    Exhibition at the Sewerage Exhibition    ******** Yasuda Engineering showcased the underground obstacle-responsive mud slurry thrusting method, featuring the milling mole method and the JET method, which uses CCD camera sensors to instantly measure the position of the tunneling machine on sharp curves! 【Exhibited Products】 ■ Underground Obstacle-Responsive Mud Slurry Thrusting Method The milling mole method is used in urban development and safely carries out thrusting work by cutting through and penetrating obstacles that remain underground. It can detect obstacles ahead of the thrusting excavation and discharge them as cutting powder of about 1 cm, and if necessary, it allows for chemical injection from within the machine and guidance of the tunneling machine using GPS. ■ JET Method The JET method uses CCD camera sensors to instantly measure the position of the tunneling machine on sharp curves. It enables long-distance and sharp curve construction in small-diameter thrusting. By using a dedicated pump tube and lubricant injection pipe for the JET method, it reduces the load on the pipe, allowing for long-distance thrusting even with small diameters. It is the most excellent all-around thrusting method that does not limit construction locations due to internal measurements.

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Yasuda Engineering Co., Ltd. has been a specialized company in public sewer construction, contributing to the environmental development of the local community since its establishment in 1975. We have pursued sound management and advanced technical capabilities, continuing to make steady progress. In 2001, we acquired the international standard "ISO9001" and expanded into the field of general civil engineering. We aim to be a corporate group capable of continuous innovation as a comprehensive construction company, including building construction. "Honing our technology with rich sensibility, we evaluate from a fair perspective to enhance the vitality of the company in order to meet our customers' needs." This is the management policy of Yasuda Engineering Co., Ltd. We, Yasuda Engineering Co., Ltd., are committed to uniting all employees to refine our technical skills and create a new future.

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