Settlement correction work | Enhancing value through dizziness relief caused by floor tilt and settlement correction.
Subsidance correction work
Eliminate the unpleasant dizziness caused by the tilt of the floor! Improve the evaluation and peace of mind of your home with objective data from measuring the building's perimeter level and correcting subsidence while living in it.
Dizziness and health issues caused by building settlement and floor tilt not only compromise comfort but also serve as serious depreciation factors in real estate appraisal and transactions. GeoTech's settlement correction solutions effectively improve structural defects, prevent health issues for residents, and maintain the asset value of homes. First, we conduct high-precision level measurements around the building's perimeter, visualizing and digitizing the amount of settlement and deformation angles in millimeters. Based on a scientifically grounded and reliable diagnosis, we implement "settlement correction while living," which requires no temporary housing or relocation. This approach allows residents to continue their daily lives while minimizing secondary costs and economic burdens. Additionally, we offer various reinforcement techniques, such as the "i-LIFT method" for precise lift-up using pressurized liquid injection, and the "Ganko Oyaji method," which significantly enhances the strength of the foundation structure. We promise to solidify the overall structural safety of the building and reliably protect the healthy living of its occupants and the value of their important assets over the long term.
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basic information
The target structures include wooden frame construction, light steel frame construction, reinforced concrete construction, and various small-scale structures, such as general single-family homes. High-precision laser leveling instruments, displacement sensors, and SWS testing machines are used for the investigation, quantifying tilt angles and settlement amounts in millimeter units. The construction methods include liquid pressure injection (i-LIFT method), steel pipe pile driving method, pressure slab method, and carbon fiber foundation reinforcement (Ganko Oyaji method). The optimal specifications are selected based on the building weight and ground characteristics. The construction equipment employs a compact electric power unit designed for low noise and low vibration.
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Applications/Examples of results
Improvement of building appraisal evaluation during the sale of used houses and structural repairs for inspection points. Resolution of health issues such as dizziness, headaches, and nausea experienced by residents due to the tilting of the house. Repairs for issues like sticking doors, poor opening and closing, floor creaking, wall wallpaper tearing, and foundation cracks. Correction of subsidence and restoration of levelness while residents are still living in the house without temporary housing. Strengthening the rigidity of aging foundations and seismic reinforcement. This can be utilized for various purposes, from facilitating real estate transactions and improving living environments to long-term preservation of housing assets, including prevention of future ground consolidation subsidence and re-subsidence.
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![[Construction Example] Restoration Work of a Wooden House in Mihama 3-chome, Urayasu City, Chiba Prefecture](https://image.www.ipros.com/public/product/image/5f0/2000495424/IPROS73556627643347780831.png?w=280&h=280)
