Subsidance correction work | Resolving dizziness and protecting value through floor tilt analysis and leveling of the home.
Subsidance correction work
Completely defend against dizziness caused by floor tilting and the decline in housing asset value! Protect health and value with perimeter level measurement of the building and subsidence correction while living in it.
Differential settlement of the ground and floor inclinations not only induce unexplained health issues such as dizziness, headaches, and nausea in residents but also lead to a catastrophic drop in asset value during the sale of used homes and inspection assessments. GeoTech's settlement correction solutions achieve the simultaneous restoration of structural distortion, improvement of health issues, and maximization of residential asset value. First, we conduct high-precision measurements of the building's perimeter levels, detailing the height differences around the building, maximum settlement amounts, and deformation angles down to the millimeter. Based on this scientific data, we plan and execute "settlement correction while living" that eliminates the need for temporary housing or relocation. By maintaining living infrastructure and minimizing secondary costs, we significantly reduce both mental and financial burdens. Furthermore, we permanently prevent re-settlement using various techniques such as the "i-LIFT method," which performs precise lift-up through pressure injection of liquid, and the "Ganko Oyaji method," which strengthens the foundation structure. We are committed to protecting the healthy lives of residents and their valuable residential assets for the long term.
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basic information
The target structures are general single-family houses and various small-scale structures, including wooden frame construction, lightweight steel construction, and reinforced concrete construction. The survey equipment includes high-precision laser level measuring instruments, displacement sensors, and SWS testing machines, visualizing tilt angles and settlement amounts in millimeter units. The modification 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 construction equipment uses a compact electric power unit designed for low noise and low vibration, taking environmental considerations into account.
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Applications/Examples of results
Improvement of dizziness, headaches, and health issues for residents caused by floor tilt. Enhancement of building appraisal evaluations during the sale of used houses and repair of issues pointed out during inspections. Safe settlement correction and leveling restoration while living in the property without temporary housing or moving. Repair of door and window opening/closing issues, floor squeaks, and wall crack repairs. Reinforcement of rigidity and seismic strengthening of unreinforced foundations that have deteriorated over time. Prevention of long-term resettlement, allowing for a wide range of applications from restoring a safe and healthy living environment to preserving real estate asset value.
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