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Safeguarding urban infrastructure from subsidence and liquefaction risks

During an earthquake, soil can weaken through subsidence and liquefaction. These processes can cause buildings to collapse as the soil becomes unable to support their weight. Researchers have now developed a model that predicts soil-bearing strength and thickness to identify stable construction sites and reduce structural risks. Additionally, the model can also predict other soil conditions in real-time and function as an early-warning system to identify potential hazards.

Safeguarding urban infrastructure from subsidence and liquefaction risks in Tokyo

Researchers have developed a system to address risks caused by liquefaction and subsidence, two soil deformation events triggered by earthquakes that cause buildings to tilt and sink. The team includes Professor Shinya Inazumi .

Unraveling Complexities of Soil Behavior Numerical Simulations

Unraveling Complexities of Soil Behavior Numerical Simulations
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Shedding light on the intricacies of numerical simulations of soil behavior

Shedding light on the intricacies of numerical simulations of soil behavior
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Improving soil health with aeration curing for sludge management

Improving soil health with aeration curing for sludge management
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