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1. Perform a soil investigation to determine the soil type, bearing capacity, and other relevant information. 2. Analyze the bridge plans and calculate the foundation design loads based on the loading diagram, bridge geometry, and soil conditions. 3. Calculate the static and dynamic analysis of inteRead more
1. Perform a soil investigation to determine the soil type, bearing capacity, and other relevant information.
See less2. Analyze the bridge plans and calculate the foundation design loads based on the loading diagram, bridge geometry, and soil conditions.
3. Calculate the static and dynamic analysis of integral abutment bridges, taking into account the soil-structure interaction.
4. Determine the seismic response of the bridge and compare it to the established criteria for the local area.
5. Analyze the geometric properties of the bridge and its components to ensure that the design meets all applicable codes and regulations.
6. Perform a finite element analysis to determine the local effects of abutment and load reaction points.
7. Evaluate the performance of the bridge and its components using advanced numerical methods such as buckling and nonlinear dynamic analysis.
8. Conduct a thorough bridge inspection and testing before the bridge is placed into service.
9. Monitor the performance of the bridge and adjust the design as needed to ensure its safety and durability over time.