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Effect of Backfilling Material Under Structures on Ground Motion Characteristics Due to Earthquake

机译:建筑物底层抗震性能下的效果

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Due to limited areas and excessive cost of land for projects, backfilling process is become necessary. Also, backfilling will be done to overcome the un-leveling depths or raising levels of site construction, especially near the sea region. Therefore, backfilling soil materials used under the foundation of structures should be investigated regarding its effect on ground motion characteristics, especially at regions subjected to earthquakes. In this research, three thicknesses of sandy fill material of 20 m, 40 m and 60 m thicknesses are used to predict the modified ground motion characteristics effect at the foundation level. Comparison between the effect of using different thicknesses of sandy fill material above the natural soil strata on the recorded earthquake is studied, i.e., peak ground acceleration, time history, and spectra acceleration values. Shake computer program was used to perform this study. Strong earthquake records, with PGA (Peak Ground Acceleration) of (0.35 g) were used in the analysis. It was found that, higher fill material thickness has a significant effect on eliminating the earthquake ground motion properties at surface layer of fill material, near foundation level. It is recommended to consider the fill material thickness in the design of foundations subjected to seismic motions and more future studies should be analyzed for different fill and natural soil deposits.
机译:由于地区有限,项目的土地成本过高,需要回填过程。此外,将完成回填以克服未平衡深度或提高现场建设的水平,特别是在海域附近。因此,应研究在结构基础下使用的土壤材料,特别是其对地面运动特性的影响,特别是在受地震的区域。在该研究中,使用20μm,40μm和60μm厚度的三个厚度的砂质材料来预测基础水平的改进​​的地面运动特性效果。研究了在记录地震上方的自然土层上方使用不同厚度的砂质填充材料的效果的比较。,即峰接地加速,时间历史和光谱加速度值。摇动计算机程序用于执行本研究。在分析中使用强烈的地震记录,PGA(0.35g)的PGA(峰接地加速)。结果发现,较高的填充材料厚度对消除填充材料表面层的地震地面运动特性有显着影响,靠近基础水平。建议考虑填充材料厚度,在经过地震运动的基础上,应为不同的填充和天然土壤沉积物分析更新的研究。

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