首页> 外文期刊>Soils and foundations >NEGATIVE PORE AIR PRESSURE GENERATION IN BACKFILL OF RETAINING WALLS DURING EARTHQUAKES AND ITS EFFECT ON SEISMIC EARTH PRESSURE
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NEGATIVE PORE AIR PRESSURE GENERATION IN BACKFILL OF RETAINING WALLS DURING EARTHQUAKES AND ITS EFFECT ON SEISMIC EARTH PRESSURE

机译:地震作用期间挡土墙回填中负孔气压的产生及其对地震土压力的影响

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In order to investigate the seismic behavior of conventional type and geosynthetic-reinforced soil retaining walls, 1-g model shaking tests were conducted. Model walls having a height of about 50 cm were placed on a subsoil layer and backfilled with a layer of dense dry Toyoura sand. They were subjected to several steps of horizontal irregular excitations. As a result, generation of negative pore air pressure in the backfill was observed. The maximum amplitude of the negative pore air pressure during each shaking step increased with the base acceleration. Based on analyses of the measured data, it was inferred that such negative pore air pressure was caused by outward wall displacement relative to the backfill and not by dilative behavior of the backfill. It would cause a reduction in the seismic earth pressures exerted from the backfill. This feature suggests an advantage of a rigid full-height facing for reinforced soil walls over the seg-mental types of facing. A simplified numerical procedure to evaluate earth pressure was applied while considering the effects of the negative pore air pressure, and it could qualitatively simulate the measured behavior in terms of the seismic earth pressure and the angle of failure plane in the backfill.
机译:为了研究常规类型和土工合成材料加筋的土挡墙的抗震性能,进行了1-g模型振动试验。将高度约为50厘米的模型墙放在地下土壤层上,并用一层稠密的干燥Toyoura沙子回填。他们经历了几步水平不规则激发。结果,观察到在回填中产生负孔气压。在每个振动步骤中,负孔隙空气压力的最大幅度随基本加速度而增加。根据对测量数据的分析,可以推断出这种负孔隙空气压力是由相对于回填物的向外壁位移而不是由回填物的膨胀行为引起的。这将导致回填产生的地震土压力降低。该特征表明,与分段类型的饰面相比,用于加固土墙的刚性全高饰面具有优势。在考虑负孔隙空气压力的影响的情况下,采用了简化的数值程序来评估土压力,它可以根据地震土压力和回填中破坏面的角度定性地模拟测得的行为。

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