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Apparatus development for contact mechanics of energy pile-soil interface

机译:能量桩土界面接触机械的装置开发

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An Energy Pile-Soil Interface Characteristic Apparatus (EPSICA) was developed to investigate the contact mechanics of the pile-soil interface. In the center of the apparatus, there is an energy pile model, around which different soil can be filled to simulate pile in different subsoil. The soil can be saturated. By applying loads on the top of the soil, the different depths were simulated. The temperature of energy piles was controlled by the cycling fluid with a water bath. The Pt100 sensors were installed in the pile and soil to measure the temperature changes. The miniature earth pressure cells were installed on the pile surface to measure the normal stress of the pile-soil interface. The FBG quasi-distributed optical fiber technology was used to measure the hoop strain to evaluate the circumferential deformation of the pile model. Taking the sand foundation as an example, the mechanical behavior of pile-soil contact behavior during the heating and cooling cycle was studied based on the temperature of pile and soil, normal stress of pile-soil interface and hoop strain of pile. The developed apparatus provides a new method for the study of thermos-mechanical behavior of energy pile.
机译:开发了一种能量桩土界面特征装置(EPSICA)以研究桩土界面的接触机械。在该装置的中心,存在能量桩模型,可以填充哪些不同的土壤以模拟不同的底层的桩。土壤可以饱和。通过在土壤顶部施加载荷,模拟了不同的深度。能量堆的温度由循环流体用水浴控制。 PT100传感器安装在桩和土壤中以测量温度变化。将微型地球压力电池安装在桩表面上,以测量桩土界面的正常应力。 FBG准分布的光纤技术用于测量环箍应变,以评估桩模型的周向变形。以砂基础为例,研究了加热和冷却循环期间桩土接触行为的力学行为,基于桩土界面的桩和土壤,正常应力和桩桩桩桩的温度研究。开发设备提供了一种新的能量桩热弹性行为研究的新方法。

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