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Study on stress simulation of concrete floor on transversely isotropic equivalent pile foundation during construction period

机译:横观各向同性等效桩基础施工期混凝土底板应力模拟研究

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In the concrete pouring process of large pumping stations, the pile foundation plays an important role in supporting the upper structures, and also has a certain constraint on the concrete floor. In the numerical simulation calculation of construction period, to simplify the pre-processing, the volume ratio method is sometimes applied to regard the pile and surrounding soil foundation as the equivalent pile foundation, while the anisotropy of pile foundation is ignored, which will result in large calculation error of the horizontal stress of the concrete floor. Aiming at this problem, the anisotropy theory of materials is adopted in this paper to simulate the temperature field and stress field of the concrete floor both on non-equivalent pile foundation and equivalent pile foundation during construction period after compiling corresponding calculation program. The results show that when the ratio α of the horizontal elastic modulus to the vertical elastic modulus of equivalent pile foundation is about 1/20, the calculation result of the transversely isotropic equivalent pile foundation is approximately equal to the calculation result of the non-equivalent pile foundation (exact solution). It may provide some reference to similar engineering numerical simulation.
机译:在大型泵站的混凝土浇筑过程中,桩基在支撑上部结构中起着重要作用,并且对混凝土底板也有一定的约束。在施工期的数值模拟计算中,为简化前处理,有时采用体积比法将桩基与周围土基视为等效桩基,而忽略桩基的各向异性,导致混凝土楼板水平应力计算误差大。针对这一问题,本文采用材料各向异性理论,在编制了相应的计算程序后,对施工期非等值桩基础和等值桩基础上混凝土楼板的温度场和应力场进行了模拟。结果表明,当当量桩基础的水平弹性模量与竖向弹性模量之比α约为1/20时,横观各向同性当量桩基础的计算结果近似等于非当量桩基础的计算结果。桩基(精确的解决方案)。它可以为类似的工程数值模拟提供参考。

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