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Compression Behavior on Precast Concrete Assembly Spread Foundation for Qinghai-Tibet AC/DC Grid Interconnection Project

机译:青藏AC / DC电网互连项目预制混凝土组装扩散基础的压缩行为

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摘要

The precast concrete assembly foundation for Qinghai-Tibet AC750kV/DC±400kV grid interconnection project in frozen soil area was tested under compression load. The mechanical co-working properties for the different parts of the foundation were analyzed based on the observed results of soil pressure, structural displacement and stress. Under compression load, the displacement of the ring flange connecting the column, the bottom slab, and the joint seam of the two consolidated bottom slabs conformed with that of the top plane of the foundation. Two stages of elastic and elastic-plasticity were observed according to load-displacement curves of the foundation. The stress of the channel beams increased with the compression load and was in elastic stress condition. Under compression load, the two edges which were parallel to the joint seam of two consolidated foundation slabs had a tendency to up warping. But the displacements of all angular measuring points were less than that of the foundation top plane. The displacement and the stress of the different connected parts redistributed until the new balance developed. As a result, the different connected parts of the precast concrete assembly foundation co-operated to carry the compression load. The structural characteristic of the assembly foundation, the gaps among the assembly parts, the discrepancy of the nut screwing up and the mismatching tolerance during consolidating were the key factors to determine the performance of the foundation. Generally, under compression load, all structural parts of precast concrete assembly foundation had good entirety.
机译:青藏AC750KV / DC&#X00B1的预制混凝土装配基础;压缩负荷测试了冷冻土壤区域400kV电网互连项目。基于观察结果的土壤压力,结构位移和应力的观察结果分析了基础不同部分的机械共同工作性能。在压缩负荷下,环形凸缘的位移连接柱,底板和两个固结底板的接头符合基础顶面的底板。根据基础的负载 - 位移曲线观察到弹性和弹性可塑性的两个阶段。通道梁的应力随压缩负载而增加,并且处于弹性应力状态。在压缩负荷下,两个平行于两个整合基础板的联合接缝的两个边缘具有翘曲的趋势。但所有角度测量点的位移小于基础顶部平面的位移。在开发的新余额之前重新分配不同连接零件的位移和应力。结果,预制混凝土组件基础的不同连接部分合作以携带压缩负荷。装配基础的结构特征,组装部件之间的间隙,螺母拧紧的差异以及在整合过程中的不匹配耐受性是确定基础性能的关键因素。通常,在压缩负荷下,预制混凝土组装基础的所有结构部件都完整。

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