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SSOR-PCG Method for Real Time Temperature Simulation on Caohe River Aqueduct in South to North Water Transfer Project during Construction Period

机译:SSOR-PCG方法,用于南水渡进路上漕河河流渡进路程的实时温度模拟施工期间

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The temperature stress due to temperature changes is often more than the concrete tensile strength during construction period and operation period in massive concrete structures in hydraulic engineering, so the analysis of temperature stress, temperature control and measures to prevent the cracks become very important. The solution of large sparse linear equations is essential to finite element simulation in simulation analysis of temperature field. However, the traditional direct method will cost too much memory and calculation time, and the nodes is limited. The symmetric successive over relaxation (SSOR)-preconditioned conjugate gradient (PCG) method is a very efficient iterative method for solving large sparse linear equations. Construction process simulation and temperature filed calculation during construction period about Caohe river landing rectangle aqueduct of Beijing-Shijiazhuang emergency water supply engineering of middle-route of south-to-north water transfer project are carried out by FEM code using SSOR-PCG method, then the calculation result and monitoring value are compared. The comparison result shows that temperature field during construction can be accurately simulated by simulation calculation, which is helpful for guiding construction and choosing construction scheme, and worthy to popularize to other similar projects.
机译:由于温度变化引起的温度应力通常大于施工期间的混凝土抗拉强度和液压工程中大规模混凝土结构中的施工期间的混凝土抗拉强度,因此对温度应力,温度控制和防止裂缝的措施进行分析非常重要。大稀疏线性方程的解对于温度场仿真分析中的有限元模拟至关重要。但是,传统的直接方法将花费太多的内存和计算时间,节点有限。相互放松的对称性(SSOR) - 预设的共轭梯度(PCG)方法是一种用于求解大稀疏线性方程的非常有效的迭代方法。施工过程仿真和温度施工在北京南水庄急供水工程中漕河河登陆矩形渡槽施工期间的施工期限由使用SSOR-PCG方法进行的FEM代码进行,然后比较计算结果和监测值。比较结果表明,通过仿真计算可以准确地模拟施工期间的温度场,这有助于引导施工和选择施工方案,并且值得普及其他类似项目。

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