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Composite element algorithm for the thermal analysis of mass concrete Simulation of cooling pipes

机译:大体积混凝土热分析的复合单元算法冷却管模拟。

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Purpose - Pipe cooling is an important measure for controlling the temperature in mass concrete. Since the temperature field in mass concrete containing cooling pipes is unsteady and three-dimensional, and there are huge quantities of the cooling pipes in the concrete, the study of efficient and reliable algorithm is crucial. The purpose of this paper is to develop the composite element method (CEM) for the temperature field in mass concrete containing cooling pipes. Design/methodology/approach - Each cooling pipe segment is looked at as a special sub-element having definite thermal characteristics, which is located explicitly within the composite element. By the variational principle, the governing equation for the composite element containing cooling pipes is established. Findings - One of the remarkable advantages of the method proposed is that each cooling pipe can be simulated explicitly while the difficulty of mesh generation around cooling pipes can be avoided. Originality/value - The paper demonstrates how composite elements containing cooling pipes are degenerated to the conventional finite elements automatically when the first stage artificial cooling finished, and conversely, the conventional finite elements can also be transformed to the composite elements automatically when the second stage artificial cooling started. The comparison of the numerical example using FEM and CEM shows the rationality of the proposed method.
机译:目的-管道冷却是控制大体积混凝土温度的重要措施。由于包含冷却管的大体积混凝土中的温度场是不稳定的并且是三维的,并且混凝土中存在大量的冷却管,因此研究有效而可靠的算法至关重要。本文的目的是开发一种用于包含冷却管的大体积混凝土温度场的复合单元法(CEM)。设计/方法/方法-将每个冷却管段视为具有明确热特性的特殊子元素,该子元素明确位于复合元素内。根据变分原理,建立了包含冷却管的复合元件的控制方程。发现-所提出方法的显着优点之一是可以明确模拟每个冷却管,同时可以避免在冷却管周围生成网格的困难。独创性/价值-本文演示了在第一阶段人工冷却完成后,如何将包含冷却管的复合元件自动退化为常规有限元,相反,当第二阶段人工冷却时,常规有限元也可以自动转换为复合元件冷却开始。通过有限元法和有限元法对数值实例的比较表明了该方法的合理性。

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