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A numerical simulation of the temperature cracking propagation process when pouring mass concrete

机译:大体积混凝土浇筑温度裂缝扩展过程的数值模拟。

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Mass concrete temperature cracking is an important problem for concrete foundation safety in civil engineering projects; this issue extends from the construction process of a concrete foundation to the operation period. This paper introduces a simulation method for the mass concrete temperature cracking propagation process using the Finite Element Method (FEM). To illustrate the concrete heat conduction problem, an example is simulated with FEM to study concrete surface cracks caused by temperature changes during the entire process of pouring concrete, and the example is discussed to demonstrate how the concrete cracking process results from temperature decreases. The results show that the finite element method can effectively simulate the development of concrete block cracks under temperature stress. The calculation results attribute the crack distribution law of mass concrete blocks to the uniform temperature drop on the basis of strong constraints.
机译:大体积混凝土温度裂缝是土木工程项目混凝土基础安全的重要问题。这个问题从混凝土基础的建造过程一直延伸到运营期。本文介绍了一种使用有限元方法(FEM)的大体积混凝土温度裂缝扩展过程的模拟方法。为了说明混凝土的导热问题,用有限元法模拟了一个实例,研究在浇注混凝土的整个过程中温度变化引起的混凝土表面裂缝,并讨论了该实例以说明温度降低如何导致混凝土开裂过程。结果表明,有限元法可以有效地模拟温度应力作用下混凝土砌块裂缝的发展。计算结果将大块混凝土砌块的裂缝分布规律归因于强约束条件下的均匀温度降。

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