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Numerical study on crack thermal resistance effect on thermo-mechanical coupled behavior of concrete structure at room temperature

机译:室温混凝土结构热机械耦合行为的裂缝热阻效应数值研究

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Cracking behavior in massive concrete structure is inescapable. Cracks would impair the thermal conduction ability of concrete and indirectly induce temperature redistributions, which, in this study, is termed "Crack Thermal Resistance (CTR) effect". In order to evaluate the influence of CTR on massive concrete structure, a specific thermo-mechanical (TM) coupled model at room temperature, featuring with the evolution of concrete thermal conductivity during material fracture, is proposed based on the thermodynamic principle and concrete damage plastic model. This coupled model is coded as subroutines in ABAQUS and the implementation validated by an uniaxial cyclic test of a single element and a double edge notched specimen (DENS) test. In the DENS numerical test, it is observed that CTR effect can cause heat flux turbulences around cracking area, leading to redistributions of temperature. As a consequence, the stress field and crack opening change around the cracking area as well. In the end, this model is applied to investigate the influence of CTR on the TM coupled behavior of a gravity dam under a long term operation period thermal load. The comparison between the simulations with and without CTR effect demonstrates that (a) CTR effect has a negative effect on structure interior crack propagation, because thermal resistances near dam toe protect the dam from the downstream environment temperature shock; (b) CTR effect can induce redistributions of stress field around the crack area, but the difference in stress field does not affect the compressive stress state on dam-foundation interface. (C) 2019 Elsevier Ltd. All rights reserved.
机译:大规模混凝土结构中的开裂行为是不可避免的。裂缝会损害混凝土和间接诱导温度再分配的热传导能力,在本研究中称为“裂纹热阻(CTR)效应”。为了评估CTR在大规模混凝土结构上的影响,基于热力学原理和混凝土损伤塑料,提出了在室温下在室温下的特定热机械(TM)耦合模型,采用了材料骨折中的混凝土导热率的演变。模型。该耦合模型被编码为ABAQU中的子程序,并且通过单个元素的单轴循环测试验证的实施以及双刃缺口样本(DENS)测试。在DENS数值测试中,观察到CTR效应会导致裂缝区域周围的热通量湍流,导致温度的再分配。因此,裂缝区域周围的应力场和裂缝开口变化。最后,应用该模型来研究CTR在长期操作周期热负荷下对重力坝的TM耦合行为的影响。具有和不具有CTR效应的模拟之间的比较表明(a)CTR效应对结构内部裂纹传播具有负面影响,因为Dam Toe附近的热阻保护大坝免受下游环境温度冲击; (b)CTR效应可以诱导裂缝区域周围应力场的再分配,但应力场的差异不会影响坝上界面上的压缩应力状态。 (c)2019年elestvier有限公司保留所有权利。

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