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Thermal Cracking Analysis during Pipe Cooling of Mass Concrete Using Particle Flow Code

机译:用粒子流量码料管冷却热裂纹分析

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摘要

Pipe cooling systems are among the potentially effective measures to control the temperature of mass concrete. However, if not properly controlled, thermal cracking in concrete, especially near water pipes, might occur, as experienced in many mass concrete structures. In this paper, a new numerical approach to simulate thermal cracking based on particle flow code is used to shed more light onto the process of thermal crack propagation and the effect of thermal cracks on thermal fields. Key details of the simulation, including the procedure of obtaining thermal and mechanical properties of particles, are presented. Importantly, a heat flow boundary based on an analytical solution is proposed and used in particle flow code in two dimensions to simulate the effect of pipe cooling. The simulation results are in good agreement with the monitored temperature data and observations on cored specimens from a real concrete gravity dam, giving confidence to the appropriateness of the adopted simulation. The simulated results also clearly demonstrate why thermal cracks occur and how they propagate, as well as the influence of such cracks on thermal fields.
机译:管道冷却系统是控制质量混凝土温度的潜在有效措施之一。然而,如果没有适当地控制,可能发生混凝土,特别是在水管附近的热破裂,可能发生在许多质量混凝土结构中。在本文中,使用基于粒子流代码的热裂纹的新数值方法来脱落到热裂纹传播的过程中,以及热裂纹对热场的影响。提出了模拟的关键细节,包括获得颗粒的热和机械性能的过程。重要的是,提出了一种基于分析解决方案的热流边界,并在两维的颗粒流代码中使用,以模拟管道冷却的效果。仿真结果与来自真正的混凝土重力坝上的监测温度数据和观察结果吻合良好,对所采用的模拟的适当性充满信心。模拟结果也清楚地证明了为什么发生热裂纹以及它们如何传播,以及这种裂缝对热场的影响。

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