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首页> 外文期刊>Engineering Geology >The impact of environmental temperature change on the interior temperature of quasi-sandstone in cold region: Experiment and numerical simulation
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The impact of environmental temperature change on the interior temperature of quasi-sandstone in cold region: Experiment and numerical simulation

机译:环境温度变化对寒区拟砂岩内部温度的影响:实验与数值模拟

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摘要

The purpose of this study was to simulate the internal temperature (T)change behavior of rocks as environmental T passes through the freezing point, 0 degrees, in cold region. These data are important to determine the overall heat transfer rules of rock bodies during freeze-thaw cycles. First, a series of indoor experiments were carried out to measure the interior T changes of quasi-sandstone specimens when environmental Ts were cycled from 20 degrees to - 20 degrees. The results of these tests show that interior T curves exhibit a typical 'three-period' change during the freezing or thawing process, in particular incorporating a clear slowdown period around environmental T that range between 0 degrees and -4 degrees. Second, using these data, we established an apparent heat capacity model (AHCM) based on heat transfer theory. This model was then embedded into the COMSOL program to simulate change rules of the interior T field. Moreover, latent heat linked to phase change was also considered based on three common correlation formulas that relate unfrozen water content and phase T. These comparisons indicate that simulated results based on a previously proposed empirical expression seemed to fit best with experimental results. Finally, five groups of symmetric and asymmetric environmental Ts were selected respectively in order to discuss the influence of these environmental variables on the interior T changes of rock samples. We therefore generalize that these three parameters are the key factors influencing the duration of the freezing period.
机译:本研究的目的是模拟岩石的内部温度(T)变化行为,因为环境T通过冷区域凝固点,0度0度。这些数据对于在冻融循环期间确定岩体的总传热规则很重要。首先,进行一系列室内实验,以测量当环境TS从20度循环到-20度时测量准砂岩样本的内部T变化。这些测试的结果表明,内部T曲线在冷冻或解冻过程中表现出典型的“三周期”变化,特别是在0度和-4度之间的环境T周围的透明放缓周期结合在环境T之间。其次,使用这些数据,我们建立了基于传热理论的表观热容型(AHCM)。然后将该模型嵌入到COMSOL程序中以模拟内部T字段的变化规则。此外,还基于三种常见的递质与相变相变的潜热,其三种常规相关公式涉及联络含水量和阶段T.这些比较表明,基于先前提出的经验表达的模拟结果似乎适合实验结果。最后,分别选择了五组对称和非对称环境TS,以讨论这些环境变量对岩石样品的内部T变化的影响。因此,我们概括了这三个参数是影响冻结期持续时间的关键因素。

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