Comparative Study on Atmospheric Temperature Models for the Buried Hot Oil Pipeline

Qing Yuan, Zhi-feng Wu, Wang Li, Bo Yu, Changchun Wu
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引用次数: 3

Abstract

In previous studies, the atmospheric temperature was generally assumed to be constant during a period (commonly a month) for the numerical simulation on the buried hot oil pipeline. The rationality of this assumption is controversial due to the absence of quantitative results, and thus it needs to be further verified or investigated to make atmospheric temperature approximation more convincing. In this study, based on the changing trend of actual atmospheric temperature, three mathematical models are established and their expressions are presented according to different approximations. And the relationships among these three expressions are obtained by utilizing mathematical derivation. On the basis of three atmospheric temperature models, the weakly unsteady single oil transportation and strongly unsteady batch transportation are numerically simulated, respectively. According to numerical results, the oil temperature at the pipeline ending point and the soil temperature field are compared for these three models. In order to make comparisons more convincing, the influences of the physical properties of crude oil, operation parameters, pipeline parameters and pipeline environments on the deviations of numerical results are compared and analyzed. Finally, based on all comparisons on the deviations of numerical results, the conclusions are drawn, which can provide beneficial reference for the choice of atmospheric temperature models in future numerical simulation study on the buried hot oil pipeline.
埋地热油管道大气温度模型的比较研究
在以往的研究中,对于地埋热油管道的数值模拟,一般都是假设在一段时间内(通常是一个月)大气温度是恒定的。由于缺乏定量结果,这一假设的合理性存在争议,需要进一步验证或研究,以使大气温度近似更有说服力。本文根据实际大气温度的变化趋势,建立了3种数学模型,并根据不同的近似给出了它们的表达式。并利用数学推导得到了这三个表达式之间的关系。在三种大气温度模型的基础上,分别对弱非定常单油输运和强非定常批油输运进行了数值模拟。根据数值计算结果,对三种模型的管道终点油温和土壤温度场进行了比较。为了使比较更具说服力,对比分析了原油物性、操作参数、管道参数和管道环境对数值结果偏差的影响。最后,通过对数值结果偏差的比较,得出结论,为今后埋地热油管道数值模拟研究中大气温度模型的选择提供有益的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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