首页> 外文期刊>Journal of Energy Resources Technology >Analysis of the Influence of Transient State of the Overhead Pipeline Placed in an Open-Air Space on the Accuracy of its Insulation Assessment Based on the Results of Outer Shell Thermovision Diagnostics
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Analysis of the Influence of Transient State of the Overhead Pipeline Placed in an Open-Air Space on the Accuracy of its Insulation Assessment Based on the Results of Outer Shell Thermovision Diagnostics

机译:基于外壳热像仪诊断结果的露天空间架空管道的瞬态对其绝缘评估精度的影响分析

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The proper thermal diagnostics of pipeline insulation is an important problem. The heat losses from the pipelines depend distinctly on the quality of this insulation. Changes in weather conditions cause transient accumulation of energy in the pipeline insulation and may cause difficulties during evaluation of the quality of the pipeline thermal insulation. Generally, the goal of this investigation was to identify the scale of energy accumulation inside thermal insulation. This is important because during the calculation of heat losses from thermal pipelines on the basis of infrared camera temperature measurement results usually a steady thermal state inside the insulation is assumed. In order to determine the distributions of the temperature inside the insulation, the calculations of the temperature changes inside the pipeline insulation for real changeable meteorological conditions with the use of software ANSYS-FLUENT and others have been carried out. Both the heat transfer between the inner pipeline tube and outer pipeline shell and energy accumulation inside the pipeline elements were considered. For the pipeline insulation evaluation purpose, different coefficients for the analysis of energy accumulation scale were defined and used. The measurement results of the temperature of inner pipeline tube and outer pipeline shell gathered during the operation of the special experimental rig were used as input data for the aforementioned numerical simulations. In these calculations, they constituted the first (Dirichlet's) boundary condition. The conclusions resulting from this work are useful for specialists involved in the technical evaluation of the thermal protection features of pipelines.
机译:管道隔热的正确热诊断是一个重要的问题。管道的热量损失明显取决于这种隔热材料的质量。天气条件的变化会导致管道保温层中能量的瞬时积累,并可能在评估管道保温层质量时造成困难。通常,该研究的目的是确定隔热材料内部的能量积累规模。这很重要,因为在根据红外热像仪温度测量结果计算热管道的热损失时,通常会假设绝缘体内部处于稳定的热状态。为了确定绝热层内部的温度分布,已经使用ANSYS-FLUENT和其他软件对实际可变的气象条件进行了管道绝热层内部温度变化的计算。同时考虑了内部管道和外部管道壳之间的传热以及管道元件内部的能量积累。为了评估管道的隔热效果,定义并使用了用于分析能量累积规模的不同系数。特殊实验装置运行过程中收集的内部管道管和外部管道壳的温度测量结果用作上述数值模拟的输入数据。在这些计算中,它们构成了第一个(狄利克雷)边界条件。这项工作得出的结论对于参与管道热防护功能技术评估的专家很有用。

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