Analysis of dependencies for determination of friction head losses during pumping of oil with non-Newtonian properties

Chingiz Nurmukhamedov
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Abstract

An important task of increasing the energy efficiency of pipeline transport of oil with non-Newtonian properties is to improve the methods of hydraulic calculation of oil pipelines taking into account the complexity of rheological models of such fluids. Obtaining theoretical formulas for friction head losses in turbulent regime is not possible due to the complexity of the turbulent flow structure, so the methodology of hydraulic calculation is based on experimentally obtained dependences. In the article the dependences of friction head loss at turbulent flow of non-Newtonian liquid are analysed on the example of calculation for pipelines of different diameter. As the pumped liquid was considered heavy highly solidified Mangyshlak oil, transported by the main oil pipeline Uzen – Atyrau – Samara. The obtained results show that with the increase of the pipeline diameter the calculation error according to the analysed dependences increases, which is justified by the fact that the indicated dependences are obtained on the basis of experimental studies conducted on pipelines of small diameters.
确定非牛顿特性油品抽吸过程中摩擦水头损失的相关性分析
提高具有非牛顿特性的石油管道运输的能源效率的一项重要任务是改进石油管道的水力计算方法,同时考虑到此类流体流变模型的复杂性。由于湍流结构的复杂性,不可能获得湍流状态下摩擦水头损失的理论公式,因此水力计算方法以实验获得的相关系数为基础。文章以不同直径管道的计算为例,分析了非牛顿液体湍流时摩擦水头损失的相关性。泵送液体被认为是由乌津-阿特劳-萨马拉主输油管道输送的重质高凝固曼吉施拉克石油。结果表明,随着管道直径的增大,根据所分析的依赖关系进行的计算误差也会增大,这是因为所指出的依赖关系是在对小直径管道进行实验研究的基础上获得的。
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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