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An Efficient Reliable Method for Calculation of Natural Gas Viscosity

机译:一种高效可靠的天然气黏度计算方法

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摘要

In recent years, there has been an increase of interest in the flow of gas at relatively high pressures and temperatures. The energy losses calculations in the flow of gases in conduits, as well as through the porous media constituting natural petroleum reservoirs, requires knowledge of the viscosity of the fluid at the pressure and temperature involved. This work presents a new modified empirical correlation for calculating viscosity of natural gas mixtures based on LGE model. The empirical model derived from more than 3,800 experimental data of viscosity at different temperatures and pressures. Also the model can predict viscosity of natural gas accurately for variety ranges pseudo reduced pressure from 0.01 to 21 and pseudoreduced temperatures from 1 to 3. The accuracy of the new model is compared to mostly used empirical models The results showed that the new empirical correlation has 1% of average absolute relative deviation percent (AARD %) relative to experimental data. The comparison indicates the superiority of the new method in simplicity and low deviation relative to other methods used in this work for calculating of natural gas viscosity.
机译:近年来,人们对在相对较高的压力和温度下的气体流动越来越感兴趣。计算管道中以及通过构成天然石油储层的多孔介质中的气体流中的能量损失时,需要了解在所涉及的压力和温度下流体的粘度。这项工作提出了一种新的改进的经验相关性,用于基于LGE模型计算天然气混合物的粘度。该经验模型来自于3800多个不同温度和压力下的粘度实验数据。此外,该模型还可以准确预测天然气的粘度,其变化范围为从0.01到21的伪减压和从1到3的伪降低温度。将新模型的准确性与最常用的经验模型进行比较。结果表明,新的经验相关性具有相对于实验数据的平均绝对相对偏差百分比(AARD%)的1%。比较表明,相对于本工作中用于计算天然气粘度的其他方法,该新方法在简单性和低偏差方面具有优势。

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