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首页> 外文期刊>International Journal of Information Technology >Compressible Flow Modeling in Pipes and Porous Media during Blowdown Experiment
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Compressible Flow Modeling in Pipes and Porous Media during Blowdown Experiment

机译:排污实验中管道和多孔介质中的可压缩流动建模

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A numerical model is developed to simulate gas blowdowns through a thin tube and a filter (porous media), separating a high pressure gas filled reservoir to low pressure ones. Based on a previous work, a one-dimensional approach is developed by using the finite element method to solve the transient compressible flow and to predict the pressure and temperature evolution in space and time. Mass, momentum, and energy conservation equations are solved in a fully coupled way in the reservoirs, the pipes and the porous media. Numerical results, such as pressure and temperature evolutions, are firstly compared with experimental data to validate the model for different configurations. Couplings between porous media and pipe flow are then validated by checking mass balance. The influence of the porous media and the nature of the gas is then studied for different initial high pressure values.
机译:建立了一个数值模型来模拟通过细管和过滤器(多孔介质)的气体排泄,将高压充气储层与低压储层分开。在先前工作的基础上,使用有限元方法开发了一种一维方法,以解决瞬态可压缩流并预测时空中的压力和温度变化。质量,动量和能量守恒方程以完全耦合的方式在储层,管道和多孔介质中求解。首先将压力和温度变化等数值结果与实验数据进行比较,以验证不同配置的模型。然后通过检查质量平衡来验证多孔介质和管道流量之间的耦合。然后针对不同的初始高压值研究了多孔介质和气体性质的影响。

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