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首页> 外文期刊>Fluid Phase Equilibria >An improved BIP matrix decomposition method for reduced flash calculations
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An improved BIP matrix decomposition method for reduced flash calculations

机译:一种改进的BIP矩阵分解方法,用于减少闪存计算

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摘要

Fast and accurate phase equilibrium calculations have been a hot research topic during the past decades due to the increased computational effort they impose in process simulation. Reduction methods have attracted significant interest as a means to accelerate calculations by decreasing the problem's dimensionality. However, when many binary interaction parameters (BIPs) exhibit non-zero values, reduction methods offer limited advantage and the introduction of approximation error is inevitable.In this work a new method is presented for replacing the conventional spectral decomposition basis vectors by new ones so that the approximation error of the energy parameter is minimized instead of that of BIP matrix. The new reduced variables set leads to improved flash calculations accuracy, thus allowing them to be performed at a given accuracy level using fewer reduced variables compared to the conventional approach. Moreover, it is shown that the formulation of the proposed matrix decomposition method is a generalization of the spectral analysis one. The extension of the proposed method to temperature-dependent BIPs is also discussed. A set of examples demonstrates the efficiency of the proposed method. The method can be readily applied to all existing phase behavior algorithms within the reduced variables framework as it intervenes solely on the treatment of the BIP matrix.
机译:在过去的几十年中,快速准确的相平衡计算一直是研究的热点,这是由于它们在过程仿真中增加了计算量。减少方法作为一种通过减小问题的维数来加快计算速度的方法引起了极大的兴趣。然而,当许多二进制相互作用参数(BIP)呈现非零值时,归约方法的优势有限,不可避免地会引入近似误差。在这项工作中,提出了一种新方法,用新方法代替常规的光谱分解基向量,因此能量参数的近似误差最小,而不是BIP矩阵。通过设置新的减少变量,可以提高闪存的计算精度,因此与常规方法相比,可以使用较少的减少变量以给定的精度级别执行它们。而且,表明所提出的矩阵分解方法的公式化是对频谱分析的概括。还讨论了所提出的方法对依赖温度的BIP的扩展。一组示例说明了该方法的有效性。由于该方法仅干预BIP矩阵的处理,因此可以轻松应用于缩减变量框架内的所有现有相位行为算法。

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