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A novel POD reduced-order model based on EDFM for steady-state and transient heat transfer in fractured geothermal reservoir

机译:基于EDFM的裂隙地热储层稳态和瞬态传热的POD降阶模型。

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摘要

A new proper orthogonal decomposition reduced-order model (POD-ROM) for fluid flow and heat transfer processes in a fractured geothermal reservoir is proposed. First, the primary governing equations are established based on the embedded discrete fracture model. Second, the POD-ROM is developed by projecting the discrete matrix equations instead of the primary governing equations onto the low-dimensional space spanned by the pressure and temperature basis functions. Compared with the typical POD modeling method, the new model reduction technique can easily deal with mass and energy transfer between the matrix and fractures, thus ensuring the mass and energy conservation of the whole system in the projection process. The new model does not require complex mathematical deduction and is easy to implement in practical applications. The accuracy and robustness of the model were carefully studied for three complex heat transfer cases. Calculation results indicated that the computational efficiency can be improved by at least 10-15 times while high reconstruction and prediction accuracy is maintained. (C) 2019 Elsevier Ltd. All rights reserved.
机译:针对裂缝性地热储层中的流体流动和传热过程,提出了一种新的适当的正交分解降阶模型(POD-ROM)。首先,基于嵌入式离散裂缝模型建立主要控制方程。其次,通过将离散矩阵方程而不是主要控制方程投影到由压力和温度基础函数所跨越的低维空间上来开发POD-ROM。与典型的POD建模方法相比,新的模型简化技术可以轻松处理基质与裂缝之间的质量和能量传递,从而在投影过程中确保整个系统的质量和能量守恒。新模型不需要复杂的数学推论,并且易于在实际应用中实现。在三个复杂的传热案例中,对模型的准确性和鲁棒性进行了仔细研究。计算结果表明,在保持较高的重构和预测精度的同时,计算效率至少可以提高10-15倍。 (C)2019 Elsevier Ltd.保留所有权利。

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