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Multiscale formulation for coupled flow-heat equations arising from single-phase flow in fractured geothermal reservoirs

机译:裂隙地热储层单相流引起的流-热耦合方程的多尺度公式

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Efficient heat exploitation strategies from geothermal systems demand for accurate and efficient simulation of coupled flow-heat equations on large-scale heterogeneous fractured formations. While the accuracy depends on honouring high-resolution discrete fractures and rock heterogeneities, specially avoiding excessive upscaled quantities, the efficiency can be maintained if scalable model-reduction computational frameworks are developed. Addressing both aspects, this work presents a multiscale formulation for geothermal reservoirs. To this end, the nonlinear time-dependent (transient) multiscale coarse-scale system is obtained, for both pressure and temperature unknowns, based on elliptic locally solved basis functions. These basis functions account for fine-scale heterogeneity and discrete fractures, leading to accurate and efficient simulation strategies. The flow-heat coupling is treated in a sequential implicit loop, where in each stage, the multiscale stage is complemented by an ILU(0) smoother stage to guarantee convergence to any desired accuracy. Numerical results are presented in 2D to systematically analyze the multiscale approximate solutions compared with the fine scale ones for many challenging cases, including the outcrop-based geological fractured field. These results show that the developed multiscale formulation casts a promising framework for the real-field enhanced geothermal formations.
机译:地热系统的有效热利用策略要求对大规模非均质裂缝地层上的耦合流-热方程进行准确,高效的模拟。尽管精度取决于尊重高分辨率离散裂缝和岩石异质性,特别是避免了过多的上扩量,但如果开发出可扩展的模型简化计算框架,则可以保持效率。针对这两个方面,这项工作提出了地热储层的多尺度公式。为此,基于椭圆局部求解基函数,针对压力和温度未知数,获得了非线性的时间相关(瞬态)多尺度粗尺度系统。这些基本功能可解决小规模的异质性和离散裂缝问题,从而产生准确而有效的仿真策略。在顺序隐式回路中处理流热耦合,其中在每个阶段中,多尺度阶段都由一个ILU(0)平滑阶段进行补充,以确保收敛至任何所需的精度。在二维中给出了数值结果,以系统分析多尺度近似解与精细尺度解的比较,从而解决了许多具有挑战性的情况,包括基于露头的地质裂缝场。这些结果表明,开发的多尺度配方为实地增强的地热地层提供了有希望的框架。

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