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Numerical simulation of heat transfer from hot dry rock to water flowing through a circulation fracture

机译:循环裂缝热干燥岩石热传递的数值模拟

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This paper presents an advanced computational modeling of natural fracture networks in hot dry rock (HDR) reservoirs. A mathematical model is developed for describing the heat energy extracted from a HDR in a multi-well system. The model stochastically simulates discrete properties of natural fractures, utilizing multi-set orientation and fractal mathematics. The simulated fracture networks are essential for further stimulation and fluid flow studies. The results show that the heat extraction effectiveness is affected significantly by the well spacing, well radius, reservoir thickness, and pumped flow rate in a multi-well system. The water temperature decreases with increasing pumping rate and increases with the well spacing, well radius, and reservoir thickness. This paper also examines the detrimental effects of the simulated natural fracture network on the stimulated fluid flow capacity. The effective permeability enhancement (due to hydraulic stimulation) is found almost proportional to the density of the reservoir natural fractures.
机译:本文介绍了热干岩(HDR)储层中自然骨折网络的高级计算建模。开发了一种数学模型,用于描述从多孔系统中的HDR提取的热能。该模型随机模拟自然骨折的离散性质,利用多套方向和分形数学。模拟骨折网络对于进一步刺激和流体流动研究至关重要。结果表明,热萃取效果受到多孔系统中的井间距,半径,储层厚度和泵送流速的影响。随着泵送速率的增加,水温降低,随着阱间距,井半径和贮存器厚度而增加。本文还研究了模拟的自然裂缝网络对刺激的流体流量的不利影响。有效渗透性增强(由于液压刺激)几乎与储层自然骨折的密度成比例。

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