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A mountain-scale thermal-hydrologic model for simulating fluid flow and heat transfer in unsaturated fractured rock

机译:用于模拟非饱和裂隙岩中流体流动和传热的山地热水文模型

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摘要

A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is presented for investigating unsaturated flow behavior in response to decay heat from the proposed radioactive waste repository in the Yucca Mountain unsaturated zone (UZ), The model, consisting of both two-dimensional (2-D) and three-dimensional (3-D) representations of the UZ repository system, is based on the current repository design, drift layout, thermal loading scenario, and estimated current and future climate conditions. This mountain-scale TH model evaluates the coupled TH processes related to mountain-scale UZ flow. It also simulates the impact of radioactive waste heat release on the natural hydrogeological system, including heat-driven processes occurring near and far away from the emplacement tunnels or drifts. The model simulates predict thermally perturbed liquid saturation, gas- and liquid-phase fluxes, and water and rock temperature elevations, as well as the changes in water flux driven by evaporation/ condensation processes and drainage between drifts. These simulations provide insights into mountain-scale thermally perturbed flow fields under thermal loading conditions.
机译:提出了多维的山区尺度热水文(TH)数值模型,用于研究由尤卡山非饱和带(UZ)中拟议的放射性废物处置库中的衰变热量引起的不饱和流动行为,该模型包括两个部分UZ储存库系统的三维(2-D)和三维(3-D)表示形式基于当前的储存库设计,漂移布局,热负荷情况以及估计的当前和未来气候条件。该山区TH模型评估与山区UZ流有关的耦合TH过程。它还模拟了放射性废热释放对天然水文地质系统的影响,包括发生在靠近或远离定位隧道或漂移的热力驱动过程。该模型可模拟预测受热扰动的液体饱和度,气相和液相通量,以及水和岩石的温度升高,以及由蒸发/冷凝过程和漂移之间的排水驱动的水通量变化。这些模拟提供了在热负荷条件下对山区规模的热扰动流场的见解。

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