首页> 外文期刊>Nuclear Technology >SENSITIVITY ANALYSIS FOR JOINT INVERSION OF GROUND-PENETRATING RADAR AND THERMAL-HYDROLOGICAL DATA FROM A LARGE-SCALE UNDERGROUND HEATER TEST
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SENSITIVITY ANALYSIS FOR JOINT INVERSION OF GROUND-PENETRATING RADAR AND THERMAL-HYDROLOGICAL DATA FROM A LARGE-SCALE UNDERGROUND HEATER TEST

机译:大型地下热力试验对地面雷达联合反演的敏感性分析和热力水文数据

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摘要

We describe a joint inversion approach that combines geophysical and thermal-hydrological data for the estimation of (a) thermal-hydrological parameters (such as permeability, porosity, thermal conductivity, and parameters of the capillary pressure and relative permeability functions) that are necessary for predicting the flow of fluids and heat in fractured porous media and (b) parameters of the petrophysical function that relates water saturation, porosity, and temperature to the dielectric constant. The approach incorporates the coupled simulation of nonisothermal multiphase fluid flow and ground-penetrating radar (GPR) travel times within an optimization framework. We discuss application of the approach to a large-scale in situ heater test that was conducted at Yucca Mountain, Nevada, to better understand the coupled thermal, hydrological, mechanical, and chemical processes that may occur in the fractured rock mass around a geologic repository for high-level radioactive waste. We provide a description of the time-lapse geophysical data (i.e., cross-borehole GPR) and thermal-hydrological data (i.e., temperature and water content data) collected before and during the 4-yr heating phase of the test and analyze the sensitivity of the most relevant thermal-hydrological and petrophysical parameters to the available data. To demonstrate feasibility of the approach, and as a first step toward comprehensive inversion of the heater test data, we apply the approach to estimate a single parameter: the permeability of the rock matrix.
机译:我们描述了一种联合反演方法,该方法结合了地球物理数据和热水文数据,以估算(a)所需的热水文参数(例如渗透率,孔隙率,导热率以及毛细管压力和相对渗透率函数的参数)预测破裂的多孔介质中的流体流动和热量,以及(b)与水饱和度,孔隙率和温度相关的介电常数的岩石物理参数。该方法在优化框架内结合了非等温多相流体流动与探地雷达(GPR)传播时间的耦合模拟。我们将讨论该方法在在内华达州尤卡山进行的大规模原位加热器测试中的应用,以更好地了解地质储藏库周围裂隙岩体中可能发生的热,水文,机械和化学过程耦合用于高放废物。我们提供了在4年加热阶段之前和期间收集的延时地球物理数据(即,跨孔GPR)和热水文数据(即,温度和水含量数据)的描述,并分析了灵敏度最相关的热水文和岩石物理参数为了证明该方法的可行性,并作为全面反转加热器测试数据的第一步,我们应用该方法来估计一个参数:岩石基质的渗透率。

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