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首页> 外文期刊>Environmental geology and water sciences >Dripping Into Unsaturated Rock Underground Excavations: Model Testing At The Yuccamountain Exploratory Studies Facility
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Dripping Into Unsaturated Rock Underground Excavations: Model Testing At The Yuccamountain Exploratory Studies Facility

机译:滴入不饱和岩石地下开挖:Yuccamountain探索性研究设施的模型测试

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This paper presents a probabilistic formulation of unsaturated flow through rough multi-segmented fractures, with emphasis on Dripping Initiation Time (DIT), and attempts to explain the fast flow paths detected at the Yucca Mountain (YM) Exploratory Studies Facility (ESF). Three scenarios of parameters were used to test the validity of the model with these fast flow paths. The scenarios differed in the DITs and the corresponding parameter configurations were also tested for three different strati-graphic horizon depths. Each depth represented a different location where fast flow has been detected atrnYM. The first depth corresponds to the Bow Ridge Fau the second represents a network of steep fractures and cooling joints with large variability in dip; and the third location, probably connected to the Diabolous Ridge Fault, has a flow path that is low dipping. Monte Carlo simulations for each configuration and depth produced probabilistic results from nine scenarios for DITs, which are quite consistent with field observations.
机译:本文介绍了通过多段粗裂裂缝进行非饱和流动的概率公式,重点是滴落开始时间(DIT),并试图解释在尤卡山(YM)探索性研究设施(ESF)中检测到的快速流动路径。使用这些参数的三种情况来测试具有这些快速流动路径的模型的有效性。 DIT中的场景有所不同,并且还针对三种不同的地层水平深度测试了相应的参数配置。每个深度代表在YM处检测到快速流动的不同位置。第一深度对应于弓脊断裂。第二个代表陡峭的裂缝和冷却节的网络,倾角变化很大。第三个位置(可能与Diabolous Ridge断层相连)的流动路径倾角较低。每种配置和深度的蒙特卡洛模拟都从DIT的9种情况中产生了概率结果,这与现场观测非常一致。

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