首页> 外文会议>12th international High-level radioactive waste management Conference 2008 >GROUNDWATER FLOW THROUGH THE FUNERAL MOUNTAINS,DEATH VALLEY NATIONAL PARK, CALIFORNIA
【24h】

GROUNDWATER FLOW THROUGH THE FUNERAL MOUNTAINS,DEATH VALLEY NATIONAL PARK, CALIFORNIA

机译:穿越丧葬山的地下水流,死亡谷国家公园,加利福尼亚

获取原文

摘要

Yucca Mountain is the site of the proposed high-level nuclear repository in the United States. Underlying the repository at a depth of 1298 m is an extensive Lower Paleozoic Carbonate Aquifer known to be highly transmissive. This paper presents the results of our investigation of the Carbonate Aquifer as a potential pathway for radionuclide transport through the Funeral Mountains to the Furnace Creek springs in Death Valley National Park. Our study culminated in a MODFLOW groundwater model that simulates flow through the Funeral Mountains. The model is supported by our current program of: 1) monitoring well drilling on the northeast flank of the southern Funeral Mountains, and 2) surface geologic mapping in the area. One of the major inputs to the modeling is a discharge estimate from the Furnace Creek spring system. Our analysis is constrained by a projected contour map of the base of the Carbonate Aquifer in the Southern Funeral Mountains that is created by steeply dipping fault planes that project an elevation for the base for the aquifer. The computed water table has several hundred meters of saturated carbonate rock through the critical area-the so-called spillway. The model recreates the flow of the various springs in Death Valley indicating that it is feasible for groundwater to flow through the Funeral Mountains.
机译:丝兰山(Yucca Mountain)是美国拟议的高级核资源库的所在地。在储层下面1298 m的深度处是一个广泛的下古生界碳酸盐含水层,该层已知是高透射率的。本文介绍了我们对碳酸盐含水层的研究结果,该碳酸盐含水层是放射性核素通过the仪山运输到死亡谷国家公园熔炉溪的潜在途径。我们的研究最终以MODFLOW地下水模型为模型,该模型模拟了流经Fun仪山的流量。该模型得到我们当前程序的支持:1)监测南部Fun葬山东北侧的钻井,以及2)该地区的地面地质图。建模的主要输入之一是来自Furnace Creek弹簧系统的流量估算。我们的分析受到南部Fun葬山碳酸盐岩含水层底部投影轮廓图的限制,该轮廓图是通过陡峭倾斜断层平面而创建的,这些断层平面投影了含水层底部的高度。计算出的地下水位通过临界区域(即所谓的溢洪道)有几百米的饱和碳酸盐岩。该模型重新创建了死亡谷中各个泉水的流量,表明地下水流经Fun葬山是可行的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号