...
首页> 外文期刊>Vadose Zone Journal >Kilometer-Scale Rapid Transport of Naphthalene Sulfonate Tracer in the Unsaturated Zone at the Idaho National Engineering and Environmental Laboratory
【24h】

Kilometer-Scale Rapid Transport of Naphthalene Sulfonate Tracer in the Unsaturated Zone at the Idaho National Engineering and Environmental Laboratory

机译:爱达荷州国家工程和环境实验室在不饱和区中公里级萘磺酸示踪剂的快速运输

获取原文
获取原文并翻译 | 示例

摘要

To investigate possible long-range flow paths through the interbedded basalts and sediments of a 200-m-thick unsaturated zone, we applied a chemical tracer to seasonally filled infiltration ponds on the Snake River Plain in Idaho. This site is near the Subsurface Disposal Area for radioactive and other hazardous waste at the Idaho National Engineering and Environmental Laboratory. Within 4 mo, we detected tracer in one of 13 sampled aquifer wells, and in eight of 11 sampled perched-water wells as far as 1.3 km away. These detections show that (i) low-permeability layers in the unsaturated zone divert some flow horizontally, but do not prevent rapid transport to the aquifer; (ii) horizontal convective transport rates within the unsaturated zone may exceed 14 m d-1, perhaps through essentially saturated basalt fractures, tension cracks, lava tubes, or rubble zones; and (iii) some perched water beneath the Subsurface Disposal Area derives from episodic surface water more than 1 km away. Such rapid and far-reaching flow may be common throughout the Snake River Plain, and possibly occurs in other locations that have a geologically complex unsaturated zone and comparable sources of infiltrating water.
机译:为了研究穿过200 m厚非饱和区的互层玄武岩和沉积物的可能的远程流动路径,我们 将化学示踪剂应用于季节性填充的入渗 在爱达荷州的蛇河平原上回荡。此站点位于爱达荷州国家工程和环境实验室的 地下放射性废物和其他有害 废物处置区附近。 在4个月内,我们检测到示踪剂在13个采样的含水层sups 井之一中,以及11个采样的水井中的8个井中,远至1.3 km的 。这些检测结果表明:(i)非饱和区的低渗透性 层水平地转移了一些水流, 但没有阻止快速输送到含水层; (ii)非饱和区内的水平 对流传输速率可能超过 14 md -1 ,可能是由于基本饱和的玄武岩裂缝引起的, < / sup>张力裂缝,熔岩管或瓦砾区; (iii)地下处置区域下方的一些 栖息水来自距离超过1公里的 地表水。这种迅速而影响深远的 流量可能在整个蛇河平原很普遍,并且 可能发生在地质复杂的非饱和区 的其他地区和渗透水的可比来源。

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