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水体同位素组成及氘过量参数在地热勘探中的示踪作用--以四川绵竹三箭水温泉开发为例
引用本文:杨波,尹观.水体同位素组成及氘过量参数在地热勘探中的示踪作用--以四川绵竹三箭水温泉开发为例[J].矿物岩石地球化学通报,2004,23(2):129-133.
作者姓名:杨波  尹观
作者单位:成都理工大学,四川省地学核技术重点实验室同位素室,成都,610059
摘    要:本文研究了四川绵竹三箭水及其邻区水体的同位素组成特征,以氚过量参数(d=δD-8δ^18O)在地热勘探中的示踪作用,再通过对研究区地下水氚过量参数和水笨氰含量(T)的相关性分析,综合运用于查明区内温泉地下水的成因,包括地下热储层内地下水的来源、补给源区、运移途径等等;确定水体均来源于大气降水,山前盆地深部地下水的补给源区在西、西北部高山区,径流方向由西北向东南,径流途径和在地下滞留时间都很长,并由此圈定了几个地热勘查的重点靶区。

关 键 词:水体同位素    氚过量参数  地热勘探  地质条件  地热水
文章编号:1007-2802(2004)02-0129-05
修稿时间:2003年6月23日

Isotope composition and deuterium excess parameter of water bodies as tracers in exploration of geothermal water--A case study on exploration of geothermal water in Sanjianshui,Sichuan
YANG Bo,YIN Guan Chengdu University of Technology,Chengdu ,China.Isotope composition and deuterium excess parameter of water bodies as tracers in exploration of geothermal water--A case study on exploration of geothermal water in Sanjianshui,Sichuan[J].Bulletin of Mineralogy Petrology and Geochemistry,2004,23(2):129-133.
Authors:YANG Bo  YIN Guan Chengdu University of Technology  Chengdu  China
Institution:YANG Bo,YIN Guan Chengdu University of Technology,Chengdu 610059,China
Abstract:Based on the isotopic features of water bodies in the Sanjiashui region ,this paper uses the theory of deuterium excess parameter(d) to discuss cause of formulation, recharge source, removed path, detained time of ground water. These problems are of significance to evaluating the size of geothermal water and exploited potential of thermal springs in neighboring areas. We analyzed the relationship between d and tritium content(T) of different water bodies in Sanjianshui region and obtained some conclusions. Firstly, all water bodies in Sanjianshui originated from precipitation. Secondly, precipitation in the northwest mountain area that has a long removed path and long detained time serves as the recharge resource of groundwater in the basin. In addition, we demonstrated the possibility of existence of geothermal water at several positions in the Sanjianshui region.
Keywords:deuterium excess parameter(d)  prospecting for geothermal water  tritium content(T)
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