地下水储量

  • 网络groundwater storage;ground water storage;groundwater reserve
地下水储量地下水储量
  1. 在此基础上,论证了深层地下水储量资源的可利用性。

    Finally the utilizable particularity of the confined groundwater storage resources is discussed on above basis .

  2. 本文首先给出地下水储量的表达式,并定义地下水可持续开采的概念。

    First , this paper gives the formulation of aquifer storage and defines the sustainable groundwater exploitation .

  3. 在此基础之上,探讨了动态的地下水储量方程,并归纳出影响地下水储量的因素。

    And then it discusses the dynamic ground storage equation and finds the factors that affect the aquifer storage .

  4. 地下水平均滞留时间及储存量计算的多输入单输出模型&以山西临汾龙子祠泉岩溶水系统地下水储量计算为例

    A MULTI-INPUT SINGLE-OUTPUT MODEL FOR CALCULATING THE MEAN RESIDENCE TIME / AND THE RESERVE OF GROUNDWATER . its use in the Dragon Spring Karst Groundwater System , Linfen

  5. 圣地亚哥拥有的地下水储量既少,盐份又高,如今其90%的用水需从外地引入。在像圣地亚哥这样的地方,其对策是尽可能的节约用水、循环利用,而剩余不足的部份则大多从海洋中获取。

    In places such as San Diego , which has measly and brackish groundwater and currently imports 90 % of its water , the answer must be greater conservation , as much reuse as possible , with most of the rest coming from the sea .

  6. 地下水资源储量对某一地区是一定的,亦是有限的。

    The reserves of underground water resources are certain and limited at some area .

  7. 地下水的储量要比地面水大得多,但是由于看不到,所以往往低估了地下水的储量。

    Underground water reserves are much larger than those on the surface , but as they are unseen we tend to underestimate them .

  8. 岩溶水资源因其地下水埋藏深、储量大、水质良好是我国北方工农业和生活用水的重要水源。

    Since Karst ground water resources are buried deeply with large capacity storage and good quality , they are major sources of water supply for industrial , agricultural and domestic uses .

  9. 蓄水后,在库水范围内白河侧渗底渗量增大,增大了浅层地下水的补给量,地下水动储量增大,大大缓解了市中心城区的缺水现状;

    The increase of groundwater dynamic storage capacity in aquifer alleviates the intense lack of water supply in the center area of the City .