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首页> 外文期刊>Water resources research >Vadose zone fluid flow estimates calculated from temperature measurements taken in the southern Albuquerque Basin at Tome, New Mexico
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Vadose zone fluid flow estimates calculated from temperature measurements taken in the southern Albuquerque Basin at Tome, New Mexico

机译:渗流区流体流量估算值是根据在新墨西哥州多美市南部阿尔伯克基盆地的温度测量结果计算得出的

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Closely spaced temperature measurements taken across the vadose zone at Tome, New Mexico, suggest upward and/or horizontal fluid flow between ~58 and ~30 m depth. The temperature-depth profile is an independent data set that in the present example is best fitted by the exponential expression characterizing vertically upward water flow. In addition, expressions representing horizontal flow and combined horizontal and vertical flow also provide relatively good fits to the temperature data. A unique hydrogeologic environment is present at the Tome site, where a thick clay layer straddles the water table at ~59 m depth. Neutron and bulk density porosity logs indicate the clay porosity is largely liquid phase water filled. It is suggested that matrix potential and perhaps osmosis are able to drive an uncommonly large vertical fluid flow for southwestern U.S. desert vadose zone sites because the presence of the saturated clay layer straddling the relatively shallow water table provides ideal conditions. The vertical specific discharge estimate is ~0.09 m yr~(-1) liquid water. Horizontal flow may also be possible in the clay layer and is estimated as ~23 m yr~(-1). Both the vertical and horizontal flow estimates are not untypical for the saturated zone in the Albuquerque Basin.
机译:在新墨西哥州Tome的渗流带上进行的近距离温度测量表明,在〜58至〜30 m深度之间有向上和/或水平的流体流动。温度-深度曲线是一个独立的数据集,在本示例中,它最好通过表征垂直向上水流的指数表达式来拟合。此外,表示水平流以及水平和垂直流组合的表达式也可以很好地拟合温度数据。在Tome场址上存在独特的水文地质环境,在〜59 m的深度处有厚厚的粘土层横跨地下水位。中子和堆积密度孔隙率测井表明粘土孔隙率主要是液相注水。有人认为,对于美国西南部沙漠渗流带地区而言,基体势能和渗透作用可能会引起异常大的垂直流体流动,因为存在于相对较浅水位上的饱和粘土层的存在提供了理想的条件。垂直比流量估算值为〜0.09 m yr〜(-1)液态水。在黏土层中也可能发生水平流,估计为〜23 m yr〜(-1)。对于阿尔伯克基盆地的饱和带而言,垂直和水平流量估计值并非非典型。

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