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Spatial characteristics of groundwater temperature in the Ishikari Lowland, Hokkaido, northern Japan: analytical and numerical applications

机译:日本北部北海道石狩低地地下水温度的空间特征:分析和数值应用

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摘要

In porous sediments of the Ishikari Lowland, there is a gradual increase in the background geothermal gradient from the Ishikari River (3-4 ℃ 100 m~(-1)) to the southwest highland area (10 ℃ 100 m~(-1)). However, the geothermal gradient at shallow depths differs in detail from the background distribution. In spite of convective heat-flow loss generally associated with groundwater flow, heat flow remains high (100 mW m~(-2)) in the recharge area in the southwestern part of the Ishikari basin, which is part of an active geothermal field. In the northeastern part of the lowland, heat flow locally reaches 140 mW m~(-2), probably due to upward water flow from the deep geothermal field. Between the two areas the heat flow is much lower. To examine the role of hydraulic flow in the distortion of the isotherms in this area, thermal gradient vs. temperature analyses were made, and they helped to define the major components of the groundwater-flow system of the region. Two-dimensional simulation modeling aided in understanding not only the cause of horizontal heat-flow variations in this field but also the contrast between thermal properties of shallow and deep groundwater reservoirs.
机译:在石狩低地的多孔沉积物中,从石狩河(3-4℃100 m〜(-1))到西南高原地区(10℃100 m〜(-1))的背景地热梯度逐渐增加。 )。但是,浅深度的地热梯度与背景分布在细节上有所不同。尽管通常与地下水流相关的对流热流损失,但石狩盆地西南部补给区的热流仍然很高(100 mW m〜(-2)),这是活跃地热场的一部分。在低地的东北部,局部的热流达到140 mW m〜(-2),这可能是由于深层地热场向上的水流所致。在两个区域之间,热流要低得多。为了研究水力流在该区域等温线变形中的作用,进行了温度梯度与温度的关系分析,它们有助于确定该地区地下水流系统的主要组成部分。二维模拟建模不仅有助于了解该领域水平热流变化的原因,而且有助于理解浅层和深层地下水库热力特性之间的对比。

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