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Coupling heat and chemical tracer experiments for estimating heat transfer parameters in shallow alluvial aquifers

机译:耦合热和化学示踪剂实验以估算浅冲积含水层中的传热参数

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摘要

Geothermal energy systems, closed or open, are increasingly considered for heating and/or cooling buildings. The efficiency of such systems depends on the thermal properties of the subsurface. Therefore, feasibility and impact studies performed prior to their installation should include a field characterization of thermal properties and a heat transfer model using parameter values measured in situ. However, there is a lack of in situ experiments and methodology for performing such a field characterization, especially for open systems. This study presents an in situ experiment designed for estimating heat transfer parameters in shallow alluvial aquifers with focus on the specific heat capacity. This experiment consists in simultaneously injecting hot water and a chemical tracer into the aquifer and monitoring the evolution of groundwater temperature and concentration in the recovery well (and possibly in other piezometers located down gradient). Temperature and concentrations are then used for estimating the specific heat capacity. The first method for estimating this parameter is based on a modeling in series of the chemical tracer and temperature breakthrough curves at the recovery well. The second method is based on an energy balance. The values of specific heat capacity estimated for both methods (2.30 and 2.54 MJ/m~3/K) for the experimental site in the alluvial aquifer of the Meuse River (Belgium) are almost identical and consistent with values found in the literature. Temperature breakthrough curves in other piezometers are not required for estimating the specific heat capacity. However, they highlight that heat transfer in the alluvial aquifer of the Meuse River is complex and contrasted with different dominant process depending on the depth leading to significant vertical heat exchange between upper and lower part of the aquifer. Furthermore, these temperature breakthrough curves could be included in the calibration of a complex heat transfer model for estimating the entire set of heat transfer parameters and their spatial distribution by inverse modeling.
机译:越来越多地考虑将封闭或开放的地热能系统用于建筑物的加热和/或冷却。这种系统的效率取决于地下的热性质。因此,在安装之前进行的可行性和影响研究应包括现场热特性表征和使用现场测量的参数值的传热模型。但是,缺乏进行这种现场表征的原位实验和方法,特别是对于开放系统。这项研究提出了一个原位实验,旨在估算浅冲积含水层的传热参数,重点是比热容量。该实验包括将热水和化学示踪剂同时注入含水层中,并监测采油井中(以及可能位于下降梯度中的其他压力计中)地下水温度和浓度的变化。然后将温度和浓度用于估算比热容。估计此参数的第一种方法是基于一系列化学示踪剂和采油井温度突破曲线的建模。第二种方法基于能量平衡。两种方法在比利时默兹河冲积含水层中的实验点的比热容值(2.30和2.54 MJ / m〜3 / K)几乎相同,并且与文献中的值一致。估算比热容不需要其他压强计中的温度突破曲线。然而,他们强调指出,在默兹河冲积层中的传热是复杂的,并且与深度不同的主导过程形成对比,取决于深度,从而导致在含水层上部和下部之间进行大量的垂直换热。此外,这些温度突破曲线可以包括在复杂的热传递模型的校准中,以通过逆建模来估计整个热传递参数集及其空间分布。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第11期|90-99|共10页
  • 作者单位

    University of Liege, ArGEnCo, GEO~3, Hydrogeology and Environmental Geology, Aquapole, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Hydrogeology and Environmental Geology, Aquapole, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Hydrogeology and Environmental Geology, Aquapole, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Applied Geophysics, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Hydrogeology and Environmental Geology, Aquapole, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Applied Geophysics, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Hydrogeology and Environmental Geology, Aquapole, B52/3 Sart-Tilman, 4000 Liege, Belgium;

    University of Liege, ArGEnCo, GEO~3, Hydrogeology and Environmental Geology, Aquapole, B52/3 Sart-Tilman, 4000 Liege, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat tracer test; Shallow geothermal energy; Very low temperature geothermy; Aquifer thermal energy storage; Heat transfer; Solute transport;

    机译:伴热测试;浅层地热能;低温地热;含水层储热;传播热量;溶质运输;
  • 入库时间 2022-08-17 13:39:58

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