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Importance of thermal dispersion in temperature plumes

机译:热分散在温度羽毛中的重要性

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The objective of this study is to evaluate the influence of thermal dispersion on the simulation of temperature plumes that evolve from the application of vertical ground source heat pump (GSHP) systems in aquifers. Various hydrogeological scenarios are simulated with longitudinal dispersivity ranging between 0.5 and 2 m and a Darcy velocity between 10~(-8) m s~(-s) and 10~(-5) m s~(-1). In addition, thermal dispersivity is assumed to be scale-dependent. Based on a field scale of 10 m, the study shows that the thermal dispersion is an important factor for the prediction of shape and extension of temperature plumes in medium-grained sand to gravel aquifers. From the perspective of environmental regulators, such assumptions might be crucial for licensing applications of neighbouring GSHP systems. In contrast, ignoring thermal dispersion provides appropriate predictions of the temperature plume length for hydrogeological conditions dominated by fine sands, silts and clays.
机译:本研究的目的是评估热分散体对从含水层中垂直地源热泵(GSHP)系统的应用演变的温度羽毛的模拟。模拟各种水文地质场景,纵向分散性范围在0.5至2米之间,达到10〜(-8)m s〜(-s)和10〜( - 5)m s〜(-1)之间的达到速度。此外,假设热分散性被依赖于鳞片。基于10米的场比例,研究表明,热分散性是预测中粒砂中温度羽膜的形状和延伸的重要因素。从环境监管机构的角度来看,这种假设可能对邻近GSHP系统的许可申请至关重要。相比之下,忽略热分散体提供由细砂,淤泥和粘土主导的水文地质条件的温度羽流长度的适当预测。

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