首页> 外文会议>ASME biennial conference on engineering systems design and analysis >THE EFFECTS OF GROUNDWATER FLOW ON VERTICAL-BOREHOLE GROUND SOURCE HEAT PUMP SYSTEMS
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THE EFFECTS OF GROUNDWATER FLOW ON VERTICAL-BOREHOLE GROUND SOURCE HEAT PUMP SYSTEMS

机译:地下水流对竖井孔地源热泵系统的影响

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Heat advection by groundwater flow is known to improve the performance of ground heat exchangers (GHEs), but the effect of groundwater advection on performance is not yet fully understood. This study examined how parameters related to groundwater flow, such as aquifer thickness, porosity, lithology, and groundwater flow velocity, affect the performance of a borehole GHE. Under the thin-aquifer condition (10 m, or 10% of the entire GHE length in this study), groundwater flow velocity had the greatest effect on heat flux. With a groundwater flow velocity of at least 10~(-4) m/s through a low-porosity aquifer filled with gravel with high thermal conductivity, the heat flux of a GHE was as much as 60% higher than that of a non-aquifer GHE. If the aquifer is as thick as 50 m (50% of the entire GHE length), the high thermal conductivity of gravel doubled the heat flux of the GHE with a groundwater flow velocity of at least 10~(-5)m/s. Thus, not only groundwater flow velocity, but also aquifer thickness and thermal conductivity were important factors. However, groundwater seldom flows at such high velocities, and porosity, gravel size, and aquifer thickness vary regionally. Thus, in the design of ground source heat pump systems, it is not appropriate to assume a large groundwater effect.
机译:已知通过地下水流进行的热对流可改善地面热交换器(GHE)的性能,但是尚未完全理解地下水对流对性能的影响。这项研究检查了与地下水流有关的参数,例如含水层厚度,孔隙率,岩性和地下水流速,如何影响井眼GHE的性能。在薄含水层条件下(本研究中10 m或整个GHE长度的10%),地下水流速对热通量的影响最大。通过填充有高导热率砾石的低孔隙度含水层,地下水流速至少为10〜(-4)m / s,GHE的热通量比非GHE的热通量高60%。 GHE含水层。如果含水层厚达50 m(占整个GHE长度的50%),则砾石的高导热率会使GHE的热通量增加一倍,地下水流速至少为10〜(-5)m / s。因此,不仅地下水流速,而且含水层厚度和热导率都是重要的因素。但是,地下水很少以如此高的速度流动,并且孔隙度,砾石尺寸和含水层厚度在不同地区之间存在差异。因此,在设计地源热泵系统时,假设地下水效应较大是不合适的。

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