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Friction correlation of an offset strip fin modeled as porous medium for application to a geothermal heat exchanger

机译:胶带翅片为多孔介质施加到地热换热器的摩擦相关性

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摘要

Accelerated global warming caused by the use of fossil fuels has resulted in an elevated demand for renewable energy such as geothermal energy, which exploits the constancy of ground temperature throughout the year to achieve cooling or heating. Standing-column-well geothermal systems provide high quantities of heat but are affected by decreases of the natural water level due to drought, depletion of underground water, and geo-graphical specificities, which complicates the steady and reliable operation of these systems. To address this problem, we herein propose a novel geothermal heat exchanger equipped with an offset strip fin (OSF) and investigate OSF friction correlation modeled in terms of porous media in this heat exchanger. The reference friction factor, which is assumed to be a function of the Reynolds number (Re) and a characteristic coefficient, is calculated by computational fluid dynamics (CFD) in the Re range of 100-20,000 for a unit geothermal heat exchanger with OSFs and for 16 types of variable-dimension OSFs. The independent friction factor for these OSFs is obtained by nonlinear regression analysis. Next, by assuming that the characteristic coefficient is a function of OSF parameters, the generalized friction factor correlation for OSF is obtained by multiple regression analysis and it is verified by comparing existing friction factor correlations with the proposed values for 50 Re 1,000. In the case of a low (200) Re, the maximum error is found to be 8 %, whereas in the case of a high ( 500) Re, the maximum error is within 2 %, which confirms that the proposed friction factor correlation is consistent with existing data. On the other hand, the friction factor decreases with increasing OSF fin length, which is in a good agreement with the results of previous studies. In addition, the friction factor is analyzed for various working fluids (air, water, and antifreeze) by using the proposed correlation, where it is found to be independent of fluid type. The proposed friction factor correlation in the present study provides a quick assessment of calculating the pressure drop of OSF for a geothermal applications, which obviates the need for complicated and costly computational analysis.
机译:通过使用化石燃料引起的加速全球变暖导致对可再生能源的需求提高,诸如地热能量,这在全年贯穿地下温度的恒定来实现冷却或加热。稳定柱 - 井地热系统提供高量的热量,但由于干旱,地下水和地理图形特异性而导致的天然水位降低影响,这使得这些系统的稳定可靠的操作变得复杂化。为了解决这个问题,我们在本文中提出了一种具有偏移带翅片(OSF)的新型地热交换器,并研究在该热交换器中的多孔介质方面模型的OSF摩擦相关性。假定的参考摩擦系数是雷诺数(RE)和特征系数的函数,通过计算流体动力学(CFD)在100-20,000中,用于具有OSF的单元地热换热器的re 100-20,000对于16种类型的可变维度OSF。通过非线性回归分析获得这些OSF的独立摩擦因子。接下来,假设特征系数是OSF参数的函数,通过多元回归分析获得OSF的广义摩擦因子相关,并且通过将现有的摩擦因子相关性与所提出的值进行比较50 500)Re的情况下,最大误差在2%范围内,这证实了所提出的摩擦因子相关性与现有数据一致。另一方面,摩擦因子随着OSF鳍片长度的增加而降低,这与先前研究的结果一致。另外,通过使用所提出的相关性来分析各种工作流体(空气,水和防冻剂)的摩擦因子,其中发现与流体类型无关。本研究中提出的摩擦因子相关性提供了对地热应用的计算OSF的压降的快速评估,这消除了复杂和昂贵的计算分析的需求。

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