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A numerical model for pressure drop and flow distribution in a solar collector with U-connected absorber pipes

机译:U型连接吸收管太阳能集热器压降和流量分布的数值模型

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摘要

This study presents a numerical model calculating the pressure drop and flow distribution in a solar collector with U-type harp configuration in isothermal conditions. The flow maldistribution in the absorber pipes, caused by the different hydraulic resistances, was considered to evaluate the pressure drop across the collector. The model was developed in Matlab and is based on correlations found in literature for both friction losses and local losses, and was compared in terms of overall pressure drop against experimental measurements carried out on an Arcon Sunmark HT 35/10 solar collector at different flow rates and temperatures for water and water/propylene glycol mixture. For collector pressure drops higher than 1.4 kPa, the relative difference between the model and measurements was within 5% for water and 7% for water/propylene glycol mixture. For lower pressure drops the relative difference increased, but remained within the accuracy of the differential pressure sensor. The flow distribution was mainly affected by the flow regime in the manifolds. Turbulent regime throughout the manifolds entailed a more uniform distribution across the absorber pipes compared to laminar regime. The comparison between calculated flow distributions and results from previous literature showed a good agreement. (c) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一个数值模型,用于计算等温条件下具有U型竖琴配置的太阳能集热器中的压降和流量分布。为了评估收集器两端的压降,考虑了由不同的水力阻力引起的吸收管中的流量分布不均。该模型是在Matlab中开发的,并基于文献中有关摩擦损失和局部损失的相关性,并根据总压降与在Arcon Sunmark HT 35/10太阳能集热器上以不同流量进行的实验测量进行了比较和水以及水/丙二醇混合物的温度。对于收集器压降高于1.4 kPa的情况,水的模型与测量值之间的相对差在5%以内,水/丙二醇混合物的相对差在7%之内。对于较低的压降,相对差增加,但仍在压差传感器的精度范围内。流量分布主要受歧管中的流态影响。与层流状态相比,整个歧管中的湍流状态使吸收器管之间的分布更加均匀。计算的流量分布与先前文献的结果之间的比较显示出很好的一致性。 (c)2016 Elsevier Ltd.保留所有权利。

著录项

  • 作者

    Bava Federico; Furbo Simon;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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