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A numerical model to evaluate the flow distribution in a large solar collector field

机译:用于评估大型太阳能集热器场中水流分布的数值模型

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This study presents a numerical model to evaluate the flow distribution in a large solar collector field, with solar collectors connected both in series and in parallel. The boundary conditions of the systems, such as flow rate, temperature, fluid type and layout of the collector field can be easily changed in the model. The model was developed in Matlab and the calculated pressure drop and flow distribution were compared with measurements from a solar collector field. A good agreement between model and measurements was found. The model was then used to study the flow distribution in different conditions. Balancing valves proved to be an effective way to achieve uniform flow distribution also in conditions different from those for which the valves were regulated. For small solar collector fields with limited number of collector rows connected in parallel, balancing valves are not strictly necessary if the pressure drop across the collector rows is much higher than the pressure drop along the longest distribution pipe. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一个数值模型,用于评估大型太阳能集热器场中的流量分布,太阳能集热器串联和并联连接。系统的边界条件,例如流速,温度,流体类型和收集器场的布局,可以在模型中轻松更改。该模型是在Matlab中开发的,并将计算出的压降和流量分布与太阳能集热器现场的测量结果进行了比较。在模型与测量之间找到了很好的一致性。然后使用该模型研究不同条件下的流量分布。事实证明,平衡阀是在与调节阀不同的条件下也能实现均匀流量分配的有效方法。对于并联连接的有限数量的收集器行的小型太阳能收集器场,如果收集器行两端的压降远高于沿最长分配管的压降,则严格不需要平衡阀。 (C)2016 Elsevier Ltd.保留所有权利。

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