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THEORETICAL COMPARISON OF THE THERMAL POWER OF FLAT-PLATE SOLAR COLLECTORS WITH SERPENTINE FLOW VERSUS PARALLEL FLOW

机译:蛇形流动与平行流动平板太阳能收集器热力的理论比较

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A complete theoretical model that describes the collector efficiency factor F' of serpentine flow flat-plate solar collectors as a function of the tube geometry has been developed and compared with experimental results. The essential parts of the model are described in this paper. Based on this model, the serpentine flow geometry is compared with the fin-and tube geometry with regard to thermal performance. The material content of absorber plate and tubing is taken into account. The results of the calculations indicate that for identical conditions (material content, overall heat loss coefficient U{sub}L, mass flow per tube, fluid inlet temperature), the serpentine-flow arrangement is superior to parallel flow. The difference decreases with increasing mass flow rate. For typical collectors (length × width = 2 × 1.2 m{sup}2) at a mean fluid temperature of 50°C and at a mass-flow rate of 40 kg/h per tube, the thermal power of the serpentine-flow collector is 2.6% higher than that of the parallel-flow collector.
机译:并与实验结果相比,开发了一种完整的理论模型,其描述了蛇形流动平板太阳能收集器作为管几何形状的函数的集电器效率因子F'。本文描述了该模型的主要部分。基于该模型,将蛇形流几何与热性能的翅片和管几何形状进行比较。考虑吸收板和管道的材料含量。计算结果表明,对于相同的条件(材料含量,整体热损失系数U {Sub} L,每管,流体入口温度),蛇形流动装置优于平行流动。随着质量流量的增加而降低差异。对于典型的收集器(长度×宽度= 2×1.2m {sup} 2),平均流体温度为50°C,并以每管40kg / h的质量流量,蛇形流量收集器的热力比并行流量收集器高2.6%。

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