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Parametric investigation of concrete solar collectors for facade integration

机译:用于立面集成的混凝土太阳能集热器的参数研究

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Concrete solar collectors are a cheap and durable option for solar thermal energy harvesting for hot water and space heating applications. They offer a unique facade integrated solar thermal solution, allowing for seamless integration with precast concrete cladding systems. The thermal energy output of a concrete solar collector is dictated by its material (thermal conductivity and specific heat capacity of concrete and pipe), geometry (pipe spacing, pipe diameter, collector thickness, pipe embedment depth) surface finish (absorptance and emittance) and fluid flow. Given the wide range of individual parameter values documented in the literature an investigation into these parameters is required. In this work concrete solar collectors are simulated using an experimentally validated 2D finite element model computed in COMSOL Multiphysics. Outlet fluid temperatures up to 40 degrees C and a daily efficiency of 56% are predicted for a clear summer day in Ireland using the model for a reference case concrete solar collector. Concrete solar collectors compare well with other unglazed collectors (metallic absorber; daily efficiency = 62%) and (polymer absorber; daily efficiency = 29%). Parameters are investigated individually and compared collectively within the range of values found in the literature. Concrete conductivity and solar absorptance are highlighted as two influential performance parameters which can be improved and are subsequently investigated experimentally. Additionally, geometric parameters, including the embedment depth and pipe spacing are identified as key performance parameters. These material and geometric parameters are limited by practical, economic and aesthetical constraints. These limitations are also examined and summarised. (C) 2017 Elsevier Ltd. All rights reserved.
机译:混凝土太阳能集热器是用于热水和空间供热应用的太阳能热能收集的一种廉价且耐用的选择。它们提供了独特的立面集成太阳能热解决方案,可以与预制混凝土覆层系统无缝集成。混凝土太阳能集热器的热能输出取决于其材料(混凝土和管道的热导率和比热容),几何形状(管道间距,管道直径,集热器厚度,管道埋入深度),表面光洁度(吸收率和发射率)以及流体流动。考虑到文献中记载的各个参数值​​的范围很广,需要对这些参数进行调查。在这项工作中,使用COMSOL Multiphysics中经过实验验证的2D有限元模型对混凝土太阳能收集器进行了仿真。使用参考案例混凝土太阳能集热器的模型,在爱尔兰晴朗的夏日,预计出水温度高达40摄氏度,日效率为56%。混凝土太阳能集热器与其他非玻璃集热器(金属吸收器;日效率= 62%)和(聚合物吸收器;日效率= 29%)相比非常好。对参数进行单独研究,并在文献中找到的值范围内进行集体比较。混凝土电导率和日光吸收率被突出为两个有影响的性能参数,可以对其进行改进,随后进行实验研究。此外,包括嵌入深度和管道间距在内的几何参数被确定为关键性能参数。这些材料和几何参数受到实际,经济和美学上的限制。这些限制也将进行检查和总结。 (C)2017 Elsevier Ltd.保留所有权利。

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