盖板形态对聚合物太阳能集热器热特性影响的数值研究

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL
P. Filipović, D. Dović, I. Horvat, B. Ranilović
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引用次数: 0

摘要

本文对不同结构对聚合物太阳能集热器热性能的影响进行了数值分析。第一步研究了单盖板和蜂窝盖板两种结构形式。结果表明,在较低的还原温度值下,单盖板集热器比蜂窝盖板集热器效率更高。蜂窝盖板的行为类似于绝缘体,增加了整体集热器顶部对热损失的阻力,从而在更高的降低温度值下获得更高的热效率。这也导致在停滞状态下温度更高。本文还对两种基于自然对流的被动过热保护进行了研究。蜂窝盖板内的通道可以连接到吸收板内的通道,使空气在集热器内流动。三种不同的通道宽度被认为是4.25、10和20毫米。采用这种被动方法,可以将吸收器的平均温度降低到~20°C。第二过热保护使用额外的通道下面的吸收板允许流动的环境空气。使用这种方法可以将温度降低到~50°C,但它也会导致高温度梯度,集热器长度为50°C/m,这可能导致聚合物太阳能集热器变形。目前的工作是研究的一部分,重点是开发一种低成本的聚合物太阳能收集器,这种收集器可以在排水道中运行
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Investigation of Cover Plate Configurations Effect on Thermal Characteristics of a Polymer Solar Collector
COLLECTOR Summary This paper presents numerical analysis on influence of different configurations on thermal performances of a polymer solar collector. In the first step two configurations including single cover plate and honeycomb cover plate are investigated. Results showed that collector with single cover plate is more efficient than collector with honeycomb cover plate at lower reduced temperature values. Honeycomb cover plate behaves like insulator, increasing overall collector top resistance to heat loss which results in higher thermal efficiency at higher reduced temperature values. This also leads to higher temperatures at stagnation regimes. Also, in this paper two passive overheating protection based on natural convection are examined. Channels inside honeycomb cover plate can be connected to channels inside absorber plate allowing for air to flow inside collector. Three different channel widths are considered 4.25, 10, and 20 mm. With such passive method, it is possible to reduce average absorber temperature up to ~20°C. Second overheating protection uses additional channel below the absorber plate allowing the flow of ambient air. With this method it is possible to reduce temperatures up to ~50°C but it also causes high temperature gradient, 50°C/m of collector length which can potentially result in deformation of polymer solar collector. Present work is a part of the research focused at development of a low-cost polymer solar collector that operates in a drain back
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来源期刊
Transactions of FAMENA
Transactions of FAMENA 工程技术-材料科学:综合
CiteScore
2.20
自引率
30.80%
发文量
15
审稿时长
>12 weeks
期刊介绍: The journal publishes research and professional papers in the following fields: Aerospace Engineering; Automotive Engineering; Biomechanics; Energetics; Engineering Design; Experimental Methods; Industrial Engineering; Machine Tools and Machining; Materials Science; Mathematical Modelling and Simulation; Mechanical Design; Mechanics & Fluid Mechanics; Nanotechnology; Naval Architecture; Numerical Methods; Process Planning; Quality Assurance; Robotics & Mechatronics; Thermodynamics.
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