太阳能集热器性能的数值研究

M. A. Akbar, H. Awais, Muhammad Mubashir Naveed, Hafiz Abdul Saboor, T. Manzoor
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引用次数: 1

摘要

太阳能是地球上最丰富的能源。在欧洲和其他气温相对较低的国家,热水是人类的基本需求之一,太阳能集热器被用来满足他们的需求。本文将利用ANSYS软件对太阳能集热器的性能进行分析。在特定条件下,将进行不同的分析来评估以水作为传热流体的太阳能集热器的性能。计算流体动力学(CFD)分析将用于检查铜(Cu)和铝(Al)的传热能力。温度的飙升会引起变形,因此本文将使用ANSYS结构软件对结构在太阳热作用下的可持续性进行分析,从而估计每种材料在太阳能应用中的性能。在这些分析之后,我们将能够准确地预测我们可以在一天中不同时间获得的最高输出温度,并且每个温度我们将分析结构内的最大变形,因为太阳能集热器的管道通常不会太厚,因此管道材料的选择至关重要。本工作的目的是模拟太阳能集热器在特定条件下的性能,了解集热器的温度分布,并分析在不同温度下我们可以获得的变形。
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 the Performance of Solar Collectors
Solar energy is the most abundant form of energy on this planet. In Europe and other countries with relatively low temperatures, where hot water is one of the basic needs for human beings, solar collectors are used to fulfilling their needs. In this paper performance of the solar collector will be analyzed using ANSYS software. Under specific conditions, different analyses will be performed to evaluate the performance of a solar collector containing water as heat transfer fluid. A Computational Fluid Dynamics, CFD analysis will be performed to check the heat transfer capability of copper (Cu) and aluminum (Al). The surging temperature could cause deformation, so in this paper, ANSYS structural software will be used to analyze the sustainability of structure under solar heat, so the performance of each material in solar energy applications can be estimated. After these analyses, we will be able to predict the maximum output temperature accurately we can obtain at a different time of the day, and each temperature we will analyze the maximum deformation within the structure because the pipes of solar collectors are not usually too thick, so the selection of material for the pipe is crucial. The purpose of this work is to simulate the performance of solar collectors under specific conditions and understand the temperature distribution along with the collector and also analyze the deformation we can obtain at different temperatures.
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