预设储罐温度对强制循环式太阳能热水系统滞止的影响

Q4 Engineering
K. Wangchuk, C. Dorji, Dr. Tshewang Lhendup
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引用次数: 0

摘要

本研究的重点是对不丹皇家大学科技学院现有的主动强迫循环太阳能热水系统进行建模和仿真。安装的原型太阳能系统由五个平行连接的平板收集器组成,总表面积为10平方米,还有一个500升的储水箱,内置热交换器,用于预热学生食堂的水。TRNSYS(瞬态系统仿真软件)程序用于建模和模拟安装系统的相同副本。将仿真结果与实际测量结果进行比较,验证了仿真模型的正确性。模拟了热槽温度和滞止的影响。当热槽温度达到预设值60℃时,循环泵关闭,导致太阳能集热器温度呈指数增长至停滞。然而,将热罐设定温度提高到80℃,滞热时间可以延长2小时,在此期间系统可以产生25.425 kWh的热能,而60℃只能提供18.45 kWh的热能。系统的总效率从27.13%提高到37.88%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE EFFECT OF PRESET STORAGE TANK TEMPERATURE ON THE STAGNATION OF A FORCED CIRCULATION TYPE SOLAR WATER HEATING SYSTEM
This study focuses on the modelling and simulation of an existing active forced circulation solar water heating system in the College of Science and Technology under the Royal University of Bhutan. The installed prototype solar system consists of five flat-panel collectors connected in parallel, with a gross surface area of 10 m2, and a 500-litre water storage tank with a built-in heat exchanger to preheat the water in the student mess. The TRNSYS (Transient System Simulation Software) program is used to model and simulate an identical replica of the installed system. The simulation model is validated by comparing the simulation results with actual measurements. The effects of hot tank temperature and stagnation are simulated. When the temperature of the hot tank reaches a preset value of 60 °C, the circulation pump is turned off, causing the temperature of the solar collector to increase exponentially to stagnation. However, by increasing the hot tank set temperature to 80 ˚C, the stagnation time could be extended by two hours, during which the system can generate 25.425 kWh of thermal energy, while 60 ˚C provides only 18.45 kWh. The overall efficiency of the system increased from 27.13% to 37.88%.
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CiteScore
0.60
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