Optimum Values of Tank Volume to Collector Area Ratios of Thermosyphon Solar Water Heaters for Libyan Families

M. J. R. Abdunnabi
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Abstract

Thermosyphon solar water heaters are the best choice to be utilized in residential sector to provide the required hot water in Libya. These systems are autonomy in operation and as a result require less maintenance and hence low operation and initial costs than active system. ln this paper, GenOpt optimization technique provided in TRNSYS simulation program is used for sizing Thermosyphon systems to obtain the optimum size (namely V/A ratio) of Thermosyphon system that suits Libyan families according to the weather and operating conditions of Tripoli. The typical hot water load pattern and quantity of the Libyan families are taken from a field study conducted on a number of the solar systems for a whole year. Whereas, the typical weather data are taken from five-year measurements recorded at CSERS weather station. The results showed that the optimum storage tank volume to collector area ratio of Thermosyphon systems is between 49-60 Lit/m2 for the most common collector characteristics ratio (equation!!) and the auxiliary heater set point temperature ranges from (45-60C). 
利比亚家庭热虹吸太阳能热水器水箱容积与集热器面积比的最佳值
热虹吸太阳能热水器是利比亚住宅部门提供所需热水的最佳选择。这些系统在运行中是自主的,因此需要较少的维护,因此比主动系统的运行和初始成本更低。本文利用TRNSYS仿真程序中提供的GenOpt优化技术对热虹吸系统进行选型,根据的黎波里的天气和运行情况,获得适合利比亚家庭的热虹吸系统的最佳尺寸(即V/A比)。利比亚家庭的典型热水负荷模式和数量是从对一些太阳能系统进行的一整年的实地研究中得出的。而典型的天气数据则是由CSERS气象站记录的五年一次的测量数据。结果表明,对于最常见的集热器特性比(公式!!),热虹吸系统的最佳储罐容积与集热器面积比在49-60 Lit/m2之间,辅助加热器设定点温度为(45-60℃)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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