气隙宽度对含相变材料的转子壁面自由热负荷的影响

Ehsan Abbas1, Shayma Aziz
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引用次数: 4

摘要

本研究的目的是通过在一个尺寸为(1.5*1*1.5)m3、由PVC夹层隔热板制成的房间内进行实验,研究气隙对含有Trombe墙的储热系统中质量流量和储能比的影响。房间包含一个尺寸为(0.96*1.44*0.1)m3的热墙,由木框架制成,包含99个直径为(6)cm,长度为(9.6)cm的工业蜡胶囊,以矩阵形式(11*9)分布。墙壁由两侧的四个铁导轨支撑,以便在南向距离玻璃盖(10至35)厘米的距离内轻松移动。实验是在2016年12月基尔库克市的真实天气条件下进行的,这项研究包括六种宽度的气隙,从(35到10)厘米排列,每步5厘米。结果表明,气隙宽度对通过气隙的质量流率和进入热系统的能量有较大的影响,在(b=35cm)处两者均达到最佳,在(b=15cm)处最大蓄能,约占晴天时系统进入能量的45%
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Impact of Air Gap Width on the Free Thermal Load in the Trombe Wall Contains a Phase Change Material
The objective of the present study is to investigate the effect of the air gap on the amount of mass flow rate and the ratio of energy storage in the thermal storage system containing a Trombe wall and that is through conducting experiments inside a room with dimensions of (1.5*1*1.5) m3, made of PVC sandwich insulation panel. The room contains a thermal wall of a dimension of (0.96*1.44*0.1) m3 made from a wood frame and contains 99 capsules of industrial wax of (6) cm diameter and (9.6) cm length, distributed by matrix form of (11*9). The wall is supported by four iron guides from both sides to move it easily in a distance of (10 to 35) cm from the glass cover in the south direction. The experiments have been conducted under real weather conditions of December 2016 for Kirkuk city, and this study included six widths of the air gap, arranged from (35 to 10) cm with steps of 5cm each. the results showed that the width of the air gap has a great effect on the mass flow rate through the air gap and energy incoming to the thermal system, where the best case for both factors was obtained at (b=35cm), and the max energy storage has been obtained at (b=15cm) and is about 45% of energy incoming to the system at the experiments of sunny days
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