Experimental Investigation of Pre-Heating Double Pass Flow Arrangement on Thermal Performance Enhancement of Evacuated Glass-Thermal Absorber Tube Collector (EGATC) for Air Heating Application

Z. Zakaria, Z. Majid, Muhammad Amin Harun, S. Ihsan, K. Sopian, A. A. Razak, A. F. Sharol, M. Azmi
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Abstract

Thermal energy storage (TES) in solar thermal application assist in increasing the performance and efficiency of the solar thermal collector system. Various technique has been developed to enhance TES performance, such as using water and PCM as energy storage material. The type of material selection and design arrangement also contributes to the performance of solar thermal collector systems. This research aims to enhance the thermal performance of the outlet temperature of an Evacuated Glass-Thermal Absorber Tube Collector (EGATC) for air heating applications. The performance study has been conducted to measure the outlet temperature per indoor setup under the artificial solar radiation on the parameter effect of double pass flow arrangement with pre-heating inner absorber parameter. The comparison experiment at wind speed 0.9 m/s for stainless steel inner absorber showed better results on temperature outlet 47.7°C, energy store 4.46KJ and efficiency (collector + storage) 37.5% compared with insulation materials internal absorber with temperature outlet 44.7°C, energy store 4.40KJ and efficiency (collector + storage) 31.1%, respectively. This concluded that EGATC performance can be increased with those respective parameters.
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预热双通流布置对空气加热用真空玻璃吸热管集热器(EGATC)热性能增强的实验研究
热能储存(TES)在太阳能热的应用有助于提高太阳能集热器系统的性能和效率。已经开发了各种技术来提高TES性能,例如使用水和PCM作为储能材料。材料的选择和设计安排对太阳能集热器系统的性能也有影响。本研究旨在提高真空玻璃热吸收管集热器(EGATC)用于空气加热应用的出口温度的热性能。研究了人工太阳辐射下每个室内装置的出口温度对带预热内吸收器参数的双通流布置参数的影响。风速为0.9 m/s时,不锈钢内吸收体的出口温度47.7°C、储能4.46KJ、效率(集热器+储能)37.5%优于保温材料内吸收体的出口温度44.7°C、储能4.40KJ、效率(集热器+储能)31.1%。结果表明,各参数均可提高EGATC的性能。
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