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A study on the Optimum Design Configuration of Passive Solar TI-wall system  

Kim, Byoung-Soo (건양대학교 실내건축과)
Yoon, Jong-Ho (한밭대학교 건축공학과)
Yoon, Yong-Jin (한국에너지기술연구원)
Baek, Nam-Choon (한국에너지기술연구원)
Publication Information
KIEAE Journal / v.3, no.2, 2003 , pp. 37-44 More about this Journal
Abstract
The aim of this study was to analyze the thermal performance through Test-Cell of TI-wall in domestic climate. This study was carried out as follows: 1) The TI-wall was studied for ability to reduce heat loss through the building envelope and analyzed to TIM properties. 2) Test models of TI-wall were designed through the investigation of previous paper and work, measured for winter and spring, and the thermal effects were analyzed. The type of the TIM used in test model is small-celled(diameter 4mm and thickness 50mm) capillary and cement brick(density $1500kg/m^3$) was used by thermal mass. 3) Test-cell of TI-wall was calibrated from measured data and the dynamic simulation program ESP-r 9.0. In these simulations, the measured climate conditions of TaeJon were used as outdoor conditions, and the simulation model of Test-cell was developed. 4) The sensitivity analysis is executed in various aspects with standard weather files and ESP-r 9.0, and then most suitable system of TI-wall are predicted. Finally, The suitable system of TI-wall was analysed according to sizes of air gap, kinds, thickness, and the surface absorption of therm wall. The result is following. In TI-wall, Concrete is better than cement brick, at that time the surface absorption is 95%, and the most efficient thickness is 250mm. As smaller of a air gap, as reducer of convection heat loss, it is efficient for heating energy. However, ensuring of a air gap at least more than 50mm is desirable for natural ventilation in Summer.
Keywords
Transparent Insulation Materials(TIM); Sensitivity Analysis;
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  • Reference
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