인간의 열적 적응성을 고려한 퍼스널 공조시스템의 개발

Study on the Personal Air-Conditioning System Considering Human Thermal Adaptation

  • 송두삼 (동경대학교 생산기술연구소)
  • 발행 : 2003.06.01

초록

In this paper, a personal air-conditioning system considering the human thermal adaptability is analyzed. Although the conventional personal air-conditioner was proofed to be satisfactory in providing for the thermal comfort, it is being questioned on the term of its energy efficiency. Therefore, it is important and urgent to develop new types of personal air-conditioning system with sustainable control strategy that can ensure energy saving and thermal comfort simultaneously. In this study, we first examined the problems of the conventional personal air-conditioning system with field interview and laboratory experiment in terms of usage, management and thermal comfort, and proposed the energy-saving personal air-conditioning system considering the human thermal adaptation. Then a laboratory experiment was performed to analyze the characteristics of the human thermal comfort under severe indoor thermal conditions, which were controlled using a new personal air-conditioning unit designed according to the proposal. The results help to illustrate the alleviation effect of the new personal air-conditioning system, and indicate that the thermal alleviation time is useful to maintain the thermal comfort with efficient usage of energy.

키워드

참고문헌

  1. Special Issue-Personal Air-conditioning System Transactions of the Society of Heating, Air Conditioning and Sanitary Engineering of Japan
  2. Summary of the Technical Paper of Kanto Chapter Study on personal air-conditioning system considering the human thermal adaptaion(part 1) Murakai,S.;Kato,S.;Song,D.;Matsumoto,S.
  3. Summary of the Technical Paper of The Society of Heating Study on adaptive control system under hot and humid-Literature review of adaptive model using human thermal adaptation Song,D.;Kato,S.;Murakami,S.;Shiraihi,S.
  4. ASHRAE Transactions v.99 Localized comfort control with a desktop task conditioning system: laboratory and field measurements Bauman,F.S.;Zang,H.;Arens,E.;Bneton,C.