COMFORT CONTROL FOR SHORT-TERM OCCUPANCY

被引:22
作者
FOUNTAIN, M
BRAGER, G
ARENS, E
BAUMAN, F
BENTON, C
机构
[1] Center for Environmental Design Research, University of California, Berkeley, Berkeley
关键词
11;
D O I
10.1016/0378-7788(94)90011-6
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper describes the logic of a microprocessor-controlled thermostat termed 'comfortstat' to address the needs of temporary room occupants such as hotel guests while reducing energy consumption. The 'comfortstat' design grew out of a study of thermal comfort control in a luxury hotel in San Francisco, California, USA. Hotel guests frequently arrive from widely disparate climates and have high expectations of the thermal environment. Their short-term occupancy (for periods ranging from one day to several weeks) provides a unique challenge for thermal comfort control. We examined the hotel complaint log, collected detailed physical measurements of the thermal environment in typical hotel rooms, assessed the HVAC (heating, ventilating and air-conditioning) system capacity and response time, and surveyed 315 hotel guests over a five-month period. The results of this study led to the design of a thermostat control system (the 'comfortstat') that would solve the most serious problems. The 'comfortstat' integrates an infrared occupancy sensor, door switch, radiant temperature sensor, and control logic to optimize room conditions while 'learning' about the occupant's preferred comfort zone. This paper focuses on how the joint requirements of the guests and the hotel management guided the design of the 'comfortstat' for increased occupant satisfaction and lower energy use in the hotel. The concepts are completely generic and could be applied to the design of comfort systems for other types of short-term occupancy. We present control logic flowcharts and typical examples of the action of the hotel comfortstat in response to data received from the physical environment and/or human input.
引用
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页码:1 / 13
页数:13
相关论文
共 11 条
  • [1] Wagner, HVAC systems and energy conservation in hotels, ASHRAE Trans., 92 (IB), pp. 311-317, (1986)
  • [2] Becker, How much sense do room occupancy sensor controls make?, ASHRAE Trans., 92 (IB), pp. 333-343, (1986)
  • [3] Linear Corporation, Linear 9HC40 passive infrared energy control monitor, Commercial Systems Group Brochure, (1988)
  • [4] Lutzenhiser, A question of control: alternative patterns of room air-conditioner use, Energy Build., 18, pp. 193-200, (1992)
  • [5] Kempton, Feuermann, McGarity, “I always turn it on super”: user decisions about when and how to operate room air conditioners, Energy Build, 18, pp. 177-200, (1992)
  • [6] Fujii, Lutzenhiser, Japanese residential air-conditioning: natural cooling and intelligent systems, Energy Build., 18, pp. 221-233, (1992)
  • [7] Schiller, Arens, Bauman, Benton, Fountain, Comfort control for hotel occupancies, Final Report to the Pacific Gas and Electric Company, (1989)
  • [8] American Society of Heating, Refrigerating and Air-conditioning Engineers, ASHRAE Standard 55-81, (1992)
  • [9] Fanger, Thermal Comfort, (1972)
  • [10] Harmon, Advanced control strategies for energy conservation in buildings, ASHRAE J., pp. 55-57, (1981)