THE EFFECT OF SEATING MOVEMENT BASED ON INDOOR THERMAL ENVIRONMENTAL DISTRIBUTION ON OVERALL OCCUPANT THERMAL SATISFACTION

被引:0
作者
Taniguchi K. [1 ]
Ishiura K. [1 ,2 ]
Miyata S. [1 ]
Akashi Y. [1 ]
机构
[1] Graduate School of Eng., The Univ. of Tokyo
[2] The Dai-ichi Life Insurance Co., Ltd.
来源
Journal of Environmental Engineering (Japan) | 2023年 / 88卷 / 808期
关键词
Allowable PMV Band; Multi-agent Simulation; Seating Movement; Seating Recommendation; Thermal comfort;
D O I
10.3130/aije.88.511
中图分类号
学科分类号
摘要
This study examines the effect on the overall occupant thermal satisfaction when information is provided on seating movement in an appropriate combination of indoor thermal environment distribution and individual thermal preferences, using an individual thermal preference survey through a subject experiment, CFD analysis, and multi-agent simulation. The modeling of occupant's seat shifting behavior using the allowable PMV band as a new index shows that free addressing and providing information during seat shifting improves the overall occupant's thermal satisfaction. In addition to the recommendation of the destination of the information, the seat exchange recommendation further improves the satisfaction level. © 2023 Architectural Institute of Japan. All rights reserved.
引用
收藏
页码:511 / 520
页数:9
相关论文
共 21 条
  • [1] The Future of Office Space: The Best Mix of Concentration and Decentralization, 2019 (in Japanese) ザイマックス不動産総合研究所:これからのオフィスの在り方 集約と分散のベストミックスを考える, (2019)
  • [2] Aryal A., Becerik-Gerber B., Energy consequences of Comfort-driven temperature setpoints in office buildings, Energy and Buildings, 177, pp. 33-46, (2018)
  • [3] Karmann C., Schiavon S., Arens E., Percentage of commercial buildings showing at least 80% occupant satisfied with their thermal comfort, Windsor Conference: Rethinking Comfort, (2018)
  • [4] Air-Conditioning and Sanitary Engineers of Japan: Mechanisms and practices for a comfortable thermal environment, (2019)
  • [5] Ukai M., Nobe T., Study on thermal environmental ununiformity in office buildings, Journal of Environmental Engineering (Transactions of AIJ), 82, 738, pp. 739-746, (2017)
  • [6] Tokumura T., Akiyama Y., Takahashi Y., Kuwayama K., Wada K., Kuroki T., Takahashi M., Takahashi S., Shinoda J., Nakagawa J., Tanabe S., Impacts of implementing activity based working on environmental satisfaction and workplace productivity during renovation of research facilities, Journal of Environmental Engineering (Transactions of AIJ), 87, 793, pp. 189-198, (2022)
  • [7] Sakaguchi T., Yamanaka T., Kotani H., Momoi Y., Sagara K., Thermal environment and users' evaluation in an outdoor and an indoor community spaces of a school building: The annual actual state of the thermal condition and the use in the courtyard and the neighboring indoor space of the junior and senior high school, Journal of Environmental Engineering (Transaction of AIJ), 82, 736, pp. 569-578, (2017)
  • [8] Nakano J., Tanabe S., Thermal adaptation and comfort zones in urban semi-outdoor enironments, Frontiers in Built Environment, 6, (2020)
  • [9] Oguro M., Tabata A., Fundamental study on relationship between thermal environment and adaptive behavior Part 1 Experiment in a non-territorial office, Technical papers of annual meeting, The Society of Heating, Air-Conditioning and Sanitary Engineers of Japan, 6, pp. 49-52, (2015)
  • [10] Ojima K., Lim J., Akashi Y., Chen J., Yoshimoto N., Miyata S., Modeling method for behavioral change related to energy consumption in office space, Journal of Environmental Engineering (Transactions of AIJ), 85, 775, pp. 695-704, (2020)