期刊文献+

一种基于直流无刷电机控制的工位型个体化动态送风装置的研发与应用研究 被引量:3

原文传递
导出
摘要 目前市场上厂家所宣称的"仿自然风"在频谱特征上与典型自然风存在很大差距,本文根据动态送风装置的研究现状和发展情况设计了一种基于直流无刷电机控制的工位型个体化动态送风装置。性能测试表明装置产生的仿自然风已经非常接近于真实自然风信号。经过人工气候室的人体投票实验,验证了在偏热环境中,装置产生的仿自然风对人体TSV/TCV的改善效果要优于稳态机械风,采用"偏热环境+动态送风"的空调方式可以实现与"传统稳态空调环境"相接近的热舒适性。
出处 《建筑科学》 北大核心 2010年第10期53-59,共7页 Building Science
基金 国家自然科学基金重点项目(50838003) "十一五"国家科技支撑计划项目(2006BAJ02A06)
  • 相关文献

参考文献16

  • 1Busch JF. Tale of two populations: thermal comfort in air- conditioned and naturally ventilated offices in Thailand [ J ]. Energy and Buildings, 1992,18 ( 3 - 4 ) :235 - 249.
  • 2林波荣,谭刚,王鹏,宋凌,朱颖心,翟光逵.皖南民居夏季热环境实测分析[J].清华大学学报(自然科学版),2002,42(8):1071-1074. 被引量:68
  • 3夏一哉,赵荣义,江亿.北京市住宅环境热舒适研究[J].暖通空调,1999,29(2):1-5. 被引量:158
  • 4Johes B, Hsieh K, Hashinage M. The effect of air velocity on thermal comfort at moderate activity levels [ J ]. ASHRAE Transactions, 1986,92 (2) :761 - 769.
  • 5Scheatzle D, Wu H, Yellot J. Extending the summer comfort envelope with ceiling fans in hot, arid climates [ J ]. ASHRAE Transactions, 1989,95 ( 1 ) :269 - 280.
  • 6Mclntyre DA. Preferred air speeds for comfort in warm conditions [J].ASH RAE Transactions, 1978,84 ( 2 ) :264 - 277.
  • 7Berglund L, Fobelets A. Subjective human response to low level air currents and asymmetric radiation [ J ]. ASHRAE Transactions, 1987,93 ( 1 ) :497 - 523.
  • 8Mahdavi A, Kumar S. Implications of indoor climate control for comfort, energy and environment [ J ]. Energy and Buildings, 1996,24(3) :167 - 177.
  • 9Au Yeung YN,Chow WK, Lam VYK. Sick building syndrome--a ease study[ J ]. Building and Environment, 1991,26 ( 4 ) : 319 - 330.
  • 10Harriet Ryd. My home is my castle--psychological perspectives on " sick buildings" [ J ]. Building and Environment, 1991,26 (2) :87 -93.

二级参考文献5

共引文献222

同被引文献29

  • 1朱守林,戚春华,李文彬.自然风气流对人体热舒适影响的实验研究[J].北京林业大学学报,2007,29(4):54-58. 被引量:11
  • 2R De Dear, G S Brager. The Adaptive Model of Thermal Comfort and Energy Conservation in the Built Environ- ment [J]. International Journal of Biometeorology, 2001, 45(2): 100-108.
  • 3B W Olesen, K C Parsons. Introduction to Thermal Comfort STandards and to the Proposed New Version of EN ISO 7730[J]. Energy and Buildings, 2002, 34 (6): 537-548.
  • 4J L M Hensen. Literature Review on Thermal Com- fort in Transient Conditions [J]. Building and Envi- ronment, 1990, 25(4): 309-316.
  • 5K J Lomas, A D Fiala, M Stohrer. First Principles Modeling of Thermal Sensation Responses in Steady- state and Transient Conditions [J]. Ashrae Transac- tions, 2003, 109(1): 179-186.
  • 6H Zhang, C Huizenga, E Arens, et al. Thermal Sen- sation and Comfort in Transient Non-uniform Ther- mal Environments [J]. Appl Physiol, 2004, 92(6): 728-733.
  • 7Kazuo Nagano, Akira Takaki, Megumi Hirakawa. Ef- fects of Ambient Temperature Steps on Thermal Comfort Requirements [J ]. Int J Biometeorol, 2005, 50( 1 ): 33-39.
  • 8Rongyi Zhao. Investigation of Transient Thermal En- vironments [J]. Building and Environment, 2007, 42 ( 12): 3926-3932.
  • 9A P Gagge, J A J Stolwijk , J D Hardy. Comfort and Thermal Sensations and Associate Physiological Responses at Various Ambient Temperatures [ J ]. Environmental Research, 1969, 2(3): 209- 229.
  • 10H Ohno, S Kuno, M Kida, et al. Physiological and Psychological Responses in Thermal Transients with Ramp change [J]. Ashrae Transaction, 1987, 93(2): 407 -428.

引证文献3

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部