Effects of personal heating on thermal comfort: A review
Xiao-yu Tian , Wei-wei Liu , Jia-wei Liu , Bo Yu , Jian Zhang
Journal of Central South University ›› 2022, Vol. 29 ›› Issue (7) : 2279 -2300.
Effects of personal heating on thermal comfort: A review
Personal conditioning system (PCS) is receiving considerable attention due to its energy-saving potential and the ability to satisfy individual comfort requirements. As a part of PCS, personal heating systems can maintain human thermal comfort in cold environments, which leads to their potential role of important heating mode in cold winter, especially in the Hot Summer and Cold Winter regions of China. In order to better promote the development and application of personal heating systems, this paper reviews the published studies. Personal heating systems can be divided into four types based on the mode of heat transfer: conductive, convective, radiative and combinative type. Characteristics of each category and respective devices are introduced. Furthermore, identifying the effects of personal heating on thermal comfort and the models for predicting or evaluating thermal comfort during local heating. This paper would provide users with a guideline for choosing suitable heating equipment during winter.
personal conditioning system / personal heating / thermal comfort / evaluation models / built environment
| [1] |
|
| [2] |
|
| [3] |
|
| [4] |
|
| [5] |
|
| [6] |
|
| [7] |
|
| [8] |
BAUMAN F, CARTER T, BAUGHMAN A. Field study of the impact of a desktop task/ambient conditioning system in office buildings 1998. |
| [9] |
|
| [10] |
|
| [11] |
|
| [12] |
|
| [13] |
|
| [14] |
|
| [15] |
|
| [16] |
|
| [17] |
|
| [18] |
|
| [19] |
|
| [20] |
|
| [21] |
|
| [22] |
|
| [23] |
|
| [24] |
|
| [25] |
|
| [26] |
|
| [27] |
|
| [28] |
|
| [29] |
|
| [30] |
|
| [31] |
MADSEN T. Individually controlled local heating [C]//Proceedings of Roomvent 2002. Copenhagen, 2002: 285–288. |
| [32] |
|
| [33] |
|
| [34] |
|
| [35] |
|
| [36] |
|
| [37] |
|
| [38] |
|
| [39] |
|
| [40] |
|
| [41] |
|
| [42] |
|
| [43] |
|
| [44] |
|
| [45] |
|
| [46] |
|
| [47] |
REN Yu-ting, LIN Duan-mu, QUAN Jin. Equivalent temperature based comfort zone study under task/ambient conditioning system [C]//The 14th International Conference of Indoor Air Quality and Climate. 2016: 1–9. |
| [48] |
|
| [49] |
ENOMOTO H, KUMAMOTO T, TOCHIHARA Y. Effects of lower body warming on physiological and psychological responses of humans [C]//3rd Int Conf Environ Ergon ICEE. 2009: 578. |
| [50] |
|
| [51] |
|
| [52] |
|
| [53] |
|
| [54] |
|
| [55] |
de KORTE E M, KUIJT-EVERS L F M, SPIEKMAN M, et al. Evaluating comfort levels of a workstation with an individually controlled heating and lighting system [M]. Springer-Verlag, 2013: 213–222. |
| [56] |
|
| [57] |
|
| [58] |
|
| [59] |
|
| [60] |
|
| [61] |
|
| [62] |
|
| [63] |
|
| [64] |
|
| [65] |
|
| [66] |
|
| [67] |
|
| [68] |
|
| [69] |
|
| [70] |
|
| [71] |
MELIKOV A K, LANGKILDE G, RASMUSSEN L W. Human response to local heating for use in connection with low enthalpy ventilation [C]//Proceeding of Room Vent. 1998: 315–321. |
| [72] |
MELIKOV A K, LYUBENOVA V S, SKWARCZYNSKI M, et al. Impact of air temperature, relative humidity, air movement and pollution on eye blinking [C]//Proceeding of Indoor Air 2011. Austin, 2011: 970. |
| [73] |
|
| [74] |
|
| [75] |
|
| [76] |
|
| [77] |
|
| [78] |
ZHANG H. Human thermal sensation and comfort in transient and non-uniform thermal environments [D]. University of California at Berkeley, 2003: 415 |
| [79] |
|
| [80] |
|
| [81] |
|
| [82] |
|
| [83] |
|
| [84] |
|
| [85] |
|
| [86] |
|
| [87] |
|
| [88] |
|
| [89] |
|
| [90] |
|
| [91] |
|
| [92] |
|
| [93] |
|
| [94] |
ZHOU G, MELIKOV A. Equivalent frequency—A new parameter for description of frequency characteristics of airflow fluctuations [C]//Proceedings of Roomvent. 2002: 357–360. |
| [95] |
ZHOU G, MELIKOV A, FANGER P. Impact of equivalent frequency on the sensation of draught [C]//Proceedings of the Eighth International Conference on Air Distribution in Rooms, Roomvent 2002. Copenhagen, Denmark, 2002. |
| [96] |
|
| [97] |
|
| [98] |
WANG Z, LUO M. The effect of a low-energy wearable thermal device on human comfort [C]//The 15th Conference of the International Society Indoor Air Quality & Climate. Philadelphia, PA, USA: 2018. https://escholarship.org/uc/item/5f2876gr(2018). |
| [99] |
|
| [100] |
|
| [101] |
van OEFFELEN L, JACOBS P, van ZUNDERT K. Personal heating: Is it comfortable and can it save energy? [C]//12th International Conference on Indoor Air Quality and Climate 2011. Austin, TX, 2011: 3017. |
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