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LI Yue, JIA Jie, TIAN Qi. Application status and development direction of personal cooling garments in high temperature mine[J]. Safety in Coal Mines, 2023, 54(4): 97-102.
Citation: LI Yue, JIA Jie, TIAN Qi. Application status and development direction of personal cooling garments in high temperature mine[J]. Safety in Coal Mines, 2023, 54(4): 97-102.

Application status and development direction of personal cooling garments in high temperature mine

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  • Published Date: April 19, 2023
  • Long-term work in the environment of high temperature and high humidity underground not only endangers the health of miners, but also easily leads to the occurrence of underground accidents. In view of this situation, personal cooling garments can be used as an individual cooling device. This paper summarizes the existing cooling garments technology and its development, which is divided into air-cooled garments, liquid-cooled garments, phase change garments, semiconductor cooling garments and chemical ice bag cooling garments according to the different cooling medium. This paper discusses the working principle, advantages and disadvantages, as well as the feasibility of existing personal cooling garments in the underground. Finally, this paper looks forward to the future development direction of personal cooling garments.
  • [1]
    国家统计局.2021年12月份能源生产情况[EB/OL].(2022-01-17)[2022-5-12].http://www.stats.gov.cn/tjsj/zxfb/202201/t20220117_1826406.html.
    [2]
    刘彦军,黎明,曹跃进,等.深地矿井局部制冷降温装备研发[J].现代矿业,2019,35(6):177-181.

    LIU Yanjun, LI Ming, CAO Yuejin, et al. Development of local cooling equipment for deep mines[J]. Modern Mining, 2019, 35(6): 177-181.
    [3]
    王前进.涡流式降温服在矿井下应用基础研究[D].西安:西安科技大学,2015.
    [4]
    柯莹,张海棠.降温服的研究现状及发展趋势[J].服装学报,2020,5(1):40-46.

    KE Ying, ZHANG Haitang. Present state and develo-pment tendency of cooling suits[J]. Journal of Clothing Research, 2020, 5(1): 40-46.
    [5]
    刘静.基于微/纳米风扇阵列驱动的人体降温空调服: 2005201145146[P].2005-09-23.
    [6]
    曾彦彰,邓中山,刘静.基于微型风扇阵列系统的人体降温空调服[J].纺织学报,2007(6):100-105.

    ZENG Yanzhang, DENG Zhongshan, LIU Jing. Micro-fan-array system enabled air conditioning suit for cooling human body[J]. Journal of Textile Research, 2007(6): 100-105.
    [7]
    党天华,赵蒙蒙,钱静.基于微型风扇阵列的通风服研发与测评[J].现代纺织技术,2022(3):1-9.

    DANG Tianhua, ZHAO Mengmeng, QIAN Jing. Devel- opment and evaluation of ventilation clothing based on micro fan array[J]. Advanced Textile Technology, 2022(3): 1-9.
    [8]
    彭立财.一种防护服的空气循环降温装置: 202019126 731[P].2020-09-04.
    [9]
    马砺,张李荣,李贝,等.矿井高温热害防治个体降温装置研究[J].煤炭技术,2014,33(11):78-281.

    MA Li, ZHANG Lirong, LI Bei, et al. Research on personal pooling equipment against heat disasterinhightemperature coal mine[J]. Coal Technology, 2014, 33(11): 278-281.
    [10]
    柳源,陈宁,王磊,等.矿井热害气冷式个体防护服设计及研制[J].煤炭工程,2011,43(7):120-121.
    [11]
    张智臣.涡流管制冷技术以及在矿井中的应用[J].内蒙古煤炭经济,2021(6):128-129.
    [12]
    神惠子.液体冷却服的发展现状及趋势[J].美与时代,2018(12):107-110.
    [13]
    岳丰田,张琳邡,纪河.矿井个体冷却防护服: CN20 1120539338.6[P].2011-12-21.
    [14]
    GUO T H, SHANG B F, DUAN B, et al. Design and testing of a liquid cooled garment for hot environments[J]. Journal of Thermal Biology, 2015(49/50): 47-54.
    [15]
    邓军,何骞,刘长春,等.相变冷却服发展趋势[J].科技导报,2017,35(21):107-114.

    DENG Jun, HE Qian, LIU Changchun, et al. Key technology and development trend of phase change cooling garment[J]. Science & Technology Review, 2017, 35(21): 107-114.
    [16]
    袁培,吕彦力,高勇飞,等.具有相变材料的降温服: CN201922023773[P].2019-11-21.
    [17]
    孙文娟,梁国治.矿用个体降温复合定型石蜡基相变蓄冷材料的研发[J].化学工程与装备,2021(12):43-44.
    [18]
    文虎,丁喜梅,刘长春,等.半导体降温服交盖效应的实验研究[J].制冷学报,2017,38(2):40-44.

    WEN Hu, DING Ximei, LIU Changchun, et al. Experimental study on the overlap effect of thermoelectric cooling garment[J]. Journal of Refrigeration, 2017, 38(2): 40-44.
    [19]
    贾艳婷,徐昌贵,闫献国,等.半导体制冷研究综述[J].制冷,2012,31(1):49-55.

    JIA Yanting, XU Changgui, YAN Xianguo, et al. Semi-conductor refrigeration review[J]. Refrigeration, 2012, 32(1): 49-55.
    [20]
    谢春媚,张恒,谢宜臣.半导体水冷降温服:CN201920778357.0[P].2019-05-27.
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