TY - JOUR
T1 - 降温服对防刺服热湿传递影响的试验研究
AU - Li, Nan
AU - Chang, Suqin
AU - Guo, Zerong
AU - He, Jingjie
AU - Yuan, Mengqi
N1 - Publisher Copyright:
© 2020 China Safety Science Journal. All rights reserved.
PY - 2020/3
Y1 - 2020/3
N2 - In order to quantitatively study the heat and moisture transfer performance of SRBA and improve the thermal comfort of SRBA, a thermal manikin was used to measure and analyze thermal insulation and evaporative resistance of cooling vest, SRBA and both stacks at different temperatures (25, 30, 40 ℃) and humidity (40%, 55%, 70%). It is found that the thermal insulation changes at the three temperatures measured as SRBA> both stacks > cooling vest, and the evaporative resistance follows this characteristic above 30 ℃, that the higher the temperature is, the greater the effect of the cooling vest on the heat transfer efficiency of the SRBA will be, and that the thermal insulation can be reduced by up to 46.75% and the evaporative resistance can be reduced up to 82.97%. The results show that at higher ambient temperature (> 30 ℃), the cooling vest can effectively reduce the thermal insulation and evaporative resistance of the SRBA and improve the heat and moisture transfer efficiency, and that the influence of the cooling vest on the heat and moisture transfer of the SRBA changes with the ambient temperature, humidity and design characteristics.
AB - In order to quantitatively study the heat and moisture transfer performance of SRBA and improve the thermal comfort of SRBA, a thermal manikin was used to measure and analyze thermal insulation and evaporative resistance of cooling vest, SRBA and both stacks at different temperatures (25, 30, 40 ℃) and humidity (40%, 55%, 70%). It is found that the thermal insulation changes at the three temperatures measured as SRBA> both stacks > cooling vest, and the evaporative resistance follows this characteristic above 30 ℃, that the higher the temperature is, the greater the effect of the cooling vest on the heat transfer efficiency of the SRBA will be, and that the thermal insulation can be reduced by up to 46.75% and the evaporative resistance can be reduced up to 82.97%. The results show that at higher ambient temperature (> 30 ℃), the cooling vest can effectively reduce the thermal insulation and evaporative resistance of the SRBA and improve the heat and moisture transfer efficiency, and that the influence of the cooling vest on the heat and moisture transfer of the SRBA changes with the ambient temperature, humidity and design characteristics.
KW - cooling vest
KW - evaporative resistance
KW - stab-resistant body armor (SRBA)
KW - thermal insulation
KW - thermal manikin
UR - http://www.scopus.com/inward/record.url?scp=85137926819&partnerID=8YFLogxK
U2 - 10.16265/j.cnki.issn1003-3033.2020.03.027
DO - 10.16265/j.cnki.issn1003-3033.2020.03.027
M3 - 文章
AN - SCOPUS:85137926819
SN - 1003-3033
VL - 30
SP - 178
EP - 184
JO - China Safety Science Journal
JF - China Safety Science Journal
IS - 3
ER -