TY - JOUR
T1 - Net scape probability of contaminant from a local domain to exhaust outlet
AU - Lim, Eunsu
AU - Ito, Kazuhide
N1 - Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.
PY - 2017/3
Y1 - 2017/3
N2 - Ventilation is essential to control contaminant concentration in a room and hence the evaluation of ventilation effectiveness is crucial to achieve the clean, healthy and energy saving indoor environment. In general, contaminant transport efficiency is defined by total flux, i.e. convective and diffusive fluxes of contaminant in a local domain, and the fluxes are divided into two components; (i) contaminant directly exhausted through exhaust outlet in the room (and no-return to target local domain), and (ii) contaminant returned to the target local domain by recirculating flow in the room. In this study, we propose the calculation procedure of net escape probability (hereafter NEP) of contaminant in which the contaminant constantly generates in the target local domain.
AB - Ventilation is essential to control contaminant concentration in a room and hence the evaluation of ventilation effectiveness is crucial to achieve the clean, healthy and energy saving indoor environment. In general, contaminant transport efficiency is defined by total flux, i.e. convective and diffusive fluxes of contaminant in a local domain, and the fluxes are divided into two components; (i) contaminant directly exhausted through exhaust outlet in the room (and no-return to target local domain), and (ii) contaminant returned to the target local domain by recirculating flow in the room. In this study, we propose the calculation procedure of net escape probability (hereafter NEP) of contaminant in which the contaminant constantly generates in the target local domain.
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U2 - 10.3130/aije.82.249
DO - 10.3130/aije.82.249
M3 - Article
AN - SCOPUS:85017175282
SN - 1348-0685
VL - 82
SP - 249
EP - 256
JO - Journal of Environmental Engineering (Japan)
JF - Journal of Environmental Engineering (Japan)
IS - 733
ER -