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自燃火灾巷道烟流的数值模拟及安全评价 被引量:8
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作者 李杰林 周科平 +1 位作者 苏家红 唐谷修 《中国安全科学学报》 CAS CSCD 2006年第10期37-41,共5页
笔者以铜坑矿为工程实例,利用矿井火灾巷道烟气流动所遵循的基本守恒方程组和控制方程组,对烟气流动特性进行数值模拟,得出了自燃火灾巷道内烟气流动的速度场、温度场详细分布情况。并采用预计热舒适指标(PMV)、预计不满意百分比(PPD)... 笔者以铜坑矿为工程实例,利用矿井火灾巷道烟气流动所遵循的基本守恒方程组和控制方程组,对烟气流动特性进行数值模拟,得出了自燃火灾巷道内烟气流动的速度场、温度场详细分布情况。并采用预计热舒适指标(PMV)、预计不满意百分比(PPD)对巷道中的空气质量进行了安全评价。结果表明采用数值模拟法对于研究矿山自燃火灾巷道内烟气流动的运动情况更为直观,可视化强;采用的热舒适度评价指标更突出了以人为本。通过模拟计算结果,可以为铜坑矿地下火和毒气蔓延的控制以及火区特大事故应急救援预案的制定提供技术依据。 展开更多
关键词 自燃火灾 烟流 数值模拟 预计热舒适指标(PMV) 预计不满意百分比(ppd) 安全评价
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Optimizing Building Envelope Dimensions for Passive Solar Houses in the Qinghai-Tibetan Region: Window to Wall Ratio and Depth of Sunspace 被引量:6
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作者 LIU Zhijian WU Di +2 位作者 LI Junyang YU Hancheng HE Baojie 《Journal of Thermal Science》 SCIE EI CAS CSCD 2019年第6期1115-1128,共14页
It has been a focus to reduce the energy consumption and improve the space heating performance of high-altitude buildings in winter seasons. In view of the abundant solar energy resources of the high-altitude region, ... It has been a focus to reduce the energy consumption and improve the space heating performance of high-altitude buildings in winter seasons. In view of the abundant solar energy resources of the high-altitude region, the establishment of passive solar houses should be an effective strategy to deal with the problem of thermal comfort. Both window to wall ratio(WWR) and sunspace depth are of vital importance to determine the thermal comfort level of passive solar houses, while there are limited studies on analyzing their impacts on passive solar houses in high-altitude regions. Therefore, this study is designed to examine how WWR and sunspace depth affect space heating of passive solar houses in the Qinghai-Tibetan region. To be specific, the hourly radiation temperature variations and percentages of dissatisfaction of the residential building with different sunspace depth/WWR(including 0.9 m/33%, 0.9 m/45%, 0.9 m/60%, 1.2 m/33% and 1.5 m/33%) were quantitatively examined. Results indicated that under the condition of 0.9 m/45%, the overall average radiation temperature of the building was approximately 16°C during the entire heating season, which could better satisfy the heating requirements. Meanwhile, the average temperature was higher, and the thermal comfort level was better under the ratio of 45% or the depth of 1.5 m, when only an individual factor in either ratio or depth was considered. These findings can provide references for the determination of dimensions of passive solar houses in high-altitude regions. 展开更多
关键词 passive solar HOUSE indoor thermal COMFORT sunspace DEPTH WWR (window to wall ratio) ppd (predicted percent dissatisfied)
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