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高速公路隧道通风系统的烟气扩散模拟与应急响应策略
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作者 王砺镝 《黑龙江科学》 2024年第4期162-164,共3页
高速公路隧道是重要的交通设施,其通风系统对于烟气扩散的模拟与应急响应至关重要。提出了基于数值模拟与实时监测的烟气扩散模拟方法,通过应急响应措施的制定与实施,提高高速公路隧道通风系统的安全性及应急响应能力。
关键词 高速公路隧道 通风系统 烟气扩散模拟 应急响应
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AERMOD和CALPUFF对静小风区域热电厂烟气扩散模拟的研究 被引量:3
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作者 关勖 舒璐 +2 位作者 杜超 张玉麟 潘峰 《环境保护科学》 CAS 2019年第2期27-33,共7页
使用《环境影响评价技术导则大气环境》(HJ2.2—2008)推荐的环境空气质量模式AERMOD和CALPUFF对河谷盆地静小风区域热电厂的烟气扩散进行了对比模拟研究。结果表明:典型月日均浓度值方面,AERMOD模拟结果与实测值的IOA模拟指数为-0.29,... 使用《环境影响评价技术导则大气环境》(HJ2.2—2008)推荐的环境空气质量模式AERMOD和CALPUFF对河谷盆地静小风区域热电厂的烟气扩散进行了对比模拟研究。结果表明:典型月日均浓度值方面,AERMOD模拟结果与实测值的IOA模拟指数为-0.29,模式模拟结果不理想;CALPUFF模拟结果与实测值的IOA模拟指数为0.35,模式模拟结果较理想。典型日小时浓度值方面,AERMOD模拟结果与实测值的IOA指数为0.37,模式模拟结果较为理想;CALPUFF模拟结果与实测值的IOA指数为0.74,模式模拟结果理想,且CALPUFF模拟浓度分布范围较AERMOD明显更广、整体浓度较AERMOD更高,高值区分布地点也不再单一。根据以上研究结果,在模拟静小风区域的大气扩散时,应使用CALPUFF模式模拟以保证结果的准确性。 展开更多
关键词 静小风区域 AERMOD CALPUFF 热电厂烟气扩散模拟 IOA模拟指数
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Smoke distribution in naturally ventilated urban transportation tunnels with multiple shafts 被引量:1
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作者 童艳 施明恒 翟志强 《Journal of Southeast University(English Edition)》 EI CAS 2013年第3期305-309,共5页
The smoke spreading law of urban transportation tunnels with multiple shafts under natural ventilation is studied.A full-scale burning experiment is conducted in an actual tunnel.The study shows that smoke temperature... The smoke spreading law of urban transportation tunnels with multiple shafts under natural ventilation is studied.A full-scale burning experiment is conducted in an actual tunnel.The study shows that smoke temperatures below the tunnel ceiling reduce rapidly along the longitudinal towards the tunnel exits. A noticeable temperature stratification is observed near the fire source.Most fire smoke is exhausted out of the shafts while the number of the smoke shafts in the downstream is more than that in the upstream.Large eddy simulation LES based on computational fluid dynamics CFD is carried out using the fire dynamics simulator FDS software with parallel processing in which the grid size of the fire-domain is set to be 0.083 m.The simulation results of temperatures under the ceiling the smoke fronts and the shafts'smoke exhaust or air supply agree reasonably with the experimental data. Further simulations indicate that the decreasing ambient temperature or shaft spacing might reduce smoke temperatures under the tunnel ceiling and increase mass flow rates out of the shafts.This study provides technical scientific evidence and supports for the design and construction of such kinds of tunnels. 展开更多
关键词 TUNNEL natural ventilation multiple shafts largeeddy simulation smoke spreading
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