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高原建筑室内工作点位个性化供氧关键参数研究
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作者 王莹莹 李广胜 +2 位作者 宋聪 王登甲 刘艳峰 《暖通空调》 2023年第10期32-39,53,共9页
青藏高原地区空气稀薄、极度缺氧,为人们供氧已成为保障人体心理与身体健康的迫切需求。基于此,本文针对高原建筑室内工作点位提出了个性化供氧策略,通过数值模拟,分析了不同因素影响下工作点位的氧扩散过程。结果表明,风口位置、送风... 青藏高原地区空气稀薄、极度缺氧,为人们供氧已成为保障人体心理与身体健康的迫切需求。基于此,本文针对高原建筑室内工作点位提出了个性化供氧策略,通过数值模拟,分析了不同因素影响下工作点位的氧扩散过程。结果表明,风口位置、送风速度及供氧浓度对呼吸区氧气浓度场的分布有显著影响,供氧风口高度不宜低于人体呼吸区高度,风口格栅向上倾斜30°~40°时供氧效果较好,送风速度在0.3~0.4 m/s时较为合适,供氧体积分数在28.1%~31.7%时可满足氧需求。综合以上因素,研究给出了个性化供氧关键参数取值范围,为高原低气压环境下高效供氧方案及参数选择提供参考。 展开更多
关键词 高原建筑 低气压 供氧 工作点位 关键参数 数值模拟
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An integrated approach to study of strata behaviour and gas flow dynamics and its application 被引量:30
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作者 Hua Guo Liang Yuan 《International Journal of Coal Science & Technology》 EI 2015年第1期12-21,共10页
This paper presents an advanced and integrated research approach to longwall mining-induced strata move- ment, stress changes, fractures, and gas flow dynamics with actual examples of its application from recent studi... This paper presents an advanced and integrated research approach to longwall mining-induced strata move- ment, stress changes, fractures, and gas flow dynamics with actual examples of its application from recent studies for coextraction of coal and methane development at Huainan Mining Group in China, in a deep and multi-seam mining environment. The advanced approach takes advantage of the latest techniques in Australia for mine scale geotechnical characterisation, field measurement, monitoring and numerical modelling. Key techniques described in this paper include coal mine site 3D geotechnical characterisation methods, surface deep downhole multi-point extensometers and piezometers for overburden displacement and pore pressure measurements during mining, tracer gas tests for goal gas flow patterns, and advanced numerical modelling codes for coupled coal mine strata, water and gas simulations, and longwall goaf gas ttow investigations. This integrated approach has resulted in significant insights into the complex dynamic imeraction between strata, groundwater, and gas during mining at Huainan Mining Group in recent years. Based on the lindings from the extensive field monitoring and numerical modelling studies, a three-dimensional annular-shaped over-lying zone along the perimeter of the longwall panel was identified for optimal methane drainage during mining. 展开更多
关键词 Co-extraction of coal and gas Strata behaviour Pore pressure Gas flow Annular overlying zone COSFLOW CFD
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