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国内外木结构建筑耐火性能的研究进展 被引量:5
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作者 蒋瞻 付海燕 +4 位作者 王正 李敏敏 丁叶蔚 刘中洋 赵天长 《浙江林业科技》 2019年第2期110-114,共5页
为推动现代木结构建筑在国内的发展,分析了木结构建筑耐火的关键性,重点介绍了近二十年来国内外在木结构建筑耐火模拟测试、建筑及其结构耐火极限试验、防火材料应用和软木制品的保温隔热检测与耐火应用等方面的研究进展及成果。在学习... 为推动现代木结构建筑在国内的发展,分析了木结构建筑耐火的关键性,重点介绍了近二十年来国内外在木结构建筑耐火模拟测试、建筑及其结构耐火极限试验、防火材料应用和软木制品的保温隔热检测与耐火应用等方面的研究进展及成果。在学习和借鉴的基础上,通过总结国外研究成果和经验,提出目前国内在木结构建筑耐火研究方面尚存在的一些问题,与国外相比研究工作的薄弱环节。建议在国内外已有的木结构建筑相关标准规范基础上,加强国内在木结构建筑防火研究的理论基础工作,尤其是模拟试验研究,为木结构建筑的耐火性能评估奠定基础。同时,强调软木材料自身特性,提出在木结构建筑构件及其连接节点处使用软木材料覆面,在保证实用性的基础上,还起到绝缘、隔热、装饰的作用,进一步提高木构件的防火性能,从而提高建筑整体的耐火性。通过上述分析,以期为我国现代木结构建筑防火优化设计提供有益参考。 展开更多
关键词 木结构建筑 耐火模拟 耐火性能试验 软木耐火试验 存在问题 主要措施 研究进展
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RANS Simulation of Methane Diffusion Flame: Comparison of Two Chemical Kinetics Mechanisms
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作者 Guessab Ahmed Abdelkader Aris +1 位作者 Iskander Gokalp Faouzi Tabet Helal 《Journal of Physical Science and Application》 2013年第6期400-408,共9页
Turbulent non-premixed combustion of gaseous fuels is of importance for many technical applications, especially for the steel and refractory industry. Accurate turbulent flow and temperature fields are of major import... Turbulent non-premixed combustion of gaseous fuels is of importance for many technical applications, especially for the steel and refractory industry. Accurate turbulent flow and temperature fields are of major importance in order to predict details on the concentration fields. The performances of the GRI-Mech 3.0 and the Jones and Lindstedt mechanisms are compared. Detailed chemistry is included with the GRI-Mech 3.0 and J-L kinetic mechanisms in combination with the laminar flamelet combustion model. The combustion system selected for this comparison is a confined non-premixed methane flame surrounded by co-flowing air The simulation results are compared with experimental data of Lewis and Smoot (2001). 展开更多
关键词 Co-flow methane/air turbulent flame COMBUSTION numerical simulation chemical kinetic.
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Numerical simulation and combination optimization of aluminum holding furnace linings based on simulated annealing 被引量:2
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作者 王计敏 兰申 +2 位作者 陈涛 李文科 楚化强 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第6期880-889,共10页
To reduce heat loss and save cost, a combination decision model of reverb aluminum holding furnace linings in aluminum casting industry was established based on economic thickness method, and was resolved using simula... To reduce heat loss and save cost, a combination decision model of reverb aluminum holding furnace linings in aluminum casting industry was established based on economic thickness method, and was resolved using simulated annealing. Meanwhile, a three-dimensional mathematical model of aluminum holding furnace linings was developed and integrated with user-defined heat load distribution regime model. The optimal combination was as follows: side wall with 80 mm alumino-silicate fiber felts, 232 mm diatomite brick and 116 mm chamotte brick; top wall with 50 mm clay castables, 110 mm alumino-silicate fiber felts and 200 mm refractory concrete;and bottom wall with 232 mm high-alumina brick, 60 mm clay castables and 68 mm diatomite brick. Lining temperature from high to low was successively bottom wall, side wall, and top wall. Lining temperature gradient in increasing order of magnitude was refractory layer and insulation layer. It was indicated that the results of combination optimization of aluminum holding furnace linings were valid and feasible, and its thermo-physical mechanism and cost characteristics were reasonably revealed. 展开更多
关键词 Aluminum holding furnace linings Reaction engineering Transport processes Numerical simulation Combination optimization Simulated annealing
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