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预制混凝土夹心墙体的热工性能研究
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作者 温达钦 缪洁 +1 位作者 唐培垚 覃福煊 《中文科技期刊数据库(全文版)工程技术》 2021年第9期27-28,共2页
为促进预制夹心混凝土墙体广泛应用,本文采用有限元分析软件对预制混凝土夹心墙体的热工性能进行研究,分析了墙体的温度场以及热流密度,在此基础上探究了材料种类、保温层厚度以及布置方式等参数对预制混凝土夹心墙体热工性能的影响。... 为促进预制夹心混凝土墙体广泛应用,本文采用有限元分析软件对预制混凝土夹心墙体的热工性能进行研究,分析了墙体的温度场以及热流密度,在此基础上探究了材料种类、保温层厚度以及布置方式等参数对预制混凝土夹心墙体热工性能的影响。研究结果表明:可通过降低连接件与保温层导热系数以及增加保温层厚度,来增加墙体的保温性能;在预制混凝土夹心墙体做外保温可显著降低连接件热桥效应;当对外墙保温性能要求较高时,建议采用夹心保温与外保温的组合保温系统。 展开更多
关键词 预制混凝土 夹心墙体 热工性能研究
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Numerical Investigation of Fuel Dilution Effects on the Performance of the Conventional and the Highly Preheated and Diluted Air Combustion Furnaces 被引量:4
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作者 Kiomars Abbasi Khazaei Ali Asghar Hamidi Masoud Rahimi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2009年第5期711-726,共16页
This numerical study investigates the effects of using a diluted fuel (50% natural gas and 50% N2) in an industrial furnace under several cases of conventional combustion (air with 21% O2 at 300 and 1273 K) and th... This numerical study investigates the effects of using a diluted fuel (50% natural gas and 50% N2) in an industrial furnace under several cases of conventional combustion (air with 21% O2 at 300 and 1273 K) and the highly preheated and diluted air (1273 K with 10% O2 and 90% N2) combustion (HPDAC) conditions using an in-house computer program. It was found that by applying a combined diluted fuel and oxidant instead of their uncombined and/or undiluted states, the best condition is obtained for the establishment of HPDAC's main unique features. These features are low mean and maximum gas temperature and high radiation/total heat transfer to gas and tubes; as well as more uniformity of theirs distributions which results in decrease in NOx pollutant formation and increase in furnace efficiency or energy saving. Moreover, a variety of chemical flame shape, the process fluid and tubes walls temperatures profiles, the required regenerator efficiency and finally the concentration and velocity patterns have been also qualitatively/quantitatively studied. 展开更多
关键词 highly preheated and diluted air combustion furnace numerical modeling chemical flame fuel dilution NOx formation energy saving
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