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高性能保温热材料问世湘潭
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《山东建设》 2005年第12期47-47,共1页
一种集保温、职责热、吸间、防炎、防裂、装饰、环保等多种菌能于一身的高新技术建材产品——高性能岩棉产品,在湘潭市岩棉制品有限公司研发成功,并已拼入批量生产。经国家玻璃纤维设计院监测中心和中国建筑科学研究院建筑物理研究所... 一种集保温、职责热、吸间、防炎、防裂、装饰、环保等多种菌能于一身的高新技术建材产品——高性能岩棉产品,在湘潭市岩棉制品有限公司研发成功,并已拼入批量生产。经国家玻璃纤维设计院监测中心和中国建筑科学研究院建筑物理研究所检测,认为该公司生产的君莲牌岩棉产品,各项技术指标均超过国家GB11835-1998标准要求,达到世界领先水平。 展开更多
关键词 保温热材料 产品性能 技术指标 生产方式 生产规模
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Impact of light-weight external thermal insulation materials on building surrounding thermal environment in summer 被引量:6
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作者 李楠 罗国志 +1 位作者 李百战 黄彦祺 《Journal of Central South University》 SCIE EI CAS 2012年第6期1639-1644,共6页
The method for calculating wall surface heat storage coefficient was introduced,and the coefficients of several common walls with light-weight external thermal insulation materials and the traditional solid clay brick... The method for calculating wall surface heat storage coefficient was introduced,and the coefficients of several common walls with light-weight external thermal insulation materials and the traditional solid clay brick wall were calculated.In order to study the impact of light-weight external thermal insulation materials,a contrasting experiment was carried out between an external insulated room and an uninsulated room in August,2010,in Chongqing,China.The result shows that outside surface heat storage coefficient of the insulated wall is much less than that of the traditional wall.However,during sunny time,the surface temperature of external walls of the insulated room is obviously higher than that of the uninsulated room.In different orientations,due to different amounts of solar radiation and being irradiated in different time,the contrasting temperature difference(CTD) appears different regularity.In a word,using light-weight external thermal insulation materials has a negative impact on building surrounding thermal environment and people's health.Finally,some suggestions on how to eliminate the impact,such as improving the surface condition of the building envelop,and plating vertical greening,are put forward. 展开更多
关键词 surface heat storage coefficient external thermal insulation BUILDING thermal environment building envelop
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Analytical and numerical modeling for the effects of thermal insulation in underground tunnels 被引量:2
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作者 Liu W.V. Apel D.B. +1 位作者 Bindiganavile V.S. Szymanski J.K. 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第2期267-276,共10页
The heat How generated from the infinite rock mass surrounding the underground tunnels is a major cause for the increasing cooling demands in deep mine tunnels.Insulation layers with lower thermal conductivities on tu... The heat How generated from the infinite rock mass surrounding the underground tunnels is a major cause for the increasing cooling demands in deep mine tunnels.Insulation layers with lower thermal conductivities on tunnel walls and roof ceilings are believed to supply a thermo-barrier for heat abatement.However,it is found that no systematic theoretical investigations were made to predict and confirm the effectiveness of underground thermal insulation.Specifically,investigations on the underground insulation problems involving heat flows through the semi-infinite hot rock mass and insulation layer were not sufficient.Thus,in this paper,the thermal characteristics,accompanied with heat flow through the semi-infinite rock mass and the insulation layer,were modeled by both analytical and numerical methods with focus on underground mine tunnels.The close agreements between models have indicated that the thermal insulation applied on tunnel surfaces is able to provide promising heat abatement effects. 展开更多
关键词 Thermal insulation Theoretical models Underground Rock mass Heat abatement
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上海地区“零能耗”住宅节能技术适应性研究 被引量:8
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作者 金林辉 谭洪卫 《建筑热能通风空调》 2013年第2期34-38,共5页
本文以上海地区气候条件为研究背景,用理论与实测对比研究的方法,遴选适用于夏热冬冷地区“零能耗”住宅节能技术。结果表明,上海地区的低密度住宅建筑可以达到“零能耗”乃至“负能耗”的目标。根据对“零能耗”的贡献率,相应的技... 本文以上海地区气候条件为研究背景,用理论与实测对比研究的方法,遴选适用于夏热冬冷地区“零能耗”住宅节能技术。结果表明,上海地区的低密度住宅建筑可以达到“零能耗”乃至“负能耗”的目标。根据对“零能耗”的贡献率,相应的技术分别为:围护结构真空保温、相变材料应用、热回收技术等。相比传统住宅,两幢“零能耗”房屋通过优化围护结构保温体系、优化光伏发电系统、合理利用自然通风、集成多热源系统、实施房屋能源系统远程监控等方法,节能率高达80%以上,并实现全年产能2~3倍于耗能。 展开更多
关键词 “零能耗”VIP真空保温板PCM相变材料回收多源集成
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杨絮纤维的应用研究进展 被引量:2
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作者 刘英杰 吕丽华 《产业用纺织品》 北大核心 2019年第8期43-46,共4页
杨絮纤维已应用于多个领域。主要介绍杨絮纤维在阻热保温材料、吸油材料、生物质碳微管、吸附剂及微探针、导电气凝胶等领域的应用研究进展,并对杨絮纤维的发展趋势和研究方向进行展望。
关键词 杨絮纤维 保温材料 吸油材料 生物质碳微管 吸附剂
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Light Weight Insulating Material Prepared from Rice Husk
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作者 I. Bhatti K. Qureshi M.S. Shaikh 《Journal of Environmental Science and Engineering》 2011年第7期882-885,共4页
Pakistan is at 12th number in the rank of rice production countries. Along with the production of 4,500 thousand metric tons of rice enormous quantity of rice husk is left as waste. Light weight thermal insulating mat... Pakistan is at 12th number in the rank of rice production countries. Along with the production of 4,500 thousand metric tons of rice enormous quantity of rice husk is left as waste. Light weight thermal insulating material was prepared from rice husk. Epoxy resin was used as a binder and was mixed with rice husk to give it strength, the sample was compressed at 7000 psi to produce cylindrical shape block. The thermal conductivity of the sample A, B, C and D of thickness 1, 2, 3 and 4 cm respectively was measured 0.0241, 0.0240, 0.239 and 0.0219 watts/m-k, which was lower than the common mortar by 51.74%, therefore it could be used in buildings and roof as an insulating material. This would be a suitable alternative which would not only save energy but also solve the environmental disposal problems as well. The results are very promising and we hope insulation material prepared would be useable in hot climate regions like Pakistan in buildings to prevent heat transfer. 展开更多
关键词 Insulating material BINDER thermal conductivity.
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Innovative Production of PCMs (Phase Change Materials) Preparation by Vacuum Impregnation: Thermal Insulation Efficiency
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作者 Sirikalaya Suvachittanont Apinya Duangchan Thanit Metheenukul 《Journal of Chemistry and Chemical Engineering》 2013年第10期985-992,共8页
Energy is essential for every human activity for more comfortable life, but it also consumes more natural resources. Fossil fuel is the major energy source for energy consumption, and it also emits a lot of air pollut... Energy is essential for every human activity for more comfortable life, but it also consumes more natural resources. Fossil fuel is the major energy source for energy consumption, and it also emits a lot of air pollution during usage to atmosphere and not reproductively. Electrical energy is the secondary energy sources from fossil fuel which is used to operate air conditioning system. In order to control human comfort temperature, it is usually required when the temperature differences swing between indoor and outdoor temperatures. PCMs (phase change materials) are the high latent heat materials which can be used in building materials for energy conservation purpose. PCMs can store thermal energy and prevent heat to pass through temperature control areas. Paraffin has been used as PCMs which is absorbed into the pore of fly ash as paraffin/fly-ash composite and mixed into the buildings materials. Paraffin is an organic material with high melting point (-59 ~C) and nonflammable material, therefore, it can be used as the building materials for the function of PCMs for energy saving purposes. Composite PCMs can be prepared by vacuum impregnation process. Paraffin in liquid form will be impregnated into the pore of fly ash by vacuum capillary force to form paraffin/fly ash composite PCMs. Vacuum impregnation pressures, vacuum times, impregnation times of liquid paraffin in fly ash pores and temperatures for melting the solid paraffin into the liquid form are all affect on the thermal properties of paraffin/fly ash composite PCMs. Composite PCMs will be selected by the optimum thermal properties with optimum of the production conditions for replace the cement powder in the mortar plate compositions. Cement mortar plate with and without composite PCMs will be tested for the thermal insulation properties by comparison as the real day and night time for 8 h period from spot light turn on and off. Temperature detection on the surface and inside the model building under mortar plate with and without composite PCMs is detected every 1 min. Temperature differences between surface of mortar plate over the model building and inside temperature of model building under mortar plates increase with more composite PCMs contents in mortar plates. Thermal insulation efficiency in the building can be enhanced by the composite PCMs utilization as the composition of the building materials. 展开更多
关键词 PCMs latent heat heat capacity thermal insulation temperature differences
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