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日光温室保温板外置复合墙体的温度特性 被引量:27
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作者 李成芳 李亚灵 温祥珍 《山西农业大学学报(自然科学版)》 CAS 2009年第5期453-457,共5页
为了研究日光温室墙体的保温性能,试验设置了四种复合墙体,墙体的结构从内到外分别为:24 cm红砖(W1)、24 cm红砖+3.3 cm聚苯烯板(W2)、12 cm红砖+22 cm粘土+2 cm聚苯烯板+12 cm红砖(W3)、12 cm红砖+24 cm粘土+12 cm红砖(W... 为了研究日光温室墙体的保温性能,试验设置了四种复合墙体,墙体的结构从内到外分别为:24 cm红砖(W1)、24 cm红砖+3.3 cm聚苯烯板(W2)、12 cm红砖+22 cm粘土+2 cm聚苯烯板+12 cm红砖(W3)、12 cm红砖+24 cm粘土+12 cm红砖(W4)。通过观测墙体内部温度和墙体表面以及距墙表15 cm处的气温,发现不同复合墙体的保温性能不同。在冬季12月份,墙体内部5-20 cm夜间平均温度W2比W1高3.5℃,墙体表面夜间温度W2比W1高1.5℃,不同层次的最高、最低温度以及不同时刻的温度,W2均明显高于W1,说明24 cm红砖+3.3 cm聚苯烯板墙体的保温性明显好于24 cm红砖墙。W2与W3和W4相比,最高温度、最低温度、平均温度以及不同时刻的温度变化差异不太明显,说明24 cm红砖+3.3 cm聚苯烯板墙体的保温效果与50 cm墙体的保温效果接近。 展开更多
关键词 日光温室 聚苯烯板 复合墙体 保温性能 温度变化
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A Study on the Architectural Application of Aerogel 被引量:6
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作者 Young Cheol Kwon 《Journal of Civil Engineering and Architecture》 2013年第12期1494-1500,共7页
As the building energy saving is more and more important, high-performing insulation like aerogel will be required in buildings to improve their thermal environment and to save building energy. This study conducted th... As the building energy saving is more and more important, high-performing insulation like aerogel will be required in buildings to improve their thermal environment and to save building energy. This study conducted the literature survey on the aerogel blanket and presents the architectural application considering its high-insulating property. If aerogel is applied to a building as an envelope insulation, its thickness could be reduced to as half as that of existing insulation such as polystyrene foam board or glassfiber. Currently, aerogel is largely used as a thermal breaker in thermal bridges in buildings. It is still too expensive to be used as a main insulation of whole building envelopes. Thanks to the advantages of aerogel blanket such as low thermal conductivity, broad temperature range for use, excellent water repellent property and fire resistance, easiness of moving and applying, it has much possibility in the respect of its building application. 展开更多
关键词 INSULATION AEROGEL thermal conductivity aerogel blanket.
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Composite with Recyclable Loads for the Manufacture of Blocks to Build Popular Houses 被引量:1
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作者 Luiz Guilherme Meira de Souza Flavio Anselmo Silva de Lima Luiz Guilherme Vieira Meira de Souza Natanaeyfle Randemberg Gomes dos Santos Jailton Weber Gomes 《Journal of Mechanics Engineering and Automation》 2014年第9期716-720,共5页
The science space in a state school in Natal city was built using a composite consisting of gypsum, EPS (expanded polystyrene), shredded tire, cement and water. Mechanical and thermal resistances were evaluated. Ins... The science space in a state school in Natal city was built using a composite consisting of gypsum, EPS (expanded polystyrene), shredded tire, cement and water. Mechanical and thermal resistances were evaluated. Inside the blocks, three types of fillings (EPS plates, aluminum cans and 500 mL bottles of mineral water) were placed in order to obtain a walls with higher thermal resistance, but also to give it an ecologically correct order, considering that both the tire and the EPS occupy a large space in landfills and require years to be degraded when released into the environment. Compression tests were conducted according to the rules. The experiments demonstrated that the temperature difference between the internal and external surfaces on the walls reached levels above 12.0 ℃. It was also demonstrated that the proposed composite has adequate mechanical strength to be used for sealing walls. The proposed use of the composite can contribute to reduce the significant housing deficit of Brazil, producing popular houses at low cost and with little time to work. 展开更多
关键词 Solar composite low cost thermal resistance mechanical resistance materials reuse housing.
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Experimental study on axial compressive behaviors of prefabricated composite thermal insulation walls after single-side fire exposure
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作者 Fu Qian Zhu Xiaojun +4 位作者 Liang Shuting Yang Jian Li Xiangmin Xu Qingfeng Gao Mingzhu 《Journal of Southeast University(English Edition)》 EI CAS 2018年第2期220-228,共9页
The axial bearing capacity of prefabricated composite walls composed of inner and outer concrete wythes,expandable polystyrene(EPS)boards and steel sleeve connectors is investigated.An experimental study on the axial ... The axial bearing capacity of prefabricated composite walls composed of inner and outer concrete wythes,expandable polystyrene(EPS)boards and steel sleeve connectors is investigated.An experimental study on the axial bearing capacity of four prefabricated composite walls after fire treatment is carried out.Two of the prefabricated composite walls are normal-temperature specimens,and the others are treated with fire.The damage modes and crack development are observed,and the axial bearing capacity,lateral deformation of the specimens,and the concrete and reinforcing bar strain are tested.The results show that the ultimate bearing capacity of specimens after a fire is less than that of normal-temperature specimens;when the insulation board thicknesses are 40 mm and 60 mm,the decrease amplitudes are 20.8%and 16.8%,respectively.The maximum lateral deformation of specimens after a fire is greater than that of normal-temperature specimens,and under the same level of load,the lateral deformation increases as the insulation board thickness increases.Moreover,the strain values of the concrete and reinforcing bars of specimens after a fire are greater than those of normal-temperature specimens,and the strain values increase as the thickness of insulation board increases. 展开更多
关键词 prefabricated composite thermal insulation walls expandable polystyrene board fire exposure insulation layer post-re axial compressive behavior
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