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日光温室墙体不同保温材料对其保温性影响 被引量:10
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作者 于锡宏 王正洪 +4 位作者 蒋欣梅 李荣荣 李瑞 张福 吴凤芝 《东北农业大学学报》 CAS CSCD 北大核心 2017年第6期43-50,共8页
新型保温材料应用是提高日光温室保温性能重要措施之一,文章选取常见保温材料聚苯乙烯泡沫板(EPS),聚苯乙烯挤塑板(XPS),酚醛酯板(酚醛树脂),聚氨酯(聚氨基甲酸酯)作试验材料,在温室其他参数一致前提下,以日光温室典型夹芯墙体为对照,... 新型保温材料应用是提高日光温室保温性能重要措施之一,文章选取常见保温材料聚苯乙烯泡沫板(EPS),聚苯乙烯挤塑板(XPS),酚醛酯板(酚醛树脂),聚氨酯(聚氨基甲酸酯)作试验材料,在温室其他参数一致前提下,以日光温室典型夹芯墙体为对照,对比墙体相同热阻值下日光温室墙体不同保温材料应用效果。结果表明,聚氨酯外保温复合墙体表现最优,XPS外保温处理效果次之,酚醛酯最差。聚氨酯外挂有效热积累量分别较对照提高1.021 MJ·m^(-2),较其他处理最大提高0.835 MJ·m^(-2),温室晴天、阴天气温比对照分别提高2.3、2.0℃,日平均地温提高1.6℃,晴天、阴天气温较其他处理最高分别提高1.2和1.1℃,日平均地温提高0.8℃。综上,聚氨酯可作为日光温室墙体外保温推荐材料。 展开更多
关键词 日光温室 保温 热积累量
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Numerical simulation on thermal accumulation of cemented tailings backfill 被引量:3
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作者 ZHANG Xiao-yan ZHAO Min +4 位作者 LIU Lang HUAN Chao SONG KI-IL XU Mu-yan WEN De 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2221-2237,共17页
Based on the collaborative exploitation of deep mineral resources and geothermal resources, the thermal accumulation process of cemented tailings backfill(CTB) was studied by numerical simulation. The effects of therm... Based on the collaborative exploitation of deep mineral resources and geothermal resources, the thermal accumulation process of cemented tailings backfill(CTB) was studied by numerical simulation. The effects of thermal accumulation time, slurry proportions and temperature conditions on the thermal accumulation of backfill are analyzed, the influence of the heat conduction between backfill and surrounding rock, the heat convection between backfill and airflow on thermal accumulation were compared simultaneously. The results show that the total thermal accumulation capacity increases by approximately 85% within 10-90 d. The influence of surrounding rock temperature and initial temperature on total thermal accumulation capacity is more significant and it is approximately 2 times of the influence of slurry proportions under the conditions of this study. It is clear that the rise of surrounding rock temperature and the decrease of initial temperature can improve the thermal accumulation capacity more effectively. Moreover, the heat conduction accounts for a considerable proportion in the process of thermal accumulation, the average heat conduction capacity is approximately 25 times of the heat convection capacity. This study can provide the theoretical basis and application reference for the optimization of thermal accumulation process of CTB in the exploitation of geothermal resources. 展开更多
关键词 cemented tailings backfill thermal accumulation heat conduction heat convection total thermal accumulation capacity
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