日光温室中不同碳基悬浮液蓄热性能对比OA
Comparison on heat storage performance of different carbon-based suspensions in solar greenhouse
为优化日光温室主动蓄热系统并筛选高效蓄热介质,系统对比纯净水、吸光改性水,以及竹炭粉、松墨粉、碳纳米管等碳基悬浮液在日光温室中的蓄热性能.监测日照时间各整点温度,利用升温期蓄热量、降温期放热量及蓄热保持效率等指标表征样品蓄热情况,探究不同碳基悬浮液在日光温室中光热转换与蓄热释放规律.结果表明,所有碳基悬浮液性能指标在数值上均高于纯净水,其中 5%浓度碳纳米管悬浮液蓄热保持效率高达 76.3%,综合性能最优;10%浓度松墨粉悬浮液温升幅度最大,展现良好升温能力.综合分析,浓度优化后的碳纳米管悬浮液,是一种可有效提升蓄热与热能利用效率的潜在介质.研究结果为日光温室节能设计提供材料学相关理论依据.
To optimize active heat storage system in solar greenhouse and screen for high-efficiency heat storage media,a comparative analysis was conducted to evaluate thermal storage performance of purified water,light-absorbing modified water,and carbon-based suspension media including bamboo charcoal powder,lampblack ink powder,and carbon nanotubes in solar greenhouse.By monitor-ing temperature at hourly intervals from sunrise to sunset,heat storage performance was characterized using metrics such as heat storage capacity during heating phase,heat release capacity during cooling phase,and heat retention efficiency to investigate photothermal con-version and heat release patterns of different carbon-based suspensions in solar greenhouse.Results indicated that all carbon-based sus-pensions exhibited performance metrics numerically superior to those of purified water.Among them,carbon nanotube suspension at a 5%concentration achieved a heat storage retention efficiency of 76.3%,demonstrating the best overall performance.Lampblack ink powder suspension at a 10%concentration exhibited the largest temperature rising amplitude,indicating excellent heating capacity.A comprehensive analysis revealed that carbon nanotube suspensions,under optimized concentrations,was a promising medium cap-able of effectively enhancing heat storage and thermal energy utilization efficiency.A theoretical basis in materials science was provided for energy-efficient design of solar greenhouse.
宋欣然;聂京涛;吴一凡;黄新岳;张紫依;杨自栋
浙江农林大学园艺科学学院,杭州 浙江 311300浙江农林大学园艺科学学院,杭州 浙江 311300浙江农林大学园艺科学学院,杭州 浙江 311300浙江农林大学光机电工程学院,杭州 浙江 311300浙江农林大学光机电工程学院,杭州 浙江 311300浙江农林大学光机电工程学院,杭州 浙江 311300
农业科技
碳基悬浮液蓄热性能日光温室竹炭粉松墨粉碳纳米管蓄热保持效率
carbon-based suspensionheat storage performancesolar greenhousebamboo charcoal powderlampblack ink powdercarbon nanotubeheat storage retention efficiency
《农业工程》 2026 (4)
48-52,5
浙江省大学生创新创业训练计划项目(S202510341077)
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