太阳能PV/T热泵辅助分布式餐厨垃圾能源转化系统研究

马瑞泽, 张景新, 蒋祎璠, 代彦军

太阳能学报 ›› 2022, Vol. 43 ›› Issue (8) : 137-142.

PDF(1839 KB)
欢迎访问《太阳能学报》官方网站,今天是
PDF(1839 KB)
太阳能学报 ›› 2022, Vol. 43 ›› Issue (8) : 137-142. DOI: 10.19912/j.0254-0096.tynxb.2021-0051

太阳能PV/T热泵辅助分布式餐厨垃圾能源转化系统研究

  • 马瑞泽1, 张景新1, 蒋祎璠1, 代彦军2
作者信息 +

RESEARCH ON DISTRIBUTED FOOD WASTE-TO-ENERGY SYSTEM COUPLED WITH PV/T HEAT PUMP

  • Ma Ruize1, Zhang Jingxin1, Jiang Yifan1, Dai Yanjun2
Author information +
文章历史 +

摘要

建立新型的太阳能PV/T热泵辅助分布式餐厨垃圾能源转化系统。对新型系统进行数学建模和热力学分析,提出新型系统性能评价指标,进行实验测试和仿真模拟。结果表明:太阳能PV/T热泵系统可稳定为分布式餐厨垃圾废物能源化系统提供热能和电能,显著提升新型系统的效率,相同环境温度下提升系统总效率为10%~15%,以期为分布式餐厨垃圾废物能源化系统在低温环境下的应用提供可能。

Abstract

In this study, a new type of distributed food waste-energy system coupled with PV/T heat pump was developed. Both mathematical modeling and thermodynamic analysis were carried out for the new system, based on which the performance evaluation index of the new system was proposed. According to the research results the solar PV/T heat pump system can perform consistently in providing the thermal energy and electric energy required for the distributed food waste-energy system, thus significantly improving the efficiency of the new system, with the improvement efficiency varying from 10% to 15% at the same ambient temperature. This is expected to make the application of the distributed food waste-energy system possible in low- temperature environments.

关键词

太阳能 / 厌氧发酵 / 热泵系统 / PV/T / 餐厨垃圾 / 分布式 / 效率

Key words

solar energy / anaerobic digestion / heat pump systems / PV/T / food waste / distributed / efficiency

引用本文

导出引用
马瑞泽, 张景新, 蒋祎璠, 代彦军. 太阳能PV/T热泵辅助分布式餐厨垃圾能源转化系统研究[J]. 太阳能学报. 2022, 43(8): 137-142 https://doi.org/10.19912/j.0254-0096.tynxb.2021-0051
Ma Ruize, Zhang Jingxin, Jiang Yifan, Dai Yanjun. RESEARCH ON DISTRIBUTED FOOD WASTE-TO-ENERGY SYSTEM COUPLED WITH PV/T HEAT PUMP[J]. Acta Energiae Solaris Sinica. 2022, 43(8): 137-142 https://doi.org/10.19912/j.0254-0096.tynxb.2021-0051
中图分类号: TK519   

参考文献

[1] KAMLESH S.Carbohydrate-to-hydrogen production technologies: a mini-review[J]. Renewable and sustainable energy reviews, 2019, 105: 138-143.
[2] ZHANG J X, KAN X, SHEN Y, et al.A hybrid biological and thermal waste-to-energy system with heat energy recovery and utilization for solid organic waste treatment[J]. Energy, 2018, 152: 214-222.
[3] TONG H H, SHEN Y, ZHANG J X, et al.A comparative life cycle assessment on four waste-to-energy scenarios for food waste generated in eateries[J]. Applied energy, 2018, 225: 1143-1157.
[4] 张露, 代彦军. 太阳能光伏光热(PV/T)热泵热水系统实验研究[J]. 建筑科学, 2019, 35(2): 62-67.
ZHANG L, DAI Y J.Experimental study on the indirect photovoltaic/thermal heat pump hot water system[J]. Building science, 2019, 35(2): 62-67.
[5] CAI J Y, JI J, WANG Y Y, et al.A novel PV/T-air dual source heat pump water heater system: dynamic simulation and performance characterization[J]. Energy conversion and management, 2017, 148: 635-645.
[6] ZHANG P L, RONG X Y, YANG X R, et al.Design and performance simulation of a novel hybrid PV/T-air dual source heat pump system based on a three-fluid heat exchanger[J]. Solar energy, 2019, 191: 505-517.
[7] YAO J, XU H, DAI Y J, et al.Performance analysis of solar assisted heat pump coupled with build-in PCM heat storage based on PV/T panel[J]. Solar energy, 2020, 197: 279-291.
[8] 马一太, 刘忠彦, 李敏霞. 容积式制冷压缩机电效率分析[J]. 制冷学报, 2013, 34(3): 1-7.
MA Y T, LIU Z Y, LI M X.Analysis of electrical efficiency for positive displacement refrigerant compressor[J]. Journal of refrigeration, 2013, 34(3): 1-7.

基金

国家重点研发专项(2019YFE0104900)

PDF(1839 KB)

Accesses

Citation

Detail

段落导航
相关文章

/