首页> 外文期刊>Applied Energy >Assessment of a combined cooling, heating and power system by synthetic use of biogas and solar energy
【24h】

Assessment of a combined cooling, heating and power system by synthetic use of biogas and solar energy

机译:综合利用沼气和太阳能评估制冷,供暖和电力系统的组合

获取原文
获取原文并翻译 | 示例
       

摘要

Anaerobic digesters should always be kept warm for a stable biogas yield. The conventional method for digester temperature maintenance results in a considerable waste of energy and pollution of the environment by directly firing biogas. Biogas-driven trigeneration systems can improve biogas utilization efficiency; however, the waste heat from the power engines is limited by the digester's thermal insulation, and additional fossil fuels are consumed to supplement the thermal power. To ease fossil fuel energy consumption and enhance the efficiency of biogas utilization, this paper presents a combined cooling heating and power (CCHP) system with synthetic use of biogas and solar energy. Solar energy is first transformed into syngas chemical energy through a chemical reaction called biogas steam reforming, and then the chemical energy is used for trigeneration in a conventional CCHP subsystem. Experimental research was conducted on the key process of biogas steam reforming to validate its feasibility. Hourly dynamic simulations of the proposed system were conducted by the mathematical models established using Lhasa, Tibet weather data. A biogas-fired CCHP system and a solar Dish/Stirling power system were adopted as reference systems, and a comparative analysis showed that the synthetic use of biogas and solar energy in the proposed system improves the annual electricity production by 8.70%, improves the refrigeration by 2.57%, and reduces the natural gas consumption by 8.66%. In addition, the direct CO2 footprint in the proposed system is 8.20% lower than that in the reference systems. Finally, an economic study was conducted to validate the technical feasibility of the new system. The study offers a new method of using biogas and solar energy for an improved integrated performance.
机译:厌氧消化池应始终保持温暖,以保持稳定的沼气产量。维持蒸煮器温度的常规方法通过直接燃烧沼气导致相当大的能量浪费和环境污染。沼气驱动的三联发电系统可以提高沼气的利用效率;然而,动力引擎的废热受到蒸煮器隔热的限制,并且消耗了额外的化石燃料来补充火力。为了减轻化石燃料的能源消耗并提高沼气的利用效率,本文提出了一种结合了沼气和太阳能综合利用的冷热电联产(CCHP)系统。太阳能首先通过称为沼气蒸汽重整的化学反应转化为合成气化学能,然后在常规CCHP子系统中将化学能用于三联产。对沼气蒸汽重整关键过程进行了实验研究,以验证其可行性。通过使用西藏拉萨天气数据建立的数学模型对建议系统进行每小时动态仿真。以沼气为燃料的CCHP系统和太阳能碟/斯特林动力系统为参考系统,对比分析表明,拟议系统中沼气和太阳能的综合利用可将年发电量提高8.70%,改善制冷减少了2.57%,天然气消耗减少了8.66%。此外,拟议系统中的直接二氧化碳足迹比参考系统低8.20%。最后,进行了一项经济研究,以验证新系统的技术可行性。该研究提供了一种利用沼气和太阳能来改善综合性能的新方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号