期刊文献+

九里山矿低品位热能智能化综合利用分析

Analysis of Intelligent Comprehensive Utilization of Low-Grade Thermal Energy in Jiuli Mountain Mine
下载PDF
导出
摘要 九里山矿低品位热能智能化处理与综合利用项目,以充分利用矿井水余热和南风井瓦斯发电烟气余热为核心目标,通过低品位热能梯级利用技术和田字式溢流储热装置,实现了3种工业废弃能源的组合增热,有效提高了热源效率,降低了运行成本。该项目不仅满足了主要建筑的全年供暖和制冷需求,为职工创造了舒适的生活环境,还预计每年可节约300万元以上的费用,并大幅减少环境污染,展现出良好的经济效益和环境效益,积极响应了国家节能减排政策,为矿区可持续发展做出了积极贡献。 The Jiuli Mountain mine low-grade thermal energy intelligent processing and comprehensive utilization project aims to fully utilize the waste heat from mine water and the flue gas of gas-fired power generation at the Nanfeng Well as its core objectives.By employing the low-grade thermal energy cascade utilization technology and a field-shaped over flow heat storage device,the project has achieved combined heating from three types of industrial waste energy,effectively improving the efficiency of heat sources and reducing operating costs.The project not only meets the annual heating and cooling needs of the main buildings,creating a comfortable living environment for the staff,but it is also expected to save over 3 million yuan in costs annually.Additionally,it significantly reduces environmental pollution,demonstrating good economic and environmental benefits.The project actively responds to the national energy-saving and emission-reduction policies and makes a positive contribution to the sustainable development of the mining area.
作者 梁楠 LIANG Nan(Jiuli Mountain Mine,Henan Jiaozuo Coal Energy Co.,Ltd.,Jiaozuo 454000,China)
出处 《中国资源综合利用》 2024年第9期229-232,共4页 China Resources Comprehensive Utilization
关键词 九里山矿 低品位热能 节能减排 Jiuli mountain mine low-grade thermal energy energy saving and emission reduction
  • 相关文献

参考文献12

二级参考文献67

  • 1魏忠勋,王彦洪,赵川.矿井余热综合利用技术研究与应用[J].煤炭科学技术,2013,41(S2):376-378. 被引量:14
  • 2魏东红,陆震,鲁雪生,顾建明.废热源驱动的有机朗肯循环系统变工况性能分析[J].上海交通大学学报,2006,40(8):1398-1402. 被引量:40
  • 3侯春枝,陈恩,蒋德伦,丁东旭.空气源热泵机组结霜及除霜控制方法的研究[J].制冷与空调,2007,7(3):52-54. 被引量:6
  • 4Si M, Thompson S, Calder K. Energy efficiency assessment by process heating assessment and survey tool (PHAST) and feasibility analysis of waste heat recovery in the reheat furnace at a steel company[J]. Renewable and Sustainable Energy Reviews, 2011, 15 (6) : 2904-2908.
  • 5Zhou Dan, Zhao Changying, Tian Yuan. Review on thermal energy storage with phase change materials (PCMs) in building applications [J]. Applied Energy, 2012, 92: 593-605.
  • 6Zhao Changying, Lu Wei, Tian Yuan, Heat transfer enhancement for thermal energy storage using metal foams embedded within phase change materials (PCMs) [J]. Solar Energy, 2010, 84(8) : 1402-1412.
  • 7Kim S K, Won B C, Rhi S H, et al. Thermoelectric power generation system for future hybrid vehicles using hot exhaust gas[J]. Journal of Electronic Materials, 2011, 40(5) : 778-783.
  • 8Hsu C T, Huang G Y, Chu H S, et al. Experiments and simulations on low-temperature waste heat harvesting system by thermoelectric power generators [J]. Applied Energy, 2011, 88(4) : 1291-1297.
  • 9Wang Xiaoqun, Xu Jun, Zhang Fang, et al. Phase change materials at the cold/hot sides of thermoelectric cooler for temperature control [ A ]. Proceedings of SPIE Conference on Smart Materials and Nanoteehnology in Engineering[C], Harbin, China, 2007.
  • 10Xu Min, Zhang Ling, Liu Zhongbin, et al. Experimental study on a new-type thermoelectric heat pump phase change thermal energy storage device[A]. Proceedings of 2011 IEEE International Conference on Computer Distributed Control and Intelligent Environmental Monitoring[C], Changsha, China, 2011.

共引文献26

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部