首页> 外文期刊>Energy Conversion & Management >Techno-economic analysis on a new conceptual design of waste heat recovery for boiler exhaust flue gas of coal-fired power plants
【24h】

Techno-economic analysis on a new conceptual design of waste heat recovery for boiler exhaust flue gas of coal-fired power plants

机译:燃煤电厂锅炉烟气余热回收新概念设计的技术经济分析

获取原文
获取原文并翻译 | 示例
       

摘要

Recovering waste heat from boiler exhaust flue gas is an effective way to improve energy utilization efficiency and reduce coal burning pollution of coal-fired power plant (CFPP). The low-pressure economizer (LPE) is the most widely employed in waste heat recovery from boiler exhaust flue gas. However, there is a contradiction in LPE between maximizing waste heat recovery rate and maximizing waste heat utilization efficiency. This research improves waste heat utilization efficiency without reducing recovery rate by converting recovery heat. The recovery heat conversion is realized through organic fluid cycle integrating organic Rankine cycle (ORC) with high temperature heat pump (HTHP). The organic fluid cycle acts as a medium between flue gas and feedwater, which makes recovery heat match higher parameter low-pressure heater (LPH) flexibly. Based on exergy analysis, the upper limit for elevating energy-saving effects by converting recovery heat is given. For calculations and analyses, thermodynamic models are built and simulated in MATLAB together with REFPROP software based on a case study. The results show that using the proposed waste heat recovery system could produce 5361.98 kW additional net power output and electricity revenue of $1220.04 k, which are approximately 409.19 kW and $127.2 k greater than LPE respectively. The proposed system could save 5699.36 t standard coal and $854.9 k coal cost per year, which are nearly 595.5 t and $89.32 k larger than LPE. The maximum of recovery heat utilization efficiency of proposed system reaches 17.35% and the maximum efficiency improvement compared to LPE touches 3.48%.
机译:从锅炉废气中回收余热是提高能源利用效率,减少燃煤电厂燃煤污染的有效途径。低压省煤器(LPE)在从锅炉废气中回收余热中使用最广泛。然而,LPE在最大化废热回收率和最大化废热利用效率之间存在矛盾。这项研究通过转换回收热量,在不降低回收率的情况下提高了废热利用效率。通过将有机朗肯循环(ORC)与高温热泵(HTHP)集成在一起的有机流体循环可实现热回收。有机流体循环充当烟气和给水之间的介质,这使得回收热量可以灵活地匹配较高参数的低压加热器(LPH)。基于火用分析,给出了通过转换余热来提高节能效果的上限。为了进行计算和分析,基于案例研究,在MATLAB和REFPROP软件中建立并模拟了热力学模型。结果表明,使用拟议的废热回收系统可以产生5361.98 kW的额外净电力输出和$ 1220.04 k的电力收入,分别比LPE多约409.19 kW和$ 127.2 k。拟议的系统每年可节省5699.36吨标准煤和$ 854.9 k的煤炭成本,比LPE大了近595.5 t的煤和$ 89.32 k。拟议系统的最大回收热利用效率达到17.35%,与LPE相比,最大效率提高达到3.48%。

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