首页> 外文期刊>Energy Conversion & Management >Techno-economic assessment and optimization of a hybrid renewable co- supply of electricity, heat and hydrogen system to enhance performance by recovering excess electricity for a large energy consumer
【24h】

Techno-economic assessment and optimization of a hybrid renewable co- supply of electricity, heat and hydrogen system to enhance performance by recovering excess electricity for a large energy consumer

机译:技术经济评估和优化电力,热和氢气系统的混合再生能力,通过恢复大量电力消费者来提高性能

获取原文
获取原文并翻译 | 示例
       

摘要

This study attempts to optimize and examine the techno-economic feasibility of off-grid hybrid renewable energy systems (HRES) to satisfy simultaneously electric, heat and hydrogen load of a large energy consumer. An innovative method is adopted so as to recover surplus electricity to generate heat and cut emissions. The system is comprised of solar panels, wind turbine, diesel generator, electrolyzer and boiler to supply 9910 kWh/day of electricity, 14 kg/day of hydrogen and thermal energy in five different major cities in Iran, namely Bandar Abbas, Shiraz, Tabriz, Tehran and Yazd. These figures are computed on average and the thermal load differs according to yearly weather temperature, which are 75, 22, 2000, 5200, 2200 and 1800 kWh/day respectively. To serve this purpose, HOMER Pro software was used and thermal load controller (TLC) (including electric boiler) was added to generate thermal energy by converting excess electricity of renewable energy production. Thus, a decrease in conventional fuel consumption, emissions and cost of energy (COE), as well as an increase in the renewable fraction of HRES without increasing project's size would be achievable. To meet peak demand and avoid intermittent behavior of HRES, a 1000 kW generator was picked up. Results indicate that recovering extra electricity can enhance renewable fraction by up to 35% and bring down COE and exhausted CO2 by 7.1% and 10.6% respectively, which highlight the necessity of TLC in HRES, chiefly in off-grid systems.
机译:本研究试图优化和研究偏离电网混合可再生能源系统(HRES)的技术经济可行性,以满足大能消费者同时的电气,热和氢负荷。采用创新方法,以恢复剩余电力以产生热量和削减排放。该系统由太阳能电池板,风力涡轮机,柴油发电机,电解柜和锅炉提供,供应9910千瓦时/电力,14公斤/天的氢气和伊朗不同主要城市的热能,即Bandar Abbas,Shiraz,Tabriz ,德黑兰和亚兹德。这些数字平均计算,并且热负荷根据每年天气温度而不同,它们分别为75,22,2000,5200,2200和1800 kWh /天。为了满足此目的,使用Homer Pro软件,并添加热负荷控制器(TLC)(包括电锅炉)以通过转换多余的可再生能源生产来产生热能。因此,可以实现常规燃料消耗,排放和能量成本(COE)的降低,以及不增加项目尺寸的HRES的可再生部队的增加。为了满足高峰需求并避免HRE的间歇性行为,拾取了1000千瓦的发电机。结果表明,回收额外电力可以增强可再生的级分,高达35%,分别将COE和耗尽的二氧化碳分别降低7.1%和10.6%,突出了TLC在HRE中的必要性,主要是在流态系统中。

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