首页> 外文期刊>Journal of Energy Storage >High-temperature molten-salt thermal energy storage and advanced-Ultra-supercritical power cycles
【24h】

High-temperature molten-salt thermal energy storage and advanced-Ultra-supercritical power cycles

机译:高温熔盐热能储存和先进超超临界电源循环

获取原文
获取原文并翻译 | 示例
           

摘要

The work explores the opportunities offered by higher temperature heat transfer/heat storage fluids, and higher temperature power cycles, in higher concentration solar thermal power plants. The goal is to design a renewable energy plant able to supply fully dispatchable electricity to the grid at a cost, inclusive of dispatchability, better than using wind and solar photovoltaic with external energy storage by batteries. By increasing the receiver/hot tank temperature from 565-575 to 730 degrees C, the efficiency of the thermal cycle increases by 30% vs. current plants working with conventional steam Rankine cycles (thermal efficiency eta similar to 52% vs. present eta similar to 40%). The proposed design permits 24/7 electricity production at the rated power of the turbine practically all year-round. In the hypothesis of no cost penalty for the use of a novel heat transfer and heat storage fluid, and of the higher pressure and temperature of the power cycle, that is a reasonable long term goal of an industrialized and mass-produced solution, the Levelized Cost of electricity may be improved from the 7.29-7.97 cent/kWh of a current technology 100 MW design of annual average capacity factor 93-95.5%, to the 6.18-6.68 cent/kWh of a 126 MW design of annual average capacity factor 94.9-97.7% of the novel technology. The work demonstrates the benefits of internal thermal energy storage by molten salt in supplying energy to renewable energy only grid, and the opportunity to further evolve the basic design now employed towards higher temperatures.
机译:该工作探讨了较高浓度的太阳能热发电厂中较高温度传热/散热液和较高温度电源循环所提供的机会。目标是设计可再生能源工厂,能够以成本,包括调度性,比使用电池的外部能量储存更好地提供全部调度电力。通过将接收器/热罐温度从565-575增加到730℃,热循环的效率增加了30%的与传统蒸汽朗朗循环合作的电流植物(热效率Eta类似于52%的ETA类似到40%)。拟议的设计允许全年涡轮机的额定功率24/7电力生产。在假设使用新型传热和蓄热流体的情况下没有成本惩罚,以及功率循环的较高压力和温度,这是工业化和大规模生产的解决方案的合理长期目标,该调用电力成本可从7.29-7.97厘米/千瓦时提高,目前的技术100 MW设计年平均容量因数93-95.5%,可达6.18-6.68美分/千瓦时,年平均容量因数94.9 -97.7%的新技术。该作品通过熔盐供应能量为可再生能量提供的熔盐来展示内部热能储存的益处,并且有机会进一步发展现在采用更高温度的基本设计。

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