首页> 外文会议>International Conference on Concentrating Solar Power and Chemical Energy Systems >Numerical simulation and assessment of a 5 MWel hybrid system with a parabolic trough once-through steam generator coupled to biomass gasification
【24h】

Numerical simulation and assessment of a 5 MWel hybrid system with a parabolic trough once-through steam generator coupled to biomass gasification

机译:用抛物线槽的5 mwel混合系统进行数值模拟与评估抛物线槽一秒蒸汽发生器,耦合到生物质气化

获取原文

摘要

Concentrated Solar Power (CSP) has proven to be a reliable and economical solution due to the easiness to dispatch energy with thermal energy storage (TES) integration. On the other hand, valuable concepts such as Direct Steam Generation (DSG) have been hindered by latent heat storage technical challenges. An interesting concept is renewable energy hybridisation. It consists in the strategic combination of different renewable sources in the power generation portfolio by taking advantage of each technology. For example, DSG hybridisation with biomass gasification can be a reliable solution to improve DSG dispatchability and overcome technical issues, which was assessed in this paper. For the purpose, a 5MWel hybrid CSP/biomass gasification plant operation is assessed through numerical simulation, using a model validated against experimental tests carried out at Plataforma Solar de Almeria (for the solar field) and at the University of Porto (for gasification). The hybrid plant performance is assessed under start-up, steady and transient solar radiation. Results show hybridisation advantages, such as: an improved solar field start-up and assuring electricity generation; absence of power shortages during transient solar radiation and faster recovery from part load; stable power generation with a rather low solar multiple (about 1) and low biomass share. In summary, results show that DSG/biomass gasification hybridisation is an interesting solution to improve a DSG plant overall performance and to overcome operational limits, and thus a breakthrough concept to enhance commercial deployment.
机译:由于能量存储(TES)集成,浓缩的太阳能(CSP)已被证明是一种可靠和经济的解决方案,因为能量存储(TES)集成。另一方面,诸如直接蒸汽发电(DSG)之类的有价值的概念被潜热储存技术挑战所阻碍。一个有趣的概念是可再生能量杂交。它通过利用每种技术,由发电组合中不同可再生能源的战略组合。例如,具有生物质气化的DSG杂交可以是可靠的解决方案,以提高DSG调度性并克服本文评估的技术问题。为此目的,通过数值模拟评估5MWWEL混合CSP / BIOMASS气化工厂操作,该模型使用针对Plataforma Solar de Almeria(对于太阳能领域)和波尔图大学(用于气化)进行的实验测试进行了验证的模型。在启动,稳定和瞬态的太阳辐射下评估混合植物性能。结果显示杂交优势,如:改进的太阳能领域启动和确保发电;瞬态太阳辐射期间没有电力短缺,部分负载恢复更快;具有相当低的太阳倍数(约1)和低生物量份额,稳定的发电。总之,结果表明,DSG /生物质气化杂交是一种有趣的解决方案,可以提高DSG植物整体性能并克服操作限制,从而突破性概念,以提高商业部署。

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