首页> 外文会议>ASME power conference >DESIGN OF A 100 kW CONCENTRATED SOLAR POWER ON DEMAND VOLUMETRIC RECEIVER WITH INTEGRAL THERMAL ENERGY STORAGE PROTOTYPE
【24h】

DESIGN OF A 100 kW CONCENTRATED SOLAR POWER ON DEMAND VOLUMETRIC RECEIVER WITH INTEGRAL THERMAL ENERGY STORAGE PROTOTYPE

机译:带有集成热能存储原型的需求量接收器上的100 kW集中太阳能功率设计

获取原文

摘要

A new concept of Thermal Energy Storage (TES) system based on current available technologies is being developed under the framework of the Masdar Institute (MI) and Massachusetts Institute of Technology (MIT) collaborative Flagship Program. The key feature of this concept lies on concentrating sun light directly on the molten salt storage tank, avoiding the necessity of pumping the salts to the top of a tower thereby avoiding thermal losses and pumping and electric tracing needs inherent in most conventional CSP plants. This Concentrated Solar Power on Demand (CSPonD) volumetric receiver/TES unit prototype will be tested in the existing MI heliostat field and beam down tower in Abu Dhabi (UAE) which will collect and redirect solar energy to an upwards-facing final optical element (FOE). These energy will be concentrated on the aperture of the prototype designed to store 400 kWh of energy allowing 16 hours of continuous production after sunset using Solar Salt (60%NaNO_3 + 40%KNO_3) as storage material. The tank is divided in two volumes: one cold in the bottom region, where Solar Salt is at 250 °C and another hot on the upper region, at 550 °C. A moving divider plate with active control separates both volumes. The plate includes mixing enhancement features to help with convection on the hot volume of salts. It's expected that results will demonstrate the technical feasibility and economic viability of this concept allowing its scale up at commercial size.
机译:在Masdar Institute(MI)和Massachusetts Institute of Technology(MIT)合作旗舰计划的框架下,正在开发基于当前可用技术的热能存储(TES)系统的新概念。此概念的关键特征在于将阳光直接聚集在熔融盐储罐上,避免了将盐泵送到塔顶的必要性,从而避免了大多数常规CSP工厂固有的热损失以及泵送和电伴热需求。该集中式按需太阳能(CSPonD)容量接收器/ TES单元原型将在现有的MI定日镜场和阿布扎比(UAE)的射束塔中进行测试,该塔将收集太阳能并将其重定向至朝上的最终光学元件(敌人)。这些能量将集中在原型的孔上,该孔旨在存储400 kWh的能量,从而在日落之后使用太阳盐(60%NaNO_3 + 40%KNO_3)作为存储材料可以连续生产16小时。储罐分为两个容积:一个是底部温度较低的低温,其温度为250°C,另一个是顶部温度较高的温度,为550°C。具有主动控制功能的活动隔板将两个容积分开。该板具有混合增强功能,可帮助对热的盐量进行对流。预期结果将证明该概念的技术可行性和经济可行性,从而使其能够扩大到商业规模。

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