首页> 外文会议>ASME International Conference on Energy Sustainability >SOLAR SALT LATENT HEAT THERMAL STORAGE FOR A SMALL SOLAR ORGANIC RANKINE CYCLE PLANT
【24h】

SOLAR SALT LATENT HEAT THERMAL STORAGE FOR A SMALL SOLAR ORGANIC RANKINE CYCLE PLANT

机译:用于小型太阳能有机兰汀循环植物的太阳能盐潜热储存

获取原文

摘要

The design of the Latent Heat Thermal Storage System (LHTESS) was developed with thermal capacity of about 100 kWh as a part of small solar plant, based on the Organic Rankine Cycle (ORC). The phase change material (PCM) used is Solar salt with the melting/solidification temperature of about 220°C. Thermo-physical properties of the PCM were measured, including its phase transition temperature, heat of fusion, specific heat and thermal conductivity. The design of the thermal storage was finalized by means of the 3-D CFD analysis. The thermal storage system is made of six rectangular boxes with dimensions of 1 m (width) × 0.66 m (height) × 0.47 m (depth). The thermal energy is delivered to each of the thermal storage boxes with the use of thermal oil, heated by Fresnel mirrors. The heat is transferred into and from the PCM in the box using 40 bi-directional heat pipes with the external diameter of about 12 mm. The length of the heat pipe in the PCM box is 430 mm and it is placed in the cylindrical metallic protection cartridge, installed in the thermal storage vessel. The working fluid in the heat pipe is water. A set of metallic screens are installed in the box with the pitch of 8-10 mm to enhance the heat transfer from heat pipes to the PCM and vice-versa during the charging and discharging processes, which take about 4 hours. The one unit of the described thermal storage system is undergoing the laboratory tests. Preliminary results demonstrate that the performance of the thermal storage is in a good agreement with numerical predictions. After completion of final design modifications, all units will be assembled at the plant's demonstration site and tested with the ORC turbine.
机译:基于有机朗肯循环(ORC),潜热热存储系统(LHTESS)作为小太阳能植物的一部分,具有约100kWh的热量。使用的相变材料(PCM)是太阳能盐,熔化/凝固温度为约220℃。测量PCM的热物理性质,包括其相转变温度,熔化热,比热和导热率。通过3-D CFD分析定位热存储器的设计。热存储系统由六个矩形盒制成,尺寸为1米(宽度)×0.66米(高度)×0.47米(深度)。热能通过使用热油输送到每个热储存盒,由菲涅耳反射镜加热。使用40双向热管在盒子中传递到PCM中的热量,外径为约12mm。 PCM箱中的热管的长度为430毫米,它放置在圆柱形金属保护盒中,安装在热储存容器中。热管中的工作流体是水。一组金属屏安装在盒子中,间距为8-10毫米,以增强从热管到PCM的热量传递,并在充电和放电过程中反之亦然,这需要大约4小时。所描述的热存储系统的一个单元正在进行实验室测试。初步结果表明,热存储的性能与数值预测吻合良好。完成最终设计修改后,所有单位将在工厂的演示现场组装并用逆涡轮机测试。

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