...
首页> 外文期刊>International journal of energy research >Latent heat storage above 120℃ for applications in the industrial process heat sector and solar power generation
【24h】

Latent heat storage above 120℃ for applications in the industrial process heat sector and solar power generation

机译:120℃以上的潜热存储,用于工业过程热能部门和太阳能发电

获取原文
获取原文并翻译 | 示例
           

摘要

This paper is focussed on thermal storage technologies using phase change materials (PCMs) in the temperature range of 120-300℃ for solar thermal power generation and high temperature process heat. As the state-of-the-art reference system a steam accumulator is described, which typically has a volume-specific thermal energy density of 20-30 kWh m~(-3). Regarding efficiency, a fundamental demand on thermal storage is the minimization of temperature differences between working fluid and storage medium. This requires isothermal storage systems for processes using water/steam. An obvious solution is, therefore, the application of PCMs. The selection of the PCMs depends strongly on the operation conditions of the respective application. At present, the main emphasis is directed to alkali metal nitrates and nitrites and their mixtures. For example, the eutectic mixture of the binary system KNO_3-NaNO_3 has been identified as an excellent system to be used for processes using saturated steam at around 25 bar. At around 5 bar the ternary system KNO_3-NaNO_2-NaNO_3, commonly used as heat transfer fluid, can also be used as a PCM. To overcome the low thermal conductivity of the salt systems, approaches of increased surfaces area and increased thermal conductivity using expanded graphite (EG) have been investigated. Using EG/PCM composites, the effective thermal conductivity can be increased from below 0.5 to 3-20 W(mK)~(-1). Three design concepts have been developed. In the macro-encapsulated design, the PCM is enclosed in metal tubes, giving a short distance for heat transfer and increasing the heat transfer area. In the second design, the heat exchanger tubes are embedded in EG/PCM-composite storage material. The third design option uses graphite foils arranged perpendicularly onto the heat exchanger tubes and a suitable salt system filled in between. The upgrade of existing steam accumulators using these PCM concepts is also proposed.
机译:本文重点研究使用相变材料(PCM)在120-300℃的温度范围内进行太阳能热发电和高温过程热的蓄热技术。作为最新的参考系统,描述了一种蒸汽蓄能器,该蓄能器通常具有20-30 kWh m〜(-3)的体积比热能密度。关于效率,对热存储的基本要求是最小化工作流体和存储介质之间的温差。对于使用水/蒸汽的过程,这需要恒温存储系统。因此,一个明显的解决方案是PCM的应用。 PCM的选择在很大程度上取决于相应应用程序的操作条件。目前,主要重点是碱金属硝酸盐和亚硝酸盐及其混合物。例如,二元体系KNO_3-NaNO_3的低共熔混合物被认为是一种出色的系统,可用于使用约25 bar饱和蒸汽的工艺。在5 bar左右,通常用作传热流体的三元体系KNO_3-NaNO_2-NaNO_3也可用作PCM。为了克服盐系统的低热导率,已经研究了使用膨胀石墨(EG)来增加表面积和增加热导率的方法。使用EG / PCM复合材料,有效导热系数可以从0.5以下增加到3-20 W(mK)〜(-1)。已经开发了三种设计概念。在宏封装设计中,PCM封装在金属管中,从而使传热距离变短,并增加了传热面积。在第二种设计中,换热器管嵌入EG / PCM复合材料存储材料中。第三种设计方案是使用垂直排列在热交换器管上的石墨箔,并在其间填充合适的盐系统。还提出了使用这些PCM概念对现有蒸汽蓄能器进行升级的建议。

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