首页> 外文期刊>Sustainable Energy Technologies and Assessments >Experimental evaluation of heat transfer performance under natural and forced convection around a phase change material encapsulated in various shapes
【24h】

Experimental evaluation of heat transfer performance under natural and forced convection around a phase change material encapsulated in various shapes

机译:各种形状封装的相变材料下的自然和强制对流下传热性能的实验评价

获取原文
获取原文并翻译 | 示例
       

摘要

Cold thermal energy storage can reduce peak electricity use in electric air conditioning systems as well as improve free space cooling, through convective heat transfer between a surrounding fluid (heat transfer fluid or air) and encapsulated phase change material (PCM). In this work, heat transfer performances and phase change behaviours of six PCM capsules with equal-volumes but varying-shapes were studied experimentally, for use in cold latent heat storage. A tetra-n-butylammonium bromide-based PCM with an adjustable phase change temperature of 0-12 degrees C was injected into capsules of spherical, cylindrical (short and long), pyramidal, tetrahedral, and a biomimetic red blood cell shape. First, an infrared camera recorded the surface temperature variation during the melting process of each capsule in air under natural convection. Second, an experimental setup was built to investigate latent heat storage during the freezing and melting processes for each shape under forced convection, focusing on the effects of fluid temperature, flowrate and PCM capsule tilt angle on freezing and melting times. The results showed that the freezing and melting times were dependent on not only the surface area to volume ratio, but also on the distance from centroid to inner capsule surface. Importantly, the red blood cell shape was found to be the most favourable geometry because it yielded the most rapid freezing and melting process, which were further enhanced in a configuration where the freestream flow directly impinged onto its centmid. The work is a pioneering study on the effects of PCM capsule geometry, providing experimental data and recommendations for future studies on CTES and applications.
机译:冷热储能可以减少电动空调系统中的峰值电力以及通过周围流体(传热流体或空气)和封装的相变材料(PCM)之间的对流传热来改善自由空间冷却。在这项工作中,通过实验研究了六个PCM胶囊,但不同形状的六个PCM胶囊的传热性能和相变行为,用于冷潜热储存。将具有0-12℃的调节变化温度为0-12℃的Tetra-丁基溴化铵基PCM注入球形,圆柱形(短和长),金字塔,四面体和仿生红细胞形状的胶囊中。首先,红外摄像机在自然对流下的空气中的每个胶囊的熔化过程中记录了表面温度变化。其次,建立了一种实验设置,以在强制对流下对每个形状进行冻融和熔化过程中的潜热存储,专注于流体温度,流量和PCM胶囊倾斜角度在冷冻和熔化时的影响。结果表明,冷冻和熔化时间不仅取决于表面积到体积比,还取决于与质心到内囊表面的距离。重要的是,发现红细胞形状是最有利的几何形状,因为它产生了最快速的冷冻和熔化过程,这在直接冲击到其中心的自由流动流动的配置中进一步增强。这项工作是对PCM胶囊几何的影响的开创性研究,为CTE和应用的未来研究提供实验数据和建议。

著录项

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