首页> 外文期刊>Solar Energy >Fabrication analysis of flat vacuum enclosures for solar collectors sealed with Cerasolzer 217
【24h】

Fabrication analysis of flat vacuum enclosures for solar collectors sealed with Cerasolzer 217

机译:用Cerasolzer 217密封的太阳能收集器扁平真空外壳的制造分析

获取原文
获取原文并翻译 | 示例
       

摘要

Vacuum flat plate (VFP) solar thermal collectors exhibit excellent optical and thermal characteristics due to a combination of wide surface area and high vacuum thermal insulation offering a high performance and architecturally versatile collector with a variety of applications for industrial process heat and building integration. A vacuum flat plate solar collector consists of a solar absorber in a flat vacuum enclosure comprising glass or glass and metal covers sealed around the periphery with an array of support pillars to maintain the separation of the enclosure under atmospheric pressure. The edge seal must be both mechanically strong and hermetic to ensure the durability of the internal vacuum over collector lifetime. This presents several challenges for the fabrication of flat vacuum enclosures. In this study a novel sealing technique is presented using a tin-based alloy, Cerasolzer 217, to create the vacuum seal between two glass panes and an edge separating spacer. The sealing process is undertaken at temperatures = 250 C allowing the use of thermally tempered glass panes. The mechanical strength of the edge seal was investigated using a tensometer. It was demonstrated that the bond between glass and edge spacer was sufficiently strong to withstand induced stresses in the edge seal region. The edge seal was leak tested using a conventional Helium mass spectrometer leak detector and was shown to possess leak rates low enough to maintain an adequate vacuum pressure to supress conductive and convective heat transfer in the collector. A finite element method (FEM) is developed and validated against the experimental results and employed to predict the stresses in different regions of the enclosure. It was found that the mechanical strength limits of the seal and glass are higher than the stresses in the edge seal region and on the glass surface, respectively.
机译:真空平板(VFP)太阳能热收集器具有优异的光学和热特性,由于宽表面积和高真空隔热,提供高性能和建筑多功能集电器,具有各种工业工艺热量和建筑集成的应用。真空平板太阳能收集器由扁平真空外壳中的太阳能吸收组成,包括玻璃或玻璃和围绕周边密封的金属盖,其支撑柱阵列以维持外壳在大气压下的分离。边缘密封件必须机械强大和密封,以确保内部真空的耐用性在收集器寿命上。这呈现了扁平真空外壳的若干挑战。在该研究中,使用锡基合金,Cerasolzer 217来提出一种新型密封技术,以在两个玻璃板和边缘分离间隔物之间​​产生真空密封。密封过程在温度下进行。允许使用热钢化玻璃窗格。使用张量计研究了边缘密封的机械强度。人们证明玻璃和边缘间隔物之间​​的粘合足够强,以承受边缘密封区域中的诱导应力。使用传统的氦质谱仪泄漏检测器测试边缘密封泄漏,并且被示出具有足够低的泄漏速率以保持足够的真空压力以在收集器中抑制导电和对流热传递。针对实验结果开发并验证了有限元方法(FEM),并采用预测外壳的不同区域中的应力。发现密封和玻璃的机械强度限制分别高于边缘密封区域和玻璃表面上的应力。

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