首页> 外文期刊>Drvna industrija >Design of vacuum thermal insulation fitting in solar heating applications
【24h】

Design of vacuum thermal insulation fitting in solar heating applications

机译:太阳能采暖应用中真空隔热配件的设计

获取原文
       

摘要

The presented paper deals with designs of the vacuum thermal insulation fitting in solar heating applications. Fitting designs, identified by the authors of this paper, reflects the construction problem of a flat vacuum solar collector caused by the conduction of heat gained with solar collectors to the collector casing through thermal conductive connection located across the interface between casing and outer piping. As this heat further leaks into the surrounding environment, heat losses of the solar collector is higher and therefore thermal performance of the whole solar system is reduced. The solar collector element in the form of a vacuum thermal insulation fitting allows a connection of the solar collector with outer hydraulic circuit of the solar system without creating thermal bridges while ensuring vacuum tightness of the collector casing. A part in the evaluation process of the proposed design was a vacuum thermal insulation fitting modelled in CAD environment followed by heat transfer analysis under several operation scenarios (normal operation, extreme operation, etc.). Subsequently, a functional prototype was manufactured for measurements and verifications of the desired characteristics of fitting under different operating conditions. All the results of measurements and simulations demonstrated not only the ability of fitting to ensure vacuum tightness of the solar collector but also the ability of reducing overheating of the collector casing as well
机译:本文介绍了太阳能采暖应用中真空隔热配件的设计。本文作者确定的配件设计反映了扁平真空太阳能集热器的构造问题,该问题是由太阳能集热器通过位于外壳和外部管道之间的界面上的导热连接而传导到集热器外壳的。随着该热量进一步泄漏到周围环境中,太阳能收集器的热损失更高,因此整个太阳能系统的热性能降低。真空隔热配件形式的太阳能收集器元件允许太阳能收集器与太阳能系统的外部液压回路的连接,而不会产生热桥,同时确保收集器壳体的真空密封性。拟议设计的评估过程中的一部分是在CAD环境中建模的真空隔热配件,然后在几种运行场景(正常运行,极端运行等)下进行传热分析。随后,制造了功能样机,用于在不同的操作条件下测量和验证所需的配件特性。测量和模拟的所有结果不仅显示了确保太阳能收集器的真空密封性的安装能力,而且还显示了减少收集器外壳过热的能力。

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