首页> 外文会议>ISES (International Solar Energy Society) 2001 Solar World Congress Vol.1; Nov 25-30, 2001; Adelaide, Australia >Analytical Model for the Thermal Conductance of Double-Compound Honeycomb Transparent Insulation, with Validation
【24h】

Analytical Model for the Thermal Conductance of Double-Compound Honeycomb Transparent Insulation, with Validation

机译:双化合物蜂窝状透明绝缘材料导热系数分析模型及验证

获取原文
获取原文并翻译 | 示例

摘要

Whereas early thermal models of honeycomb transparent insulation assumed the honeycomb to be bounded by opaque plates on both face, more recent models have allowed for an air gap between the honeycomb and one of the plates: the "compound honeycomb "configuration. This paper deals with a new configuration, one that is basically the compound honeycomb configuration, but the other bounding plate is diathermous (i.e., partly transparent to long-wave radiation) rather than opaque. This new configuration has arisen in the application of honeycombs in greenhouses. This paper extends the existing compound honeycomb model, by adding a new variable and a new equation. It was found that a 9 by 9 matrix needs to be inverted rather than the 8 by 8 required by the earlier formalism. To test the model, the overall conductance across a set of transparent honeycombs resting on one of two diathermous plastics was measured, using a guarded heater plate apparatus. The honeycombs were fabricated from UV-stabilized polypropylene, and had a cell size of about 10 mm. Although the model tended to slightly over-predict the measurements, (by about 10%) it is considered to be accurate enough for design purposes.
机译:早期的蜂窝状透明隔热材料热模型假定蜂窝被两面的不透明板所限制,而最新的模型则允许蜂窝与板​​之一之间存在空气间隙:“复合蜂窝”配置。本文讨论了一种新的配置,一种基本是复合蜂窝配置,但另一块边界板是透热的(即,对长波辐射部分透明)而不是不透明的。这种新结构已经出现在温室中蜂窝的应用中。本文通过添加新变量和新方程式扩展了现有的复合蜂窝模型。发现需要将9 x 9矩阵颠倒,而不是早期形式主义要求的8 x 8矩阵。为了测试模型,使用带保护层的加热板设备测量了置于两个透热塑料之一上的一组透明蜂窝的总电导。蜂窝是由紫外线稳定的聚丙烯制成的,其蜂窝尺寸约为10毫米。尽管模型倾向于对测量结果稍有过度预测(大约10%),但出于设计目的,它仍被认为足够准确。

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