首页> 外文期刊>Case Studies in Construction Materials >Aging performance evaluation of vacuum insulation panel (VIP)
【24h】

Aging performance evaluation of vacuum insulation panel (VIP)

机译:真空隔热板(VIP)的老化性能评估

获取原文
       

摘要

Energy efficiency solutions are being pursued as a sustainable approach to reducing energy consumption and related gas emissions across various sectors of the economy. Vacuum Insulation Panel (VIP) is an energy efficient advanced insulation system that facilitates slim but high-performance insulation, based on a porous core material evacuated and encapsulated in a barrier envelope. Although VIP has been on the market for decades now, it wasn’t until recently that efforts have been initiated to propose and adopt a global standard on characterization and testing. One of the issues regarding VIP is its durability and aging due to pressure and moisture dependent increase of the initial low thermal conductivity with time; more so in building applications. In this paper, the aging performance of commercially available VIP was investigated experimentally; thermal conductivity was tested in accordance with ISO 8302 standard (guarded hot plate method) and their long-term performance was analyzed based on a non-linear pressure-humidity dependent equation based on IEA/EBC Annex 39, with the aim of evaluating durability of VIP. The center-of-panel thermal conductivity after 25 years based on initial 90% fractile with a confidence level of 90% for the thermal conductivity (λ90/90) ranged from 7.3–8.2mW/(mK) for silica core VIP. Significant differences between manufacturer-provided data and measurements of thermal conductivity and internal pressure were observed.
机译:追求能源效率解决方案是一种可持续的方法,以减少整个经济各个部门的能源消耗和相关的气体排放。真空绝热板(VIP)是一种高能效的先进绝热系统,它基于疏散并封装在防护罩中的多孔芯材,有助于实现纤薄而高性能的绝热。尽管VIP在市场上已经存在了几十年,但直到最近才开始努力提出并采用有关表征和测试的全球标准。 VIP的问题之一是其耐久性和老化,这归因于压力和湿度的依赖性,其初始低导热系数随时间增加;在建筑应用中更是如此。本文通过实验研究了市售VIP的老化性能。根据ISO 8302标准(热板保护法)对导热系数进行了测试,并根据基于IEA / EBC附录39的非线性压力-湿度相关方程对它们的长期性能进行了分析,目的是评估玻璃的耐久性贵宾25年后的面板中心热导率基于初始90%的分数,对二氧化硅芯VIP的热导率(λ90/ 90)的置信度为90%,范围为7.3–8.2mW /(mK)。观察到制造商提供的数据与热导率和内部压力的测量值之间存在显着差异。

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