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THE APPLICABILITY OF ACCELERATED LIFE TESTING FOR ASSESSMENT OF SERVICE LIFE OF SOLAR THERMAL COMPONENTS

机译:加速寿命测试在评估太阳能组件的使用寿命方面的适用性

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摘要

To achieve successful commercialisation of new advanced windows and solar façade components for buildings, the durability of these need to be demonstrated prior to installation by use of reliable and well-accepted test methods. In Task 27 Performance of Solar Facade Components of the IEA Solar Heating and Cooling Programme work has therefore been initiated with the objective to develop a general methodology for durability test procedures and service lifetime prediction (SLP) methods adaptable to the wide variety of advanced optical materials and components used in energy efficient solar thermal and buildings applications. As the result of this work a general methodology has been developed. The proposed methodology includes three steps: a) initial risk analysis of potential failure modes, b) screening testing/analysis for service life prediction and microclimate characterisation, and c) service life prediction involving mathematical modelling and life testing. rnThe applicability of the working scheme to be employed in the development of durability test procedures has been analysed for selective solar absorber surfaces and polymeric glazing materials in flat plate solar collectors. The examples show the great applicability of the general methodology for accelerated life testing. This will allow much shorter development cycle times for new products and will allow improvements to be identified and readily incorporated in new products prior to market introduction.
机译:为了成功实现用于建筑物的新型先进窗户和太阳能外立面组件的成功商业化,需要在安装之前通过使用可靠且公认的测试方法来证明这些组件的耐用性。因此,在IEA太阳能供热和制冷计划的任务27中,太阳能外立面组件的性能已经启动,其目的是开发适用于多种先进光学材料的耐久性测试程序和使用寿命预测(SLP)方法的通用方法以及节能太阳能热和建筑应用中使用的组件。这项工作的结果是开发了一种通用方法。所提出的方法包括三个步骤:a)潜在故障模式的初始风险分析; b)使用寿命预测和微气候特征的筛选测试/分析;以及c)涉及数学建模和寿命测试的使用寿命预测。 rn已经分析了用于开发耐久性测试程序的工作方案的适用性,以用于平板太阳能收集器中的选择性太阳能吸收器表面和聚合物玻璃材料。这些示例说明了通用方法在加速寿命测试中的巨大适用性。这将使新产品的开发周期大大缩短,并且可以识别出改进之处,并在引入市场之前将其容易地并入新产品中。

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  • 来源
  • 会议地点 Goteborg(SE);Goteborg(SE)
  • 作者单位

    SP Swedish National Testing and Research Institute, P.O. Box 857, SE-501 15, Borås, SWEDEN, Phone: +4633165335, Fax: +4633103388, e-mail: bo.carlsson@sp.se;

    SP Swedish National Testing and Research Institute, P.O. Box 857, SE-501 15, Borås, SWEDEN, Phone: +4633165335, Fax: +4633103388;

    Fraunhofer Institute for Solar Energy Systems (ISE), Heidenhofstr. 2, 79110 Freiburg, GERMANY, Phone: +497614016682, Fax: +497614016681, e-mail: mike@ise.fhg.de;

    Fraunhofer Institute for Solar Energy Systems (ISE), Heidenhofstr. 2, 79110 Freiburg, GERMANY, Phone: +497614016682, Fax: +497614016681;

    Institut fuer Solartechnik (SPF), Hochschule Rapperswil HSR, Oberseestrasse 10, 8640 Rapperswil, SWITZERLAND, Phone:+41552224810, Fax: +41552104844, e-mail: stefan.brunold@solarenergy.ch;

    CSTB Centre Scientific e;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 太阳能技术;
  • 关键词

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