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Design and development of a low-cost glazing measurement system

机译:低成本玻璃测量系统的设计与开发

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摘要

Knowledge of the properties and performance level of a glazing or translucent component system is necessary for assessing the operational energy use of building or greenhouse structures and proposing potential strategies for saving energy. The study of in situ measurements of the thermal and optical performance of glazing systems has not yet been thoroughly examined. To accomplish this task, a portable and easy-to-use in situ measurement system for key glazing properties that uses the inexpensive Arduino platform and compatible sensors was designed, 3D-printed, and fabricated. The glazing properties that can now be measured include the center-of-glass U-factor, solar transmittance, and visible transmittance. In this method-focused paper, we present the step-by-step development procedure in detail, as well as describe the necessary hardware and codes. One can use the shared files to 3D-print the sensor cases and follow the described procedure to achieve the measuring system hardware. Subsequently, the shared codes, including the calibration functions for the associated hardware and the “self-examination” procedure can be applied to achieve a working system for measurement. In brief, this new method is:
机译:了解玻璃窗或半透明组件系统的性能和性能水平,以评估建筑物或温室结构的运营能源使用以及提出节约能源的潜在策略。对玻璃系统的热敏和光学性能的原位测量的研究尚未彻底检查。为完成此任务,设计了使用廉价的Arduino平台和兼容传感器的关键玻璃属性的便携式且易于使用,并设计了3D印刷和制造。现在可以测量的玻璃特性包括玻璃中心U因子,太阳透射率和可见光透射率。在这种聚焦纸张中,我们详细介绍了逐步开发过程,以及描述必要的硬件和代码。人们可以使用共享文件到3D打印传感器案例并按照所描述的过程实现测量系统硬件。随后,可以应用共享代码,包括相关硬件的校准函数和“自检”过程来实现用于测量的工作系统。简而言之,这种新方法是:

著录项

  • 期刊名称 MethodsX
  • 作者

    Yanxiao Feng; Julian Wang;

  • 作者单位
  • 年(卷),期 2020(-1),-1
  • 年度 2020
  • 页码 -1
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:玻璃系统;原位测量;传感器;能量效率;

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