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低成本玻璃测量系统的设计与开发。

Design and development of a low-cost glazing measurement system.

作者信息

Feng Yanxiao, Wang Julian

机构信息

Department of Architectural Engineering, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

MethodsX. 2020 Aug 14;7:101028. doi: 10.1016/j.mex.2020.101028. eCollection 2020.

Abstract

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:•Based on thermodynamic equations and easy-to-use.•Open source, low cost, and simple to assemble.•Able to automatically determine the effectiveness of the output via the developed diagnostic algorithms.

摘要

了解玻璃或半透明组件系统的特性和性能水平对于评估建筑或温室结构的运营能源使用情况以及提出潜在的节能策略至关重要。对玻璃系统热性能和光学性能的现场测量研究尚未得到充分探讨。为完成这项任务,设计、3D打印并制造了一种用于关键玻璃特性的便携式且易于使用的现场测量系统,该系统使用价格低廉的Arduino平台和兼容传感器。现在可以测量的玻璃特性包括玻璃中心传热系数、太阳透射率和可见光透射率。在这篇侧重于方法的论文中,我们详细介绍了逐步开发过程,并描述了所需的硬件和代码。人们可以使用共享文件3D打印传感器外壳,并按照所述程序实现测量系统硬件。随后,可以应用共享代码,包括相关硬件的校准函数和“自检”程序,以实现一个可运行的测量系统。简而言之,这种新方法具有以下特点:

•基于热力学方程且易于使用。

•开源、低成本且易于组装。

•能够通过开发的诊断算法自动确定输出的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d03/7479280/814b2f29c62d/fx1.jpg

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