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Study of Surface Temperature Monitoring in the Field of Buildings

机译:建筑领域表面温度监测研究

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Surface temperature monitoring and its aspects does have not only a useful merit for thermal analysis of the buildings and their direct or indirect implementation in virtual simulations, however is equally of highly relevant use for the field of building physics as primarily those of more complex analyzing concerning on specific thermal phenomena. The measuring of surface temperatures at the building envelopes by means of well-practiced commercial temperature sensors are typically applied whose attributes can successfully be employed especially for the field of thermal building performance aspects. In addition, besides of their certain own accuracy level and final implementation for instance as an input parameter into the simulation model, typical methods of their final application related to the opaque and transparent building surfaces and their contact and non-contact modes may have the significant influence. The paper presents a representative confrontation of surface temperature monitoring of several temperature sensors as finally compared with the form of their final application on standard vertical building surfaces. Three typical ways of installation are demonstrated on opaque and transparent building component under real climate conditions applying of commercial thermocouples, digital temperature and infrared sensors. Experimental measurement assemblies are proposed and introduced with aim to point out deviating indicators in the presented area. Representative in-situ measurements are performed and final comparability of sensors based on typical methods of their final installation is presented. An obtained result, both at existing and comparing types, demonstrates its application relations to the field of buildings. In spite of that, an additional confrontation based on non-contact regime as compared with contact ones reveals a feasible option directly concerning on building surface temperature measuring.
机译:表面温度监测及其方面不仅具有对建筑物的热分析的有用优点,而且它们在虚拟模拟中的直接或间接实施,然而,对建筑物物理领域的高度相关使用,主要是那些更复杂的分析关于特定的热现象。通常应用借助于良好的商业温度传感器的建筑信封的表面温度测量,其属性可以成功地用于,特别是用于热建筑物性能方面的场。此外,除了它们某些自己的精度水平和最终实现之外,例如作为仿真模型的输入参数,它们的最终应用程序的典型方法与不透明和透明建筑表面相关的最终应用以及其接触和非接触模式可能具有重要意义影响。本文提出了几种温度监测的代表性对抗几种温度传感器,最终与标准垂直建筑表面上的最终应用的形式相比。在实际气候条件下的不透明和透明建筑部件上展示了三种典型的安装方式,应用商业热电偶,数字温度和红外传感器。提出了实验测量组件,并旨在指出所提出的区域中的偏离指示。提出了基于其最终安装的典型方法来执行代表性的原位测量和传感器的最终可比性。在现有和比较类型中的一个结果证明了其与建筑领域的应用关系。尽管如此,与联系人相比,基于非接触制度的额外对抗揭示了直接关于建筑表面温度测量的可行选择。

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