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利用红外热像仪透过窗户开启缝隙对建筑外部室内热环境进行遥感监测。

Remote sensing of indoor thermal environment from outside the building through window opening gap by using infrared camera.

作者信息

Chen Xiaomeng, Zou Ziwei, Hao Fulin, Wang Yang, Mei Chuansong, Zhou Yuhan, Wang Da, Yang Xudong

机构信息

Department of Building Science, School of Architecture, Tsinghua University, Beijing 100084, China.

College of Information and Electrical Engineering, China Agricultural University, Beijing 100084, China.

出版信息

Energy Build. 2023 May;286:112975. doi: 10.1016/j.enbuild.2023.112975.

Abstract

Investigation of housing indoor temperature is important for understanding the comfort, health and living conditions of the local residents. The traditional method to measure indoor temperature is to place sensors at the target places, which is not only expensive but also inconvenient for indoor temperature investigation, especially for the investigation at community and city scale. In this study, a novel method was proposed to obtain the indoor temperatures remotely from outside the building through window opening area using and infrared camera. Compared with the traditional contact measurement method, the proposed remote sensing method could detect the indoor temperature without entering the room. Moreover, the infrared image could reflect the spatial distribution information of indoor temperature. To verify the feasibility and accuracy of this method, an experiment was conducted in a test room under heating, transitional, and cooling conditions with various window opening grades. It was found that the infrared images at the window opening area could reflect the spatial distribution of indoor temperature with an accuracy within 0.5 °C under stable heating and transitional conditions. In the fan coil cooling condition, however, although the infrared image can reflect the cold air flow pattern, the deviations between the infrared temperature and the measured room temperature exceeded 1.0 °C. The effect of window opening grade on the recognition accuracy kept within 0.5 °C.

摘要

研究房屋室内温度对于了解当地居民的舒适度、健康状况和居住条件至关重要。传统的室内温度测量方法是在目标地点放置传感器,这不仅成本高昂,而且对于室内温度调查来说不方便,特别是在社区和城市尺度的调查中。在本研究中,提出了一种新颖的方法,通过利用窗户开口面积并使用红外摄像机从建筑物外部远程获取室内温度。与传统的接触式测量方法相比,所提出的遥感方法无需进入房间即可检测室内温度。此外,红外图像可以反映室内温度的空间分布信息。为了验证该方法的可行性和准确性,在一个测试房间内进行了实验,实验条件包括加热、过渡和冷却,以及不同的窗户开口等级。结果发现,在稳定加热和过渡条件下,窗户开口区域的红外图像能够反映室内温度的空间分布,精度在0.5°C以内。然而,在风机盘管冷却条件下,尽管红外图像可以反映冷空气流动模式,但红外温度与实测室温之间的偏差超过了1.0°C。窗户开口等级对识别精度的影响保持在0.5°C以内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0f5/7615513/09fe097e26b1/EMS192522-f001.jpg

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