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Buildings research using infrared imaging radiometers with laboratory thermal chambers

机译:建筑物研究使用具有实验室热室的红外成像辐射仪

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Infrared thermal imagers are used at Lawrence Berkeley National Laboratory to study heat transfer through components of building thermal envelopes. Two thermal chambers maintain steady-state heat flow through test specimens under environmental conditions for winter heating design. Infrared thermography is used to map surface temperatures on the specimens' warm side. Features of the quantitative thermography process include use of external reference emitters, complex background corrections, and spatial location markers. Typical uncertainties in the data are plus or minus 0.5 degrees Celsius and 3 mm. Temperature controlled and directly measured external reference emitters are used to correct data from each thermal image. Complex background corrections use arrays of values for background thermal radiation in calculating temperatures of self-viewing surfaces. Temperature results are used to validate computer programs that predict heat flow including Finite-Element Analysis (FEA) conduction simulations and conjugate Computational Fluid Dynamics (CFD) simulations. Results are also used to study natural convection surface heat transfer. Example data show the distribution of temperatures down the center lines of an insulated window.
机译:红外线热成像仪用于劳伦斯伯克利国家实验室,通过建筑热封的组件来研究传热。两种热腔室通过在冬季加热设计的环境条件下通过试样保持稳态热流。红外热成像用于映射样品暖侧的表面温度。定量热成像过程的特征包括使用外部参考发射器,复杂的背景校正和空间位置标记。数据中的典型不确定性是加号或减去0.5摄氏度和3毫米。温度控制和直接测量的外部参考发射器用于从每个热图像校正数据。复杂的背景校正在计算自平面表面的温度时使用值的值阵列进行背景热辐射。温度结果用于验证预测热流的计算机程序,包括有限元分析(FEA)传导模拟和共轭计算流体动力学(CFD)模拟。结果还用于研究自然对流表面传热。示例数据显示了绝缘窗口中央线的温度的分布。

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