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Experimental investigation of the influence of the air jet trajectory on convective heat transfer in buildings equipped with air-based and radiant cooling systems

机译:装有空气基和辐射冷却系统的建筑物中空气射流轨迹对对流传热影响的实验研究

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The complexity and diversity of airflow in buildings make the accurate definition of convective heat transfer coefficients (CHTCs) difficult. In a full-scale test facility, the convective heat transfer of two cooling systems (active chilled beam and radiant wall) has been investigated under steady-state and dynamic conditions. With the air-based cooling system, a dependency of the convective heat transfer on the air jet trajectory has been observed. New correlations have been developed, introducing a modified Archimedes number to account for the air flow pattern. The accuracy of the new correlations has been evaluated to +/- 15%. Besides the study with an air-based cooling system, the convective heat transfer with a radiant cooling system has also been investigated. The convective flow at the activated surface is mainly driven by natural convection. For other surfaces, the complexity of the flow and the large uncertainty on the CHTCs make the validation of existing correlations difficult.
机译:建筑物中气流的复杂性和多样性使对流传热系数(CHTC)的准确定义变得困难。在全面测试设备中,已经研究了两种冷却系统(主动冷梁和辐射壁)的对流传热,它们分别处于稳态和动态条件下。利用基于空气的冷却系统,已经观察到对流热传递对空气喷射轨迹的依赖性。已经开发了新的相关性,引入了修改后的阿基米德数以说明气流模式。新关联的准确性已评估为+/- 15%。除了对基于空气的冷却系统进行研究以外,还对采用辐射冷却系统的对流换热进行了研究。活化表面上的对流主要由自然对流驱动。对于其他表面,流程的复杂性和CHTC的不确定性很大,因此难以验证现有的相关性。

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