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Heat source effects on thermal comfort for active chilled beam systems

机译:热源对主动冷梁系统的热舒适性的影响

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In this study, the effects of the configuration and strength of heat sources on thermal comfort are investigated in a mock-up room with an active chilled beam (ACB) system. Full-scale air temperature, speed, and humidity distributions are demonstrated. In addition, the uniformity of the distributions is evaluated. Several common thermal comfort indices, including the air diffusion performance index (ADPI), predicted mean vote (PMV), draft rate (DR), and vertical air temperature difference (VATD) are calculated and compared based on the experimental results. The results reveal that the heat sources increase the average air speed of the occupied zone. However, the air speed distribution is not significantly affected by the heat source configuration for a primary airflow rate of 32.2 L/s. In contrast, the heat source configuration has a notable impact on the temperature distribution. One humidity sensor is sufficient to measure the occupied zone humidity for ACB systems with no significant humidity source because the absolute humidity distributions are extremely uniform for all cases. The points outside the ADPI criteria (-1.7 degrees C T-ed + 1.1 degrees C and v 0.35m/s) are mostly because its air speed is greater than 0.35 m/s. PMV is reduced as the air speed increases. Thus, there is a higher risk of cold feeling at the ankel level where the air speed is relatively greater than other levels. The overall evaluation shows that symmetrical heat source placement results in better thermal comfort performance than asymmetrical heat sources.
机译:在这项研究中,在具有主动冷梁(ACB)系统的模型房中研究了热源的配置和强度对热舒适性的影响。演示了全面的空气温度,速度和湿度分布。另外,评估分布的均匀性。根据实验结果,计算并比较了几种常见的热舒适指数,包括空气扩散性能指数(ADPI),预测平均投票(PMV),吃水率(DR)和垂直空气温度差(VATD)。结果表明,热源提高了所占区域的平均风速。但是,对于32.2 L / s的主气流速率,热源配置不会显着影响空气速度分布。相反,热源配置对温度分布有显着影响。一个湿度传感器足以测量没有明显湿度源的ACB系统的占用区域湿度,因为在所有情况下绝对湿度分布都非常均匀。 ADPI标准之外的点(-1.7摄氏度

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