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Robust evaluation method of thermal deviation of air distribution

机译:空气分布热偏差的鲁棒评估方法

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Air distribution (e.g., mixing ventilation) is widely used to provide indoor thermal comfort. The thermal deviation is defined as the deviation between the thermal condition and thermal preference, and a thermal deviation closer to zero indicates a more comfortable thermal environment. The thermal deviation is significantly affected by uncertainties in the thermal preference and cooling load. However, the conventional design method of air distribution evaluates the thermal deviation in a deterministic manner, which could result in an improper design with poor thermal comfort. This study innovatively proposes a robust thermal deviation evaluation method and uses it for the design optimization of air distribution. Monte Carlo simulations are employed to treat uncertainties in the thermal preference and cooling load. From the Monte Carlo simulations, the thermal deviation D-0.95 is quantified with a confidence level of 0.95. The thermal deviation D-0.95 should be minimized to optimize the design of air distribution robustly. Tests based on experiments of an energy efficient air distribution, i.e., stratum ventilation, have been conducted to validate the evaluation method proposed. Results show that the robust design based on the evaluation method proposed can ensure thermal comfort, while the conventional design risks thermal discomfort due to the uncertainties. Compared with the robustly optimized variable-air-volume system of stratum ventilation, the robustly optimized constant-air-volume system of stratum ventilation improves thermal comfort by 8.5% with the thermal deviation D-0.95 reduced from 0.682 to 0.624. Therefore, the evaluation method proposed contributes to designing and comparing air distributions robustly for thermal comfort improvement.
机译:空气分配(例如,混合通风)被广泛用于提供室内热舒适性。热偏差定义为热条件和热偏好之间的偏差,并且接近零的热偏差表示更舒适的热环境。热偏差受热偏好和冷却负载的不确定性影响很大。但是,传统的空气分配设计方法会确定性地评估热偏差,这可能会导致设计不当,并降低热舒适度。这项研究创新地提出了一种鲁棒的热偏差评估方法,并将其用于空气分配的设计优化。蒙特卡洛模拟用于处理热偏好和冷却负荷中的不确定性。根据蒙特卡洛模拟,热偏差D-0.95的置信度为0.95。应该最小化热偏差D-0.95,以稳健地优化空气分配的设计。已经进行了基于节能空气分配实验的测试,即地层通风,以验证所提出的评估方法。结果表明,基于所提出的评估方法的鲁棒设计可以确保热舒适性,而传统设计由于不确定性而具有热不适感。与稳健优化的分层通风可变风量系统相比,稳健优化的恒定通风量分层通风系统将热舒适度提高了8.5%,而热偏差D-0.95从0.682降低到0.624。因此,提出的评估方法有助于稳健地设计和比较空气分布,以改善热舒适性。

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