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Smart HVAC Systems - Adjustable Airflow Direction

机译:智能HVAC系统 - 可调节气流方向

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摘要

Enhancing the thermal comfort level of the occupants has been the subject of several research efforts focused on controlling the Heating, Ventilation and Air-Conditioning (HVAC) systems with the objective of higher occupant-thermal-comfort. It has been demonstrated that improving occupants' thermal comfort often leads to savings in energy consumption. Also there are numerous studies that have directly aimed to optimize the energy consumption of the HVAC system while keeping the occupants' thermal comfort within an acceptable range. In majority of the cases the level of control over the actions of the HVAC system is restricted to controlling the temperature set-point for the thermal zone. This study aims to explore the benefits of creating a more flexible HVAC system, which can lead to improvements in occupant thermal comfort and energy consumption of the HVAC system. The envisioned HVAC system will be capable of adjusting the direction of the airflow at each diffusor thereby producing a wider range of actions. In this study, a Computational Fluid Dynamic (CFD) simulation of a room was used as a proxy for the real-world environment, and the results of the CFD model were generalized through a Gaussian Process Regression (GPR) model to provide higher resolution data. The benefits of enabling the HVAC system to control the direction of airflow at the point of diffusion have been evaluated in terms of occupant's thermal comfort and reduction in energy consumption.
机译:增强乘员的热舒适程度一直是若干研究努力的主题,其专注于控制加热,通风和空调(HVAC)系统,其目的是较高的乘员热舒适性。已经证明,提高乘客的热舒适度通常会导致节约能耗。此外,还有许多研究直接旨在优化HVAC系统的能耗,同时将乘客的热舒适性保持在可接受的范围内。在大多数情况下,对HVAC系统的动作的控制水平仅限于控制热区的温度设定点。本研究旨在探讨创造更灵活的HVAC系统的好处,这可能导致HVAC系统的乘员热舒适度和能耗的改进。设想的HVAC系统将能够调节每个扩散器处的气流方向,从而产生更广泛的动作。在本研究中,将房间的计算流体动态(CFD)模拟用作真实世界环境的代理,并且通过高斯进程回归(GPR)模型来推广CFD模型的结果以提供更高的分辨率数据。在乘员的热舒适度和能耗降低方面,已经评估了使HVAC系统控制扩散点处的气流方向的好处。

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