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Optimization study of return vent height for an impinging jet ventilation system with exhaust/return-split configuration by TOPSIS method

机译:TOPSIS方法用排气/回流配置冲击喷射通风系统返回通风高度的优化研究

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摘要

For impinging jet ventilation (IJV) system, the energy efficiency is believed to be further improved by splitting the return vent from the exhaust device. However, how to properly set the return devices of IJV is unclear when it comes to a comprehensive consideration of the thermal comfort, indoor air quality (IAQ) and energy efficiency. In the present study, numerical simulations are performed to determine the thermal comfort indices (draught comfort (PD) and temperature gradient between the head and ankle levels (Delta T)), IAQ indices (air change efficiency (ACE) and contaminant removal efficiency (epsilon)) and energy efficiency index (eta) for an IJV system with return outlet height (H) ranged from the ceiling to the floor level. The technique for order preferences by similarity to an ideal solution (TOPSIS) method is employed to determine the optimal return vent height by considering these performance evaluation indices simultaneously. The results indicate that when the H increases, the values of Delta T and eta decrease, while the values of PD, ACE and epsilon increase. An optimal range of H (1.2-1.5 m above the floor) is recommended for the best overall performance of IJV. Moreover, a comprehensive graph of H is displayed in this paper, which could provide directions for optimizing the positions of exhaust and return devices.
机译:为了撞击喷射通风(IJV)系统,据信通过分离排气装置的返回通风口进一步改善能量效率。但是,如何正确设置IJV的返回设备尚不清楚何时旨在全面考虑热舒适性,室内空气质量(IAQ)和能效。在本研究中,执行数值模拟以确定热舒适指数(舒适性(Pd)和头部和脚踝水平之间的温度梯度(ΔT)),IAQ指数(空气变化效率(ACE)和污染物去除效率( epsilon))和具有返回出口高度(h)的IJV系统的能效指数(ETA)从天花板到楼层。通过相似于理想解决方案(TOPSIS)方法的顺序偏好技术来通过同时考虑这些性能评估指数来确定最佳返回通风高度。结果表明,当H增加时,Delta T和ETA的值减少,而PD,ACE和epsilon的值增加。建议为IJV的最佳整体性能(楼层上方1.2-1.5米以上)的最佳范围(1.2-1.5米)。此外,本文显示了综合图的H,其可以提供优化排气和返回装置的位置的方向。

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