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ANALYTICAL INVESTIGATION OF AIRFLOW PATTERNS WITHIN A PAPER MACHINE HALL

机译:造纸机房内气流模式的分析研究

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摘要

The results of field measurements conducted in the Umka Cardboard Mill hall indicate a certain potential for heat recovery (approx. 4430 kW) in the air accumulated below the hall ceiling and extracted by the ventilation system. Analytical investigation is carried out for finding out the most favourable locations for heat exchangers' intake connections. Heat exchangers are to be used for waste heat recovery. Focus is laid on determining the convection flow rates along the vertical surfaces of the machine, as well as on defining the characteristics of the thermal plumes created above the machine. These characteristics are calculated according to the plume theory, introducing a virtual point source instead of the real source dimensions. The results of mass and heat balance of the hall are also presented in the paper. The same method can be applied in other paper mills and similar industry premises, where large flat machine surfaces are common. The investigation confirms the assumption that the plume formed above the heat exchangers in the coating drying section is the hottest and with considerable high airflow rate (6720 m /h above the hottest heat exchanger). It reaches the ceiling level and spreads horizontally, penetrating the nearby sections along the hall. Therefore, it is suggested that this airflow is the most suitable for heat recovery.
机译:在Umka纸板厂大厅进行的现场测量结果表明,在大厅天花板下方积聚并由通风系统抽出的空气中,有一定的热回收潜力(约4430 kW)。进行了分析研究,以找出热交换器入口连接的最佳位置。热交换器将用于废热回收。重点放在确定沿机器垂直表面的对流流速,以及确定在机器上方产生的热羽流的特性。这些特征是根据羽流理论计算的,引入了虚拟点源而不是实际源尺寸。本文还介绍了大厅的质量和热平衡的结果。相同的方法可用于其他造纸厂和类似的工业场所,在这些工厂中,大型平整的机器表面很常见。研究证实了这样的假设,即在涂层干燥区的热交换器上方形成的烟流是最热的,并且具有相当高的气流速率(比最热的热交换器高6720 m / h)。它到达天花板并水平扩展,穿过大厅附近的部分。因此,建议该气流最适合热回收。

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