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Effect of induced airflow on the surface static pressure of pleated fabric filter cartridges during pulse jet cleaning

机译:脉冲喷射清洁过程中诱导气流对打褶织物滤筒表面静压力的影响

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摘要

Filter cartridges with higher pleat ratios and larger filter surfaces are often cleaned incompletely because of the great variation in the static pressure distribution along the surface of filter cartridges during the pulse jet cleaning process. This study examined the static pressure distribution of filter cartridges and attempted to reduce the incidence of incomplete cleaning, particularly at the top of a filter cartridge, where less static pressure could cause systematic unstable operations. Pressure loss and static pressure behavior were observed across pleated filter cartridges in a dust collector during the pulse jet cleaning process. The instantaneous pressure drops of pleated filters were measured, and filter aging over time was recorded. The pressure drops of pleated filters with induced airflows are less significant than those without induced airflows. The static pressure and the continuous pressure time on the filter cartridges surfaces were obtained using a pressure transducer. The induced airflow was used to alter the static pressure distribution along the filter cartridge surface. The air axial velocity gradually decreased from the supersonic induced nozzle and through the air difluser. Otherwise, radial velocity increased before encountering the filter cartridge surface, and the dynamic pressure was quickly converted into static pressure at the top of the filter cartridge before being transported to the middle of the filter cartridge and then immediately to the bottom. Sometimes, partial airflow moved into the filter cartridges and rebounded from the bottom of the filter cartridges, thereby forming partial static pressure at the bottom Thus, the static pressure decreased from the top of the filter cartridge to the bottom. The experimental results show that the static pressure at the top area of the filter cartridges is 23-17 kPa and the static pressure at the bottom area of the filter cartridges is 4.7-1.6 kPa via the operational time with the 0.6 MPa tank pressure in our experiment The measured results are in good agreement with our photos. This variation resolved the cleaning difficulty at the top of the filter cartridge and maintained the entire systematic sustainable operation.
机译:由于在脉冲喷射清洁过程中沿滤筒表面的静压分布变化很大,因此通常会不完全清洁具有较高褶皱比和较大过滤面积的滤筒。这项研究检查了滤筒的静压分布,并试图减少不完全清洁的发生率,尤其是在滤筒顶部的情况下,这种情况会降低静压,从而可能导致系统的不稳定运行。在脉冲喷射清洁过程中,在集尘器中打褶的滤筒上观察到压力损失和静压行为。测量打褶过滤器的瞬时压降,并记录过滤器随时间的老化情况。具有诱导气流的打褶过滤器的压降比没有诱导气流的打褶的压降小。使用压力传感器获得滤筒表面的静压力和连续压力时间。诱导的气流用于改变沿滤筒表面的静压分布。空气轴向速度从超音速吸嘴并通过空气扩散器逐渐降低。否则,径向速度会在遇到滤筒表面之前增加,并且动压会在滤筒顶部迅速转化为静压,然后再传输到滤筒中间,然后立即转移到底部。有时,部分气流进入滤芯并从滤芯的底部反弹,从而在底部形成部分静压。因此,静压从滤芯的顶部到底部减小。实验结果表明,在我们的工作时间为0.6 MPa的情况下,经过操作时间,滤芯顶部的静压力为23-17 kPa,滤芯底部的静压力为4.7-1.6 kPa。实验测量结果与我们的照片非常吻合。这种变化解决了滤筒顶部的清洁困难,并保持了整个系统的可持续运行。

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