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Evaluation of Pump Pulsation in Respirable Size-Selective Sampling: Part I. Pulsation Measurements

机译:可呼吸的尺寸选择性采样中泵脉动的评估:第一部分脉动测量

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摘要

Pulsations generated by personal sampling pumps modulate the airflow through the sampling trains, thereby varying sampling efficiencies, and possibly invalidating collection or monitoring. The purpose of this study was to characterize pulsations generated by personal sampling pumps relative to a nominal flow rate at the inlet of different respirable cyclones. Experiments were conducted using a factorial combination of 13 widely used sampling pumps (11 medium and 2 high volumetric flow rate pumps having a diaphragm mechanism) and 7 cyclones [10-mm nylon also known as Dorr-Oliver (DO), Higgins-Dewell (HD), GS-1, GS-3, Aluminum, GK2.69, and FSP-10]. A hot- wire anemometer probe cemented to the inlet of each cyclone type was used to obtain pulsation readings. The three medium flow rate pump models showing the highest, a midrange, and the lowest pulsations and two high flow rate pump models for each cyclone type were tested with dust-loaded filters (0.05, 0.21, and 1.25 mg) to determine the effects of filter loading on pulsations. The effects of different tubing materials and lengths on pulsations were also investigated. The fundamental frequency range was 22–110 Hz and the magnitude of pulsation as a proportion of the mean flow rate ranged from 4.4 to 73.1%. Most pump/cyclone combinations generated pulse magnitudes >10% (48 out of 59 combinations), while pulse shapes varied considerably. Pulsation magnitudes were not considerably different for the clean and dust-loaded filters for the DO, HD, and Aluminum cyclones, but no consistent pattern was observed for the other cyclone types. Tubing material had less effect on pulsations than tubing length; when the tubing length was 183 cm, pronounced damping was observed for a pump with high pulsation (>60%) for all tested tubing materials except for the Tygon Inert tubing. The findings in this study prompted a further study to determine the possibility of shifts in cyclone sampling efficiency due to sampling pump pulsations, and those results are reported subsequently.
机译:个人采样泵产生的脉动调节通过采样列的气流,从而改变采样效率,并可能使采集或监视无效。这项研究的目的是表征个人采样泵相对于不同可吸入旋风分离器入口处的标称流速产生的脉动。实验是使用13个广泛使用的采样泵(11个带隔膜机构的中型和2个高容量流量泵)和7个旋风分离器(10毫米尼龙,也称为Dorr-Oliver(DO),Higgins-Dewell( HD),GS-1,GS-3,铝,GK2.69和FSP-10]。使用固定在每种旋风分离器入口处的热线风速计探头获得脉动读数。使用粉尘负荷过滤器(0.05、0.21和1.25 mg)测试了每种旋风类型的三个中流量泵模型(分别显示最高,中档和最低脉动)和两个高流量泵模型,以确定过滤器上的脉动负载。还研究了不同管材和长度对脉动的影响。基本频率范围为22–110 Hz,脉动幅度(占平均流量的比例)为4.4%至73.1%。大多数泵/旋流器组合产生的脉冲幅度> 10%(59个组合中的48个),而脉冲形状变化很大。对于DO,HD和铝旋风除尘器而言,清洁和装满灰尘的过滤器的脉动幅度没有显着差异,但其他旋风除尘器未观察到一致的模式。管道材料对脉动的影响小于管道长度。当管道长度为183 cm时,对于所有测试的管道材料,除了Tygon Inert管道外,对于具有高脉动(> 60%)的泵都观察到明显的阻尼。这项研究中的发现促使进行了进一步的研究,以确定由于采样泵的脉动导致旋风采样效率发生变化的可能性,这些结果随后进行了报道。

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