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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Discharge current of water electrospray with electrical conductivity under high-voltage and high-flow-rate conditions
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Discharge current of water electrospray with electrical conductivity under high-voltage and high-flow-rate conditions

机译:在高压和高流量速率条件下,电导率的水电喷雾的放电电流

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摘要

Recently, several attempts have been made to implement electrospray for electrostatic precipitators (EPs) to reduce water consumption and prevent dust from being rescattered from dry EPs. In particular, the electrospray droplet size in EPs should be sufficiently large to collect dust in the exhaust gas flow, which requires a considerably larger electrospray flow rate than that required for typical applications. In addition, in the case of water electrospray, a high supply voltage is required because of its high surface tension. In this study, the characteristics of water-based electrospray were investigated under a high voltage and high flow rate. Three types of fluids-distilled water, tap water, and saline solution-were used to test for different conductivities under an electric charge with a negative current. The corona discharge and spray trajectories were visualized to determine the spray stability. To verify the influence of the spray current, the waveform of the electrospray was also analyzed under both dry- and wet-spray conditions. From this comparison, a portion of the spray current was estimated out of the total discharge current, which is the sum of the corona discharge and the spray current. The flow rate and voltage of the test were limited at 20 mL/min and -50 kV, respectively. In contrast with previous low flow rate studies, our results showed that the discharge current increased rapidly under flow rates above 6 mL/min, leading to arc discharge. Thus, it is important to adjust the flow and conductivity to guarantee stable and efficient water-based electrosprays.
机译:最近,已经进行了几次尝试为静电除尘器(EPS)实施电气喷雾,以减少耗水量,防止灰尘从干燥的EPS中捕获灰尘。特别地,EPS中的电喷雾液滴尺寸应该足够大以收集废气流中的灰尘,这需要比典型应用所需的电气喷雾流量相当大的电喷雾流量。另外,在水电喷雾的情况下,由于其高表面张力,因此需要高电源电压。在该研究中,在高电压和高流速下研究了水基电喷雾的特性。使用三种类型的流体蒸馏水,自来水和盐水溶液 - 用于在具有负电流的电荷下进行不同的导电性。可视化电晕放电和喷涂轨迹以确定喷涂稳定性。为了验证喷雾电流的影响,还在干燥和湿喷雾条件下分析电喷雾的波形。从该比较来看,估计喷射电流的一部分从总放电电流估计,这是电晕放电和喷射电流的总和。测试的流速和电压分别限制为20ml / min和-50kV。与先前的低流速研究相比,我们的结果表明,放电电流在6毫升/分钟的流速下迅速增加,导致电弧放电。因此,重要的是要调节流动和电导率,以保证稳定且有效的水基电喷雾。

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