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首页> 外文期刊>Journal of Electrostatics >Characterization of electrohydrodynamic (EHD) flow in electrostatic precitators (ESP) by numerical simulation and quantitative vortex analysis
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Characterization of electrohydrodynamic (EHD) flow in electrostatic precitators (ESP) by numerical simulation and quantitative vortex analysis

机译:用数值模拟和定量涡流分析表征静电方法(EVD)流动(EVD)流量(ESP)的特征

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AbstractElectrohydrodynamic (EHD) flow is a very common physical phenomenon in industry application, such as corona induced electrical pump and electrostatic precipitator (ESP). There are many available researches reporting investigations of the EHD flow patterns by numerical method and qualitatively analyzing the flow characteristics. In present study, the quantitative method was adopted to analyze EHD flow in different ESP types. This study utilized a hybrid method using the Finite Element Method (FEM) to simulate the ionized electric field and the Finite Volume Method (FVM) to predict the EHD flow in ESP simulation. Based on the validated model, the EHD flow patterns in several widely used types of ESP were investigated numerically. In previous studies, the EHD flow types were qualitatively classified by observing the vortex size and number. In present paper, the corona induced EHD flow was also analyzed quantitatively using the Qkubo-Weiss index. The results show that the flow vorticity was dominant in the area of the vortex center. In the interspace between vortexes, the flow deformation was dominant. The relationship between the EHD flow types and quantitative parameters (such as pressure drop, turbulence intensity and flow vortex index) was studied, too. In future, the concept of quantitative vortex indexes could be utilized in experimental, numerical or theoretical work and it would improve the existing research related to EHD flow.
机译:<![CDATA [ 抽象 电力流体动力学(EHD)流是工业应用中的一个非常常见的物理现象,如电晕诱导的电泵和静电除尘器(ESP)。有许多有用的研究通过数值方法报告了EHD流动模式的研究,并定性分析了流动特性。在本研究中,采用定量方法分析不同ESP类型的EHD流。本研究利用了使用有限元方法(FEM)的混合方法来模拟电离电场和有限体积法(FVM)来预测ESP模拟中的EHD流。基于经过验证的模型,在数值上进行了几种广泛使用类型的ESP中的EHD流动模式。在先前的研究中,通过观察涡流尺寸和数量来定性分类EHD流量。在本文中,使用Qkubo-Weiss指数,也分析了电晕诱导的EHD流程。结果表明,流动涡度在涡流中心的面积中占主导地位。在涡旋之间的间隙中,流动变形是显性的。研究了EHD流动类型与定量参数(如压降,湍流强度和流动涡流指数)之间的关系。将来,定量涡旋指标的概念可用于实验,数值或理论工作中,并改善与EHD流程相关的现有研究。

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