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首页> 外文期刊>Experiments in Fluids >Inducing gas flow and swirl in tubes using ionic wind from corona discharges
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Inducing gas flow and swirl in tubes using ionic wind from corona discharges

机译:利用电晕放电产生的离子风在管中诱导气流和涡流

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Air induction and rotation about the axis of a vertical tube is generated by an assembly of corona discharges between pinpoints and earthed electrodes, which induces a swirling ionic wind. The mechanism is elucidated and the geometrical configuration of the electric field lines of force is optimised by studying the deposition of charged particles on the earth electrodes, by numerical modelling of a simplified geometry and ultimately by maximising the measured tangential velocities. Upward convective flows of up to a litre per second are provided by an additional ionic wind pump at the base of the tube. With assemblies of up to three layers of six points each, tangential velocities of up to 3.3 m/s (≈900 rpm) are attained at the periphery, as recorded by small Pitot tubes. The concept, developed particularly for microgravity environments, appears suitable for adding a substantial centrifugal contribution to the operation of electrostatic precipitators and as a basis for further progress on electrical field-controlled burners.
机译:针尖和接地电极之间的电晕放电会产生空气感应和绕垂直管轴的旋转,这会引起涡动的离子风。通过研究带电粒子在接地电极上的沉积,简化几何形状的数值模型并最终通过最大化测得的切向速度,阐明了该机制并优化了电场力线的几何构型。管子底部的附加离子风泵可提供高达每秒升的向上对流。组装多达三层,每层六个点,如小皮托管所记录的,切向速度在外围达到3.3 m / s(≈900rpm)。专门为微重力环境开发的概念似乎适合为静电除尘器的运行增加实质性的离心作用,并作为电场控制燃烧器进一步发展的基础。

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