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    • 2. 发明申请
    • METHOD OF OPERATING AN ELECTROSTATIC AIR CLEANING DEVICE
    • 静电空气清洁装置的运行方法
    • US20080030920A1
    • 2008-02-07
    • US11612270
    • 2006-12-18
    • Igor KrichtafovitchVladimir Gorobets
    • Igor KrichtafovitchVladimir Gorobets
    • B03C3/08B03C3/12
    • B03C3/47B03C3/08Y10S55/39
    • A method of operating an electrostatic fluid accelerating device includes applying a voltage to a plurality of corona electrodes and a plurality of complementary electrodes so as to generate a corona discharge to thereby propel an intervening fluid in a desired fluid flow direction. A direction of the fluid in a region adjacent a protuberant portion of each of said complementary electrodes is altered to create a turbulent fluid flow in the regions adjacent said protuberant portion. The fluid flow is propelled away from repelling electrodes and toward the complementary electrodes, each of the repelling electrodes having a substantially planar portion and at least one protuberant portion extending outwardly in a lateral direction substantially perpendicular to the desired fluid-flow direction.
    • 一种操作静电流体加速装置的方法包括向多个电晕电极和多个互补电极施加电压,以便产生电晕放电,从而在期望的流体流动方向上推动介入的流体。 每个所述互补电极的突起部分附近的区域中的流体的方向改变,以在邻近所述突出部分的区域中产生湍流流体流。 流体流动被推离离开排斥电极并且朝向互补电极,每个排斥电极具有基本上平面的部分和至少一个沿大致垂直于期望的流体流动方向的横向方向向外延伸的突出部分。
    • 3. 发明申请
    • Electrostatic air cleaning device
    • 静电空气净化装置
    • US20050150384A1
    • 2005-07-14
    • US10752530
    • 2004-01-08
    • Igor KrichtafovitchVladimir Gorobets
    • Igor KrichtafovitchVladimir Gorobets
    • B03C3/08B03C3/47B03C3/01
    • B03C3/47B03C3/08Y10S55/39
    • An electrostatic air cleaning device includes an array of electrodes. The electrodes include corona electrodes connected to a suitable source of high voltage so as to generate a corona discharge. Laterally displaced collecting electrodes include one or more bulges that have aerodynamic frontal “upwind” surfaces and airflow disrupting tailing edges downwind that create quite zones for the collection of particulates removed from the air. The bulges may be formed as rounded leading edges on the collecting electrodes and/or as ramped surfaces located, for example, along a midsection of the electrodes. Repelling electrodes positioned between pairs of the collecting electrodes may include similar bulges such as cylindrical or semicylindrical leading and/or trailing edges.
    • 静电空气净化装置包括电极阵列。 电极包括连接到合适的高电压源的电晕电极,以产生电晕放电。 横向收集的电极包括一个或多个凸起,其具有空气动力学正面“逆风”表面,并且气流破坏后缘的尾部边缘,从而产生用于收集从空气中除去的微粒的相当区域。 凸起可以形成为收集电极上的圆形前缘和/或形成为例如位于电极的中部的倾斜表面。 位于收集电极对之间的排斥电极可以包括类似的凸起,例如圆柱形或半圆柱形的前缘和/或后缘。
    • 4. 发明申请
    • Electrostatic fluid accelerator for and a method of controlling fluid flow
    • 静电流体促进剂和控制流体流动的方法
    • US20070046219A1
    • 2007-03-01
    • US11437828
    • 2006-05-22
    • Igor KrichtafovitchVladimir Gorobets
    • Igor KrichtafovitchVladimir Gorobets
    • H05H7/00
    • B03C3/017B03C3/08B03C3/12B03C3/368B03C3/41B03C3/68B03C2201/04B03C2201/14H05H1/48H05H5/00H05H2001/481
    • An electrostatic fluid acceleration and method of operation thereof includes at least two synchronously powered stages with final or rear-most electrodes of one stage maintained at substantially the same instantaneous voltage as the immediately adjacent initial or forward-most electrodes of a next stage in an airflow direction. A single power supply or synchronized and phase controlled power supplies provide high voltage power to each of the stages such that both the phase and amplitude of the electric power applied to the corresponding electrodes are aligned in time. The frequency and phase control allows neighboring stages to be closely spaced at a distance of from 1 to 2 times an inter-electrode distance within a stage, and, in any case, minimizing or avoiding production of a back corona current from a corona discharge electrode of one stage to an electrode of a neighboring stage. Corona discharge electrodes of neighboring stages may be horizontally aligned, complementary collector electrodes of all stages being similarly horizontally aligned between and horizontally offset from the corona discharge electrodes.
    • 静电流体加速及其操作方法包括至少两个同步动力的级,其中一级的最终或最后电极保持在与气流中的下一级的紧邻的初始或最前端的电极基本相同的瞬时电压 方向。 单个电源或同步和相位控制的电源为每个级提供高电压功率,使得施加到相应电极的电功率的相位和幅度都及时对准。 频率和相位控制允许相邻级在一级内的电极间距离的1至2倍的距离内紧密间隔,并且在任何情况下,最小化或避免从电晕放电电极产生后电晕电流 一级到相邻级的电极。 相邻级的电晕放电电极可以水平对准,所有级的互补的集电极电极类似地在电晕放电电极之间水平对准并且水平偏移。