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    • 1. 发明授权
    • Method and apparatus for conducting sonochemical reactions and processes
using hydrodynamic cavitation
    • 使用水动力空化进行声化学反应和方法的方法和装置
    • US6035897A
    • 2000-03-14
    • US364737
    • 1999-08-02
    • Oleg Vyacheslavovich Kozyuk
    • Oleg Vyacheslavovich Kozyuk
    • B01F5/06B01J19/00B01J19/10B01J19/24F15D55/00
    • B01F5/0661B01F5/0682B01F5/0688B01J19/008B01J19/10B01J19/2415B01J2219/00162B01J2219/00164B01J2219/0877
    • A method and apparatus for conducting sonochemical reactions and processes using in large scales liquid medium volumes is disclosed which passes a hydrodynamic liquid flow at a velocity through a flow through channel internally containing at least one element to produce a local constriction of the hydrodynamic liquid flow. The velocity of the liquid flow in the local constriction is at least 16 m/sec. A hydrodynamic cavitation cavern is created down stream of the local constriction, thereby generating cavitation bubbles. The cavitation bubbles are shifted with the liquid flow to an outlet from the flow through channel and the static pressure of the liquid flow is increased to at least 0.85 kg/cm.sup.2. The cavitation bubbles are then collapsed in the elevated static pressure zone, thereby initiating the sonochemical reactions and processes. At least one element may either be a bluff body, which produces a local constriction of the hydrodynamic liquid flow, or a baffle, which contains at least one transit channel to produce the local constriction of the liquid flow.
    • 公开了一种用于进行超声波化学反应的方法和装置,其使用大规模的液体介质体积,其使流体动力学液体流以速度通过内部包含至少一个元素的流动通道,以产生流体动力学液体流的局部收缩。 局部收缩中的液体流动速度至少为16m / sec。 在局部收缩下游产生流体动力学空穴穴,从而产生空化气泡。 气蚀气泡随着液体流动而流向通过通道的出口,并且液体流动的静压力增加至至少0.85kg / cm 2。 然后,空化气泡在升高的静态压力区域中塌陷,从而引发声化学反应和过程。 至少一个元件可以是非流线形体,其产生流体动力学液体流的局部收缩,或者包含至少一个运输通道以产生液体流的局部收缩的挡板。
    • 2. 发明授权
    • Flow regulator
    • 流量调节器
    • US6152182A
    • 2000-11-28
    • US291155
    • 1999-04-12
    • Hermann GretherChristoph Weis
    • Hermann GretherChristoph Weis
    • E03C1/084E03C1/08F15D55/00
    • E03C1/08
    • A flow regulator (1) is provided having a flow dispersion device (5) after which in the flow direction (Pfi) a flow regulation device (8) is connected. This flow regulation device (8) has several deflectors arranged in the flow path crosswise to the flow direction (Pf1). For the flow regulator (1) according to the invention it is characteristic, that the deflectors (9) are constructed in a pin or ring shape and set apart at a distance from each other, are connected with at least one mounting part (3, 4) as a single piece, that the at least one mounting part (3, 4) is constructed as an injection molded plastic part with its molded-on deflectors (9) as a single piece, and that the at least one mounting part (3, 4) can be inserted into a flow regulator housing or is constructed as a flow regulator housing (2). The flow regulator (1) according to the invention can be manufactured in a cost-effective manner at a small manufacturing expense, such that it also ensures a noise development in accordance with the standard, even at high liter outputs, and is not susceptible to a calcification of its flow regulation device (8).
    • 提供了具有流量分配装置(5)的流量调节器(1),之后在流动方向(Pfi)上连接有流量调节装置(8)。 该流量调节装置(8)具有布置在与流动方向(Pf1)相交的流动路径中的多个偏转器。 对于根据本发明的流量调节器(1),其特征在于,偏转器(9)构造成销或环形并且彼此间隔一定距离,与至少一个安装部分(3, 4)作为单件,所述至少一个安装部分(3,4)被构造为注射成型的塑料部件,其成型的偏转器(9)为单件,并且所述至少一个安装部件 3,4)可以被插入到流量调节器壳体中或构造为流量调节器壳体(2)。 根据本发明的流量调节器(1)可以以低成本的方式以小的制造成本制造,使得即使在高输出时也可以确保根据标准的噪声发展,并且不易于 其流量调节装置(8)的钙化。
    • 3. 发明授权
    • Vortex flow sensor with a turbulence grid
    • 具有湍流网格的涡街流量传感器
    • US5922970A
    • 1999-07-13
    • US907694
    • 1997-08-08
    • Frank Ohle
    • Frank Ohle
    • G01F1/32F15D55/00
    • G01F1/3209G01F1/3218
    • This vortex flow sensor (1) for measuring the flow velocity and/or the volumetric flow rate of a fluid flowing in a measuring tube (2) has an improved measurement accuracy according to the following design: A bluff body (4) is mounted in the measuring tube and designed to generate Karman vortices; a vortex-sensing element (5) is responsive to vortex-induced pressure fluctuations; and a turbulence grid (6) is mounted upstream of the bluff body and has openings with at least partially differing cross sections. The turbulence grid cn be circular and formed by radial members and spaced-apart concentric circular members. The turbulence grid can have a thickness D in the direction of flow and be located at a distance x from the bluff body, said thickness and said distance satisfying the inequality: 20D
    • 用于测量在测量管(2)中流动的流体的流速和/或体积流量的该涡流流量传感器(1)具有根据以下设计的改进的测量精度:将非流线形体(4)安装在 测量管,设计产生K + E,acu a + EE rm + E,acu a + EE n旋涡; 涡流感测元件(5)响应于涡流引起的压力波动; 并且湍流格栅(6)安装在非流线形体的上游,并且具有至少部分不同横截面的开口。 湍流网格cn为圆形并由径向构件和间隔开的同心圆形构件形成。 湍流栅格可以在流动方向上具有厚度D,并且位于距离非流线形体的距离x处,所述厚度和所述距离满足不等式:20D
    • 5. 发明授权
    • Exhaust pipe extension
    • 排气管延伸
    • US5884666A
    • 1999-03-23
    • US59585
    • 1998-04-14
    • Nikia Deshawn Johnson
    • Nikia Deshawn Johnson
    • F01N13/08F15D55/00F01N1/18
    • F01N13/082F01N2290/04
    • An exhaust pipe extension having movable fan blades mounted on a center axle which blades and part of the axle extend into an opened vehicle exhaust pipe. The other end of the same axle is fixed connected to a rotatable end decorative visual spinner within a hollow housing. To provide for individuality the visual spinner can take on a variety of different sizes and shapes. The spinner rotates in unison with the propelled fan blades which blades are driven by the vehicle's exhaust gases. Appropriate easily detachable mounts are used to fix the housing and its axle and the fan blade members to the vehicle's exhaust pipe to provide for an attractive add-on accessory.
    • 排气管延伸部,其具有安装在中心轴上的可动风扇叶片,所述叶片和所述轴的一部分延伸到打开的车辆排气管中。 同一轴的另一端固定连接到空心壳体内的可旋转端装饰视觉旋转器。 为了提供个性化,视觉旋转器可以承载各种不同的尺寸和形状。 旋转器与推进的风扇叶片一起旋转,叶片由车辆的废气驱动。 使用适当的容易拆卸的安装件将壳体及其轴和风扇叶片构件固定到车辆的排气管,以提供有吸引力的附加附件。