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    • 1. 发明申请
    • ROTARY-PISTON MACHINE
    • 旋转活塞机
    • WO2004113683A1
    • 2004-12-29
    • PCT/GB2004/002483
    • 2004-06-15
    • SEE, Richard
    • SEE, Richard
    • F01C3/02
    • F01C3/025F01C1/084F01C20/20F01C20/24
    • A rotary device for use with compressible fluids comprises a first rotation element mounted to rotate about a first axis and a casing having a surface enclosing at least a part of the first rotation element. An elongate cavity of varying cross sectional area is defined between a surface of the first rotation element and the casing surface. The rotary device also comprises a number of second rotation elements mounted to rotate about respective second axes. Each second rotation element is mounted to project through the casing surface and cooperate with the first rotation element surface to divide the cavity into adjacent working portions. At least one on the Working portions defines a closed volume for a part of a cycle of the device. As the first and second rotation elements rotate, the volumes of the working portions vary. Each second rotation element comprises a number of projecting portions of varying radius about the respective second axis such that each projecting portion projects through the casing into the cavity by a varying amount to cooperate with the first rotation element surface.
    • 用于可压缩流体的旋转装置包括安装成围绕第一轴线旋转的第一旋转元件和具有包围第一旋转元件的至少一部分的表面的壳体。 在第一旋转元件的表面和壳体表面之间限定了具有不同横截面面积的细长空腔。 旋转装置还包括安装成围绕各自的第二轴线旋转的多个第二旋转元件。 每个第二旋转元件安装成突出穿过壳体表面并与第一旋转元件表面协作以将空腔分成相邻的工作部分。 工作部分中至少有一个为装置的一部分循环定义了一个封闭的体积。 当第一和第二旋转元件旋转时,工作部分的体积变化。 每个第二旋转元件包括多个相对于相应的第二轴线变化的半径的突出部分,使得每个突出部分通过壳体突出多个量的空腔以与第一旋转元件表面配合。
    • 2. 发明申请
    • ROTARY DEVICE
    • 旋转装置
    • WO2006043024A1
    • 2006-04-27
    • PCT/GB2005/003857
    • 2005-10-07
    • TURNSTILE TECHNOLOGY LIMITEDSEE, Richard
    • SEE, Richard
    • F01C1/344
    • F01C3/04F01C1/3441F01C1/3446F01C1/3448F01C1/46F01C21/106F04C2240/10F04C2240/20
    • Rotary devices for processing compressible fluids are disclosed, including compressors, vacuum pumps, expanders and internal combustion engines. The devices comprise first and second elements rotatable relative to each other about an axis of rotation. An elongate cavity of varying cross sectional area is defined around the axis of rotation between surfaces of the first and second elements, the first element having at least one slot formed therein at different angular positions. A cavity separating arrangement projects into the cavity in various places to separate the cavity into adjacent working portions, the volumes of which vary as the first and second elements rotate relative to each other. In various different cross sections of the cavity, dimensions of the cavity in perpendicular directions of the cavity both vary. In some devices, an aspect ratio of various different cross sections of the cavity remains within given limits. In some embodiments, cross sections of the cavity corresponding to maximum compression are circular, part-circular, tapered or square in shape.
    • 公开了用于处理可压缩流体的旋转装置,包括压缩机,真空泵,膨胀器和内燃机。 所述装置包括围绕旋转轴线相对于彼此旋转的第一和第二元件。 围绕第一和第二元件的表面之间的旋转轴线限定具有变化的横截面积的细长空腔,第一元件具有在不同角度位置处形成在其中的至少一个槽。 空腔分离装置在各种位置突出到空腔中以将空腔分离成相邻的工作部分,其中的体积随着第一和第二元件相对于彼此旋转而变化。 在空腔的各种不同横截面中,空腔的空腔的垂直方向的尺寸都是变化的。 在一些装置中,空腔的各种不同横截面的纵横比保持在给定的限度内。 在一些实施例中,对应于最大压缩的空腔的横截面为圆形,部分圆形,锥形或正方形。