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    • 1. 发明授权
    • Determination of permeability from damping
    • 阻尼导磁率的测定
    • US07930926B2
    • 2011-04-26
    • US12113937
    • 2008-05-01
    • Paul Michaels
    • Paul Michaels
    • G01N15/08
    • G01N15/0893G01N15/0826
    • Permeability of a fluid through a saturated material is determined by measuring the dynamic response of that saturated material to shaking vibrations and/or shear wave propagation, and then mapping the dynamic response (preferably, viscoelastic stiffness and damping properties) to an invented model (called “KVMB”) that yields the property of permeability. The preferred embodiments may use shear waves, inertial effects, and/or transmission effects, but preferably not compression, to force fluids through the pores. The mapping preferably predicts two possible mappings to permeability, coupled and uncoupled. The preferred methods are both internally consistent and directly related to known laws of physics rather than dependent on empirical calibrations. In use, for example, one may use a porosity log (conventional neutron or sonic) and recordings of SH-waves to obtain damping ratio, followed by locating of the damping ratio on a KVMB map that depends on porosity, and choosing of one of the two possible permeabilities indicated by the mapping, wherein the best choice is typically the largely coupled case.
    • 流体通过饱和材料的渗透性通过测量该饱和材料对振动振动和/或剪切波传播的动态响应,然后将动态响应(优选地,粘弹性刚度和阻尼特性)映射到发明模型(称为 “KVMB”),其产生渗透性的性质。 优选的实施方案可以使用剪切波,惯性效应和/或透射效应,但优选不压缩,以迫使流体通过孔。 映射优选地预测两个可能的对渗透性的耦合和解耦映射。 优选的方法在内部一致,并且与已知的物理定律直接相关,而不依赖于经验校准。 例如,在使用中,可以使用孔隙度测井(常规中子或声波)和SH波的记录来获得阻尼比,然后将阻尼比定位在取决于孔隙率的KVMB图上,并选择 由映射表示的两个可能的渗透性,其中最佳选择通常是很大的耦合情况。
    • 6. 发明申请
    • End cap for segmented stator
    • 分段定子端盖
    • US20050212377A1
    • 2005-09-29
    • US10806560
    • 2004-03-23
    • Weirong WangJohn RosePaul MichaelsMark CarrierJason Jurkowski
    • Weirong WangJohn RosePaul MichaelsMark CarrierJason Jurkowski
    • H02K1/14H02K3/32H02K3/38H02K3/52H02K21/26H02K21/38
    • H02K3/522H02K1/148H02K3/325Y10T29/49009
    • A stator for an electromagnetic machine includes a plurality of discrete and individually wound stator segments having end caps positioned on the segments. The end caps have legs for positioning the end cap on the segments with an interference fit. The end caps have angled surfaces to facilitate winding of wire on the segments. The end caps have male and female couplings that mate together to couple adjacent segments together. The end caps have fingers and slots for aligning the segments on substantially the same plane. The end caps have wire isolation features, including hooks, shelves and ledges, for separating the interconnect wires routed on the stator to electrically interconnect the segments. The segments include scalloped contours on their outer edges for draining oil, and the end caps have passages for draining oil.
    • 一种用于电磁机器的定子包括多个离散且单独缠绕的定子段,其具有位于所述段上的端盖。 端盖具有用于将端盖定位在具有过盈配合的段上的腿。 端盖具有成角度的表面,以便于将线缠绕在段上。 端盖具有连接在一起以将相邻节段连接在一起的阳和阴联轴器。 端盖具有用于将片段在基本相同的平面上对准的手指和狭槽。 端盖具有电线隔离特征,包括钩,搁架和凸缘,用于分离在定子上布线的互连线,以电连接该段。 这些段在其外边缘上包括扇形轮廓,用于排出油,并且端盖具有用于排出油的通道。
    • 7. 发明申请
    • Dual-Chambered Shot Glass
    • 双重射击玻璃
    • US20130134169A1
    • 2013-05-30
    • US13668666
    • 2012-11-05
    • Paul Michaels
    • Paul Michaels
    • A47G19/22
    • A47G19/2205
    • A dual-chambered beverage container in fthe form of a shot glass. The interior of the glass is bisected via a hinged divider flap, creating two separate chambers within the glass. The upper chamber holds a first beverage, preferably a shot of hard liquor, while the bottom chamber holds a volume of a second beverage, such as soda or juice. When the shot glass is in a resting position, the divider flap is closed, segregating the beverages in their respective chambers. A user begins to drink the first beverage, the hinged diver flap will slowly swing open, allowing the second beverage to flow out of the bottom chamber, through the upper chamber, and into the user's mouth. Thus the user experiences the taste of the shot of hard liquor only briefly before consuming the chaser beverage.
    • 一种双层饮料容器,以镜片玻璃的形式。 玻璃的内部通过铰链分隔板平分,在玻璃内部形成两个独立的室。 上室容纳第一饮料,优选地是硬液体喷射,而底部容纳一定体积的第二饮料,例如苏打或果汁。 当抛丸玻璃处于静止位置时,分隔板关闭,将饮料分离在各自的室中。 用户开始喝第一种饮料,铰接的潜水员挡板将缓慢地摆动开放,允许第二种饮料从底部腔室中流出,通过上部腔室,并进入使用者的嘴部。 因此,用户在消费追逐饮料之前仅短暂地体验到硬液体喷射的味道。