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    • 1. 发明授权
    • Ultrasonic gas separator
    • 超声波气体分离器
    • US06210470B1
    • 2001-04-03
    • US08282847
    • 1994-07-28
    • Richard B. PhilipsRobert Kuklinski
    • Richard B. PhilipsRobert Kuklinski
    • B01D1900
    • B01D19/0078
    • Gas bubbles in a moving fluid are collected in a chamber alongside the conduit carrying the fluid. In a preferred embodiment, an ultrasonic transducer cooperates with a reflector to create a standing ultrasonic wave pattern that is oriented at an acute angle to the horizontal axis of fluid flow. Bubbles gather at the troughs between the waves and then move between the pressure waves in the downstream direction to be collected in the chamber. Bouyant forces aid the movement of the bubbles in an upward direction. A gas permeable window at the top of the chamber allows removal of the collected bubbles.
    • 移动流体中的气泡被收集在与承载流体的导管旁边的腔室中。 在优选实施例中,超声换能器与反射器配合以产生与流体流动的水平轴成锐角定向的静止超声波波形。 气泡聚集在波浪之间的波谷处,然后在下游方向的压力波之间移动以收集在腔室中。 Bouyant力量帮助气泡向上移动。 在室的顶部的透气窗口允许去除收集的气泡。
    • 4. 发明授权
    • Efficient snowmaking with polymer drag reduction
    • 高效减雪的高效除雪
    • US06797191B2
    • 2004-09-28
    • US10090987
    • 2002-02-28
    • Richard B. PhilipsTheresa A. Baus
    • Richard B. PhilipsTheresa A. Baus
    • C09K300
    • F25C3/04F25C2303/0481
    • A method for reducing the drag on an aqueous solution in a pipe or hose system such as a snow making system includes the introduction of drag reducing polymers into the aqueous solution prior to circulating the solution in a pipe or hose. In a preferred embodiment, the drag reducing polymers are a mixture of polyethylene oxide in a carrier solution. The introduction of the polyethylene oxide in a carrier solution reduces the overall frictional drag and therefore increases the snow making efficiency by reducing the power needed to pump the water. As a result, it is easier for greater quantities of snow to be made using existing equipment due to the increased flow rate as a result of the lower drag friction. In a preferred embodiment, the polyethylene oxide is approximately 20-30% by weight and is introduced into the water pipe so resulting concentrations are approximately 30-100 weight parts per million (WPPM).
    • 用于减少诸如制雪系统的管道或软管系统中的水溶液上的阻力的方法包括在将溶液循环到管道或软管中之前将减阻聚合物引入水溶液中。 在优选的实施方案中,减阻聚合物是聚环氧乙烷在载体溶液中的混合物。 在载体溶液中引入聚环氧乙烷降低了总的摩擦阻力,因此通过减少泵送水所需的功率来增加制雪效率。 因此,由于较低的阻力摩擦,由于增加的流量,更容易使用现有的设备来制造更多的积雪。 在一个优选实施方案中,聚环氧乙烷为约20-30重量%,并被引入水管中,使得浓度约为30-100重量份(WPPM)。