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    • 15. 发明授权
    • Methods of conveying fluids and methods of sublimating solid particles
    • 输送流体的方法和升华固体颗粒的方法
    • US08544295B2
    • 2013-10-01
    • US13284737
    • 2011-10-28
    • Terry D. TurnerBruce M. Wilding
    • Terry D. TurnerBruce M. Wilding
    • F25J1/00
    • F28C3/10B01D7/02Y10T137/0318
    • A heat exchanger and associated methods for sublimating solid particles therein, for conveying fluids therethrough, or both. The heat exchanger includes a chamber and a porous member having a porous wall having pores in communication with the chamber and with an interior of the porous member. A first fluid is conveyed into the porous member while a second fluid is conveyed into the porous member through the porous wall. The second fluid may form a positive flow boundary layer along the porous wall to reduce or eliminate substantial contact between the first fluid and the interior of the porous wall. The combined first and second fluids are conveyed out of the porous member. Additionally, the first fluid and the second fluid may each be conveyed into the porous member at different temperatures and may exit the porous member at substantially the same temperature.
    • 一种用于升华固体颗粒的热交换器和相关方法,用于输送流体通过其中或两者。 热交换器包括腔室和多孔构件,该多孔构件具有多孔壁,多孔壁具有与腔室连通的孔和多孔构件的内部。 第一流体被输送到多孔构件中,而第二流体通过多孔壁输送到多孔构件中。 第二流体可以沿着多孔壁形成正的流动边界层,以减少或消除第一流体和多孔壁的内部之间的实质接触。 组合的第一和第二流体被输送出多孔构件。 此外,第一流体和第二流体可以各自在不同温度下被输送到多孔构件中并且可在基本相同的温度下离开多孔构件。
    • 18. 发明申请
    • HEAT EXCHANGER AND ASSOCIATED METHODS
    • 热交换器及相关方法
    • US20090071634A1
    • 2009-03-19
    • US11855071
    • 2007-09-13
    • Terry D. TurnerBruce M. Wilding
    • Terry D. TurnerBruce M. Wilding
    • F28D15/00
    • F28C3/10B01D7/02Y10T137/0318
    • A heat exchanger and associated methods for sublimating solid particles therein, for conveying fluids therethrough, or both. The heat exchanger includes a chamber, and a porous member having a porous wall having pores in communication with the chamber and an interior of the porous member. A first fluid is conveyed into the porous member while a second fluid is conveyed into the porous member through the porous wall. The second fluid may form a positive flow boundary layer along the porous wall to reduce or eliminate substantial contact between the first fluid and the interior of the porous wall. The combined first and second fluids are conveyed out of the porous member. Additionally, the first fluid and the second fluid may each be conveyed into the porous member at different temperatures and may exit the porous member at substantially the same temperature.
    • 一种用于升华固体颗粒的热交换器和相关方法,用于输送流体通过其中或两者。 该热交换器包括一个腔室和一个具有多孔壁的多孔构件,多孔壁具有与腔室连通的孔和多孔构件的内部。 第一流体被输送到多孔构件中,而第二流体通过多孔壁输送到多孔构件中。 第二流体可以沿多孔壁形成正的流动边界层,以减少或消除第一流体和多孔壁的内部之间的实质接触。 组合的第一和第二流体被输送出多孔构件。 此外,第一流体和第二流体可以各自在不同温度下被输送到多孔构件中并且可在基本相同的温度下离开多孔构件。
    • 20. 发明申请
    • SUBLIMATION SYSTEMS AND ASSOCIATED METHODS
    • 下位系统及相关方法
    • US20120103012A1
    • 2012-05-03
    • US12938967
    • 2010-11-03
    • Terry D. TurnerMichael G. McKellarBruce M. Wilding
    • Terry D. TurnerMichael G. McKellarBruce M. Wilding
    • F25J3/08
    • B01B1/005F25J1/0022F25J1/0027F25J3/061F25J3/067F25J3/08
    • A system for vaporizing and sublimating a slurry comprising a fluid including solid particles therein. The system includes a first heat exchanger configured to receive the fluid including solid particles and vaporize the fluid and a second heat exchanger configured to receive the vaporized fluid and solid particles and sublimate the solid particles. A method for vaporizing and sublimating a fluid including solid particles therein is also disclosed. The method includes feeding the fluid including solid particles to a first heat exchanger, vaporizing the fluid, feeding the vaporized fluid and solid particles to a second heat exchanger and sublimating the solid particles. In some embodiments the fluid including solid particles is liquid natural gas or methane including solid carbon dioxide particles.
    • 一种用于蒸发和升华浆料的系统,包括其中包含固体颗粒的流体。 该系统包括构造成接收包括固体颗粒并使气体蒸发的流体的第一热交换器和被配置为接收蒸发的流体和固体颗粒并升华固体颗粒的第二热交换器。 还公开了一种用于蒸发和升华其中包括固体颗粒的流体的方法。 该方法包括将包括固体颗粒的流体送入第一热交换器,蒸发流体,将蒸发的流体和固体颗粒送入第二热交换器并使固体颗粒升华。 在一些实施方案中,包括固体颗粒的流体是液体天然气或包括固体二氧化碳颗粒的甲烷。