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    • 23. 发明授权
    • Stirling cycle engine
    • 斯特林循环发动机
    • US4055960A
    • 1977-11-01
    • US702417
    • 1976-07-06
    • John Craig St. Clair
    • John Craig St. Clair
    • F02G1/043F25B9/00
    • F02G1/043F02G2254/30F02G2258/10
    • The hot and cold gases of a Stirling Cycle engine are stored in the opposite ends of a rotating hollow cylinder with the inner surface of the cylinder covered with water held in place by centrifugal force. The hot and cold gases are kept separate by a piston, that moves back and forth in the rotating cylinder, with the outer edge of the piston dipping in the ring of water providing a gas seal.The gas when heated and introduced into the hot end of the rotating cylinder is given the same angular velocity as the rotating hollow cylinder by means of a large number of small holes in a molybdenum sheet of metal. The molybdenum metal is strong and is not corroded, in the hydrogen gas used as the working fluid, at temperatures as hot as 2200.degree. Fahrenheit or even hotter.The system is the basis of a low first cost power plant where hydrogen is compressed, expanded through a turbine with the generation of power and then compressed over again. The overall power plant needs less than 7500 BTU per KWH. With the use of Solar heat stored in enormous piles of sand-lime pebbles with cooling water sprayed in winter and stored in holes, from which has been obtained sand which is made into sand-lime mortar for the pebbles, heat rates of as low as 6500 BTU per KWH can be obtained.
    • 斯特林循环发动机的冷热气体储存在旋转中空圆筒的相对端,气缸的内表面通过离心力将水保持在适当位置。 热和冷气体通过活塞保持分离,活塞在旋转圆筒中来回移动,活塞的外边缘浸入水环中提供气体密封。
    • 27. 发明授权
    • Fluid pressure regenerator and process
    • 流体压力再生器和过程
    • US3741227A
    • 1973-06-26
    • US3741227D
    • 1971-01-05
    • AMERICAN GAS ASS
    • MOKADAM RFEJER A
    • F02D9/00F02G1/05F25B9/00F02G3/02
    • F02D9/00F02D2700/09F02G1/05F02G2258/10F25B9/004Y10T137/0318
    • A fluid pressure regeneration process and apparatus useful in alternating high and low pressure cycle fluid systems comprising one or more valve means each of which in succession sequentially transfers into a series of storage vessels, each being isolated from the other and from the alternating fluid system by said valve means, successive fractional portions of the fluid exhausted from the alternating fluid system, during transition from the high pressure cycle to the low pressure cycle. Each such storage vessel has a different final pressure sequentially becoming lower with reduction of pressure in the alternating fluid system. Each isolated storage vessel contains and stores a fractional portion of the fluid. Recovery of the same fluid portions may be achieved by providing communication of each storage vessel with the alternating fluid system through each valve means in reverse sequence, thus transferring the fluid from the corresponding storage vessel into the alternating fluid system during transition from the low to the high pressure cycle. In this manner, fluid pressure may be stored and regenerated for use in alternating high and low pressure cycle fluid systems.
    • 29. 发明授权
    • Internal combustion heat engine and process
    • 内燃机和发动机
    • US3677026A
    • 1972-07-18
    • US3677026D
    • 1970-11-20
    • AMERICAN GAS ASS
    • GRANRYD ERIC G U
    • F02G1/04F25B27/00F25B1/00F02B1/00F03G7/06
    • F02G1/04F02G2258/10F25B27/00
    • A process for conversion of chemical energy to mechanical energy by heating air within a substantially gastight gas chamber by passage in heat-exchange relation with a moving heat-regenerative means within the chamber, substantially continuous burning of an injected combustible fluid fuel during injection thereof resulting in substantial increase in the average temperaturepressure relation of the gas within the gas chamber, expanding said gas chamber by movement of a pressure-responsive member, and heating the heat-regenerative means by passage of the combustion product gas in heat-exchange relation with the moving heatregenerative means. An internal combustion heat engine having a movable heat-regenerative means within a sub-stantially gastight gas chamber defined by a casing, the movable heat-regenerative means by its movement causing passage of enclosed gases in heatexchange relation with the heat-regenerative means, and having an air intake conduit, exhaust conduit, fuel injection means, an ignition means and a pressure-responsive member. A gas cooling system wherein a compression means is actuated by movement of the pressure-responsive member of the internal combustion heat engine.
    • 通过在室内与移动的热再生装置以热交换关系的方式通过加热空气在大气密气体室内加热空气,在喷射期间基本连续地燃烧喷射的可燃液体燃料,从而将化学能转化为机械能, 在气室内的气体的平均温度 - 压力关系的显着增加中,通过压力响应构件的移动使气体室膨胀,并且通过热交换关系中的燃烧产物气体来加热热再生装置 具有移动的热再生装置。 一种内燃式发动机,其在由壳体限定的次级气密室内具​​有可移动热再生装置,所述可移动热再生装置通过其运动引起与热再生装置的热交换关系的封闭气体的通过 并且具有进气管,排气管,燃料喷射装置,点火装置和压力响应构件。 一种气体冷却系统,其中通过内燃式热机的压力响应构件的运动来致动压缩装置。