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    • 1. 发明授权
    • Intake air separation system for an internal combustion engine
    • 内燃机进气分配系统
    • US06543428B1
    • 2003-04-08
    • US09594009
    • 2000-06-14
    • Joseph A. BlandinoGerald N. ColemanCharles H. DutartEric C. Fluga
    • Joseph A. BlandinoGerald N. ColemanCharles H. DutartEric C. Fluga
    • F02B2300
    • F02M33/00
    • A method and system for the intake air separation within an internal combustion engine is disclosed. The disclosed embodiments of the intake air separation system include an intake air inlet adapted to receive the intake air used in the combustion process for the engine and an intake air separation device in flow communication with the intake air inlet and adapted for separating the intake air into a flow of the oxygen enriched air and a flow of nitrogen enriched air. The intake air separation system further includes a first outlet in fluid communication with the intake air separation device and adapted to receive the flow of the oxygen enriched air as well as a second outlet also in fluid communication with the intake air separation device and adapted to provide the flow of nitrogen enriched air to the intake manifold for use in the combustion process. The intake air separation system also includes a permeate air driver in fluid communication with the intake air separation device and operatively associated with the engine exhaust system adapted for forcibly directing the flow of oxygen enriched air via the permeate outlet.
    • 公开了一种用于内燃机内进气分离的方法和系统。 所公开的进气分离系统的实施例包括适于接收用于发动机的燃烧过程中使用的进气的进气进口和与进气入口流体连通并适于将进气分离的进气分离装置 富氧空气的流动和富氮空气流。 进气分离系统还包括与进气分离装置流体连通并适于接收富氧空气流的第一出口以及也与进气分离装置流体连通的第二出口,并适于提供 富氮空气流到进气歧管,用于燃烧过程。 进气分离系统还包括与进气分离装置流体连通的渗透空气驱动器,并且可操作地与发动机排气系统相关联,该发动机排气系统适于通过渗透物出口强制地引导富氧空气流。
    • 2. 发明授权
    • Intake air separation system for an internal combustion engine
    • 内燃机进气分配系统
    • US06289884B1
    • 2001-09-18
    • US09595397
    • 2000-06-14
    • Joseph A. BlandinoCharles H. DutartEric C. Fluga
    • Joseph A. BlandinoCharles H. DutartEric C. Fluga
    • F02B2300
    • F02M25/12Y02T10/121
    • A method and system for the intake air separation within an internal combustion engine is disclosed. The disclosed embodiments of the intake air separation system includes an intake air separation device adapted for separating the intake air into a flow of the oxygen enriched air and a flow of nitrogen enriched air; an intake air circuit adapted to deliver intake air to the air separation device, and a purge air circuit adapted to deliver a flow of sweep air or purge air to the intake air separation device to increase the effectiveness of the air separation. The intake air separation device includes a first outlet in fluid communication with the intake air separation device and adapted to receive a flow of the oxygen enriched air and purge air as well as a second outlet also in fluid communication with the intake air separation device and adapted to provide the glow of nitrogen enriched air to the intake manifold for use in the combustion process. Controlling the flow and/or temperature of the purge air through the air separation device controls the air intake system.
    • 公开了一种用于内燃机内进气分离的方法和系统。 所公开的进气分离系统的实施例包括进气分离装置,其适于将进气分离成富氧空气流和富氮空气流; 适于将空气输送到空气分离装置的进气回路;以及适于将吹扫空气或吹扫空气流输送到进气分离装置的吹扫空气回路,以提高空气分离的有效性。 进气分离装置包括与进气分离装置流体连通并适于接收富氧空气和净化空气的流动的第一出口以及也与进气分离装置流体连通的第二出口, 以将富氮的空气的辉光提供给用于燃烧过程的进气歧管。 通过空气分离装置控制净化空气的流量和/或温度来控制进气系统。
    • 3. 发明授权
    • Intake air separation system for an internal combustion engine
    • 内燃机进气分配系统
    • US06453893B1
    • 2002-09-24
    • US09593844
    • 2000-06-14
    • Gerald N. ColemanCharles H. DutartEric C. Fluga
    • Gerald N. ColemanCharles H. DutartEric C. Fluga
    • F02B2300
    • F02M25/12F02M33/00Y02T10/121
    • A method and system for the intake air separation within an internal combustion engine is disclosed. The disclosed embodiments of the intake air separation system include an intake air inlet adapted to receive substantially all of the intake air used in the combustion process for the engine and an intake air separation device in flow communication with the intake air inlet and adapted for separating substantially all of the intake air into a flow of the oxygen enriched air and a flow of nitrogen enriched air. The intake air separation system further includes a first outlet in fluid communication with the intake air separation device and adapted to receive a flow of the oxygen enriched air as well as a second outlet also in fluid communication with the intake air separation device and adapted to provide the flow of nitrogen enriched air to the intake manifold for use in the combustion process.
    • 公开了一种用于内燃机内进气分离的方法和系统。 所公开的进气分离系统的实施例包括适于接收用于发动机的燃烧过程中使用的基本上所有进气的进气口和与进气入口流体连通的进气分离装置, 所有的进气进入富氧空气流和富氮空气流。 进气分离系统还包括与进气分离装置流体连通并适于接收富氧空气流的第一出口以及也与进气分离装置流体连通的第二出口,并适于提供 富氮空气流到进气歧管,用于燃烧过程。
    • 10. 发明授权
    • Hydraulic control and lubrication system with compressed air pre-heat
circuit for rapid response at low ambient temperatures
    • 液压控制和润滑系统,具有压缩空气预热回路,可在低环境温度下快速响应
    • US5667051A
    • 1997-09-16
    • US397703
    • 1995-03-01
    • Gary L. GoldbergPaul E. HilgemanJames V. RectorMalcolm J. McArthurDavid E. JeorlingCharles H. DutartMahendra P. Desai
    • Gary L. GoldbergPaul E. HilgemanJames V. RectorMalcolm J. McArthurDavid E. JeorlingCharles H. DutartMahendra P. Desai
    • F02C7/32F16D25/12F16D48/02F16D25/10
    • F02C7/32F05D2220/50F05D2260/20F05D2260/406Y02T50/675
    • In a power transmission or generation apparatus having a source of heated pressurized air, the problem of achieving rapid controlled engagement of a hydraulically actuated clutch at low ambient temperatures is solved by utilizing a portion of that heated pressurized air for heating only that small control volume of hydraulic fluid within a clutch control circuit needed to achieve rapid actuation and stable control of the hydraulic clutch. Our invention is thus particularly applicable in a power transmission or generation apparatus having a gas turbine engine, or a turbocharged piston engine as the prime mover. With gas turbine engine powered units, our invention contemplates the use of compressor discharge air, rather than exhaust products for heating the hydraulic fluid. Similarly, for piston engines our invention contemplates the use of turbocharger discharge air rather than exhaust products. In one embodiment a clutch and a control circuit are provided in which the fluid volume of the control circuit is minimized, and fluid removal features are provided to effectively drain all residual fluid from a portion of the control circuit following disengagement of the clutch. On subsequent start-up from cold ambient temperatures, the drained portion of the control circuit is filled with pre-heated fluid prior to engagement of the clutch thus eliminating problems of slow response and controllability encountered due to cold viscous fluid in prior clutch control circuits.
    • 在具有加热加压空气源的动力传动装置或发电装置中,在低环境温度下实现液压致动离合器的快速控制接合的问题通过利用一部分加热的加压空气来加热只有小的控制体积的 离合器控制电路内的液压流体需要实现快速致动和液压离合器的稳定控制。 因此,本发明特别适用于具有燃气涡轮发动机或作为原动机的涡轮增压活塞式发动机的动力传递或发电装置。 利用燃气涡轮发动机动力装置,本发明考虑使用压缩机排放空气,而不是用于加热液压流体的排气产品。 类似地,对于活塞式发动机,本发明考虑使用涡轮增压器排放空气而不是排气产品。 在一个实施例中,提供了离合器和控制电路,其中控制电路的流体体积最小化,并且提供流体去除特征以在分离离合器之后有效地排出来自控制电路的一部分的所有残余流体。 在冷环境温度下的后续启动中,在离合器接合之前,控制回路的排出部分填充有预热流体,从而消除了由于现有离合器控制回路中的冷粘性流体而导致的慢响应和可控性问题。