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    • 1. 发明授权
    • Method and apparatus for optical flame control of combustion burners
    • 燃烧式燃烧器的光学火焰控制方法和装置
    • US06244857B1
    • 2001-06-12
    • US09467951
    • 1999-12-21
    • William VonDrasekLouis C. PhilippeEric L. Duchateau
    • William VonDrasekLouis C. PhilippeEric L. Duchateau
    • F23N508
    • F23N5/082F23N1/02F23N2035/06F23N2035/12
    • In accordance with the present invention, methods and apparatus to control the combustion of a burner are presented which overcome many of the problems of the prior art. One aspect of the invention comprises a burner control apparatus including a device for viewing light emitted by a flame from a burner, a device for optically transporting the viewed light into an optical processor, an optical processor for processing the optical spectrum into electrical signals, a signal processing for processing the electrical signals obtained from the optical spectrum, and a control device which accepts the electrical signals and produces an output acceptable to one or more oxidant or fuel flow control devices. The control device, which may be referred to as a “burner computer,” functions to control the oxidant flow and/or the fuel flow to the burner. In a particularly preferred apparatus embodiment of the invention, a burner and the burner control apparatus are integrated into a single unit, which may be referred to as a “smart” burner.
    • 根据本发明,提出了一种控制燃烧器燃烧的方法和装置,其克服了现有技术的许多问题。 本发明的一个方面包括一种燃烧器控制装置,包括用于观察来自燃烧器的火焰发出的光的装置,用于将观察到的光光学传输到光学处理器的装置,用于将光谱处理成电信号的光学处理器, 用于处理从光谱获得的电信号的信号处理;以及接受电信号并产生一个或多个氧化剂或燃料流量控制装置可接受的输出的控制装置。 可以称为“燃烧器计算机”的控制装置用于控制氧化剂流和/或燃烧器的燃料流。 在本发明的特别优选的装置实施例中,燃烧器和燃烧器控制装置集成到单个单元中,其可以被称为“智能”燃烧器。
    • 2. 发明授权
    • Method and apparatus for optical flame control of combustion burners
    • 燃烧式燃烧器的光学火焰控制方法和装置
    • US6045353A
    • 2000-04-04
    • US859393
    • 1997-05-20
    • William VonDrasekLouis C. PhilippeEric L. Duchateau
    • William VonDrasekLouis C. PhilippeEric L. Duchateau
    • F23N1/02F23N5/08
    • F23N5/082F23N1/02F23N2035/06F23N2035/12
    • In accordance with the present invention, methods and apparatus to control the combustion of a burner are presented which overcome many of the problems of the prior art. One aspect of the invention comprises a burner control apparatus including a device for viewing light emitted by a flame from a burner, a device for optically transporting the viewed light into an optical processor, an optical processor for processing the optical spectrum into electrical signals, a signal processing for processing the electrical signals obtained from the optical spectrum, and a control device which accepts the electrical signals and produces an output acceptable to one or more oxidant or fuel flow control devices. The control device, which may be referred to as a "burner computer," functions to control the oxidant flow and/or the fuel flow to the burner. In a particularly preferred apparatus embodiment of the invention, a burner and the burner control apparatus are integrated into a single unit, which may be referred to as a "smart" burner.
    • 根据本发明,提出了一种控制燃烧器燃烧的方法和装置,其克服了现有技术的许多问题。 本发明的一个方面包括一种燃烧器控制装置,包括用于观察来自燃烧器的火焰发出的光的装置,用于将观察到的光光学传输到光学处理器的装置,用于将光谱处理成电信号的光学处理器, 用于处理从光谱获得的电信号的信号处理;以及接受电信号并产生一个或多个氧化剂或燃料流量控制装置可接受的输出的控制装置。 可以称为“燃烧器计算机”的控制装置用于控制氧化剂流和/或燃烧器的燃料流。 在本发明的特别优选的装置实施例中,燃烧器和燃烧器控制装置集成到单个单元中,其可以被称为“智能”燃烧器。
    • 8. 发明授权
    • Method and apparatus for optical flame control of combustion burners
    • 燃烧式燃烧器的光学火焰控制方法和装置
    • US5829962A
    • 1998-11-03
    • US797020
    • 1997-02-07
    • William Von DrasekLouis C. PhilippeEric L. Duchateau
    • William Von DrasekLouis C. PhilippeEric L. Duchateau
    • F23N1/02F23N5/08
    • F23N5/082F23N1/02F23N2035/06F23N2035/12
    • In accordance with the present invention, methods and apparatus to control or monitor the combustion of a burner are presented which overcome many of the problems of the prior art. One aspect of the invention comprises a burner control apparatus comprising means for viewing light emitted by a flame from a burner, means for optically transporting the viewed light into an optical processor, optical processor means for processing the optical spectrum into electrical signals, signal processing means for processing the electrical signals obtained from the optical spectrum, and control means which accept the electrical signals and produce an output acceptable to one or more oxidant or fuel flow control means. The control means may be referred to as a "burner computer", which functions to control the oxidant flow and/or the fuel flow to the burner. In a particularly preferred apparatus embodiment of the invention, a burner and the burner control apparatus are integrated into a single unit, which may be referred to as a "smart" burner.
    • 根据本发明,提供了控制或监视燃烧器燃烧的方法和装置,其克服了现有技术的许多问题。 本发明的一个方面包括一种燃烧器控制装置,包括用于观察来自燃烧器的火焰发射的光的装置,用于将观察到的光光学传输到光学处理器的装置,用于将光谱处理成电信号的光学处理器装置,信号处理装置 用于处理从光谱获得的电信号,以及控制装置,其接受电信号并产生一个或多个氧化剂或燃料流控制装置可接受的输出。 控制装置可以被称为“燃烧器计算机”,其用于控制​​氧化剂流和/或到燃烧器的燃料流。 在本发明的特别优选的装置实施例中,燃烧器和燃烧器控制装置集成到单个单元中,其可以被称为“智能”燃烧器。
    • 10. 发明授权
    • Process and system for selective abatement of reactive gases and
recovery of perfluorocompound gases
    • 选择性减少反应气体和回收全氟化合物气体的过程和系统
    • US5759237A
    • 1998-06-02
    • US663884
    • 1996-06-14
    • Yao-En LiEric L. Duchateau
    • Yao-En LiEric L. Duchateau
    • B01D53/22B01D53/04
    • B01D53/228
    • Processes and systems to recover at least one perfluorocompound gas from a gas mixture are provided. In one embodiment the inventive process comprises the steps of a) providing a gas mixture comprising at least one perfluorocompound gas and at least one carrier gas, the gas mixture being at a predetermined pressure; b) providing at least one glassy polymer membrane having a feed side and a permeate side; c) contacting the feed side of the at least one membrane with the gas mixture; d) withdrawing from the feed side of the membrane as a non-permeate stream at a pressure which is substantially equal to the predetermined pressure a concentrated gas mixture comprising essentially the at least one perfluorocompound gas; and e) withdrawing from the permeate side of the membrane as a permeate stream a depleted gas mixture comprising essentially the at least one carrier gas.
    • 提供了从气体混合物中回收至少一种全氟化合物气体的方法和系统。 在一个实施方案中,本发明的方法包括以下步骤:a)提供包含至少一种全氟化合物气体和至少一种载气的气体混合物,所述气体混合物处于预定压力; b)提供至少一个具有进料侧和渗透侧的玻璃状聚合物膜; c)使至少一个膜的进料侧与气体混合物接触; d)以基本上等于预定压力的压力从作为非渗透物流的膜的进料侧排出基本上包含至少一种全氟化合物气体的浓缩气体混合物; 和e)作为渗透物流从膜的渗透侧排出基本上包含至少一种载气的贫化气体混合物。