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    • 1. 发明授权
    • One shot heat exchanger burner
    • 一次换热器燃烧器
    • US06889686B2
    • 2005-05-10
    • US10299479
    • 2002-11-19
    • Werner Specht
    • Werner Specht
    • F24H3/10F24H9/18F24H3/02
    • F24H3/105F24H9/1881
    • A single burner, heat exchanger combination for particular use in a hot air furnace, includes a plurality of spaced heat exchangers, each heat exchanger having an inlet port for receipt therein of combustion gases. A unitary burner for producing combustion gases includes a burner face defined by a plurality of spaced fins for passing therethrough a combustible gas. The inlet ports of each of the heat exchangers are disposed adjacent to and in fluid communication with the passages defined by the burner face fins. A hot air furnace comprising the single burner, heat exchanger combination also includes a blower adapted to blow air over the heat exchangers and an induction blower in fluid communication with the outlets of the heat exchanger adapted to draw the combustion gases through the heat exchangers and to discharge such combustion gases outwardly from the furnace. An igniter is disposed on a support frame around the burner face for igniting the combustible gas flowing through the burner face fins for flow of combustion gases through the heat exchangers.
    • 特别用于热风炉的单个燃烧器,热交换器组合包括多个间隔开的热交换器,每个热交换器具有用于在其中接收燃烧气体的入口。 用于产生燃烧气体的单一燃烧器包括由多个间隔开的翅片限定的燃烧器面,用于使可燃气体通过。 每个热交换器的入口端口布置成与由燃烧器面鳍形成的通道相邻并与其流体连通。 包括单个燃烧器的热空气炉,热交换器组合还包括适于将空气吹过热交换器的鼓风机和与热交换器的出口流体连通的感应鼓风机,其适于将燃烧气体吸入热交换器,并且 从炉中向外排放这种燃烧气体。 点燃器设置在燃烧器表面周围的支撑框架上,用于点燃流过燃烧器面翅片的可燃气体,以使燃烧气体流过热交换器。
    • 3. 发明授权
    • Exhaust vent adapter for use with multiple heating units
    • 用于多个加热单元的排气孔适配器
    • US5421774A
    • 1995-06-06
    • US45279
    • 1993-04-06
    • Werner Specht
    • Werner Specht
    • F23J11/02F23J13/02F23J13/04
    • F23J13/04F23J11/02F23J13/025F23J2211/20F23J2213/202
    • An exhaust vent adapter is provided for use in a heating system having a plurality of heating units, which allows all heating units to discharge combustion gases through a single exhaust opening. The adapter comprises a body with a plurality of discrete chambers formed therein, each chamber communicating with a separate heating unit. The body of the adapter has a single exhaust opening formed therein, through which each chamber is independently connected to a separate exhaust vent pipe. The vent pipes leading from plurality of the chambers are concentrically arranged, and may be extended through a single opening in either the wall or ceiling of a building in which the heating units are installed. In a preferred embodiment, the body of the adapter has a single divider secured therein, which defines two chambers and segregates the combustion gases from a pair of heating units.
    • 提供排气适配器用于具有多个加热单元的加热系统,其允许所有加热单元通过单个排气口排放燃烧气体。 适配器包括其中形成有多个分立室的主体,每个室与单独的加热单元连通。 适配器的主体具有形成在其中的单个排气口,每个室独立地连接到单独的排气管。 从多个室引出的排气管同心地布置,并且可以延伸穿过其中安装加热单元的建筑物的墙壁或天花板中的单个开口。 在优选实施例中,适配器的主体具有固定在其中的单个分隔件,其限定两个室并且将一些加热单元的燃烧气体隔离开。
    • 5. 发明申请
    • One shot heat exchanger burner
    • 一次换热器燃烧器
    • US20050161036A1
    • 2005-07-28
    • US11085850
    • 2005-03-22
    • Werner Specht
    • Werner Specht
    • F24H3/10F24H9/18F24H3/00
    • F24H3/105F24H9/1881
    • A single burner, heat exchanger combination for particular use in a hot air furnace, includes a plurality of spaced heat exchangers, each heat exchanger having an inlet port for receipt therein of combustion gases. A unitary burner for producing combustion gases includes a burner face defined by a plurality of spaced fins for passing therethrough a combustible gas. The inlet ports of each of the heat exchangers are disposed adjacent to and in fluid communication with the passages defined by the burner face fins. A hot air furnace comprising the single bumer, heat exchanger combination also includes a blower adapted to blow air over the heat exchangers and an induction blower in fluid communication with the outlets of the heat exchanger adapted to draw the combustion gases through the heat exchangers and to discharge such combustion gases outwardly from the furnace. An igniter is disposed on a support frame around the burner face for igniting the combustible gas flowing through the burner face fins for flow of combustion gases through the heat exchangers.
    • 特别用于热风炉的单个燃烧器,热交换器组合包括多个间隔开的热交换器,每个热交换器具有用于在其中接收燃烧气体的入口。 用于产生燃烧气体的单一燃烧器包括由多个间隔开的翅片限定的燃烧器面,用于使可燃气体通过。 每个热交换器的入口端口布置成与由燃烧器面鳍形成的通道相邻并与其流体连通。 包括单个燃烧器,热交换器组合的热空气炉还包括适于将空气吹过热交换器的鼓风机和与热交换器的出口流体连通的感应鼓风机,其适于将燃烧气体吸入热交换器,并且 从炉中向外排放这种燃烧气体。 点燃器设置在燃烧器表面周围的支撑框架上,用于点燃流过燃烧器面翅片的可燃气体,以使燃烧气体流过热交换器。
    • 6. 发明授权
    • System and method for combustion-air modulation of a gas-fired heating system
    • 燃气加热系统燃烧空气调制系统和方法
    • US07802984B2
    • 2010-09-28
    • US11400681
    • 2006-04-07
    • Werner Specht
    • Werner Specht
    • F23N1/02
    • F23N3/082F23N1/025F23N2005/185F23N2021/10F23N2025/06F23N2025/08
    • A system and method for providing a gas-fired heating system with improved thermal efficiency includes modulating a quantity of combustion air flow to a combustion mixture in response to a measured change in fuel-gas pressure using a DC (e.g., brushless) motor to drive a combustion air blower. A pressure transducer in a manifold transporting fuel-gas into the combustion mixture outputs a signal proportional to the measured pressure to the motor. The motor speed and thus the resultant quantity of combustion air flow are modulated in proportion to the quantity of fuel-gas to the mixture. Accordingly, a constant fuel-gas to combustion air ratio is maintained. The system and method may further provide for adjusting the output signal to accommodate measured intake air temperature, and/or measured atmospheric pressure in order to maintain a constant, good thermal efficiency (preferably ≧80%) regardless of air temperature and altitude at the system's installation location.
    • 用于提供具有改进的热效率的燃气加热系统的系统和方法包括响应于使用DC(例如,无刷)马达驱动的燃料 - 气体压力的测量变化来调节燃烧混合物的燃烧空气流量 燃烧式鼓风机。 将燃料气体输送到燃烧混合物中的歧管中的压力传感器输出与所测量的压力成比例的信号到电动机。 与混合物的燃料气体的量成比例地调节电动机速度,从而调节合成的燃烧空气流量。 因此,维持恒定的燃料气体与燃烧空气的比例。 该系统和方法可以进一步提供调节输出信号以适应测量的进气温度和/或测量的大气压力,以便保持恒定的良好热效率(优选≥80%),而不管系统的空气温度和高度如何 安装位置。
    • 7. 发明申请
    • System and method for combustion-air modulation of a gas-fired heating system
    • 燃气加热系统燃烧空气调制系统和方法
    • US20070238057A1
    • 2007-10-11
    • US11400681
    • 2006-04-07
    • Werner Specht
    • Werner Specht
    • F23N1/02
    • F23N3/082F23N1/025F23N2005/185F23N2021/10F23N2025/06F23N2025/08
    • A system and method for providing a gas-fired heating system with improved thermal efficiency includes modulating a quantity of combustion air flow to a combustion mixture in response to a measured change in fuel-gas pressure using a DC (e.g., brushless) motor to drive a combustion air blower. A pressure transducer in a manifold transporting fuel-gas into the combustion mixture outputs a signal proportional to the measured pressure to the motor. The motor speed and thus the resultant quantity of combustion air flow are modulated in proportion to the quantity of fuel-gas to the mixture. Accordingly, a constant fuel-gas to combustion air ratio is maintained. The system and method may further provide for adjusting the output signal to accommodate measured intake air temperature, and/or measured atmospheric pressure in order to maintain a constant, good thermal efficiency (preferably ≦80%) regardless of air temperature and altitude at the system's installation location.
    • 用于提供具有改进的热效率的燃气加热系统的系统和方法包括响应于使用DC(例如,无刷)马达驱动的燃料 - 气体压力的测量变化来调节燃烧混合物的燃烧空气流量 燃烧式鼓风机。 将燃料气体输送到燃烧混合物中的歧管中的压力传感器输出与所测量的压力成比例的信号到电动机。 与混合物的燃料气体的量成比例地调节电动机速度,从而调节合成的燃烧空气流量。 因此,维持恒定的燃料气体与燃烧空气的比例。 该系统和方法可以进一步提供调节输出信号以适应测量的进气温度和/或测量的大气压力,以便保持恒定的良好的热效率(优选<= 80%),而不管空气温度和高度如何 系统的安装位置。
    • 8. 发明申请
    • System and method for improving the thermal efficiency of a heating system
    • 用于提高加热系统热效率的系统和方法
    • US20070099138A1
    • 2007-05-03
    • US11252154
    • 2005-10-17
    • Werner Specht
    • Werner Specht
    • F23N1/02
    • F23N1/022F23N3/082
    • A system and method for providing a heating system with good thermal efficiency by adjusting combustion air flow in response to fuel-input rate changes over a wide range. An AC motor operates in a slip mode whereby as the fuel-input rate changes, the combustion air density is affected. In response, changes in the load and thus the speed of the motor occur. Consequently, the quantity of combustion air flow increases in response to a fuel-input rate increase. The motor switches to a synchronous speed in response to the fuel-input rate reaching a set value, e.g., 70 percent of maximum rate.
    • 一种用于通过响应于在宽范围内的燃料输入速率变化来调节燃烧空气流来提供具有良好热效率的加热系统的系统和方法。 AC电动机以滑动模式工作,由于当燃料输入速率改变时,燃烧空气密度受到影响。 作为响应,电动机的负载变化和速度发生变化。 因此,燃烧空气流量随着燃料输入速率的增加而增加。 响应于燃料输入速率达到设定值,例如最大速率的70%,电动机转换到同步速度。
    • 9. 发明申请
    • Burner port shield
    • 燃烧器口罩
    • US20060157232A1
    • 2006-07-20
    • US11329960
    • 2006-01-11
    • Werner Specht
    • Werner Specht
    • F28F19/00
    • F28F9/16F23D2900/00018F23J2900/13004F24H3/087F24H9/1881F28F17/005F28F19/002
    • A shield for placement around burner ports in a hot air furnace for reducing turbulence in the flow of secondary combustion air entering a heat exchanger. The shield also provides for intercepting moisture that condenses along the walls of the vertically oriented heat exchanger. The heat exchanger is part of a furnace. The drip shield includes a plate having a longitudinal axis and a plurality of through-openings placed in the plate along and/or parallel to its longitudinal axis. The through-openings are spaced apart so as to be positioned between and aligned with burner ports and respective heat exchanger tube inlets of the heat exchanger. The plate is preferably profiled to have a peak to encourage condensate run-off with the plurality of through-openings being placed along or generally parallel to the peak of the plate.
    • 用于放置在热空气炉中的燃烧器端口周围的防护罩,用于减少进入热交换器的二次燃烧空气流中的湍流。 屏蔽还提供了截留沿着垂直取向的热交换器的壁冷凝的水分。 热交换器是炉的一部分。 滴水屏蔽包括具有纵向轴线的板和沿其纵向轴线并沿其纵向轴线平行放置在板中的多个通孔。 通孔间隔开,以便位于热交换器的燃烧器端口和相应的热交换器管入口之间并与之对准。 该板优选成型为具有峰以鼓励冷凝物流出物,其中多个通孔沿着或者大致平行于板的顶部放置。