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    • 1. 发明授权
    • Water heating system with oxygen sensor
    • 带氧传感器的加热系统
    • US09175853B2
    • 2015-11-03
    • US13409935
    • 2012-03-01
    • Gerald A. FioritiHakan Bjornson
    • Gerald A. FioritiHakan Bjornson
    • F23N5/00F24H1/36F24H9/20F23D14/58F24H1/26F24H1/40
    • F23N5/006F23D14/58F23D2203/1012F23D2203/103F23N2041/04F23N2900/05005F24H1/26F24H1/36F24H1/40F24H9/2035
    • Water heating system and method including a boiler, a combustion chamber, and a burner housed inside the chamber. A conduit fluidly coupled to the combustion chamber to channel gas into the chamber wherein the burner causes combustion of gas. An oxygen sensor is coupled to the chamber and positioned within the chamber to detect an amount of oxygen in the products of combustion. The oxygen sensor outputs data representative of the amount to a control unit. The control unit controls the feedback control of the water heating system and wherein the combustion of the gas in the chamber is controllable by the control unit at least based on the data. A heat exchanger system is coupled to the chamber to heat water in the heat exchanger with the products. At least one flue coupled to the heat exchanger system to channel products out of the heat exchanger system.
    • 水加热系统和方法,包括容纳在室内的锅炉,燃烧室和燃烧器。 流体耦合到燃烧室以将气体引导到室中的导管,其中燃烧器引起气体的燃烧。 氧传感器耦合到室并且定位在室内以检测燃烧产物中的氧气的量。 氧传感器将表示量的数据输出到控制单元。 所述控制单元控制所述水加热系统的反馈控制,并且其中所述室中的气体的燃烧至少基于所述数据由所述控制单元控制。 热交换器系统联接到室以在产品中加热换热器中的水。 至少一个烟道,其耦合到热交换器系统以将产品引导出热交换器系统。
    • 2. 发明申请
    • WATER HEATING SYSTEM WITH OXYGEN SENSOR
    • 氧气传感器加热系统
    • US20130042822A1
    • 2013-02-21
    • US13409935
    • 2012-03-01
    • Gerald A. FioritiHakan Bjornson
    • Gerald A. FioritiHakan Bjornson
    • F23N1/00F24H1/00
    • F23N5/006F23D14/58F23D2203/1012F23D2203/103F23N2041/04F23N2900/05005F24H1/26F24H1/36F24H1/40F24H9/2035
    • Water heating system and method including a boiler, a combustion chamber, and a burner housed inside the chamber. A conduit fluidly coupled to the combustion chamber to channel gas into the chamber wherein the burner causes combustion of gas. An oxygen sensor is coupled to the chamber and positioned within the chamber to detect an amount of oxygen in the products of combustion. The oxygen sensor outputs data representative of the amount to a control unit. The control unit controls the feedback control of the water heating system and wherein the combustion of the gas in the chamber is controllable by the control unit at least based on the data. A heat exchanger system is coupled to the chamber to heat water in the heat exchanger with the products. At least one flue coupled to the heat exchanger system to channel products out of the heat exchanger system.
    • 水加热系统和方法,包括容纳在室内的锅炉,燃烧室和燃烧器。 流体耦合到燃烧室以将气体引导到室中的导管,其中燃烧器引起气体的燃烧。 氧传感器耦合到室并且定位在室内以检测燃烧产物中的氧气的量。 氧传感器将表示量的数据输出到控制单元。 所述控制单元控制所述水加热系统的反馈控制,并且其中所述室中的气体的燃烧至少基于所述数据由所述控制单元控制。 热交换器系统联接到室以在产品中加热换热器中的水。 至少一个烟道,其耦合到热交换器系统以将产品引导出热交换器系统。
    • 3. 发明申请
    • WATER HEATING APPARATUS WITH PARALLEL HEAT EXCHANGERS
    • 带平行换热器的水加热装置
    • US20130319347A1
    • 2013-12-05
    • US13892920
    • 2013-05-13
    • Gerald A. Fioriti
    • Gerald A. Fioriti
    • F24H1/10
    • F24H1/10F24H1/22F24H1/28F28D7/16F28F9/26
    • A water heating apparatus includes a fluid inlet conduit configured to split into a plurality of supply legs, and a plurality of heat exchangers configured for parallel operation. Each heat exchanger includes an outer housing, an inlet connected to a respective supply leg of the fluid inlet conduit for receiving an inlet flow of liquid into the outer housing, an outlet for allowing an outlet flow of liquid to leave the outer housing, and a heat exchange element positioned within the outer housing and configured to heat a flow of liquid passing through the outer housing from the inlet to the outlet. The water heating apparatus further includes a burner assembly comprising a combustion chamber housing and a burner positioned internally within the combustion chamber housing. The burner assembly is coupled to the plurality of heat exchangers for supplying heat to the flow of liquid.
    • 水加热装置包括被配置为分成多个供应支管的流体入口导管和被配置为并联操作的多个热交换器。 每个热交换器包括外壳体,入口连接到流体入口管道的相应供应腿,用于接收液体进入外壳体的入口流,用于允许液体离开外壳的出口流动的出口,以及 热交换元件定位在外壳内并且被配置为加热从入口到出口通过外壳的液体流。 水加热装置还包括燃烧器组件,其包括燃烧室壳体和位于燃烧室壳体内部的燃烧器。 燃烧器组件联接到多个热交换器,用于向液体流提供热量。
    • 5. 发明授权
    • Water heating system with automatic temperature control
    • 水加热系统具有自动温度控制
    • US06445880B1
    • 2002-09-03
    • US09872784
    • 2001-06-01
    • Philip S. HollanderGerald A. Fioriti
    • Philip S. HollanderGerald A. Fioriti
    • F24H110
    • F24H9/2028F24H1/102G05D23/1906
    • A water heating system having an electric heater and an automatic temperature control system having high dynamic response for supplying water on demand at a substantially constant, controlled temperature is provided. The device includes a heat exchanger, and inlet diverting pipe, an outlet diverting pipe, a mixed flow pipe and a temperature control system. A tuning valve on each of the inlet flow diverting pipe and the outlet flow diverting pipe controls the ratio of heated and unheated flow entering the mixed flow pipe. The temperature control system controls the temperature of the water by establishing an empirical, monotonic relationship between the current applied to the heater and the temperature of the mixed flow.
    • 提供一种具有电加热器和具有高动态响应的自动温度控制系统的供热系统,用于以基本恒定的受控温度按需供应水。 该装置包括热交换器和入口转向管,出口转向管,混合流管和温度控制系统。 每个入口分流管和出口流动分流管上的调节阀控制进入混合流管的加热和未加热流的比例。 温度控制系统通过在施加到加热器的电流和混合流的温度之间建立经验的单调关系来控制水的温度。