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    • 9. 发明申请
    • SOLAR COOLING SYSTEM
    • 太阳能冷却系统
    • US20160195313A1
    • 2016-07-07
    • US15067765
    • 2016-03-11
    • SOLAR SNOW CORPORATION
    • Harold Finkleman
    • F25B27/00F25B39/00F25B35/00F25B15/04F25B21/02F25B15/00
    • In many parts of the world the electricity supply is unreliable and/or electricity costs are high, which means that in many cases conventional air cooling systems that are compressor-based and electrically powered are unreliable due to electrical power outages and/or they are expensive to operate. Some aspects of the invention provide an air cooling system. The air cooling system may include a solar energy gathering component that drives a cooling system. The air cooling system may include an absorption cooling system or a thermoelectric cooling system. The cooling system may include a solar collector matched with an air venting system. The cooling unit may hang on the inside of a window or on another vertical surface and utilize the heat and/or radiation from the sun to activate a cooling mechanism that, in turn, provides cooling via the cooling system.
    • 在世界许多地方,电力供应不可靠和/或电力成本很高,这意味着在许多情况下,由于电力中断而导致基于压缩机和电力供电的常规空气冷却系统是不可靠的,和/或它们是昂贵的 操作。 本发明的一些方面提供一种空气冷却系统。 空气冷却系统可以包括驱动冷却系统的太阳能收集部件。 空气冷却系统可以包括吸收冷却系统或热电冷却系统。 冷却系统可以包括与排气系统匹配的太阳能收集器。 冷却单元可以悬挂在窗户的内部或另一垂直表面上,并且利用来自太阳的热量和/或辐射来激活冷却机构,冷却机构又通过冷却系统提供冷却。
    • 10. 发明授权
    • Premix oven pulsing control system
    • 预混料脉冲控制系统
    • US4834644A
    • 1989-05-30
    • US17636
    • 1987-02-24
    • Bill D. Snow
    • Bill D. Snow
    • F23N1/02
    • F23N1/022F23N2027/10F23N2027/26F23N2033/06F23N2035/06F23N2035/18F23N2037/02F23N2037/10F23N2039/04
    • A plurality of burners are provided for burning a combustible gas mixture. A conduit extends to each of the burners for supplying a combustible gas mixture thereto. A mixing device is coupled between the conduit and a source of air and a source of combustible gas for mixing combustible gas and air for flow to the conduit. An air valve is coupled between the source of air and the mixing device for controlling the flow of air to the mixing device. First and second gas valves are coupled between the source of combustible gas and the mixing device. A control circuit is provided which is adapted to be operated in a flame intensity cycle of high/low flame or in a burner on/off cycle. In the flame intensity cycle, flow of air through the air valve is cyclically increased and decreased and gas flows continuously through the second gas valve for cyclically increasing and decreasing the flame intensity at each of the burners. In the burner on/off cycle, the second valve is cyclically opened and closed whereby it is opened for a first time period and closed for a second time period during each cycle. During each cycle, the first gas valve is opened at the same time that the second gas valve is opened for allowing additional combustible gas to flow to the mixing device. At a delayed time following the beginning of the first time period and before the end of the first time period of each cycle, the first gas valve is closed and the flow of air through the air valve to the mixing device is reduced. At the end of the first time period of each cycle, the second gas valve is closed and the flow of air through the air valve is increased.
    • 提供多个燃烧器来燃烧可燃气体混合物。 导管延伸到每个燃烧器,以向其供应可燃气体混合物。 混合装置联接在导管和空气源和可燃气体源之间,用于混合可燃气体和空气以流向导管。 空气阀联接在空气源和混合装置之间,用于控制到混合装置的空气流。 第一和第二气阀连接在可燃气体源和混合装置之间。 提供一种控制电路,其适于在高/低火焰或燃烧器开/关循环的火焰强度循环中操作。 在火焰强度循环中,通过空气阀的空气流动循环地增加和减少,并且气体连续地流过第二气阀,以循环地增加和降低每个燃烧器处的火焰强度。 在燃烧器开/关循环中,第二阀循环打开和关闭,由此其在第一时间段内打开并在每个循环期间关闭第二时间段。 在每个循环期间,第一气阀在打开第二气阀的同时打开以允许另外的可燃气体流到混合装置。 在第一时间段开始之后和每个循环的第一时间段结束之后的延迟时间,第一气阀被关闭,并且通过空气阀到混合装置的空气流减少。 在每个循环的第一时间段结束时,第二气阀关闭,并且通过空气阀的空气流增加。