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    • 71. 发明授权
    • Water heating apparatus
    • 水加热装置
    • US5311843A
    • 1994-05-17
    • US60861
    • 1993-05-12
    • Kevin J. Stuart
    • Kevin J. Stuart
    • F24H1/43F24H8/00F22B37/10
    • F24H9/0089F24H1/43F24H8/00Y02B30/102
    • A radially fired water heating apparatus (10) having a plurality of stacked segments of multiple-loop, finned coiled tubing (58) separated by inner and outer support baffles (86, 88), all contained within a cylindrical baffle (20) which cooperates with the coiled tubing (58) and support baffles (86, 88) to direct combustion by-products into an annulus (24) promoting heat transfer to a countercurrent flow of inlet air, the water being supplied to and recovered from the stacked segments of coiled tubing (58) through inlet and outlet headers (54, 56) disposed outside cylindrical baffle (20) that can be selectively modified by installing or removing baffles (90, 92) for either single-pass or multiple-pass operation.
    • 一种径向燃烧的水加热装置(10),其具有由内外支撑挡板(86,88)分隔开的多个多圈的翅片式连续油管(58)的多个堆叠段,所述堆叠段全部包含在圆柱形挡板(20)内, 具有连续油管(58)和支撑挡板(86,88)以将燃烧副产物引导到环形空间(24)中,促进热传递到入口空气的逆流,水被供应到和从堆叠段的 设置在圆柱形挡板(20)外侧的入口和出口集管(54,56)的连续油管(58)可通过安装或拆卸用于单程或多次操作的挡板(90,92)进行选择性修改。
    • 75. 发明授权
    • Methods and apparatus for changing liquid temperature
    • 改变液体温度的方法和装置
    • US4813396A
    • 1989-03-21
    • US909696
    • 1986-09-22
    • Jack W. SargeantWilliam F. RaleighAttilio G. Giordani
    • Jack W. SargeantWilliam F. RaleighAttilio G. Giordani
    • F24H1/00F24H1/43F24H1/16
    • F24H1/0045F24H1/43
    • Water heating methods and apparatus feed a combustible mixture of gas and air to an axial inlet of a cylindrical radiant surface burner and conduct water to be heated through a heat exchanger encompassing that cylindrical radiant surface burner as a cylindrical structure having first passages for combustion gases therethrough substantially radially of the cylindrical radiant surface burner and the heat exchanger. Methods and apparatus for changing the temperature in a mass of liquid circulate that mass of liquid by pumping the liquid in a path extending from that mass of liquid back to that mass of liquid, provide a bypass for part of the pumped liquid from a downstream portion of the path to an upstream portion of that path, provide and maintain a constant liquid flow for the part of the pumped liquid in the bypass, change the temperature of the part of the pumped liquid at the constant liquid flow in the bypass, and change the temperature in the mass by mixing at the upstream portion the part of the pumped liquid of changed temperature from the bypass with liquid pumped in the path.
    • 水加热方法和装置将气体和空气的可燃混合物供给到圆柱形辐射表面燃烧器的轴向入口,并且通过包围该圆柱形辐射表面燃烧器的热交换器将水加热以作为圆柱形结构,其具有用于燃烧气体的第一通道 基本上径向地位于圆柱形辐射表面燃烧器和热交换器上。 用于改变液体中的温度的方法和装置通过在从该质量液体延伸到该质量液体的路径中泵送液体来循环该液体质量,为来自下游部分的一部分泵送液体提供旁路 到达该路径的上游部分的路径,为旁路中的泵送液体的一部分提供和保持恒定的液体流量,在旁路中恒定的液体流量改变泵送液体的一部分的温度,并且改变 质量的温度通过在路径中泵送的液体在上游部分处将来自旁路的改变的温度的泵送液体的部分混合。
    • 78. 发明授权
    • Hot water generator for shock testing fabricated piping components
    • 用于冲击试验的热水发生器制造的管道部件
    • US3890936A
    • 1975-06-24
    • US43724974
    • 1974-01-28
    • VAPOR CORP
    • MCINERNEY MICHAEL JBRADY ROBERT TPHILLIPS ALVIA E
    • F24H1/16F24H1/43F22B37/10
    • F24H1/43F24H1/165
    • A hot water generator capable of producing a maximum rate of water temperature increase without generation of vapors including a heat exchanger in the form of an annularly shaped helical coil through which the water to be heated is pumped and which is connected to a piping system including a load and a combustor for rapidly providing increased combustion which is controlled in response to the temperature of the water at the outlet of the coil so that the heater can produce a maximum rate of water temperature rise without causing boiling and generating vapors in the coil. The method concerns the shock testing of piping components by producing nearly theoretical maximum heat flux rate very quickly.
    • 能够产生最大水温升高的热水发生器,而不产生蒸气,其包括呈环形螺旋线圈形式的热交换器,待加热的水通过该热交换器被泵送并且连接到包括 负载和燃烧器,用于快速提供响应于线圈出口处的水的温度而被控制的增加的燃烧,使得加热器可以在不引起沸腾并产生线圈中的蒸汽的情况下产生最大的水温升高速率。 该方法涉及到管道部件的冲击试验,通过极快地产生几乎理论上的最大热通量。