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    • 3. 发明申请
    • Boiler shipping apparatus and method
    • 锅炉运输装置及方法
    • US20060243615A1
    • 2006-11-02
    • US11117520
    • 2005-04-29
    • Kenneth MoskwaFred HoffmasterWayne Miller
    • Kenneth MoskwaFred HoffmasterWayne Miller
    • B65D85/00
    • F24H9/00F24H1/32F24H9/0094
    • A system for securing a combustion device to a support member includes a leg attached to the combustion device, the leg configured to rest against a member and to be fastened to the member by a fastener and an intermediate member placed in a hole in the leg, wherein the intermediate member is fastened to the support member by a fastener, and the leg is fastened to the support member via the intermediate member. A method for preparing a combustion appliance for shipping is provided. The method includes forming a leg for the combustion appliance, placing the leg on a shipping member, inserting an intermediate member into a hole in the leg and fastening the leg to the shipping member with a fastener extending through the intermediate member, wherein a portion of the leg is located between the intermediate member and the shipping member.
    • 用于将燃烧装置固定到支撑构件的系统包括附接到燃烧装置的腿部,腿部被配置成靠在构件上并通过紧固件和放置在腿部的孔中的中间构件紧固到构件上, 其中所述中间构件通过紧固件紧固到所述支撑构件,并且所述腿经由所述中间构件紧固到所述支撑构件。 提供了一种用于制造用于运输的燃烧器具的方法。 该方法包括形成用于燃烧器具的腿部,将腿部放置在运输构件上,将中间构件插入腿部的孔中,并将腿部紧固延伸到运送构件,该紧固件延伸穿过中间构件,其中一部分 腿位于中间构件和运输构件之间。
    • 5. 发明申请
    • Boiler gas flow distribution fin apparatus and method
    • 锅炉气流分布翅片装置及方法
    • US20060243224A1
    • 2006-11-02
    • US11117519
    • 2005-04-29
    • Kenneth MoskwaJeff JelinekRyan HardestyFred Hoffmaster
    • Kenneth MoskwaJeff JelinekRyan HardestyFred Hoffmaster
    • F22B7/00
    • F22B7/18F24H1/32F24H9/0026Y02E20/14
    • A boiler gas flow distribution fin includes an elongated flow distribution fin protruding from a back wall of a flow distribution channel into a hot gas flow path from a boiler combustion chamber. The flow distribution fin can include a leading segment with a leading ridge, a medial segment with a medial ridge, and a trailing segment with a trailing ridge. A gap between the fin ridges and a set of convective fins in an adjacent flue passageway segment can vary from a larger gap at the leading ridge to a smaller gap at the trailing ridge, transitioning along the medial ridge. The flow distribution fin can aid in directing a hot gas flow from a combustion chamber into the flue passageway segment, resulting in a substantially balanced mass flow rate through each of a series of flue passageway sections.
    • 锅炉气体流量分配翅片包括从流量分配通道的后壁突出到来自锅炉燃烧室的热气体流动通道中的细长的流动分配翅片。 流分配鳍片可以包括具有前脊的前段,具有中脊的中间段和具有后脊的后段。 翅片脊与相邻烟道通道段中的一组对流翅片之间的间隙可以从前缘脊处的较大间隙到后缘脊处的较小间隙变化,沿着内侧脊转变。 流量分配翅片有助于将热气体从燃烧室引导到烟道通道段中,从而通过一系列烟道通道段中的每一个产生基本平衡的质量流量。
    • 8. 发明授权
    • Boiler gas flow distribution fin apparatus and method
    • 锅炉气流分布翅片装置及方法
    • US07669535B2
    • 2010-03-02
    • US11117519
    • 2005-04-29
    • Kenneth R. MoskwaJeff JelinekRyan HardestyFred Hoffmaster
    • Kenneth R. MoskwaJeff JelinekRyan HardestyFred Hoffmaster
    • F23M9/00
    • F22B7/18F24H1/32F24H9/0026Y02E20/14
    • A boiler gas flow distribution fin includes an elongated flow distribution fin protruding from a back wall of a flow distribution channel into a hot gas flow path from a boiler combustion chamber. The flow distribution fin can include a leading segment with a leading ridge, a medial segment with a medial ridge, and a trailing segment with a trailing ridge. A gap between the fin ridges and a set of convective fins in an adjacent flue passageway segment can vary from a larger gap at the leading ridge to a smaller gap at the trailing ridge, transitioning along the medial ridge. The flow distribution fin can aid in directing a hot gas flow from a combustion chamber into the flue passageway segment, resulting in a substantially balanced mass flow rate through each of a series of flue passageway sections.
    • 锅炉气体流量分配翅片包括从流量分配通道的后壁突出到来自锅炉燃烧室的热气体流动通道中的细长的流动分配翅片。 流分配鳍片可以包括具有前脊的前段,具有中脊的中间段和具有后脊的后段。 翅片脊与相邻烟道通道段中的一组对流翅片之间的间隙可以从前缘脊处的较大间隙到后缘脊处的较小间隙变化,沿着内侧脊转变。 流量分配翅片有助于将热气体从燃烧室引导到烟道通道段中,从而通过一系列烟道通道段中的每一个产生基本平衡的质量流量。