会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Heat exchanger with enhancements
    • 热交换器具有增强功能
    • US06422306B1
    • 2002-07-23
    • US09851792
    • 2001-05-09
    • Ronald S. TomlinsonShaobo Jia
    • Ronald S. TomlinsonShaobo Jia
    • F28F1312
    • F28D9/0031F24H3/105F28D1/035F28F3/04F28F2250/102
    • A heat exchanger for use with a furnace, each heat exchanger includes a plurality of heat exchanger elements. Each heat exchanger element includes a pair of clamshells sealingly attached to one another. The heat exchanger element includes a longitudinal axis. A pair of depressions are disposed in each respective said pair of clamshells. The depressions face one another to form a passageway wall and a serpentine fluid passageway therebetween. At least a portion of the serpentine fluid passageway extends along the longitudinal axis. A plurality of enhancements are formed in the depressions and are disposed within the portion of the serpentine fluid passageway. The plurality of enhancements project into the serpentine fluid passageway. Each enhancement constitutes a corrugation having a substantially trapezoidal longitudinal cross-section. A longitudinally positioned passageway wall portion is extended between each adjacently positioned enhancements within each clamshell.
    • 一种用于炉的热交换器,每个热交换器包括多个热交换元件。 每个热交换器元件包括彼此密封地连接的一对蛤壳。 热交换器元件包括纵向轴线。 在每个相应的一对蛤壳中设置一对凹陷。 凹陷彼此面对以在其间形成通道壁和蛇形流体通道。 蛇形流体通道的至少一部分沿着纵向轴线延伸。 在凹部中形成多个增强件,并且设置在蛇形流体通道的部分内。 多个增强项目进入蛇形流体通道。 每个增强件构成具有基本上梯形的纵向横截面的波纹。 纵向定位的通道壁部分在每个蛤壳内的每个相邻定位的增强之间延伸。
    • 2. 再颁专利
    • Standing pilot furnace with vented vestibule
    • 站立先导炉与通风的前庭
    • USRE37128E1
    • 2001-04-10
    • US08943996
    • 1997-10-03
    • Ronald S. TomlinsonSteven W. McKinney
    • Ronald S. TomlinsonSteven W. McKinney
    • F24H302
    • F24H9/1836F23L17/00F24H9/0026
    • An induced draft, fuel-fired furnace having a heat exchanger with an inlet and an outlet includes a vent having an inlet, a burner, and a vented vestibule in fluid communication with the vent. A blower has an inlet in fluid communication with the heat exchanger outlet, and an outlet disposed at the inlet of the vent. The blower outlet has a cross-sectional area smaller than the vent inlet. The vent inlet and blower outlet define a vent inlet opening. A drafthood formed with an inlet is disposed in the vestibule and forms a plenum in fluid communication with the vent inlet opening. A source of combustion products is disposed in the furnace such that combustion products produced thereby are in fluid communication with the drafthood inlet and vent inlet opening. The source of combustion products includes either a standing pilot or electronic ignitor for igniting fuel operably discharged from the burner.
    • 具有具有入口和出口的热交换器的引燃通风燃料燃烧炉包括具有入口,燃烧器和与排气口流体连通的通风前庭的排气口。 鼓风机具有与热交换器出口流体连通的入口和设置在通风口入口处的出口。 鼓风机出口的横截面面积小于通风口。 通风口和鼓风机出口限定通风口入口。 形成有入口的草图设置在前庭中并形成与通气口入口开口流体连通的增压室。 将燃烧产物源设置在炉中,使得由此产生的燃烧产物与草图入口和通风口入口开口流体连通。 燃烧产物的来源包括用于点燃燃烧器可操作地排出的燃料的立式飞行员或电子点火器。
    • 3. 发明授权
    • Heat pipe central furnace
    • 热管中心炉
    • US4577615A
    • 1986-03-25
    • US685711
    • 1984-12-24
    • Ronald S. Tomlinson
    • Ronald S. Tomlinson
    • F24H3/08F24H3/00
    • F24H3/087F28D15/0275
    • A heat pipe heat transfer structure for use in a furnace wherein individual heat pipes are arranged in a series for successive heat transfer association with the hot products of combustion of the furnace. The heat transfer enclosure defines successively a combustion chamber portion, an acoustic decoupling portion, and an input heat transfer chamber portion. The heat transfer chamber portion, in turn, is divided into first and second portions. The first portion of the input heat transfer chamber portion, in the illustrated embodiment, decreases in cross sectional area in a direction away from the burner. The final portion of the input heat transfer chamber portion, in the illustrated embodiment, has a constant cross sectional area. The heat pipes are arranged in a folded series row, with the direction of the products of combustion being reversed in entering the first portion from the combustion chamber and in passing from the first portion to the second portion before being discharged to the vent pipe of the furnace. The construction provides improved uniform loading of the heat pipes and acoustic decoupling of the burner from the input heat transfer chamber portion.
    • 一种在炉中使用的热管传热结构,其中各个热管串联布置,以与炉的燃烧热产生连续的热传递关联。 传热罩连续地限定了燃烧室部分,声学解耦部分和输入传热室部分。 传热室部分又分成第一和第二部分。 在所示实施例中,输入传热室部分的第一部分在远离燃烧器的方向上的横截面面积减小。 在所示实施例中,输入传热室部分的最后部分具有恒定的横截面面积。 热管被布置成折叠的排列,燃烧产物的方向在从燃烧室进入第一部分时反转,并且在从第一部分流到第二部分之前被排放到通气管 炉。 该结构提供了改进的热管的均匀负载和燃烧器与输入传热室部分的声学解耦。
    • 6. 发明授权
    • Heat exchanger for furnace
    • 炉换热器
    • US4739746A
    • 1988-04-26
    • US922398
    • 1986-10-23
    • Ronald S. Tomlinson
    • Ronald S. Tomlinson
    • F24H3/10F24H3/08
    • F24H3/105
    • Heat transfer structure for transferring heat from products of combustion to air to be conditioned in a furnace. The heat transfer structure includes an inlet portion receiving hot products of combustion from a burner and extending generally transversely to the direction of the flow of air to be conditioned by heat transfer association therewith. The heat transfer structure further includes at least three successive legs extending generally parallel to the direction of air flow. In one form, the transverse leg is disposed at the inlet portion of the air flow passages, and in a modified form, the transverse leg is disposed remotely therefrom. In the illustrated embodiments, the air moving structure is disposed in a lowermost portion of the cabinet, with the transverse inlet leg of the heat exchanger being selectively disposed lowermost or uppermost to define the two selective arrangements.
    • 用于将热量从燃烧产物转移到在炉中进行调理的空气的传热结构。 传热结构包括入口部分,其接收来自燃烧器的热的燃烧产物,并且大致横向于通过与之相关联的待调节的空气流动的方向延伸。 传热结构还包括至少三个连续的腿部,其大致平行于空气流动的方向延伸。 在一种形式中,横向腿设置在空气流动通道的入口部分处,并且在改进形式中,横向腿部远离其设置。 在所示的实施例中,空气移动结构设置在机柜的最下部分,热交换器的横向入口支腿被选择性地设置在最下部或最上部以限定两个选择性布置。
    • 7. 发明授权
    • High efficiency furnace with secondary heat exchanger
    • 高效炉二次换热器
    • US4542734A
    • 1985-09-24
    • US529471
    • 1983-09-06
    • Bryan O. TrentRonald S. Tomlinson
    • Bryan O. TrentRonald S. Tomlinson
    • F24H3/06F24H8/00F24H3/02
    • F24H3/065F24H8/00Y02B30/102
    • A domestic forced-air furnace provided with a condensate collector downstream of air moving structure for flowing the products of combustion through the furnace. The furnace includes a secondary heat exchanger. Condensate produced therein is transferred therefrom through the air moving structure to the condensate separator. The secondary heat exchanger and air moving structure are inclined slightly to the horizontal so as to cause continuous flow of condensate therethrough not only during operation of the furnace but also subsequent thereto to assure removal of condensate from the furnace components and thereby avoid corrosive damage thereto from the condensate. The secondary heat exchanger provides the primary pressure drop in the combustion product flow path, permitting control of the furnace capacity by simple modification thereof without the need for changing other components, such as the air moving structure.
    • 一种家用强制空气炉,在空气移动结构下游设有冷凝水收集器,用于使燃烧产物通过炉子流动。 该炉包括二次热交换器。 其中生产的冷凝物通过空气移动结构转移到冷凝物分离器。 次级热交换器和空气移动结构相对于水平面稍微倾斜,以便不仅在炉子的操作期间,而且在其后还要使冷凝物连续流动,以确保从炉子部件中除去冷凝物,从而避免对其进行腐蚀性破坏 冷凝水。 二次热交换器在燃烧产物流动路径中提供初级压降,允许通过简单的修改来控制炉容量,而不需要改变诸如空气移动结构的其它部件。
    • 8. 发明授权
    • Furnace with flue gas condensate neutralizer
    • 炉内采用烟气冷凝物中和剂
    • US4289730A
    • 1981-09-15
    • US133981
    • 1980-03-26
    • Ronald S. Tomlinson
    • Ronald S. Tomlinson
    • B01D53/34F24H8/00F01N3/10
    • F24H8/006B01D53/34Y02B30/106
    • A high efficiency domestic furnace incorporates means for separating and neutralizing flue gas condensate. Acidic condensate from the flue gas products of combustion is neutralized by contact with neutralizing material in a housing through which the condensate is flowed. The use of the neutralizer in connection with a high efficiency domestic furnace permits discharge of the condensate directly to the household drain. The neutralizer is arranged to be self-flushing and defines a serpentine, series flow path and is arranged to discharge the neutralized condensate as a result of the entry of additional acidic condensate at its inlet.
    • 高效率的家用炉具有用于分离和中和烟道气冷凝物的方法。 来自燃烧烟道气产物的酸性冷凝物通过与冷凝物流过的壳体中的中和材料接触来中和。 使用中和器与高效率的家用炉相连,允许将冷凝水直接排放到家庭排水管。 中和器被布置成自冲洗并且限定蛇形的串联流动路径,并且被布置成由于在其入口处进入另外的酸性冷凝物而排出中和的冷凝物。
    • 9. 发明授权
    • Standing pilot furnace with vented vestibule
    • 站立先导炉与通风的前庭
    • US5293860A
    • 1994-03-15
    • US940692
    • 1992-09-04
    • Ronald S. TomlinsonSteven W. McKinney
    • Ronald S. TomlinsonSteven W. McKinney
    • F23L17/00F24H9/00F24H9/18F24H3/02
    • F23L17/00F24H9/0026F24H9/1836
    • An induced draft, fuel-fired furnace having a heat exchanger with an inlet and an outlet includes a vent having an inlet, a burner, and a vented vestibule in fluid communication with the vent. A blower has an inlet in fluid communication with the heat exchanger outlet, and an outlet disposed at the inlet of the vent. The blower outlet has a cross-sectional area smaller than the vent inlet. The vent inlet and blower outlet define a vent inlet opening. A drafthood formed with an inlet is disposed in the vestibule and forms a plenum in fluid communication with the vent inlet opening. A source of combustion products is disposed in the furnace such that combustion products produced thereby are in fluid communication with the drafthood inlet and vent inlet opening. The source of combustion products includes either a standing pilot or electronic ignitor for igniting fuel operably discharged from the burner.
    • 具有具有入口和出口的热交换器的引燃通风燃料燃烧炉包括具有入口,燃烧器和与排气口流体连通的通风前庭的排气口。 鼓风机具有与热交换器出口流体连通的入口和设置在通风口入口处的出口。 鼓风机出口的横截面面积小于通风口。 通风口和鼓风机出口限定通风口入口。 形成有入口的草图设置在前庭中并形成与通气口入口开口流体连通的增压室。 将燃烧产物源设置在炉中,使得由此产生的燃烧产物与草图入口和通风口入口开口流体连通。 燃烧产物的来源包括用于点燃燃烧器可操作地排出的燃料的立式飞行员或电子点火器。