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    • 11. 发明申请
    • RADIANT ENERGY SOURCE SYSTEMS, DEVICES AND METHODS
    • 辐射能源系统,设备和方法
    • WO2004090424A3
    • 2004-12-23
    • PCT/US2004010111
    • 2004-03-31
    • RADIANT OPTICS INCJOHNSON ROGER N
    • JOHNSON ROGER N
    • F24C3/04F24C7/06F24C15/00
    • F24C3/042F24C7/062F24C15/001
    • This document discusses, among other things, systems, devices, and methods that increase radiant energy output, such as by using the waste airflow of combusted gas and/or ambient airflow resulting from convection, or by reducing or avoiding cooling effects of such airflows. In one example, the collected energy can be used to drive other secondary radiant sources or to preheat combustion air or ambient air. In another example, segmented secondary radiant sources are thermally isolated from each other to operate as a cross flow exchanger that exchanges thermal energy from a heated gas to a heated surface that provides radiant energy output. In a further example, a re-radiant membrane can separate the radiant source from the environment and/or reconfigure the effective shape of the primary radiant energy source.
    • 本文件尤其涉及增加辐射能输出的系统,装置和方法,例如通过使用由对流产生的燃烧气体和/或环境气流的废气流,或通过减少或避免这种气流的冷却效应。 在一个示例中,所收集的能量可用于驱动其它二次辐射源或预热燃烧空气或环境空气。 在另一示例中,分段二次辐射源彼此热隔离,以作为将热能从加热气体交换到提供辐射能量输出的加热表面的交叉流交换器。 在另一个实例中,再辐射膜可以将辐射源与环境分开和/或重新配置主辐射能量源的有效形状。
    • 12. 发明申请
    • GAS RADIATION OVEN RANGE
    • 气体辐射范围
    • WO2004051145A1
    • 2004-06-17
    • PCT/KR2002/002245
    • 2002-11-29
    • LG ELECTRONICS INC.LEE, Dae-RaeKIM, In-GyuJUNG, Dae-HeeCHOUNG, Sug-MoonKIM, Yang-Ho
    • LEE, Dae-RaeKIM, In-GyuJUNG, Dae-HeeCHOUNG, Sug-MoonKIM, Yang-Ho
    • F24C3/04
    • F24C15/101F24C3/067
    • A gas radiation oven range including an outer case (10) which is formed with an upper side opened, having an internal space, a ceramic glass (20) which is covered and combined with an upper end of the outer case (10), a plurality of burner housings (300) which are combined to be contacted with a lower surface of the ceramic glass (20), forms an exhaust passage (F) with the lower surface of the ceramic glass (20), and is integrally combined with a plurality of ports with different sizes, a radiant burner (40) which is combined with a side surface of the respective burner housings (300), for generating a radiant wave, combusting mixed gas and a shared discharge unit which is positioned among the burner housings (300) and combined to be connected to respective exhaust passages (F) which are formed at a side portion of the burner housings (300).
    • 一种气体放射线烘炉范围,包括外壳(10),其形成有具有内部空间的上侧开口的陶瓷玻璃(20),所述陶瓷玻璃(20)与所述外壳(10)的上端被覆盖并组合, 多个与陶瓷玻璃(20)的下表面接触的燃烧器壳体(300)与陶瓷玻璃(20)的下表面形成排气通道(F),并与 多个具有不同尺寸的端口,辐射燃烧器(40),其与各个燃烧器壳体(300)的侧表面组合,用于产生辐射波,燃烧混合气体和共享排放单元,其位于燃烧器壳体 (300)并且组合以连接到形成在燃烧器壳体(300)的侧部处的各个排气通道(F)。
    • 18. 发明申请
    • GAS RADIATOR
    • 气体散热器
    • WO2009047092A3
    • 2009-09-24
    • PCT/EP2008062324
    • 2008-09-16
    • KROMSCHROEDER AG GVALERO URREA JOSE
    • VALERO URREA JOSE
    • F24C3/10F24C3/04
    • F24C3/10F24C3/042
    • The gas radiator comprises at least one main burner (1) and a pilot burner (2), said pilot burner (2) guaranteeing the ignition of the main burner (1), and it characterised in that said pilot burner (2) is an infrared radiation burner. Said pilot burner (2) of infrared radiation preferably comprises a Venturi tube (10) placed between a gas injector (8) and a combustion chamber (11). It permits a great stability of the ignition in conditions of air draughts, a lower consumption than a traditional pilot, and a greater resistance against dust, dirt and adverse environmental conditions.
    • 气体散热器包括至少一个主燃烧器(1)和一个引燃燃烧器(2),所述引燃燃烧器(2)确保主燃烧器(1)的点火,并且其特征在于,所述引燃燃烧器(2)是 红外辐射燃烧器。 所述红外辐射引燃器(2)优选地包括放置在气体喷射器(8)和燃烧室(11)之间的文丘里管(10)。 它可以在气流条件下实现点火的高度稳定性,比传统飞行员更低的消耗量以及更强的抗灰尘,污垢和恶劣环境条件的能力。
    • 19. 发明申请
    • RADIANT TUBE BROILER
    • 辐射管布鲁塞尔
    • WO2008060443A3
    • 2009-04-23
    • PCT/US2007023577
    • 2007-11-08
    • BEST WILLIE H
    • BEST WILLIE H
    • F24C3/04F23D14/02F24C3/14F24C15/32
    • F24C15/32A47J37/0635A47J37/0652A47J37/0688A47J37/0718F24C3/047F24C3/14
    • An emitter tube has an outer surface and an inner surface, wherein the inner surface defines a cavity of the emitter tube, and the cavity of the emitter tube is adapted for receiving food. An outer tube has an inner surface that defines a cavity of the outer tube, and the emitter tube is positioned in the cavity of the outer tube. A heating unit is for heating the outer surface of the emitter tube so that heat energy is transferred by conduction from the outer surface of the emitter tube to the inner surface of the emitter tube, and the inner surface of the emitter tube emits infrared radiant energy into the cavity of the emitter tube so that a majority of the energy that is transferred to the food within the emitter tube is in the form of infrared radiant energy.
    • 发射管具有外表面和内表面,其中内表面限定发射管的空腔,并且发射管的空腔适于接收食物。 外管具有限定外管的空腔的内表面,并且发射管位于外管的空腔中。 加热单元用于加热发射管的外表面,使得热能通过从发射管的外表面传导到发射管的内表面,并且发射管的内表面发射红外辐射能 进入发射管的空腔,使得传输到发射管内的食物的大部分能量是红外辐射能的形式。