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    • 1. 发明申请
    • COOL FLAME COMBUSTION
    • 冷却火焰燃烧
    • WO2008138971A2
    • 2008-11-20
    • PCT/EP2008/055992
    • 2008-05-15
    • ALSTOM TECHNOLOGY LTDMINA, Theodore Ishaq
    • MINA, Theodore Ishaq
    • F23R3/50F23D14/20F23D14/48F23D14/58F23D11/10F23D11/38F23R3/46
    • F23D1/06F23D14/22F23D14/56F23D14/58F23D2900/00011F23R3/28Y02E20/342
    • A combustion process for burning fuel in a combustion chamber 7 comprises the steps of: supplying fuel and air to a burner 1 associated with the combustion chamber, the amount ofair supplied being at least as much as required for stoichiometric combustion of the fuel and subsequent dilution of the combustion process in the combustion chamber; and injecting the fuel and all the air from the burner directly into the combustion chamber in a substantially unmixed state as a fuel stream within an air stream. Fuel is injected from a nozzle 4, which is nested within an air nozzle 12. Preferably, the fuel nozzle exitis set back within the air nozzle opening. The fuel nozzle ejects a fuel stream of such thickness d that the fuel burns in the combustion chamber 7 as a diffusion flame with a high surface-to-volume ratio at or close to the stoichiometric fuel/air ratio. The flow ofair through the air nozzle 12 is subject to the venturi effect, which increases the speed of the air stream and exerts a suction effect on the fuel. The combustion process can be performed in burners and combustors that take many different forms.
    • 用于在燃烧室7中燃烧燃料的燃烧过程包括以下步骤:将燃料和空气供应到与燃烧室相关联的燃烧器1,所供应的空气量至少等于燃料的化学计量燃烧所需的量和随后的稀释 的燃烧室中的燃烧过程; 并且将来自燃烧器的燃料和所有空气以基本上未混合的状态直接喷入燃烧室,作为气流内的燃料流。 从喷嘴4喷射燃料,喷嘴4嵌套在空气喷嘴12内。优选地,燃料喷嘴外部气囊回到空气喷嘴开口内。 燃料喷嘴喷射这样厚度d的燃料流,使得燃料在燃烧室7中以具有或接近化学计量燃料/空气比的高表面体积比的扩散火焰燃烧。 通过空气喷嘴12的气流经受文丘里效应,这增加了空气流的速度并对燃料施加吸力。 燃烧过程可以在具有许多不同形式的燃烧器和燃烧器中进行。
    • 3. 发明申请
    • COOL FLAME COMBUSTION
    • 冷却火焰燃烧
    • WO2008138971A3
    • 2009-03-26
    • PCT/EP2008055992
    • 2008-05-15
    • ALSTOM TECHNOLOGY LTDMINA THEODORE ISHAQ
    • MINA THEODORE ISHAQ
    • F23D1/06F23D14/22F23D14/56F23D14/58F23R3/28
    • F23D1/06F23D14/22F23D14/56F23D14/58F23D2900/00011F23R3/28Y02E20/342
    • A combustion process for burning fuel in a combustion chamber (7) comprises the steps of: supplying fuel and air to a burner (1) associated with the combustion chamber, the amount ofair supplied being at least as much as required for stoichiometric combustion of the fuel and subsequent dilution of the combustion process in the combustion chamber; and injecting the fuel and all the air from the burner directly into the combustion chamber in a substantially unmixed state as a fuel stream within an air stream. Fuel is injected from a nozzle (4), which is nested within an air nozzle (12). Preferably, the fuel nozzle exitis set back within the air nozzle opening. The fuel nozzle ejects a fuel stream of such thickness d that the fuel burns in the combustion chamber (7) as a diffusion flame with a high surface-to-volume ratio at or close to the stoichiometric fuel/air ratio. The flow ofair through the air nozzle (12) is subject to the venturi effect, which increases the speed of the air stream and exerts a suction effect on the fuel. The combustion process can be performed in burners and combustors that take many different forms.
    • 用于在燃烧室(7)中燃烧燃料的燃烧过程包括以下步骤:将燃料和空气供应到与燃烧室相关联的燃烧器(1),所供应的空气量至少等于 燃料和随后稀释的燃烧过程在燃烧室中; 并且将燃料和来自燃烧器的所有空气以基本上未混合的状态直接喷入燃烧室,作为气流内的燃料流。 从位于空气喷嘴(12)内的喷嘴(4)喷射燃料。 优选地,燃料喷嘴外部炎症回到空气喷嘴开口内。 燃料喷嘴喷射燃料流,其燃料燃烧在燃烧室(7)中,作为扩散火焰,燃料流具有与化学计量燃料/空气比接近或接近的高表面体积比。 通过空气喷嘴(12)的空气流经受文丘里效应,这增加了空气流的速度并对燃料施加吸力。 燃烧过程可以在燃烧器和燃烧器中进行,燃烧器和燃烧器采取许多不同的形式。