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
    • 32. 发明申请
    • Method of generating energy in a power plant comprising a gas turbine, and power plant for carrying out the method
    • 在包括燃气轮机的发电厂中产生能量的方法以及用于执行该方法的动力装置
    • US20050028529A1
    • 2005-02-10
    • US10855494
    • 2004-05-28
    • Michael BartlettTimothy GriffinDaniel Holmberg
    • Michael BartlettTimothy GriffinDaniel Holmberg
    • F01D17/00B01D53/14F02C3/34F02C6/08F02C6/18F02C7/04F02C7/08F02C7/141F02G5/02F23R3/00F02C1/00
    • F02C1/10B01D53/1475F02C3/34F02C7/141Y02A50/2342Y02C10/06Y02E20/16
    • A method of generating energy in a power plant (30) having a gas turbine (29), includes a first step a gas containing air (1) is compressed in a first compressor (2) of the gas turbine (29), a second step the compressed gas (3, 3a, 3b; 5; 7a, 7b) is fed to a combustion process with the addition of fuel (8) in a combustor (23), a third step the hot flue gas (9) from the combustor (23) is expanded in an expander or a turbine (10), driving a generator (18), of the gas turbine (29) while performing work, and a fourth step a partial flow of the expanded flue gas (11) is recirculated to the inlet of the first compressor (2) and admixed with the gas containing air (1). Carbon dioxide (CO2) is separated from the compressed gas (3, 3a, 3b; 5; 7a, 7b) in a CO2 separator (6) before the third step. In such a method, the overall size and energy costs are reduced by virtue of the fact that, to permit increased CO2 concentrations in the CO2 separator (6), not more than about 70% of the carbon dioxide contained in the compressed gas (3, 3a, 3b; 5, 5a, 5b; 7a, 7b) is removed from the compressed gas (3, 3a, 3b; 5, 5a, 5b; 7a, 7b).
    • 一种在具有燃气轮机(29)的动力装置(30)中产生能量的方法,包括第一步骤,在所述燃气轮机(29)的第一压缩机(2)中压缩含有空气(1)的气体,第二步骤 通过在燃烧器(23)中添加燃料(8)将压缩气体(3,3a,3b; 5; 7a,7b)进料到燃烧过程,第三步骤将热废气(9)从 燃烧器(23)在膨胀机或涡轮机(10)中膨胀,同时在执行工作的同时驱动燃气轮机(29)的发电机(18),第四步是扩大烟道气(11)的部分流动 再循环到第一压缩机(2)的入口并与含气体(1)混合。 在第三步骤之前,二氧化碳(CO 2)与二氧化碳分离器(6)中的压缩气体(3,3a,3b; 5; 7a,7b)分离。 在这种方法中,由于为了允许在二氧化碳分离器(6)中增加二氧化碳浓度,压缩气体(3)中所含的二氧化碳不超过约70%,总体尺寸和能量成本降低 ,3a,3b; 5,5a,5b; 7a,7b)从压缩气体(3,3a,3b; 5,5a,5b; 7a,7b)中除去。
    • 34. 发明授权
    • Method of operating a gas turbine on reformed fuel
    • 在重整燃料上操作燃气轮机的方法
    • US5729967A
    • 1998-03-24
    • US698592
    • 1996-08-16
    • Franz JoosTimothy GriffinHans Koch
    • Franz JoosTimothy GriffinHans Koch
    • F01N3/08F01N3/24F02C3/20F02C3/28F02C7/26F02C9/34F23C6/04F23C13/00F23R3/40
    • F23C13/00F02C3/28F23C6/047F23R3/40
    • In a method for the operation of a power station installation which essentially comprises a compressor (4), a combustion unit and a turbine (12), the combustion unit comprising a conditioning stage for at least part of the combustion air and a combustion chamber, a portion (13a) of the compressed air (13) from the compressor (4) is passed through the conditioning stage and there first of all mixed with a quantity of fuel (14a). This mixture then passes into a generator (8), in which at least hydrogen is fractionated, this hydrogen then being used in the combustion chamber. The combustion chamber comprises a start-up burner (1), a catalytic stage (2) and a downstream second combustion stage (3). Both the air/fuel mixture (16a) fractionated in the generator (8) and the further compressor air (13) enter the combustion chamber, in which interdependent combustion occurs between the combustion units acting there, relative to the running up of the installation, for the purpose of minimizing pollutant emissions. (FIG. 1)
    • 在基本上包括压缩机(4),燃烧单元和涡轮机(12)的电站设备操作的方法中,所述燃烧单元包括用于至少部分燃烧空气和燃烧室的调节级, 来自压缩机(4)的压缩空气(13)的部分(13a)通过调节阶段,首先与一定量的燃料(14a)混合。 然后将该混合物送入发生器(8),其中至少将氢气分馏,然后将该氢气用于燃烧室。 燃烧室包括启动燃烧器(1),催化级(2)和下游第二燃烧级(3)。 在发电机(8)中分离出的空气/燃料混合物(16a)和另外的压缩机空气(13)进入燃烧室,在燃烧室中,相对于设备的运行在其间作用的燃烧单元之间发生相互依赖的燃烧, 以减少污染物排放。 (图。1)
    • 37. 发明授权
    • Catalyzer
    • 催化剂
    • US07934925B2
    • 2011-05-03
    • US11651535
    • 2007-01-10
    • Richard CarroniTimothy GriffinVerena Schmidt
    • Richard CarroniTimothy GriffinVerena Schmidt
    • F23D3/40F23M3/00F23Q11/00
    • F23C13/00F23R3/40
    • A catalyzer for burning part of a gaseous fuel/oxidant mixture, in particular for a burner of a power plant installation, has catalytically active channels and catalytically inactive channels and at least two sectors are arranged consecutively in the main flow direction. The sectors include a first sector defining an inlet sector and at least one following sector that includes one or more of a mixing sector arranged downstream from the inlet sector and an outlet sector. Further, the catalyzer has one or more of a smaller flow resistance in the inlet sector than any following sector, a higher catalytic activity in the inlet sector than any following sector, a plurality of holes in the mixing sector oriented transversely to the main flow direction and through which adjoining channels communicate, and a swirl generator in the outlet sector that provides a swirl to a gas mixture flowing through the outlet sector.
    • 用于燃烧气体燃料/氧化剂混合物的一部分的催化剂,特别是用于发电厂安装的燃烧器的催化剂具有催化活性通道和催化非活性通道,并且至少两个扇区在主流动方向上连续排列。 这些部门包括限定入口扇区的第一扇区和至少一个后续扇区,其包括布置在入口扇区下游的一个或多个混合扇区和出口扇区。 此外,催化剂在入口扇区中具有一个或多个在任何下一个扇区中的较小的流动阻力,在入口扇区中的催化活性高于任何后续扇区,混合扇区中的多个孔横向于主流动方向 并且通过其邻接的通道连通,以及在出口扇区中的涡流发生器,其向流过出口扇区的气体混合物提供涡流。
    • 40. 发明授权
    • Method for the combustion of a fuel-oxidizer mixture
    • 燃料 - 氧化剂混合物的燃烧方法
    • US07421844B2
    • 2008-09-09
    • US11066926
    • 2005-02-28
    • Timothy GriffinDieter Winkler
    • Timothy GriffinDieter Winkler
    • F23R3/40
    • F23C13/00F23C2900/13002F23C2900/9901F23R3/40
    • A method used for combustion of a fuel-oxidizer mixture in a combustion chamber of a turbogroup, in particular of a power plant wherein total oxidizer flow is divided into a main oxidizer flow and a secondary oxidizer flow. The main oxidizer flow is lean mixed with a main fuel flow in a premix burner, and the mixture is fully oxidized in the combustion chamber. The secondary oxidizer flow is divided into a pilot oxidizer flow and a heat-exchanging oxidizer flow. The pilot oxidizer flow is rich mixed with a pilot fuel flow, and the mixture is partially oxidized in a catalyst, with hydrogen being formed. Downstream of the catalyst, the partially oxidized pilot fuel-oxidizer mixture and the heat-exchanging oxidizer flow are together introduced into at least one zone which is suitable for stabilizing the combustion of the main fuel-oxidizer mixture.
    • 一种用于燃料 - 氧化剂混合物在涡轮组的燃烧室中的燃烧的方法,特别是在其中总氧化剂流分为主氧化剂流和次级氧化剂流的动力装置。 主要氧化剂流与预混燃烧器中的主要燃料流混合,并且混合物在燃烧室中被完全氧化。 次级氧化剂流分为先导氧化剂流和热交换氧化剂流。 先导氧化剂流与引燃燃料流充分混合,混合物在催化剂中部分氧化,形成氢气。 在催化剂的下游,部分氧化的先导燃料 - 氧化剂混合物和热交换氧化剂流一起引入适于稳定主燃料 - 氧化剂混合物的燃烧的至少一个区域。