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    • 6. 发明授权
    • Optimized power generation system comprising an oxygen-fired combustor integrated with an air separation unit
    • 优化的发电系统包括与空气分离单元一体化的燃烧燃烧的燃烧器
    • US06871502B2
    • 2005-03-29
    • US10352171
    • 2003-01-28
    • Ovidiu MarinScott MacadamPietro Di Zanno
    • Ovidiu MarinScott MacadamPietro Di Zanno
    • F01K21/04F01K23/06F25J3/04F02C3/30F02C6/18
    • F25J3/04533F01K21/042F01K21/047F01K23/064F25J3/04581F25J3/04612F25J2240/70F25J2240/80F25J2260/80Y02E20/14Y02E20/344
    • A novel power generation system, more specifically an integrated power generation and air separation system and an integrated power generation and air separation process is provided. A key component of the system and process is an oxygen-fired combustor designed for gas turbine operating pressures. The combustor produces a high-temperature gas stream that enters one or more heat exchangers to generate/heat steam, and then enters one or more turbines to generate power. The steam from the heat exchanger drives one or more steam turbines to generate power, and the discharged steam is admitted to the combustor. To maximize cycle efficiency, steam extraction and reheat is incorporated in the process. Additional power is generated from a high-pressure nitrogen stream produced by an air separation unit (ASU). This process has the potential to attain high cycle efficiencies with zero emissions, while utilizing existing or near-term steam turbines, and moderate-pressure combustion systems.
    • 提供了一种新颖的发电系统,更具体地说是集成的发电和空气分离系统以及集成的发电和空气分离过程。 该系统和过程的关键部件是为燃气轮机工作压力设​​计的燃烧燃烧器。 燃烧器产生高温气流,其进入一个或多个热交换器以产生/加热蒸汽,然后进入一个或多个涡轮机以产生动力。 来自热交换器的蒸汽驱动一个或多个蒸汽轮机以产生动力,并且排出的蒸汽被允许进入燃烧器。 为了最大化循环效率,在此过程中并入蒸汽提取和再热。 由空气分离单元(ASU)产生的高压氮气流产生附加功率。 该方法具有在零排放下实现高循环效率,同时利用现有或近期蒸汽轮机和中压燃烧系统的潜力。
    • 9. 发明授权
    • Lance for injecting fluids for uniform diffusion within a volume
    • 用于注射流体以在体积内均匀扩散的喷枪
    • US06912756B2
    • 2005-07-05
    • US10696575
    • 2003-10-30
    • Ovidiu MarinScott MacadamBenjamin BugeatFabienne Chatel-Pelage
    • Ovidiu MarinScott MacadamBenjamin BugeatFabienne Chatel-Pelage
    • A47L5/14B08B3/00B65B1/04F22B37/00F22B37/48F23D14/48F27B20060101F27B3/22
    • F27B3/225
    • An injection lance for injecting a fluid over a predefined target area within a system includes a support block with an inlet side and an outlet side. A plurality of channels are disposed non-parallel with respect to each other within the support block and extend between the inlet and outlet sides of the support block so as to receive fluid at the inlet side and deliver fluid through the support block for injection from the outlet side of the support block over the target area. At least two channels extend from the inlet side toward the outlet side in a direction away from a central axis of the support block, where the central axis intersects the outlet side. The target area includes a plurality of consecutively aligned sectors, and the channels are oriented within the support block so that a central axis of a fluid stream injected from each channel over the target area is centered between longitudinal boundaries defined by a respective sector.
    • 用于在系统内的预定义目标区域上注入流体的注射枪包括具有入口侧和出口侧的支撑块。 多个通道在支撑块内相对于彼此不平行地设置并且在支撑块的入口侧和出口侧之间延伸,以便在入口侧接收流体并且将流体通过支撑块输送以从 支撑块的出口侧在目标区域上。 至少两个通道从远离支撑块的中心轴线的方向从入口侧朝向出口侧延伸,其中中心轴线与出口侧相交。 目标区域包括多个连续对准的扇区,并且通道定位在支撑块内,使得从目标区域上的每个通道注入的流体流的中心轴线位于由相应扇区限定的纵向边界之间。
    • 10. 发明授权
    • Hybrid oxygen-fired power generation system
    • 混合式燃煤发电系统
    • US07191587B2
    • 2007-03-20
    • US10698842
    • 2003-10-31
    • Ovidiu MarinScott Macadam
    • Ovidiu MarinScott Macadam
    • F02C3/30F02C3/34
    • F02C3/30F01K21/047F02C1/08F02C3/20F02C3/34F05D2210/13Y02E20/344
    • An oxygen fired power generation system is disclosed. The power generation system has a high pressure combustor having a water recycle temperature control subassembly, and an intermediate pressure combustor having a CO2 recycle temperature control subassembly. Thus, a first energy cycle utilizes a first energy source operatively associated with a corresponding first heat sink, and a first inert agent to provide energy transfer therebetween and temperature control during operation of the first energy source. In like fashion, a second energy cycle utilizes a second energy source operatively associated with a corresponding second heat sink, and a second inert agent to provide energy transfer therebetween and temperature control during operation of the second energy source. The first and second energy sources are not identical, the first and second heat sinks are not identical and the first and second inert agents are not identical. The first and second energy cycles are configured in combination to provide a power generation unit.
    • 公开了一种氧燃烧发电系统。 发电系统具有具有水循环温度控制子组件的高压燃烧器和具有CO 2 CO 2再循环温度控制子组件的中压燃烧器。 因此,第一能量循环利用与对应的第一散热器可操作地相关联的第一能量源和在第一能量源的运行期间提供能量转移和第一能量源的温度控制的第一惰性剂。 以类似的方式,第二能量循环利用与对应的第二散热器可操作地相关联的第二能量源和在第二能量源的操作期间提供能量传递和第二能量源的温度控制的第二惰性剂。 第一和第二能量源不相同,第一和第二散热器不相同,第一和第二惰性剂不相同。 第一和第二能量循环被组合以提供发电单元。