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    • 4. 发明申请
    • INTEGRATED SPLIT STREAM WATER COIL AIR HEATER AND ECONOMIZER (IWE)
    • 集成分流水环线加热器和经济型(IWE)
    • US20100229805A1
    • 2010-09-16
    • US12581637
    • 2009-10-19
    • Brian J. CerneyWilliam R. StirgwoltMelvin J. AlbrechtKevin R. ThomasGeorge B. BrechunJohn E. Monacelli
    • Brian J. CerneyWilliam R. StirgwoltMelvin J. AlbrechtKevin R. ThomasGeorge B. BrechunJohn E. Monacelli
    • F22D7/00F22B29/12
    • F22D1/36F22D1/003
    • An integrated water coil air heater and economizer arrangement for a boiler has a feedwater inlet for supplying feedwater to the boiler, and conduits and a valve for splitting the feedwater from the inlet into a first partial lower temperature, lower mass flow stream, and a second partial higher temperature, higher flow stream. A water coil air heater for passage of air to be heated for the boiler contains at least one heat transfer loop in heat transfer relationship with the air, the heat transfer loop of the water coil air heater being connected to receive the first partial stream. An economizer for passage of flue gas to be cooled for the boiler contains at least one heat transfer loop in heat transfer relationship with the flue gas, the heat transfer loop of the economizer being connected to the heat transfer loop of the water coil air heater for receiving the first partial stream from the water coil air heater. A mixing location downstream of the economizer receives and reunites the first and second partial streams and a conduit carries the second partial stream from the feedwater inlet to the to the mixing location.
    • 用于锅炉的集成的水盘式空气加热器和节能器装置具有用于向锅炉供水的供水入口,以及用于将进水从入口分为第一部分较低温度,较低质量流量的管道和阀,以及第二 部分温度较高,流量较大。 用于锅炉待加热空气通过的水盘式空气加热器包含至少一个与空气传热关系的传热回路,水盘管式空气加热器的传热回路被连接以接收第一部分气流。 用于锅炉待冷却烟道气的节能器包含至少一个与烟气传热关系的传热回路,节能器的传热回路连接到水盘管空气加热器的传热回路 从水线圈空气加热器接收第一部分流。 在节能器下游的混合位置接收并重新组合第一和第二部分流,并且导管将第二部分流从给水入口运送到混合位置。
    • 7. 发明授权
    • Integrated split stream water coil air heater and economizer (IWE)
    • 集成分流水盘式空气加热器和节能器(IWE)
    • US08286595B2
    • 2012-10-16
    • US12581637
    • 2009-10-19
    • Brian J. CerneyWilliam R. StirgwoltMelvin J. AlbrechtKevin R. ThomasGeorge B. BrechunJohn E. Monacelli
    • Brian J. CerneyWilliam R. StirgwoltMelvin J. AlbrechtKevin R. ThomasGeorge B. BrechunJohn E. Monacelli
    • F22B1/02
    • F22D1/36F22D1/003
    • An integrated water coil air heater and economizer arrangement for a boiler has a feedwater inlet for supplying feedwater to the boiler, and conduits and a valve for splitting the feedwater from the inlet into a first partial lower temperature, lower mass flow stream, and a second partial higher temperature, higher flow stream. A water coil air heater for passage of air to be heated for the boiler contains at least one heat transfer loop in heat transfer relationship with the air, the heat transfer loop of the water coil air heater being connected to receive the first partial stream. An economizer for passage of flue gas to be cooled for the boiler contains at least one heat transfer loop in heat transfer relationship with the flue gas, the heat transfer loop of the economizer being connected to the heat transfer loop of the water coil air heater for receiving the first partial stream from the water coil air heater. A mixing location downstream of the economizer receives and reunites the first and second partial streams and a conduit carries the second partial stream from the feedwater inlet to the to the mixing location.
    • 用于锅炉的集成的水盘式空气加热器和节能器装置具有用于向锅炉供水的供水入口,以及用于将进水从入口分为第一部分较低温度,较低质量流量的管道和阀,以及第二 部分温度较高,流量较大。 用于锅炉待加热空气通过的水盘式空气加热器包含至少一个与空气传热关系的传热回路,水盘管式空气加热器的传热回路被连接以接收第一部分气流。 用于锅炉待冷却烟道气的节能器包含至少一个与烟气传热关系的传热回路,节能器的传热回路连接到水盘管空气加热器的传热回路 从水线圈空气加热器接收第一部分流。 在节能器下游的混合位置接收并重新组合第一和第二部分流,并且导管将第二部分流从给水入口运送到混合位置。
    • 9. 发明申请
    • ENHANCED STEAM CYCLE UTILIZING A DUAL PRESSURE RECOVERY BOILER WITH REHEAT
    • 增压蒸汽循环利用双重压力回收锅炉
    • US20090241860A1
    • 2009-10-01
    • US12055832
    • 2008-03-26
    • JOHN E. MONACELLITimothy E. HicksLarry A. HinerSteven L. Osborne
    • JOHN E. MONACELLITimothy E. HicksLarry A. HinerSteven L. Osborne
    • F22B1/18
    • F22B33/10F22B33/14Y02P60/831
    • An enhanced steam cycle utilizing a dual pressure recovery boiler with reheat allows a large increase in electrical generation with various turbine cycles while overcoming traditional lower furnace material limitations. A dual pressure designed recovery boiler furnace is provided with a lower furnace and an upper furnace. The lower furnace is operated at a lower temperature to prevent or reduce corrosion of the lower furnace wall tubes caused by the reducing environment. The lower furnace can be either a low pressure natural circulation steam generating (drum) system or economizer. Unlike the lower furnace, the upper furnace is not exposed to a reducing environment and is therefore not as susceptible to severe corrosion rates. The upper furnace is operated at higher temperatures and pressures which permit implementation of higher efficiency reheat steam cycles. The upper furnace thus operates as a high pressure natural circulation steam generating (drum) system, or as a once-through supercritical steam generating system. The dual pressure recovery boiler can thus be coupled to a variety of condensing, non-condensing or a combination of condensing and non-condensing turbine cycles to provide a large increase in electrical generation.
    • 利用具有再热的双压力回收锅炉的增强的蒸汽循环允许在克服传统的较低炉材料限制的情况下,具有各种涡轮循环的发电量大大增加。 双压设计的回收锅炉炉具有下炉和上炉。 下炉在较低的温度下运行,以防止或减少由还原环境引起的下炉壁管的腐蚀。 低炉可以是低压自然循环蒸汽发生(鼓)系统或节能器。 与下炉不同,上炉没有暴露在还原环境中,因此不会受到严重的腐蚀速率的影响。 上炉在更高的温度和压力下运行,这允许实现更高效率的再热蒸汽循环。 因此,上部炉子作为高压自然循环蒸汽发生(鼓)系统,或作为一次通过的超临界蒸汽发生系统。 因此,双压力回收锅炉可以耦合到各种冷凝,非冷凝或冷凝和非冷凝涡轮循环的组合,以提供大量的发电增加。