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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Aerodynamic Analysis of Steam Turbine Feed-Heating Steam Extractions
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Aerodynamic Analysis of Steam Turbine Feed-Heating Steam Extractions

机译:汽轮机供热蒸汽提取的空气动力学分析

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摘要

Feed-heating in steam turbines, the use of steam extracted from the turbine to heat the feed-water, is known to raise the plant efficiency and so is included in most steam turbine power plant designs. The steam is extracted through an extraction slot that runs around the casing downstream of a rotor blade row. The slot is connected to a plenum, which runs around the outside of the turbine annulus. Steam flows to the feed-heaters through a pipe connected usually to the bottom of the plenum. The steam extraction is driven by a circumferentially nonuniform pressure gradient in the plenum. This causes the mass flow rate of steam extracted to vary circumferentially, which affects the main passage flow downstream of the extraction point. The flow in the extraction plenum and the influence of the steam extraction on the mainstream aerodynamics is analyzed numerically in this paper. A complete annulus with the extraction slot and plenum together with the downstream stator and rotor blade rows is modeled in this study. The results reveal a highly nonuniform steam extraction around the annulus with the highest extraction rates from the bottom nearest the extraction pipe and the lowest at the top of the annulus. This difference in extraction rates modifies the flow angle and loss circumferential distribution downstream of the stator blade row. This study finds out that the distribution of steam extraction around the annulus and its influence on the main passage flow could be greatly improved by changing the shape and increasing the volume of the extraction slot and plenum.
机译:众所周知,蒸汽轮机中的给料加热是利用从涡轮机中提取的蒸汽来加热给水,从而提高了电厂效率,因此,大多数蒸汽轮机电厂设计中都包括这种方式。蒸汽通过抽取槽抽取,抽取槽围绕转子叶片排下游的壳体运行。狭缝连接到增压室,增压室围绕涡轮机环的外部延伸。蒸汽通过通常连接到增压室底部的管道流向给水加热器。蒸汽抽取是由气室中周向不均匀的压力梯度驱动的。这导致提取的蒸汽的质量流率沿周向变化,从而影响提取点下游的主通道流量。数值分析了抽气室中的流动以及抽气对主流空气动力学的影响。在此研究中,对带有抽取槽和增压室的完整环形空间以及下游的定子和转子叶片行进行了建模。结果显示,在环空附近的蒸汽抽取高度不均匀,从最靠近抽取管的底部抽取的速率最高,而在环空顶部的抽取速率最低。抽气速率的这种差异改变了定子叶片排下游的流角和损失周向分布。研究发现,改变形状并增加抽气口和气室的体积,可以大大改善蒸汽在环空中的分布及其对主通道流量的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2014年第11期|112602.1-112602.10|共10页
  • 作者单位

    Osney Thermo-Fluids Laboratory, Department of Engineering Science, Oxford University, Southwell Building, Osney Mead, Oxford OX2 0DP, UK;

    Osney Thermo-Fluids Laboratory, Department of Engineering Science, Oxford University, Southwell Building, Osney Mead, Oxford OX2 0DP, UK;

    Beaumont Leys School, Anstey Lane, Leicester LE4 0FL, UK;

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