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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effects of Combustion Chamber Geometry Deviations Upon Exit Temperature Profiles for Populations With Varied Service Limitations
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Effects of Combustion Chamber Geometry Deviations Upon Exit Temperature Profiles for Populations With Varied Service Limitations

机译:燃烧室几何形状偏差对服务极限不同的人群出口温度曲线的影响

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The purpose of this continuing research was to investigate the effects of combustion chamber geometry on exit temperature fields using a validated ambient pressure test rig. Rig test conditions were set to simulate an engine operating condition of 463 km/h (250 kn) at 7620 m (25,000 ft) by matching Mach number, equivalence ratio, and Sauter mean diameter of the fuel spray. Using a thermocouple rake, high resolution temperature measurements were obtained in the combustion chamber exit plane. Following the previously published procedures, a three-dimensional laser scanning system was used to quantify geometric deviations from two populations of combustion chambers. These populations differed in that one had a significantly higher allowable engine operating temperature for continuous cruise condition. Geometric deviations of both populations were compared with the reference model. The relationship between combustion chamber exit temperature profile and geometric deviation of each population was then compared. The main conclusion of this research was that the temperature profile degradation of both populations due to geometric deviations followed similar trends. These results highlighted that the difference in operating limitations of these populations did not significantly affect component performance.
机译:这项持续研究的目的是使用经过验证的环境压力试验台来研究燃烧室几何形状对出口温度场的影响。通过匹配马赫数,当量比和燃油喷雾的Sauter平均直径,将钻机测试条件设定为在7620 m(25,000 ft)时模拟463 km / h(250 kn)的发动机工况。使用热电偶耙,可在燃烧室出口平面获得高分辨率温度测量值。按照先前发布的程序,使用三维激光扫描系统对来自两个燃烧室的几何偏差进行量化。这些人群的不同之处在于,对于连续巡航条件,其允许的发动机工作温度明显更高。将两个总体的几何偏差与参考模型进行比较。然后比较了燃烧室出口温度曲线与每个燃烧室的几何偏差之间的关系。这项研究的主要结论是,由于几何偏差,两个种群的温度分布退化遵循相似的趋势。这些结果突出表明,这些人群的操作限制方面的差异并未显着影响组件的性能。

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