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Effect of the NACA Injection Impeller on the Mixture Distribution of a Double-Row Radial Aircraft Engine

机译:NACA喷射叶轮对双排径向飞机发动机混合气分布的影响

摘要

The NACA injection impeller was developed to improve the mixture distribution of aircraft engines by discharging the fuel from a centrifugal supercharger impeller, thus promoting a thorough mixing of fuel and charge air. Tests with a double-row radial aircraft engine indicated that for the normal range of engine power the NACA injection impeller provided marked improvement in mixture distribution over the standard spray-bar injection system used in the same engine. The mixture distribution at cruising conditions was excellent; at 1200, 15OO, and 1700 brake horsepower, the differences between the fuel-air ratios of the richest and the leanest cylinders were reduced to approximately one-third their former values. The maximum cylinder temperatures were reduced about 30 [degrees] F and the temperature distribution was improved by approximately theuddegree expected from the improvement in mixture distribution. Because the mixture distribution of the engine tested improves slightly at engine powers exceeding 1500 brake horsepower and because the effectiveness of the particular impeller diminished slightly at high rates of fuel flow, the improvement in mixture distribution at udrated power and rich mixtures was less than that for other conditions. ududThe difference between the fuel-air ratios of the richest and the leanest cylinders of the engine using the standard spray bar was so great that the fuel-air ratios of several cylinders were well below the chemically correct mixture, whereas other cylinders were operating at rich mixtures. Consequently, enrichment to improve engine cooling actually increascd some of the critical temperatures. The uniform mixture distribution providod by the injection impeller restored the normal response of cylinder temperatures to mixture enrichnent.
机译:NACA喷射叶轮的开发旨在通过从离心式增压器叶轮排出燃油来改善飞机发动机的混合气分配,从而促进燃油与增压空气的充分混合。使用双排子午线飞机发动机进行的测试表明,在发动机功率的正常范围内,NACA喷射叶轮相对于同一发动机中使用的标准喷杆喷射系统而言,混合物分布得到了显着改善。巡航条件下的混合物分布极好;在1200、15OO和1700的制动功率时,最富油缸和最稀油缸的燃油-空气比之间的差异减小到其以前值的大约三分之一。气缸的最高温度降低了约30 [F],温度分布也改善了大约由混合物分布改善所期望的温度。由于在超过1500制动马力的发动机功率下,被测发动机的混合物分布有所改善,并且由于特定叶轮的有效性在高燃油流量下略有降低,因此在“额定功率”和“浓混合气”下混合物分布的改善小于对于其他条件。 ud ud使用标准喷杆的发动机的最浓气缸和最稀气缸的燃油-空气比之间的差异是如此之大,以至于几个气缸的燃油-空气比远低于化学上正确的混合物,而其他气缸以丰富的混合物运行。因此,浓缩以改善发动机冷却实际上增加了一些临界温度。喷射叶轮提供的均匀混合物分布恢复了气缸温度对混合物富集度的正常响应。

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