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INFLUENCE OF POWER UNIT CONFIGURATION LAYOUT OF A REGIONAL JET ON PERFORMANCE AND DIRECT OPERATING COST

机译:电力单元配置布局对区域喷射的影响性能和直接运营成本

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The motivation for this research work comes from the HELENA project and the later initiative of 4 central European countries devoted to the creation of modern European Regional Aircraft. The paper presents a configuration of a significantly lower noise, emission, top-class operational economy, highly increased safety level, extra ordinary cabin comfort and reduced boarding time. Aircraft is powered by one external engine, selected for cruise conditions and supplemented by another internally located engine, used mainly for take-off and emergency. Both engines are located in the rear part of aircraft, in its plane of symmetry which is beneficial when one of the engines is non-operational. Every engine can maintain a steady level flight and safe landing if the other unit fails. The reason for big improvement of flight economy, numerically proved in this paper, did not come from aerodynamic drag reduction, but mainly from much better performance of the selected cruising engines. Larger turbofans are usually more fuel efficient because of more advanced technologies used and the characteristics of the phenomena occurring inside the engines. Specific fuel consumption for turbofans used in research variants of the airplane is respectively 19.65 % and 31.12 % lower than for CF-34-8E, which is very similar to final profits. The most likely percent of fuel consumption reduction that can be achieved is between these two values received from performed calculations.
机译:这项研究工作的动机来自海伦娜项目,并举行了4个中欧国家的举措,致力于创造现代欧洲区域飞机。本文提出了一种明显较低的噪音,排放,顶级运营经济,高度增加的安全水平,额外的普通机舱舒适度和降低的登机时间。飞机由一个外部发动机提供动力,选择用于巡航条件,并由另一个内部定位发动机补充,主要用于起飞和紧急情况。两个发动机位于飞机的后部,在其对称平面中,当其中一个发动机是不可操作的,这是有益的。如果其他单元发生故障,每个发动机都可以保持稳定的飞行和安全着陆。在本文中有数值证明的飞行经济性改善的原因,并没有来自空气动力学阻力,但主要从精选巡航发动机的更好的性能。由于使用更先进的技术以及发动机内部发生的现象的特征,较大的涡轮机通常更加省油。飞机的研究变体中使用的涡轮机的特定燃料消耗分别比CF-34-8E低19.65%和31.12%,这与最终利润非常相似。可以实现的最有可能百分之一的燃料消耗降低的百分比在从执行的计算中接收的这两个值之间。

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