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Engine and multitask airplane integration: criteria of engine parameters selection

机译:发动机和多任务飞机的集成:发动机参数选择的标准

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摘要

Purpose - The paper aims to present a way of engine model integration, an aircraft (multitask) and the mission into the single model that allows to study, from the level of selection of the engine cycle parameters, the feasibility of a specific mission with the assumed aerodynamic characteristics exemplified by a multitask airplane. Design/methodology/approach - There were introduced dimensionless geometric and energetic criteria, binding parameters of the engine and the airplane. The following models were built: of the turbofan engine and the aircraft movements with the application of these criteria, creating a dimensionless model allowing for measuring the impact of engine design parameters on the efficiency of the mission undertaken. Findings - The results were limited to the presentation of the impact of circuit parameters, such as engine TIT, OPR, BR on the defined criteria.The application of dimensionless criteria reduced the dimension of the task. Practical implications - The presented method can be useful for engineers involved in the task of engine integration and the airplane at the preliminary design stage. Originality/value - The originality of the presented solutions is reduced to provide a different, unconventional approach to the design process and not (so far) the engine itself but the entire aviation system.
机译:目的-本文旨在提出一种发动机模型集成的方法,一种飞机(多任务)和将任务整合到单个模型中的方法,该模型可以从发动机循环参数的选择水平来研究特定任务的可行性。假定的空气动力学特性以多任务飞机为例。设计/方法/方法-引入了无量纲的几何和能量准则,发动机和飞机的约束参数。建立了以下模型:涡扇发动机和飞机运动的应用这些标准,创建了无量纲模型,可以测量发动机设计参数对执行任务效率的影响。结果-结果仅限于显示电路参数(例如发动机TIT,OPR,BR)对定义标准的影响。无量纲标准的应用减小了任务的规模。实际意义-提出的方法对于在初步设计阶段从事发动机集成和飞机任务的工程师很有用。独创性/价值-降低了所提出解决方案的独创性,从而为设计过程提供了一种不同的,非常规的方法,而不是(到目前为止)引擎本身,而是整个航空系统。

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