首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering >Minimum power requirement for a propeller-driven aircraft and optimum cycle parameters of turboprop engines
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Minimum power requirement for a propeller-driven aircraft and optimum cycle parameters of turboprop engines

机译:螺旋桨飞机的最低功率要求和涡轮螺旋桨发动机的最佳循环参数

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摘要

This article presents a methodology to design for optimal performance of turboprop engines matching the power requirements for propeller-driven aircrafts. First, the flight performance analyses were used to assess the relatively significant constraints, and then identify the feasible design space and the ideal design point by adopting KSOPT optimizing technique. Second, a multi-objective deterministic algorithm modified method of feasible direction was used for the Pareto approach optimization of the propulsion cycle for three configurations of turboprops. In this optimization problem the maximum specific power and the minimum power specific fuel consumption are the principal figures of merit. The obtained results were based on a created model from the published data of a particular aircraft. This methodology used in the preliminary design phase has shown its effectiveness in rapidly searching for the ideal match point and identifying a candidate turboprop engine, as well as in the development of a derivative engine.
机译:本文提出了一种设计方法,以使涡轮螺旋桨发动机的最佳性能与螺旋桨驱动飞机的功率要求相匹配。首先,通过飞行性能分析来评估相对重要的约束条件,然后采用KSOPT优化技术确定可行的设计空间和理想的设计点。其次,将可行方向的多目标确定性算法改进方法用于三种螺旋桨螺旋桨推进周期的帕累托方法优化。在此优化问题中,最大比功率和最小功率比燃料消耗是主要优点。获得的结果基于从特定飞机的已发布数据创建的模型。在初步设计阶段使用的这种方法论已显示出其在快速搜索理想匹配点和识别候选涡轮螺旋桨发动机以及开发衍生发动机方面的有效性。

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