Progress Towards Modeling Ship/Aircraft Dynamic Interface

S. Polsky
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引用次数: 28

Abstract

Previous efforts, for which high performance computing modernization program (HPCMP) computer time was utilized, employed state-of-the-art computation fluid dynamics (CFD) methods to create time-accurate ship airwake models that are far beyond the rudimentary stochastic airwake models used previously. Realistic airwake models are required for realistic pilot workload and aircraft performance characteristics. The CFD airwake models were integrated with existing flight simulation models in a semi-coupled fashion such that the aircraft performance is affected by the presence of the ship airwake, but the airwake characteristics are not affected by the presence of the aircraft. This semi-coupled approach has worked relatively well for applications such as ship design comparisons for first-order airwake effects on aircraft operations. However, the lack of coupling between the ship and aircraft has limited the usefulness of flight simulations for applications such as flight envelope development and aircraft test and evaluation. This paper examines the initial steps taken through the HPCMP Grand Challenge program to model the coupled ship and aircraft system
船舶/飞机动态界面建模研究进展
之前的工作是利用高性能计算现代化程序(HPCMP)计算机时间,采用最先进的计算流体动力学(CFD)方法创建时间精确的船舶气流模型,远远超出了之前使用的基本随机气流模型。真实的尾流模型需要真实的飞行员工作量和飞机的性能特性。CFD尾流模型以半耦合的方式与现有的飞行仿真模型相结合,使得飞机的性能受到船舶尾流存在的影响,但尾流特性不受飞机存在的影响。这种半耦合方法在船舶设计比较一阶气流对飞机运行的影响等应用中效果相对较好。然而,船舶和飞机之间缺乏耦合限制了飞行模拟在飞行包线开发和飞机测试和评估等应用中的实用性。本文考察了通过HPCMP大挑战计划对舰机耦合系统建模所采取的初步步骤
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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