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首页> 外文期刊>Journal of ship production and design >A Review of Hydrodynamic Design Methods for Seaplanes
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A Review of Hydrodynamic Design Methods for Seaplanes

机译:对水动力设计方法的综述

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摘要

The design of successful water-based aircraft requires a close collaboration between the aeronautical engineers and naval architects, who perform high-speed towing tests, stability calculations, or computational fluid dynamics in support of the design. This article presents the fundamental design considerations of waterborne aircraft, which are outside of the typical educational scope of most naval architects, but which they are sometimes asked to address. These include 1) the hydrostatic and hydrodynamic problems associated with seaplane design, 2) early-stage methods for sizing the hull, 3) prediction techniques using archival data, and 4) hydrodynamic model testing procedures. Although a new design will often require substantial iteration to achieve the desired outcome, the information in this article will assist in developing a reasonable starting point for the design spiral and provides sufficient details for a hydrodynamic model testing facility to perform a successful series of model tests on the design. Althoughmuch of the work in this field dates fromthe 1940s, it is important to review this material in light of the current practices being used at hydrodynamic research facilities today. A detailed description of the model testing apparatus and procedure, used in a recent study at the U.S. Naval Academy, is presented to demonstrate the current applicability of these methods and some pitfalls that can be expected in testing.
机译:成功的水基飞机的设计需要在航空工程师和海军建筑师之间进行密切合作,他们在支持设计中执行高速牵引试验,稳定性计算或计算流体动力学。本文介绍了水性飞机的基本设计考虑因素,这些飞机在大多数海军建筑师的典型教育范围之外,但它们有时会要求解决。这些包括1)与海普兰设计相关的静水压和流体动力学问题,2)早期方法用于施加船体,3)使用档案数据的预测技术,4)流体动力模型测试程序。虽然新的设计通常需要大量迭代来实现所需的结果,但本文中的信息将有助于开发设计螺旋的合理起点,并为流体模型测试设施提供足够的细节,以执行成功的模型测试。在设计上。虽然在这一领域的工作日期,从20世纪40年代,鉴于当前在流体动力学研究设施中使用的当前做法,重要的是审查这种材料。在最近在美国海军学院的最近研究中使用的模型测试装置和程序的详细描述,以证明这些方法的目前适用性和一些可以在测试中预期的陷阱。

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