High-Speed Planing Craft Model Tow Tank Testing

T. Fu, L. Russell, J. Rice, A. Fullerton, T. Ratcliffe
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Abstract

Tow tank testing of high speed planing craft differs from traditional displacement hull testing in several aspects, even when the objectives are similar. While the sinkage and trim of a displacement ship does change with speed, the changes are relatively small and do not result in large changes to their waterline length and wetted surface area. Planing craft, due to dynamic lift, undergo large changes in waterline length and wetted surface area from their at rest values. Additionally, validation of computational fluid dynamics codes for conventional monohull and unconventional multihull planning craft has made necessary the measurement of additional data beyond just resistance and the development of specialized capabilities for planing craft testing. This paper will describe several of the measurement techniques and procedures now utilized at the Naval Surface Warfare Center Carderock Division (NSWCCD) when tow tank testing planing craft.
高速规划工艺模型拖曳槽试验
高速平滑船拖曳舱试验与传统排水量船体试验在目标相似的情况下,在若干方面存在差异。虽然排水量船的下沉和纵倾随航速变化,但变化相对较小,不会导致其水线长度和湿水面面积的大变化。由于动力升力的作用,刨船的水线长度和湿面面积与静止值相比发生了很大的变化。此外,对传统单船和非常规多船规划艇的计算流体动力学代码进行验证,使得测量阻力之外的额外数据和开发专门的规划艇测试能力成为必要。本文将描述目前在海军水面作战中心卡德洛克分部(NSWCCD)拖曳坦克测试飞机时使用的几种测量技术和程序。
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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