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Dimensionless Numerical Approaches for the Performance Prediction of Marine Waterjet Propulsion Units

机译:船舶喷水推进装置性能预测的无量纲数值方法

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摘要

One of the key issues at early design stage of a high-speed craft is the selection and the performance prediction of the propulsion system because at this stage only few information about the vessel are available. The objective of this work is precisely to provide the designer, in the case of waterjet propelled craft, with a simple and reliable calculation tool, able to predict the waterjet working points in design and off-design conditions, allowing to investigate several propulsive options during the ship design process. In the paper two original dimensionless numerical procedures, one referred to jet units for naval applications and the other more suitable for planing boats, are presented. The first procedure is based on a generalized performance map for mixed flow pumps, derived from the analysis of several waterjet pumps by applying similitude principles of the hydraulic machines. The second approach, validated by some comparisons with current waterjet installations, is based on a complete physical approach, from which a set of non-dimensional waterjet characteristics has been drawn by the authors. The presented application examples show the validity and the degree of accuracy of the proposed methodologies for the performance evaluation of waterjet propulsion systems.
机译:高速航行器的早期设计阶段的关键问题之一是推进系统的选择和性能预测,因为在此阶段只有很少的有关船只的信息可用。这项工作的目的恰恰是为设计者提供一种简单可靠的计算工具(对于使用水刀推进的飞行器),该工具能够预测设计和非设计条件下的水刀工作点,从而允许在设计过程中研究几种推进方式船舶设计过程。在本文中,提出了两种原始的无量纲数值程序,一种称为海军应用的喷射装置,另一种更适合于滑行船。第一个过程是基于混流泵的通用性能图,该图是通过应用液压机的相似原理对几个喷水泵进行分析得出的。第二种方法是通过与目前的水刀装置进行一些比较验证的,它基于一种完整的物理方法,作者从中得出了一组无量纲的水刀特性。提出的应用实例说明了所提出的用于水喷射推进系统性能评估的方法的有效性和准确性。

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