基于康达效应的概念水射流推进器的现象学分析

R. L. Lemos, C. H. Marques, L. Rocha, L. Isoldi, E. D. Santos
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摘要

这项工作是格兰德河联邦大学研究项目的一部分。该项目旨在创造和开发利用康达效应来提高其整体效率的机械设备。本文的重点是分析概念水射流推进器中出现的物理现象。在提出的概念中,水射流推进器的叶轮被产生所谓的康达效应的喷射器所取代,从而增加了质量流量。为了模拟推进器内部的流动,建立了一个数值模型。该模型采用有限体积法对质量和动量的时均守恒方程进行了数值求解,并利用商业软件包ANSYS FLUENT (version 14.0)进行了更精确的数值求解。对于本构方程的闭合,采用k-ω URANS湍流模型。模拟暂态,时间步长∆t = 1×10-3 s,总物理时间t = 6.0 s。利用静压场、流线和速度分布分析了设备的性能和现象的发生。结果表明,在无叶轮的水射流推进装置中,康达效应能够产生推力。研究表明,该原理在船舶推进中具有广阔的应用前景,值得今后的工作加以重视。
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PHENOMENOLOGICAL ANALYSIS OF A CONCEPTUAL WATERJET PROPULSOR BASED ON THE COANDA EFFECT
This work is part of a research project conceived at the Federal University of Rio Grande. The project aims to create and develop mechanical devices that use the Coanda effect to enhance their overall efficiency. The focus herein is analyzing the physical phenomenon occurring in a conceptual water-jet propulsor. In the proposed concept, a water-jet propulsor has its impeller replaced by injectors that produce the so-called Coanda effect, increasing thereby the mass flow rate. In order to simulate the flow through the propulsor, a numerical model was developed. In this model the time-averaged conservation equations of mass and momentum were solved numerically by the finite volume method, more precisely with the commercial package ANSYS FLUENT (version 14.0). For the closure of the constitutive equations, the k-ω URANS turbulence model was employed. The simulation was performed for a transient state with a timestep of ∆t = 1×10-3 s and a total physical time of t = 6.0 s. Static pressure fields, streamlines and speed profiles are used to analyze the equipment performance and the phenomenon occurrence. The results show that the Coanda Effect is able to generate thrust in a waterjet propulsion device without impeller. The study suggests that the employment of this principle has promising applicability in marine propulsion and deserves attention on future works.
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