首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >AN EXPLORATORY STUDY ON THE WORKING PRINCIPLES OF ENERGY SAVING DEVICES (ESDS) - PIV, CFD INVESTIGATIONS AND ESD DESIGN GUIDELINES
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AN EXPLORATORY STUDY ON THE WORKING PRINCIPLES OF ENERGY SAVING DEVICES (ESDS) - PIV, CFD INVESTIGATIONS AND ESD DESIGN GUIDELINES

机译:节能设备(ESD)工作原理的探索性研究-PIV,CFD调查和ESD设计指南

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The Maritime Research Institute Netherlands (MARIN) has recently started a Joint Industry Project (JIP) called ESD-JILI, investigating the working principles of energy saving devices (ESDs). Within the framework of this JIP, three ESDs have been selected and thoroughly investigated. They are a Pre-Duct with an inner Stator (PDS), a Pre-Swirl Stator (PSS) with asymmetric blade design and Hub Fins (HFs). The investigations have been carried out by using dedicated force and moment sensors to measure all the components of the ESDs independently during the propulsion tests, by using Particle Image Velocimetry (PIV) to measure the flow before, in-plane and behind the propeller and the ESDs, and by using Smart Ship Model technology (Wijngaarden 2011) to simulate the full-scale wake field during the model tests to gain insights on scale effects of the ESDs. At the same time, computational fluid dynamics (CFD) calculations are also carried out in order to further deepen the understanding of the working principles of the selected ESDs, and to assist the ESDs designs under certain guidelines. Some of the results of the study have been published to the Greenship'2011 Conference (Dang et al 2011). The flow details around the propulsion system with the PDS, which were obtained by both PIV measurements and CFD calculations, and the energy balance of the ship-propulsion system with a PDS are further investigated and reported here. Based on the results of the studies, the principle guidelines for ESD designs for single screw merchant ships have been proposed.
机译:荷兰海事研究所(MARIN)最近启动了一个名为ESD-JILI的联合工业项目(JIP),以研究节能设备(ESD)的工作原理。在本JIP的框架内,已选择了三个ESD,并对其进行了彻底的研究。它们是带有内部定子(PDS)的预风管,具有非对称叶片设计的预旋流定子(PSS)和轮毂鳍(HF)。通过使用专用的力和力矩传感器在推进测试过程中独立测量ESD的所有组成部分进行了研究,通过使用粒子图像测速(PIV)来测量螺旋桨之前,平面内和后方的流量。 ESD,并通过使用Smart Ship Model技术(Wijngaarden,2011年)在模型测试过程中模拟全尺寸尾流场,以了解ESD的比例效应。同时,还进行了计算流体动力学(CFD)计算,以进一步加深对所选ESD的工作原理的理解,并在某些准则下协助ESD设计。该研究的某些结果已发布到Greenship'2011 Conference(Dang等人2011)。通过PIV测量和CFD计算获得的带有PDS的推进系统周围的流量细节,以及带有PDS的船舶推进系统的能量平衡,将在此处进一步研究和报告。根据研究结果,提出了单螺杆商船ESD设计的原则指南。

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