NUMERICAL SIMULATION OF A GEAR

L. Stan, Alexandra Nicoleta Gordes, Adriana Agape
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Abstract

To navigate safely, the ship must be manoeuvrable and have good stability. The steering of the ship depends on a number of factors such as: the means of steering used, the geometric shapes of the hull (stern area), the ratios between the main dimensions (LCWL/B and B/T), the number, position and direction of rotation of the engine. and the hydro-meteorological conditions in which they sail (water, air, wind, waves). Every ship, with the exception of barges, must have a robust and safe steering system to ensure manoeuvrability and sea stability. These installations can be: rudder with hydrodynamic profile, installation with adjustable nozzles and other installations approved by the Classification Societies. In this particular study an analysis on a gear pump fitted in the azimuth system of a chemical tanker is being made, using a CFD technology. The main aim is to study the efficiency of this pump by comparing the CFD analysis results with the results in real operational condition. Main parameters focused on are outlet flow, suction column, power and pump efficiency. There are several differences registered in the case of suction column and power, but they are not that high, while parameters outlet flow and pump efficiency are almost identical.
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齿轮的数值模拟
为了安全航行,船舶必须具有良好的操纵性和稳定性。船舶的转向取决于许多因素,例如:使用的转向手段,船体(船尾区域)的几何形状,主要尺寸(LCWL/B和B/T)之间的比率,发动机的数量,位置和旋转方向。以及它们航行时所处的水文气象条件(水、空气、风、波浪)。除了驳船外,每艘船都必须有一个坚固和安全的转向系统,以确保机动性和海上稳定性。这些装置可以是:带有水动力剖面的舵,带有可调喷嘴的装置和船级社认可的其他装置。本研究采用CFD技术对某化工船方位系统中的齿轮泵进行了分析。主要目的是通过CFD分析结果与实际工况结果的比较,研究该泵的效率。主要参数包括出口流量、吸入柱、功率和泵效率。在吸入柱和功率的情况下,有一些差异,但它们不是那么高,而参数出口流量和泵效率几乎相同。
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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来源期刊
International Journal of Modern Manufacturing Technologies
International Journal of Modern Manufacturing Technologies Engineering-Industrial and Manufacturing Engineering
CiteScore
0.70
自引率
0.00%
发文量
15
期刊介绍: The main topics of the journal are: Micro & Nano Technologies; Rapid Prototyping Technologies; High Speed Manufacturing Processes; Ecological Technologies in Machine Manufacturing; Manufacturing and Automation; Flexible Manufacturing; New Manufacturing Processes; Design, Control and Exploitation; Assembly and Disassembly; Cold Forming Technologies; Optimization of Experimental Research and Manufacturing Processes; Maintenance, Reliability, Life Cycle Time and Cost; CAD/CAM/CAE/CAX Integrated Systems; Composite Materials Technologies; Non-conventional Technologies; Concurrent Engineering; Virtual Manufacturing; Innovation, Creativity and Industrial Development.
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