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1)  flap angle
襟舵角
2)  flap rudder
襟翼舵
1.
Research of the hydrodynamic performance of flap rudder on open water and behind propeller;
襟翼舵的敞水及桨后水动力性能研究
2.
In this paper, a nounal test with table L9(34) has been ed for a new type of flap rudders, and put forward some regression formulae of hydrodynamic performance,such as rudder normal force derivahve fa, the critical angle of attack ah and rudder nounal force coefficient CN, these formulae had been validated by the flap rudder in 9000t cement - carrier ship.
本文通过对新型襟翼舵舵模的L9(34)正交试验研究,给出一套包括襟翼舵法向力导数fα、临界攻角α(kp)和法向力系数CN的回归公式,并经9000吨自卸式水泥船新型襟翼舵舵力试验验证,表明计算公式对同类型的襟翼舵是完全适用的。
3.
A new method for predicting the hydrodynamic performance of the flap rudder behind a propeller is presented.
对襟翼舵在螺旋桨尾流中的水动力性能及其桨舵干扰进行了研究。
3)  Flap-type rudder
襟翼舵
1.
Basedon the analysis of the energy saving principle of rudder ball and the specificity of the flaptype rudder mounted with rudder ball,the paper introduces firstly the research results of theflap-type rudder mounted with rudder ball and discusses the influences of the clearance between rudder ball and propeller, and the influences of the ratio of ball diameter and propellerdiameter and so on.
在关于航球节能原理及襟翼舵舵球特殊性分析的基础上,介绍了在襟翼舵上加设舵球的研究,讨论了奖、球间距及舵球直径等因素对舵球性能的影响。
4)  high-efficient flap type rudder
高效襟翼舵
1.
The paper explains the stabilization principle of slanting rudders and proposes that higher lift coefficient can be obtained by using high-efficient flap type rudder.
采用45°倾斜安装的高效襟翼舵实现航向、横摇、纵摇的同时控制,阐述了斜舵减摇原理,并提出了采用高效襟翼舵以获得较高的升力系数,从而在不加大舵面积的情况下实现船舶纵摇运动控制。
5)  hardover angle
满舵舵角
6)  rudder angle
舵角
1.
The system com- bines numerical simulation with physical simulation to solve the difficult problems of autopilot in closed-loop work on land and dynamic simulation of the course,rudder angle the track.
介绍一种新颖的自动舵陆上仿真系统的设计方案、功能、特点及软件的设计特点,该系统采用数字模拟与物理模拟相结合的方法,解决了自动舵的陆上闭环工作及航向、舵角、航迹的动态仿真难题。
2.
It describes the implementation of rudder angle input for manual and emergent steering and the building of mathematical models by employing concise assembly instructions.
对自动操舵模拟器的编程方法、如何用简捷的汇编指令来实现随动和应急操舵的舵角输入、数学模型的建立等进行了阐述,并分析了海况对船舶运动的影响和模拟器实现自动操舵的功能。
3.
The system can solve the problem which autopilot cannot run normally for lack of real rudder angle and course signal in the laboratory.
为检测实船环境中自动舵的性能,设计简易船舶自动舵模拟实验平台,包括模拟舵机系统和模拟船体系统,解决了实验室环境下自动舵因缺少真实舵角反馈信号和真实航向反馈信号而无法正常运转的问题。
补充资料:烂襟襟
1.见"烂巾巾"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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