首页> 外文期刊>Journal of marine science and technology >Investigation of the effects of a fan-shaped Mewis duct before a propeller on propulsion performance
【24h】

Investigation of the effects of a fan-shaped Mewis duct before a propeller on propulsion performance

机译:推进器推进性能前扇形MEWIS管道效果的研究

获取原文
获取原文并翻译 | 示例
           

摘要

To define the guidelines for the design of a Mewis duct for a small bulk cargo ship, a numerical study was carried out to investigate the effects of a fan-shaped Mewis duct on propeller performance of a 38,000t bulk cargo ship with a three-blade propeller. Calculations were performed using the STAR-CCM+software based on the solution of the Reynolds averaged Navier-Stokes (RANS) equation. Computations were carried out for a wide range of locations from 0.11D to 0.21D upstream from the propeller disc, a radius of trailing edge from 0.65R to 1.05R, and angle of attack of the inner fins, where from 0 degrees to 10 degrees of the fan-shaped Mewis duct, where D is the diameter of the propeller and R is the radius of the propeller. With the installation of the duct, the axial mean wake fraction on the propeller disc decreased, while the tangential mean wake fraction increased significantly. As the installation position was far away from the propeller, the axial mean wake fraction varied in a wave pattern, while the tangential mean wake fraction increased. With the increase of the radius and the angle of attack of the inner fins of the duct, the axial mean wake fraction first decreased and then increased, while the tangential mean wake fraction increased gradually. Correspondingly, the propeller force coefficients and efficiencies with the duct were all more than those without the duct and changed with the variations of the duct parameters. When the propeller and duct were taken as a propulsion system, the efficiency of the system was less than that of only the propeller. At the same time, with variations of the location, radius, and angle of attack of the inner fins of the duct, the efficiency of the system first increased and then decreased gradually, which indicates that there was an optimum design value for all of the duct parameters. Moreover, only when the design of these duct parameters are reasonable can energy savings be achieved; otherwise, the opposite effect is produced. Eventually, with the installation of the fan-shaped Mewis duct, the wake harmonic degree on the propeller disc can be significantly improved.
机译:要定义为小型货船设计的Mewis管道设计的指导方针,进行了一个数值研究,以研究扇形MEWIS管道对38,000T散装货船的螺旋桨性能的影响。螺旋桨。使用基于Reynolds平均的Navier-Stokes(RANS)方程的解决方案的Star-CCM +软件进行计算。计算从螺旋桨盘上游0.11d到0.21d的宽范围的位置,从0.65r到1.05r的后缘半径,以及内翅片的迎角,其中0度到10度扇形Mewis管道,其中D是螺旋桨的直径,R是螺旋桨的半径。随着管道的安装,螺旋桨盘上的轴向平均唤醒部分降低,而切向平均唤醒率显着增加。随着安装位置远离螺旋桨,轴向平均唤醒分数在波模式中变化,而切向平均唤醒部分增加。随着半径的增加和管道内翅片的迎角,轴向平均唤醒级分首先降低,然后增加,而切向平均唤醒分数逐渐增加。相应地,螺旋桨力系数和与管道的效率都是没有管道的那些,并且随管道参数的变化而改变。当螺旋桨和管道作为推进系统时,系统的效率小于仅螺旋桨的效率。同时,对于管道内翅片的位置,半径和迎角的变化,系统的效率首先增加,然后逐渐减少,这表明所有的所有设计值都有最佳的设计价值管道参数。而且,只有当这些管道参数的设计合理时,才能实现节能;否则,产生相反的效果。最终,随着扇形MEWIS管道的安装,螺旋桨盘上的唤醒谐波度可以显着提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号