This paper has predicted the range and volume of unsteady sheet cavitation of a propeller by using the surface panel method. The linearization in cavity thickness is adopted to reduce the computing time and storage sp...This paper has predicted the range and volume of unsteady sheet cavitation of a propeller by using the surface panel method. The linearization in cavity thickness is adopted to reduce the computing time and storage space. The iteration scheme between chordwise strips has been used because the range and volume of cavitation are both unknown. The propeller cavitation range determined by the calculation method presented in this paper agrees with the observation results of cavity image at cavitation tunnel very well, and this proves the practicability of the method.展开更多
The unsteady sheet cavitation of podded propeller was predicted by using a surface panel method. The interaction between propeller and pod was treated with the iterative calculation of induced velocity potential, and ...The unsteady sheet cavitation of podded propeller was predicted by using a surface panel method. The interaction between propeller and pod was treated with the iterative calculation of induced velocity potential, and the method of induced velocity potential can save a great deal of storage and computation time compared to the method of induced velocity. The induced velocity potential of unit singularity on every pod panel to every key blade panel and of unit singularity on every key blade panel and its wake panel to every pod panel were calculated when the key blade is at every angle position. Based on the wake model of the conventional single propeller, a new wake model of podded propeller was constructed. The propeller is analyzed only on the key blade in order to save computation time and memory space. The method can be used to calculate the hydrodynamics performance and cavitation of propeller in uniform and non-uniform inflows. It can give the unsteady force and cavitation shape of propeller. The propeller cavitation range determined by the present method agrees with the observation results of cavity image given in cavitation tunnel well, and this proves the practicability of the method.展开更多
针对节能装置节能效果的预报仍然依赖模型试验,理论方法对节能效果的预报存在较多困难的问题,提出了一种基于面元法和RANS(Reynolds Average Navier-Stokes)方程的桨前节能装置节能效果的理论预报方法,并以此准确预报了某肥大型船裸船...针对节能装置节能效果的预报仍然依赖模型试验,理论方法对节能效果的预报存在较多困难的问题,提出了一种基于面元法和RANS(Reynolds Average Navier-Stokes)方程的桨前节能装置节能效果的理论预报方法,并以此准确预报了某肥大型船裸船体及安装节能装置后船体桨盘面的伴流场,在此基础上,采用低阶面元法,编写了在该伴流场中螺旋桨非定常水动力性能的预报程序,预报了螺旋桨前置导管、补偿导管和整流鳍的节能效果.计算结果表明,采用该方法预报桨前节能装置的节能效果是可行的,安装3种节能装置后,螺旋桨的效率均有显著提高.展开更多
文摘This paper has predicted the range and volume of unsteady sheet cavitation of a propeller by using the surface panel method. The linearization in cavity thickness is adopted to reduce the computing time and storage space. The iteration scheme between chordwise strips has been used because the range and volume of cavitation are both unknown. The propeller cavitation range determined by the calculation method presented in this paper agrees with the observation results of cavity image at cavitation tunnel very well, and this proves the practicability of the method.
基金Project supported by the Research Foundation of the Ministry of Education Key Laboratory of High Speed Ship Engineering(Grant No. HSSE0803).
文摘The unsteady sheet cavitation of podded propeller was predicted by using a surface panel method. The interaction between propeller and pod was treated with the iterative calculation of induced velocity potential, and the method of induced velocity potential can save a great deal of storage and computation time compared to the method of induced velocity. The induced velocity potential of unit singularity on every pod panel to every key blade panel and of unit singularity on every key blade panel and its wake panel to every pod panel were calculated when the key blade is at every angle position. Based on the wake model of the conventional single propeller, a new wake model of podded propeller was constructed. The propeller is analyzed only on the key blade in order to save computation time and memory space. The method can be used to calculate the hydrodynamics performance and cavitation of propeller in uniform and non-uniform inflows. It can give the unsteady force and cavitation shape of propeller. The propeller cavitation range determined by the present method agrees with the observation results of cavity image given in cavitation tunnel well, and this proves the practicability of the method.
文摘针对节能装置节能效果的预报仍然依赖模型试验,理论方法对节能效果的预报存在较多困难的问题,提出了一种基于面元法和RANS(Reynolds Average Navier-Stokes)方程的桨前节能装置节能效果的理论预报方法,并以此准确预报了某肥大型船裸船体及安装节能装置后船体桨盘面的伴流场,在此基础上,采用低阶面元法,编写了在该伴流场中螺旋桨非定常水动力性能的预报程序,预报了螺旋桨前置导管、补偿导管和整流鳍的节能效果.计算结果表明,采用该方法预报桨前节能装置的节能效果是可行的,安装3种节能装置后,螺旋桨的效率均有显著提高.