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Motion of a spherical particle in a fluid forced vortex by DQM and DTM 被引量:6
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作者 M.Hatami D.D.Ganji 《Particuology》 SCIE EI CAS CSCD 2014年第5期206-212,共7页
In this study, coupled equations of the motion of a particle in a fluid forced vortex were investigated using the differential transformation method (DTM) with the Pad6 approximation and the differential quadrature ... In this study, coupled equations of the motion of a particle in a fluid forced vortex were investigated using the differential transformation method (DTM) with the Pad6 approximation and the differential quadrature method (DO_M). The significant contribution of the work is the introduction of two new, fast and efficient solutions for a spherical particle in a forced vortex that are improvements over the previous numerical results in the literature. These methods represent approximations with a high degree of accuracy and minimal computational effort for studying the particle motion in a fluid forced vortex. In addition, the velocity profiles (angular and radial) and the position trajectory of a particle in a fluid forced vortex are described in the current study. 展开更多
关键词 Spherical particle forced vortex Differential transformation method (DTM)Angular velocity Differential quadrature method (DQM)
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Investigation of particle motion in a rotatory flow field exposed to a forced vortex condition
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作者 Sina Gouran Saad Alshahrani Hijaz Ahmad 《Particuology》 2025年第10期88-94,共7页
To enhance the performance and service life of the operating instrument in the food production process,the purpose of this paper is to study particle motion in a forced vortex flow condition as a way of performance im... To enhance the performance and service life of the operating instrument in the food production process,the purpose of this paper is to study particle motion in a forced vortex flow condition as a way of performance improvement.To solve the nonlinear equations of motion for the fine particle,a meshless Galerkin technique is applied.After declaring the proper accuracy of the results by comparison with existing research papers,the influences of some critical parameters on the particle movement have been examined.The radial part of the sphere velocity increases when the sphere size increases.However,this radial velocity is reduced by enhancing the sphere's initial velocity.For all situations,the sphere's velocity reduction is observed over time. 展开更多
关键词 Particle motion forced vortex flow Rotating fluid zone Galerkin method
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Generalized Kutta–Joukowski theorem for multi-vortex and multi-airfoil flow with vortex production——A general model 被引量:3
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作者 Bai Chenyuan Li Juan Wu Ziniu 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2014年第5期1037-1050,共14页
By using a special momentum approach and with the help of interchange between singularity velocity and induced flow velocity, we derive in a physical way explicit force formulas for twodimensional inviscid flow involv... By using a special momentum approach and with the help of interchange between singularity velocity and induced flow velocity, we derive in a physical way explicit force formulas for twodimensional inviscid flow involving multiple bound and free vortices, multiple airfoils, and vortex production. These force formulas hold individually for each airfoil thus allowing for force decomposition, and the contributions to forces from singularities(such as bound and image vortices,sources, and doublets) and bodies out of an airfoil are related to their induced velocities at the locations of singularities inside this airfoil. The force contribution due to vortex production is related to the vortex production rate and the distance between each pair of vortices in production, thus frameindependent. The formulas are validated against a number of standard problems. These force formulas, which generalize the classic Kutta–Joukowski theorem(for a single bound vortex) and the recent generalized Lagally theorem(for problems without a bound vortex and vortex production) to more general cases, can be used to identify or understand the roles of outside vortices and bodies on the forces of the actual body, optimize arrangement of outside vortices and bodies for force enhancement or reduction, and derive analytical force formulas once the flow field is given or known. 展开更多
关键词 Drag force Lift force Multibody Multiple vortices vortex production
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Steady vortex force theory and slender-wing flow diagnosis 被引量:1
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作者 Y.T.Yang R.K.Zhang +1 位作者 Y.R.An J.Z.Wu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2007年第6期609-619,共11页
The concept vortex force in aerodynamics is sys- tematically examined based on a new steady vortex-force theory (Wu et al., Vorticity and vortex dynamics, Springer, 2006) which expresses the aerodynamic force (and ... The concept vortex force in aerodynamics is sys- tematically examined based on a new steady vortex-force theory (Wu et al., Vorticity and vortex dynamics, Springer, 2006) which expresses the aerodynamic force (and moment) by the volume and boundary integrals of the Lamb vector. In this paper, the underlying physics of this theory is explored, including the general role of the Lamb vector in non- linear aerodynamics, its initial formation, and its relevance to the total-pressure non-uniformity. As a typical example, the theory is applied to the flow over a slender delta wing at a large angle of attack. The highly localized flow structures with high Lamb-vector peaks are identified in terms of their net contribution to various constituents of the total aerody-namic force. This vortex-force diagnosis sheds new light on the flow control and configuration optimization. 展开更多
关键词 vortex force - Delta-wing - Flow control
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Control of mean and fluctuating forces on a circular cylinder at high Reynolds numbers 被引量:3
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作者 Chuanping Shao Jianming Wang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2007年第2期133-143,共11页
A narrow strip is used to control mean and fluctuating forces on a circular cylinder at Reynolds numbers from 2.0 ×10^4 to 1.0 ×^ 10^5. The axes of the strip and cylinder are parallel. The control parameters... A narrow strip is used to control mean and fluctuating forces on a circular cylinder at Reynolds numbers from 2.0 ×10^4 to 1.0 ×^ 10^5. The axes of the strip and cylinder are parallel. The control parameters are strip width ratio and strip position characterized by angle of attack and distance from the cylinder. Wind tunnel tests show that the vortex shedding from both sides of the cylinder can be suppressed, and mean drag and fluctuating lift on the cylinder can be reduced if the strip is installed in an effective zone downstream of the cylinder. A phenomenon of mono-side vortex shedding is found. The strip-induced local changes of velocity profiles in the near wake of the cylinder are measured, and the relation between base suction and peak value in the power spectrum of fluctuating lift is studied. The control mechanism is then discussed from different points of view. 展开更多
关键词 Control .vortex shedding .Circular cylinder .Mean and fluctuating forces High Reynolds number
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Numerical simulation of hydraulic force on the impeller of reversible pump turbines in generating mode 被引量:9
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作者 李金伟 张宇宁 +2 位作者 刘凯华 冼海珍 于纪幸 《Journal of Hydrodynamics》 SCIE EI CSCD 2017年第4期603-609,共7页
The hydraulic force on the reversible pump turbine might cause serious problems(e.g., the abnormal stops due to large vibrations of the machine), affecting the safe operations of the pumped energy storage power plan... The hydraulic force on the reversible pump turbine might cause serious problems(e.g., the abnormal stops due to large vibrations of the machine), affecting the safe operations of the pumped energy storage power plants. In the present paper, the hydraulic force on the impeller of a model reversible pump turbine is quantitatively investigated through numerical simulations. It is found that both the amplitude of the force and its dominant components strongly depend on the operating conditions(e.g., the turbine mode, the runaway mode and the turbine brake mode) and the guide vane openings. For example, the axial force parallel with the shaft is prominent in the turbine mode while the force perpendicular to the shaft is the dominant near the runaway and the turbine brake modes. The physical origins of the hydraulic force are further revealed by the analysis of the fluid states inside the impeller. 展开更多
关键词 Pump turbine hydraulic force numerical simulation generating mode vortex backflow
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