Electro-Magnetic Ship Propulsion Stability under Gusts

Authors

  • mohammad yaghoub abdollahzadeh jamalabadi Chabahar Maritime University
  • Jae Hyun Park

Keywords:

gusts, stability frequency, Stuart number, transient flow, duct flow

Abstract

The purpose of this study is to analytically investigate the effect of Stuart number as well as magnetic and electrical angular frequency on the velocity distribution in a magneto-hydro-dynamic pump. Results show that as Stuart number approaches zero the velocity profile becomes similar to that of fully developed flow in a pipe. Furthermore, for high Stuart number there is a frequency limit for stability of fluid flow in certain direction of flow. This stability frequency is depending on geometric parameters of channel. Furthermore stability frequency of electro-magnetic field is independent of gusts frequency and fluid thermo-physical properties.

References

Rice, W.A. (1961). U.S. Patent No. 2997013. Washington DC: US Patent and Trademark Office.

Yohei Sasakawa, Yamato-1 - the world's first superconducting MHD propulsion ship. Ship & Ocean Foundation, Tokyo 1997, ISBN 4-916148-02-9.

Pei-Jen Wang, Chia-Yuan Chang, Ming-Lang Chang, Simulation of two-dimensional fully developed laminar flow for a magneto-hydrodynamic (MHD) pump ,Biosensors and Bioelectronics, Volume 20, Issue 1, 30 July 2004, Pages 115-121

Jihua Zhong, Mingqiang Yi, Haim H. Bau, Magneto hydrodynamic (MHD) pump fabricated with ceramic tapes ,Sensors and Actuators A: Physical, Volume 96, Issue 1, 31 January 2002, Pages 59-66

Yan PENG, Ling-zhi ZHAO, Shu-jun SONG, Ci-wen SHA, Ran LI, Yu-yu XU, Experimental Study on Alternating Magnetic Field Magnetohydrodynamic Pump ,,Journal of Hydrodynamics, Ser. B, Volume 20, Issue 5, October 2008, Pages 591-595

A. Homsy, V. Linder, F. Lucklum, N.F. de Rooij,Magnetohydrodynamic pumping in nuclear magnetic resonance environments ,Sensors and Actuators B: Chemical, Volume 123, Issue 1, 10 April 2007, Pages 636-646

Shizhi Qian, Haim H. Bau, Magneto-hydrodynamics based microfluidics ,Mechanics Research Communications, Volume 36, Issue 1, January 2009, Pages 10-21

M. Rivero, S. Cuevas, Analysis of the slip condition in magnetohydrodynamic (MHD) micropumps ,Sensors and Actuators B: Chemical, Volumes 166

Shizhi Qian, Haim H. Bau, Magneto-hydrodynamic stirrer for stationary and moving fluids ,Sensors and Actuators B: Chemical, Volume 106, Issue 2, 13 May 2005, Pages 859-870

Melissa C. Weston, Ingrid Fritsch,Manipulating fluid flow on a chip through controlled-current redox magnetohydrodynamics ,Sensors and Actuators B: Chemical, Volume 173, October 2012, Pages 935-944

Kwang W. Oh, Chong H. Ahn, Comprehensive Microsystems, 2008, Pages 39-68

J.C.T Eijkel, C Dalton, C.J Hayden, J.P.H Burt, A Manz,A circular ac magnetohydrodynamic micropump for chromatographic applications ,Sensors and Actuators B: Chemical, Volume 92, Issues 1

Ho-Jin Kang, Bumkyoo Choi, Development of the MHD micropump with mixing function ,Sensors and Actuators A: Physical, Volume 165, Issue 2, February 2011, Pages 439-445

I.R. Kirillov, D.M. Obukhov,Two dimensional model for analysis of cylindrical linear induction pump characteristics: model description and numerical analysis ,Energy Conversion and Management, Volume 44, Issue 17, October 2003, Pages 2687-2697

Hideo Araseki, Igor R Kirillov, Gennady V Preslitsky, Anatoly P Ogorodnikov,Double-supply-frequency pressure pulsation in annular linear induction pump: Part I: Measurement and numerical analysis ,Nuclear Engineering and Design, Volume 195, Issue 1, January 2000, Pages 85-100

Karol Malecha, Leszek J. Golonka,Microchannel fabrication process in LTCC ceramics ,Microelectronics Reliability, Volume 48, Issue 6, June 2008, Pages 866-871

X.D. Wang, C.F. Song, B.J. Yu, L. Chen, L.M. Qian,Nanowear behaviour of monocrystalline silicon against SiO2 tip in water ,Wear, Volumes 298

Hideo Araseki, Igor R. Kirillov, Gennady V. Preslitsky, Anatoly P. Ogorodnikov,Magnetohydrodynamic instability in annular linear induction pump: Part I. Experiment and numerical analysis ,Nuclear Engineering and Design, Volume 227, Issue 1, January 2004, Pages 29-50

Hideo Araseki, Igor R Kirillov, Gennady V Preslitsky, Anatoly P Ogorodnikov,Double-supply-frequency pressure pulsation in annular linear induction pump, part II: reduction of pulsation by linear winding grading at both stator ends ,Nuclear Engineering and Design, Volume 200, Issue 3, 1 September 2000, Pages 397-406

Hideo Araseki, Igor R. Kirillov, Gennady V. Preslitsky,Sodium flow rate measurement method of annular linear induction pumps ,Nuclear Engineering and Design, Volume 243, February 2012, Pages 111-119

Hideo Araseki, Igor R. Kirillov, Gennady V. Preslitsky, Anatoly P. Ogorodnikov,Magnetohydrodynamic instability in annular linear induction pump: Part II. Suppression of instability by phase shift ,Nuclear Engineering and Design, Volume 236, Issue 9, May 2006, Pages 965-974

Nobuhiko Hayanose, Yoshitaka Inui, Motoo Ishikawa, Juro Umoto, Stability of open-cycle MHD generation system connected to power transmission line ,Energy Conversion and Management, Volume 39, Issue 11, 1 August 1998, Pages 1181-1192

Motoo Ishikawa, Akihiro Kyogoku, Juro Umoto,Stability of large-scale MHD channels designed for coal-fired MHD power generation ,Energy Conversion and Management, Volume 37, Issue 1, January 1996, Pages 31-41

T. Matsuo, M. Ishikawa, J. Umoto,Stability of open-cycle supersonic disk MHD generator ,Energy Conversion and Management, Volume 38, Issue 3, February 1997, Pages 287-300

Sumin Yi, J.Y. Kim, C.-M. Ryu,MHD stability analysis for advanced tokamak modes in the KSTAR device ,Fusion Engineering and Design, Volume 85, Issue 5, August 2010, Pages 796-802

Nobuhuko Hayanose, Yoshitaka Inui, Motoo Ishikawa,Effects of installed system dumping resistors on stability of open cycle disk type MHD generator connected to power transmission line ,Energy Conversion and Management, Volume 42, Issue 10, July 2001, Pages 1191-1203

T. Matsuo, M. Ishikawa, J. Umoto,Stability of open-cycle subsonic disk MHD generator ,Energy Conversion and Management, Volume 39, Issue 9, 1 July 1998, Pages 915-925

I Inoue, Y Inui, N Hayanose, M Ishikawa,Transient stability analysis of commercial scale open cycle disk MHD generator connected to power system ,Energy Conversion and Management, Volume 44, Issue 5, March 2003, Pages 731-741

Y. Inui, T. Kadono, T. Ishida, Stability of interconnecting system between commercial scale He

Xianjin LI, Xiaojing CAI,The global L2 stability of solutions to three dimensional mhd equations ,Acta Mathematica Scientia, Volume 33, Issue 1, January 2013, Pages 247-267

N. Aiba, S. Tokuda, M. Furukawa, P.B. Snyder, M.S. Chu,MINERVA: Ideal MHD stability code for toroidally rotating tokamak plasmas ,Computer Physics Communications, Volume 180, Issue 8, August 2009, Pages 1282-1304

Weishan Kang, Zengyu Xu, Chuanjie Pan,MHD stabilities of liquid metal jet flows with gradient magnetic field ,Fusion Engineering and Design, Volume 81, Issues 8

R. Ospina, D.M. Devia, Y.C. Arango, P.J. Arango, A. Devia,Stability study for the MHD problem in perforated and parallel walls ,Applied Mathematical Modelling, Volume 32, Issue 6, June 2008, Pages 1003-1016

Yuming Qin, Xin Liu, Xinguang Yang,Global existence and exponential stability for a 1D compressible and radiative MHD flow ,Journal of Differential Equations, Volume 253, Issue 5, 1 September 2012, Pages 1439-1488

O.D. Makinde, P.Y. Mhone,Temporal stability of small disturbances in MHD Jeffery

Ye Gong, Jianhong Zhang, Guobing Li, Tengcai Ma, Yujie Dai, Jinyuan Liu, Yue Liu, Xiaogang Wang,The effects of race-track and DRAKON configurations on MHD equilibria and stabilities in toroidal devices ,Vacuum, Volume 83, Issue 1, 4 September 2008, Pages 48-51

Ph. Lauber, S. G

Boris A. Lugovtsov, Maria S. Kotelnikova,On stability of MHD flows located on the surface of axisymmetric torus ,Journal of Hydrodynamics, Ser. B, Volume 22, Issue 5, Supplement 1, October 2010, Pages 51-54

Dimitrios Giannakis, Paul F. Fischer, Robert Rosner, A spectral Galerkin method for the coupled Orr

T. Matsuo, M. Ishikawa, J. Umoto,Numerical analysis of bifurcation phenomena in supersonic MHD generator with supersonic diffuser ,Energy Conversion and Management, Volume 35, Issue 6, June 1994, Pages 507-516

H.K. Moffatt,on the existence, structure and stability of mhd equilibrium states,Turbulence and Nonlinear Dynamics in MHD Flows, 1989, Pages 185-195

M. Maiellaro, A. Labianca,On the nonlinear stability in anisotropic MHD with application to Couette

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Published

2014-03-12

How to Cite

abdollahzadeh jamalabadi, mohammad yaghoub, & Park, J. H. (2014). Electro-Magnetic Ship Propulsion Stability under Gusts. International Journal of Sciences: Basic and Applied Research (IJSBAR), 14(1), 421–427. Retrieved from https://gssrr.org/index.php/JournalOfBasicAndApplied/article/view/1802

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