跳至主要内容

Relationship between Sea Surface Single Carrier Waves and Decreasing Pressures of Atmosphere Lower Boundary

Read  full  paper  at:
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=53014#.VLR248nQrzE

ABSTRACT
Descriptions of unusually high waves appearing on the sea surface for a short time (freak, rogue or killer waves) have been considered as a part of marine folklore for a long time. A number of instrumental registrations have appeared recently making the community to pay more attention to this problem and to reconsider known observations of freak waves. To allow a better understanding of the behavior of rogue waves associated with tornadoes in terms of their origin, the nonlinear theory of off-balance systems is developed in the specific case of strong agitations constantly seen on the surface of extensive and deep rivers, when they are crossed by an atmosphere’s low pressure system (tornadoes, cyclones, hurricanes, etc.). A mathematical model based on the Navier-Stokes and Euler Lagrange equations coupled with assumptions derived from instrumental registrations on the training locations (or birth places) of freak waves is developed to enhance the physics of processes responsible for the formation (or origin) of the waves associated with atmosphere’s low pressure systems. Freak waves births’ constraints are mainly the need for both consistent water (i.e., extensive-deep rivers) and potential velocity flow availabilities. Numerical simulations, based on the use of the NLSE (Nonlinear Schrodinger Equation) are performed to validate our mathematical model on the births of single carrier waves associated with atmosphere’s low pressure systems.
 
Cite this paper
Augustin, D. and César, M. (2015) Relationship between Sea Surface Single Carrier Waves and Decreasing Pressures of Atmosphere Lower Boundary. Open Journal of Marine Science, 5, 45-54. doi: 10.4236/ojms.2015.51005.
 
References
[1]Touboul, J., Kharif, C., Pelinovsky, E. and Giovanangeli, J.P. (2008) On the Interaction of Wind and Steep Gravity Wave Groups Using Miles’ and Jeffreys’ Mechanisms. Nonlinear Processes in Geophysics, 15, 1023-1031. http://dx.doi.org/10.5194/npg-15-1023-2008
 
[2]Benjamin, T.B. (1967) Instability of Periodic Wave Trains in Nonlinear Dispersive Systems. Proceedings of the Royal Society of London, 299, 59-75. http://dx.doi.org/10.1098/rspa.1967.0123
 
[3]Karsten, T. and Igor, K. (2000) On Weakly Nonlinear Modulation of Waves on Deep Water. Physics of Fluids, 12, 24-32.
 
[4]Onorato, M., Osborne, A.R., Serio, M., Cavaleri, L. and Stanberg, T.C. (2004) Observation of Strongly Non-Gaussian Statistics for Random Sea Surface Gravity Waves in Wave Flume. Physical Review E, 70, Article ID: 067302. http://dx.doi.org/10.1103/PhysRevE.70.067302
 
[5]Socquet, H., Juglar, A., Dysthge, K., Trulsen, K., Krogstad, H.E. and Liu, J. (2005) Probability Distributions of Surface Waves during Spectral Change. Journal of Fluid Mechanics, 542, 195-216. http://dx.doi.org/10.1017/S0022112005006312
 
[6]Dyachenko, A.L. and Zakharov, V.E. (2005) Modulation Instability of Stokes Wave-Freak Wave. Journal of Experimental and Theoretical Physics, 81, 318-322.
 
[7]Kharif, C. and Pelinovsky, E. (2003) Physical Mechanism of the Rogue Wave Phenomenon. European Journal of Mechanics/B-Fluid, 22, 603-634.
 
[8]Wu, C.H. and Yao, A. (2004) Laboratory Measurements of Limiting Freak Waves on Current. Journal of Geophysical Research, 109, 1-18. http://dx.doi.org/10.1029/2004JC002612
 
[9]White, B.S. and Fomberg, B. (1998) On the Chance of Freak Waves at Sea. Journal of Fluid Mechanics, 355, 113-138. http://dx.doi.org/10.1017/S0022112097007751
 
[10]Zakharov, V.E. and Kharitonov, N.G. (1970) Instability of Periodic Waves of Finite Amplitude on the Surface of a Deep Fluid. Journal of Applied Mechanics and Technical Physics, 11, 747-751.
http://dx.doi.org/10.1007/BF00851899
 
[11]Shener, L. (2010) On Benjamin-Feir Instability and Evolution of Nonlinear Wave with Finite-Amplitude Side Bands. Natural Hazards and Earth System Sciences, 10, 2421-2427.
http://dx.doi.org/10.5194/nhess-10-2421-2010
 
[12]Leblanc, S. (2008) Wind Forced Modulations of Finite Depth Gravity Waves. Physics of Fluids, 20, Article ID: 116603. http://dx.doi.org/10.1063/1.3026551
 
[13]Batra, K., Sharma, R.P. and Verga, A.D. (2006) Stability Analysis on Nonlinear Evolution Patterns of Modulational Instability and Chaos Using One-Dimensional Zakharov Equations. Journal of Plasma Physics, 72, 671-686. http://dx.doi.org/10.1017/S002237780500423X
 
[14]Banner, M.I. and Song, J.B. (2002) On Determining the Onset and Strength of Breaking for Deep Water Waves. Part II: Influence of Wind Forcing and Surface Shear. Journal of Physical Oceanography, 32, 2559-2570. http://dx.doi.org/10.1175/1520-0485-32.9.2559
 
[15]Brown, M.G. and Jensen, A. (2001) Experiments on Focusing Unidirectional Water Waves. Journal of Geophysical Research, 106, 16917-16928. http://dx.doi.org/10.1029/2000JC000584
 
[16]Jeffreys, H. (1925) On the Formation of Wave by Wind. Proceedings of the Royal Society A, 107, 189-206. http://dx.doi.org/10.1098/rspa.1925.0015
 
[17]Philips, O.M. (1957) On the Generation of Waves by Turbulent Wind. Journal of Fluid Mechanics, 2, 417-455. http://dx.doi.org/10.1017/S0022112057000233
 
[18]Makin, V.K., Branger, H., Peirson, W.L. and Giovanangeli, J.P. (2007) Stress above Wind-Plus-Paddle Waves: Modeling of a Laboratory Experiment. Journal of Physical Oceanography, 37, 2824-2837. http://dx.doi.org/10.1175/2007JPO3550.1
 
[19]Shemer, L., Goulitski, K. and Kit, E. (2007) Evolution of Wide Spectrum Unidirectional Wave Groups in a Tank: An Experimental and Numerical Study. European Journal of Mechanics—B/Fluids, 26, 193-219. http://dx.doi.org/10.1016/j.euromechflu.2006.06.004
 
[20]Song, J.B. and Banner, M.I. (2002) On Determining the Onset and Strength of Breaking for Deep Water Waves, Part I: Unforced Irrotational Wave Groups. Journal of Physical Oceanography, 32, 2541-2558. http://dx.doi.org/10.1175/1520-0485-32.9.2541
 
[21]Stanton, T., Marshall, D. and Houghton, R. (1932) The Growth of Waves on Water Due to the Action of the Wind. Proceedings of the Royal Society A, 137, 283-293.
http://dx.doi.org/10.1098/rspa.1932.0136
 
[22]Daika, A., Etoundi, H.M., Ngabireng, C.M. and Mbané-Biouélé, C. (2012) Application of Benjamin-Feir Equations to Tornadoes’ Rogue Waves Modulational Instability in Oceans. International Journal of Physical Sciences, 7, 6053-6061.
 
[23]Talon, M. (2006) Ondes de Surface. LPTHE-Université Paris VI-CNRS, France.
 
[24]Miles, J.W. (1996) Surface-Wave Generation: A Viscoelastic Model. Journal of Fluid Mechanics, 322, 131-145. http://dx.doi.org/10.1017/S002211209600273X
 
[25]Daika, A., Nkoa Nkomom, T. and Mbané Biouélé, C. (2014) Application of Stationary Phase Method to Wind Stress and Breaking Impacts on Ocean Relatively High Waves. Open Journal of Marine Sciences, 4, 18-24. http://dx.doi.org/10.4236/ojms.2014.41003
 
[26]Mbané Biouele, C. (2013) Hurricanes and Cyclones Kinematics and Thermodynamics Based on Clausius-Clapeyron Relation Derived in 1832. International Journal of Physical Sciences, 8, 1284-1290. http://www.qcqdemicjournals.org/IJPS
 
[27]Mbané Biouele, C. (2014) Relationships between Earth’s Rotation or Revolution and Geographical Extent of the Global Surface Monsoons. Atmospheric and Climate Sciences, 4, 47-52.
http://dx.doi.org/10.4236/acs.2014.41006
 
[28]Mbané Biouele, C. (2014) Application of Clausius-Clappeyron Relation (1832) and Carnot Principle (1824) to Earth’s Atmosphere Tricellular Circulation. Atmospheric and Climate Sciences, 4, 1-6. http://dx.doi.org/10.4236/acs.2014.41001                                                                                      eww150113lx
 

评论

此博客中的热门博文

Does Immigration Promote the Investment of the Monopolistic Firm?

In the present paper, we examine the effect of increasing uncertainty of immigrants’ growth on the optimal timing of investment of a firm that has a monopolistic power over the labor market. It is revealed that when the uncertainty of immigrants’ growth is more than a threshold level, increasing uncertainty of immigrants’ growth accelerates the optimal timing of firms’ investment and enhances the economic growth, even if the uncertainty of immigrants’ growth is formulated by the geometric Brownian motion, which is in sharp contrast to the standard result that an increase in the uncertainty postpones the optimal timing. With an increase in the immigrants over the past ten years, workforces in the host countries have been growing significantly to the extent that the immigrants represent 70% of the increase in the workforce in Europe, and 47% in the United States as OECD indicates. In the present paper, we attempted to investigate the effect of increased uncertainty caused by the growi...

Education Policy Implementation: A Mechanism for Enhancing Primary Education Development in Zanzibar

Education is one of the fundamental rights of individuals; therefore, the government of a country needs to develop and strengthen educational policy and quality as well as to ensure that everyone has equal access to basic education. The improvement of access and quality of education in the world is becoming as an essential factor in development, whereas the basic education (primary school), is acknowledged as a foundation of the higher educational development for every country. To fulfill this goal, governments introduce several policies and procedures; however, it requires some reforms and participation from the politician, policymakers, and other stakeholders to re-examine educational policy so that it can lead to multiplication and betterment of the reforms. Educational reforms actually focus on accountability. A positive educational development and reform is very challenging and needs more effort and strategy on how to use and utilize the resources effectively as such it can achie...