PEMBERIAN ANOMALI KEDALAMAN REFLEKTIF PADA SIMULASI PERSAMAAN AIR DANGKAL DENGAN KONFIGURASI SEJAJAR
DOI:
https://doi.org/10.31958/js.v8i2.473Keywords:
Shallow Water Equation, Navier Stokes, Depth AnomalyAbstract
The simulation of shallow water equation with straight configuration reflective depth anomaly has been performed. This program simulated wave absorber in the beach in order to prevent furthur abrasion of by sea. This program using modified Navier-Stokes equation and running on Matlab program. The result show that depth-anomaly reduced the amount on wave amplitudo by significant value.References
Ancey C. 2007. Plasticity and Geophysical Flows.. Journal of Non-Newtonian Fluid Mechanics (4-35). Lausanne, Switzerland: Ecole Polytechnique Federale de Lausanne
Aref H. 2012. The Navier-Stokes equation : a Classification of Flows and Exact Solution. Theory Computation Fluid Dynamic (26:481). Cambridge University.
Erratum. 2000. On the Derivation of the Buckley-Leverett Model from the Two Fluid Navier-Stokes Equation in a Thin Domain Computational Geoscience. Computational Geoscience (99-101). France : UFR Matemathique, Analyse Numerique.
Hinkelmann R, Liang Q, Aizinger V, Dawson C. 2015. Robust Shallow Water Model. Environ Earth Science,(74:7273-7274).
LeVeque RJ. 2005. Finite Difference Methods for Differential Equation. AMath (585-586). Washington : University Of Washington.
Moler C. Chapter 18: Shallow Water Equations. Experiments with MATLAB. MathWorks. Web. <http://www.mathworks.com/moler/exm/chapters.html>.
Pramono NA. 2016a. Pemberian Anomali Kedalaman Reflektif pada Simulasi Persamaan Air Dangkal dengan Konfigurasi Sejajar. Prosiding Seminar Nasional Fisika Universitas Negeri Malang, Seminar Nasional Fisika dan Pembelajarannya. Malang: 6 Agustus 2016.
Pramono NA. 2016b. Simulasi Persamaan Air Dangkal Menggunakan Persamaan Navier-Stokes Dengan Penambahan Anomali Kedalaman Konfigurasi Zig-Zag Sebagai Pemecah Ombak. Prosiding Seminar Nasional Fisika Universitas Negeri Malang, Seminar Nasional Fisika dan Pembelajarannya. Malang: 6 Agustus 2016.
Robinson CR. 2011. Shallow Water Equation. Syracuse University.
Setiawan T. 2015. Fluida Dinamis.
Stubbe P. 2015. The Euler and Navier-Stokes Equation Revisited. Physics Fluids Dynamic.
Suhamjani J. 2005. Aplikasi Lagrangian Navier-Stokes pada Turbulensi. Bogor : Intitut Pertanian Bogor.
Thurey N, Muller-Fischer M, Schrim S, Gross M. 2006. Real-time Breaking Waves for Shallow Water Simulation. Switzerland : ETH Zurich, AGEIA Technologies.
Tiwow VA, Malago JD. 2015. Application of Navier-Stokes Equation to Laminar Fluid Flow Case in Unhorizontal Pipe. Jurnal Sainsmat (51-56). Makassar:FMIPA Universitas Negeri Makassar.
Tubbs K. 2010. Lattice Boltzmann Modelling for Shallow Water Equation Using High Performance Computing.
Zhang H, Shi Y, Yuen DA, Yan Z, Yuan X dan Zhang C. 2008. Modelling and Visualization of Tsunamis. Pure and Applied Geophysics,(475-496).
Aref H. 2012. The Navier-Stokes equation : a Classification of Flows and Exact Solution. Theory Computation Fluid Dynamic (26:481). Cambridge University.
Erratum. 2000. On the Derivation of the Buckley-Leverett Model from the Two Fluid Navier-Stokes Equation in a Thin Domain Computational Geoscience. Computational Geoscience (99-101). France : UFR Matemathique, Analyse Numerique.
Hinkelmann R, Liang Q, Aizinger V, Dawson C. 2015. Robust Shallow Water Model. Environ Earth Science,(74:7273-7274).
LeVeque RJ. 2005. Finite Difference Methods for Differential Equation. AMath (585-586). Washington : University Of Washington.
Moler C. Chapter 18: Shallow Water Equations. Experiments with MATLAB. MathWorks. Web. <http://www.mathworks.com/moler/exm/chapters.html>.
Pramono NA. 2016a. Pemberian Anomali Kedalaman Reflektif pada Simulasi Persamaan Air Dangkal dengan Konfigurasi Sejajar. Prosiding Seminar Nasional Fisika Universitas Negeri Malang, Seminar Nasional Fisika dan Pembelajarannya. Malang: 6 Agustus 2016.
Pramono NA. 2016b. Simulasi Persamaan Air Dangkal Menggunakan Persamaan Navier-Stokes Dengan Penambahan Anomali Kedalaman Konfigurasi Zig-Zag Sebagai Pemecah Ombak. Prosiding Seminar Nasional Fisika Universitas Negeri Malang, Seminar Nasional Fisika dan Pembelajarannya. Malang: 6 Agustus 2016.
Robinson CR. 2011. Shallow Water Equation. Syracuse University.
Setiawan T. 2015. Fluida Dinamis.
Stubbe P. 2015. The Euler and Navier-Stokes Equation Revisited. Physics Fluids Dynamic.
Suhamjani J. 2005. Aplikasi Lagrangian Navier-Stokes pada Turbulensi. Bogor : Intitut Pertanian Bogor.
Thurey N, Muller-Fischer M, Schrim S, Gross M. 2006. Real-time Breaking Waves for Shallow Water Simulation. Switzerland : ETH Zurich, AGEIA Technologies.
Tiwow VA, Malago JD. 2015. Application of Navier-Stokes Equation to Laminar Fluid Flow Case in Unhorizontal Pipe. Jurnal Sainsmat (51-56). Makassar:FMIPA Universitas Negeri Makassar.
Tubbs K. 2010. Lattice Boltzmann Modelling for Shallow Water Equation Using High Performance Computing.
Zhang H, Shi Y, Yuen DA, Yan Z, Yuan X dan Zhang C. 2008. Modelling and Visualization of Tsunamis. Pure and Applied Geophysics,(475-496).
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2017-03-15
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