References

  1. B. Borogayary, A.K. Das, A.J. Nath, Tree species composition and population structure of a secondary tropical evergreen forest in Cachar district, Assam, J. Environ. Biol., 39 (2018) 67–71.
  2. M.A. Vicente-Molina, A. Fernandez-Sainz, J. Izagirre-Olaizola, Does gender make a difference in pro-environmental behavior? The case of the basque country university students, J. Cleaner Prod., 176 (2018) 89–98.
  3. S.K. Gulev, V. Grigorieva, A. Sterl, D. Woolf, Assessment of the reliability of wave observations from voluntary observing ships: insights from the validation of a global wind wave climatology based on voluntary observing ship data, J. Geophys. Res., 108 (2003) 3236.
  4. D. Gilhousen, Improvement in National Buoy Center measurements, V. Swail, Ed., Achievements in Marine Climatology, Environment-Canada, 1999, pp. 79–89.
  5. P.D. Bromirski, D.R. Cayan, R.E. Flick, Wave spectral energy variability in the northeast Pacific, J. Geophys. Res., 110 (2005) 3005.
  6. M. Menendez, F.J. Mendez, I.J. Losada, N.E. Graham, Variability of extreme wave heights in the northeast Pacific Ocean based on buoy measurements, Geophys. Res. Lett., 35 (2008) L22607.
  7. J. Genmrich, B. Thomas, R. Bouchard, Observational changes and trends in the northeast Pacific wave records, Geophys. Res. Lett., 38 (2011) L22601.
  8. A. Agarwal, V. Venugopal, G.P. Harrison, The assessment of extreme wave analysis methods applied to potential marine energy sites using numerical model data, Renewable Sustainable Energy Rev., 27 (2013) 244–257.
  9. I.R. Young, S. Zieger, A.V. Babanin, Global trends in wind speed and wave height, Science, 332 (2011) 451–455.
  10. D.K. Woolf, P.G. Challenor, P.D. Cotton, Variability and predictability of the North Atlantic wave climate, J. Geophys. Res., 107 (2002) 3145.
  11. M.A. Hemer, J.A. Church, J.R. Hunter, Variability and trends in the directional wave climate of the southern hemisphere, Int. J. Climatol., 30 (2010) 475–491.
  12. P. Y. Le Traon, From satellite altimetry to Argo and operational oceanography: three revolutions in oceanography, Ocean Sci., 9 (2013) 901–915.
  13. V. S. Kumar, T.M. Naseef, Performance of ERA-Interim wave data in the nearshore waters around India, J. Atmos. Ocean Technol., 32 (2015) 1257–1269.
  14. P.A. Hwang, J.V. Toporkov, M.A. Sletten, S.P. Menk, Mapping surface currents and waves with interferometric synthetic aperture radar in coastal waters: observations of wave breaking in swell-dominant conditions, J. Phys. Oceanogr., 43 (2013) 563–582.
  15. A. Harlina, Basukriadi, A. Achmad, D. Peggie, Graphium androcles boisduval (lepidoptera: papilionidae) evaluation of biological aspect of the pre-adult stadia at Bantimurung, south Sulawesi, Indonesia, Appl. Ecol. Env. Res., 15 (2017) 881–890.
  16. A. Jameei, P. Akbarzadeh, H. Zolfagharzadeh, S.R. Eghbali, Numerical study of the influence of geometric form of chimney on the performance of a solar updraft tower power plant, Energy Environ., 30 (2019) 685–706.
  17. H. Oumenskou, M.E. Baghdadi, A. Barakat, M. Aquit, W. Ennaji, L.A. Karroum, M. Aadraoui, Multivariate statistical analysis for spatial evaluation of physicochemical properties of agricultural soils from Beni-Amir irrigated perimeter, Tadla Plain, Morocco, Geol. Ecol. Landscapes, 3 (2019) 83–94.
  18. C. Guedes Soares, M.F.S. Trovão, Influence of Wave Climate Modelling on the Long Term Prediction of Wave Induced Responses of Ship Structures, W.G. Price, P. Temarel, A.J. Keane, Eds., Dynamics of Marine Vehicles and Structures in Waves, Elsevier Science Publishers, 1991, pp. 1–10.
  19. C. Guedes Soares, M.G. Scotto, Modelling uncertainty in long-term predictions of significant wave height, Ocean Eng., 28 (2001) 329–342.
  20. C. Guedes Soares, T. Moan, Model uncertainty in the long term distribution of wave induced bending moments for fatigue design of ship structures, Mar. Struct., 4 (1991) 295–315.
  21. J. Prpic-Oršic, R. Vettor, C. Guedes Soares, O.M. Faltinsen, Influence of Ship Routes on Fuel Consumption and CO2 Emission, C. Guedes Soares, T.A. Santos, Eds., Maritime Technology and Engineering, Taylor & Francis Group, London, 2015, pp. 857–864.
  22. P. Vethamony, K. Sudheesh, S.P. Rupali, M.T. Babu, S. Jayakumar, A.K. Saran, S.K. Basu, R. Kumar, A. Sarkar, Wave modelling for the north Indian Ocean using MSMR analysed winds, Int. J. Remote Sens., 27 (2006) 3767–3780.
  23. K.S. Rawat, R. Kumar, S.K. Singh, Topographical distribution of cobalt in different agro-climatic zones of Jharkhand state, India, Geol. Ecol. Landscapes, 3 (2019) 14–21, doi: 10.1080/ 24749508.2018.1481654
  24. D.P. Dee, S.M. Uppala, A.J. Simmons, P. Berrisford, P. Poli, S. Kobayashi, U. Andrae, M.A. Balmaseda, G. Balsamo, P. Bauer, P. Bechtold, A.C.M. Beljaars, L. van de Berg, J. Bidlot, N. Bormann, C. Delsol, R. Dragani, M. Fuentes, A.J. Geer, L. Haimberger, S.B. Healy, H. Hersbach, E.V. Hólm, L. Isaksen, P. Kållberg, M. Köhler, M. Matricardi, A.P. McNally, B.M. Monge- Sanz, J.-J. Morcrette, B.-K. Park, C. Peubey, P. Rosnay, C. Tavolato, F. Thépaut, J.-N. Vitart, The ERA-interim reanalysis: configuration and performance of the data assimilation system, Q. J. R. Meteorolog. Soc., 137 (2011) 553–597.
  25. A.A. Sunny, Derivatives and analytic signals: improved techniques for lithostructural classifications, Malaysian J. Geosci., 2 (2018) 1–8.
  26. M.A.I. Molla, M. Furukawa, I. Tateishi, H. Katsumata, T. Suzuki, S. Kaneco, Photocatalytic degradation of fenitrothion in water with TiO2 under solar irradiation, Water Conserv. Manage., 2 (2018) 1–5.
  27. M. Hasan, Effect of rhizobium inoculation with phosphorus and nitrogen fertilizer on physico-chemical properties of the groundnut soil, Environ. Ecosyst. Sci., 2 (2018) 4–6.
  28. S. Caires, A. Sterl, Intercomparison of different wind-wave reanalyses, J. Climate, 17 (2004) 1983–1913.
  29. D.P. Dee, S.M. Uppala, A.J. Simmons, P. Berrisford, P. Poli, S. Kobayashi, U. Andrae, M.A. Balmaseda, G. Balsamo, P. Bauer, P. Bechtold, A.C.M. Beljaars, L. Van de Berg, J. Bidlot, N. Bormann, C. Delsol, R. Dragani, M. Fuentes, A.J. Geer, L. Haimberger, S.B. Healy, H. Hersbach, E.V. Hólm, L. Isaksen, P. Kållberg, M. Köhler, M. Matricardi, A.P. McNally, B.M. Monge-Sanz, J.-J. Morcrette, B.-K. Park, C. Peubey, P. Rosnay, C. Tavolato, F. Thépaut, J.-N. Vitart, The ERAinterim reanalysis: configuration and performance of the data assimilation system, Q. J. R. Meteorolog. Soc., 137 (2011) 553–597.
  30. P.R. Shanas, V.S. Kumar, Temporal variations in the wind and wave climate at a location in the eastern Arabian Sea based on ERA-Interim reanalysis data, Nat. Hazards Earth Syst. Sci., 14 (2014) 1371–1381.
  31. F. Yi, W.B. Feng, H.J. Cao, Wave analysis based on ERA-Interim reanalysis data in the South China Sea, Mar. Forecasts, 35 (2018) 44–51.
  32. J. Portilla, J. Sosa, L. Cavaleri, Wave energy resources: wave climate and exploitation, Renewable Energy, 57 (2013) 594–605.
  33. H.Y. Shi, Z.J. You, X.Y. Luo, C. Hu, P. Zhang, Y.Z. Song, Assessment of wave energy resources on 35 years, ERA-Interim for China Sea area based reanalysis data, Trans. Oceanol. Limnol., (2017) 30–37.
  34. R.M. Campos, C.G. Soares, Comparison of HIPOCAS and ERA wind and wave reanalysis in the North Atlantic Ocean, Ocean Eng., 112 (2016) 320–334.
  35. S. Caires, A. Sterl, A new nonparametric method to correct model data: application to significant wave height from the ERA-40 re-analysis, J. Atmos. Oceanic Technol., 22 (2005) 443–459.
  36. J.-R. Bidlot, P.A.E.M. Janssen, S. Abdalla, A Revised Formulation for Ocean Wave Dissipation in CY29R1, ECMWF Technical Memorandum R60.9/JB/0, 2005, pp. 1–35.
  37. J.-R. Bidlot, P.A.E.M. Janssen, S. Abdalla, A Revised Formulation of Ocean Wave Dissipation and Its Model Impact, ECMWF Technical Memorandum, 2007, p. 509.
  38. P.A.E.M. Janssen, Progress in ocean wave forecasting, J. Comput. Phys., 22 (2008) 3572–3594.
  39. J.E. Stopa, K.F. Cheung, Intercomparison of wind and wave data from the ECMWF reanalysis Interim and the NCEP climate forecast system reanalysis, Ocean Modell., 75 (2014) 65–83.
  40. P.J. Sousounis, H. He, M.L. Healy, V.K. Jain, G. Ljung, Y. Qu, B. Shen-Tu, A Typhoon Loss Estimation Model for China, 88th Annual American Meteorological Society Meeting, New Orleans, LA, 2008, pp. 20–24.
  41. Z.J. You, H.Y. Shi, Y.C. Bai, Impacts of storm wave-induced coastal hazards on the coast of China, J. Coastal Res., 85 (2018) 826–830.
  42. W. Mei, S.P. Xie, Intensification of landfalling typhoons over the northwest Pacific since the late 1970s, Nat. Geosci., 9 (2016) 753–757.
  43. K. Hasselmann, S. Hasselmann, On the nonlinear mapping of an ocean wave spectrum into a synthetic aperture radar image spectrum, J. Geophys. Res., 96 (1991) 10713–10729.