254
Views
1
CrossRef citations to date
0
Altmetric
Articles

Performance assessment of a Persian Gulf wind and wave forecasting system

, &
Pages 189-210 | Received 15 Dec 2020, Accepted 17 Nov 2021, Published online: 01 Feb 2022

References

  • Abdalla S. 2014. Calibration of SARAL/AltiKa wind speed. IEEE Geosci Remote Sens Lett. 11(6):1121–1123. doi:10.1109/LGRS.2013.2287805.
  • Aghajanloo K, Pirooze MD. 2014. Three dimensional numerical modeling of oil spill behavior in marine environment. Int J Environ Res. 8(3):779–788.
  • Al Azhar M, Temimi M, Zhao J, Ghedira H. 2016. Modeling of circulation in the Arabian Gulf and the Sea of Oman: skill assessment and seasonal thermohaline structure. J Geophys Res-Oceans. 121(3):1700–1720.
  • Al-Rabeh AH, Lardner RW, Gunay N. 2000. Gulfspill version 2.0: a software package for oil spills in the ArabianGulf. Environ Model Softw. 15(4):425–442.
  • Atan R, Nash S, Goggins J. 2017. Development of a nested local scale wave model for a 1/4 scale wave energy test site using SWAN. J Oper Oceanogr. 10(1):59–78.
  • Attari MJ, Haghshenas S, Soltanpour M, Allahyar M, Ghader S, Yazji D, Razavi Arab A, Hajisalimi Z, Ahmadi S, Bakhtiari A. 2018. Developing the Persian Gulf wave forecasting system. J Coast Mar Eng. 1(1):13–18.
  • Belo-Pereira M, Muacho S, Carvalho A. 2014. Implementation and evaluation of an operational ocean wave forecasting system along the coast of West Iberia. J Oper Oceanogr. 7(2):35–44.
  • Bento AR, Salvacao N, Guedes Soares C. 2018. Validation of a wave forecast system for Galway Bay. J Oper Oceanogr. 11(2):112–124.
  • Bernardino M, Rusu L, Guedes Soares C. 2017. Evaluation of the wave energy resources in the Cape Verde Islands. Renew Energy. 101:316–326.
  • Bertotti L, Cavaleri L, Loffredo L, Torrisi ZL. 2013. Nettuno: analysis of a wind and wave forecast system for the Mediterranean Sea. Mon Weather Rev. 141(9):3130–3141.
  • Bidlot J. 2012. Present Status of Wave Forecasting at ECMWF. ECMWF Workshop on Ocean Waves, 1–15.
  • Bitner-Gregersen EM, Magnusson AK. 2014. Effect of intrinsic and sampling variability on wave parameters and wave statistics. Ocean Dyn. 64:1643–1655.
  • Bjorkqvist J-V, Vaha-Piikkio O, Alari V, Kuznetsova A, Tuomi L. 2020. WAM, SWAN and WAVEWATCH III in the Finnish archipelago – the effect of spectral performance on bulk wave parameters. J Oper Oceanogr. 13(1):55–70.
  • Booij N, Ris RC, Holthuijsen LH. 1999. A third-generation wave model for coastal regions: 1. Model description and validation. J Geophys Res. 104(C4):7649–7666.
  • Bouzinac C. 2015. CryoSat Product Handbook. Tech. Rep., ESA. https://earth.esa.int/documents/10174/125272/CryoSat_Product_Handbook.
  • Bronner E, Guillot A, Picot N. 2013. SARAL/AltiKa Products Handbook. SALP-MU-M-OP15984-CN. CNES. http://www.aviso.altimetry.fr/fileadmin/documents/data/tools/SARAL_Altika_products_handbook.pdf.
  • Cavaleri L, Abdalla S, Benetazzo A, Bertotti L, Bidlot J-R, Breivik O, Carniel S, Jensen RE, Portilla-Yandun J, Rogers WE, et al. 2018. Wave modelling in coastal and inner seas. Prog Oceanogr. 167:164–233.
  • Cavaleri L, Sclavo M. 2006. The calibration of wind and wave model data in the Mediterranean Sea. Coast Eng. 53(7):613–627.
  • Chawla A, Tolman HL, Gerald V, Spindler D, Spindler T, Alves JGM, Cao D, Hanson JL, Devaliere E. 2013. A multigrid wave forecasting model: a new paradigm in operational wave forecasting. Weather Forecast. 28(4):1057–1078.
  • Dykes JD, Wang DW, Book JW. 2009. An evaluation of a high-resolution operational wave forecasting system in the Adriatic Sea. J Mar Syst. 78:S271.
  • Guedes Soares C, Rusu L, Bernardino M, Bernardino M, Pilar P. 2011. An operational wave forecasting system for the Portuguese continental coastal area. J Oper Oceanogr. 4(2):17–27.
  • Haghshenas SA, Ghader S, Yazgi D, Delkhosh E, Birgani NA, Arab ARN, Hajisalimi Z, Nemati MH, Soltanpour M, Attari MJ. 2018. Iranian seas waters forecast – Part I: an improved model for the Persian Gulf. J Coast Res. 85(10085):1216–1220.
  • Hallin C, Almstrom B, Larson M, Hanson H. 2019. Longshore transport variability of beach face grain size: implications for dune evolution. J Coast Res. 35(4):751–764.
  • Hamza W, Lusito L, Ligorio F, Tomasicchio GR, D’Alessandro F. 2018. Wave climate at shallow waters along the Abu Dhabi coast. Water. 10(8):985. doi:10.3390/w10080985.
  • Hithin NK, Remya PG, Nair TB, Harikumar R, Kumar R, Nayak S. 2015. Validation and intercomparison of SARAL/AltiKa and PISTACH-derived coastal wave heights using in-situ measurements. IEEE J Sel Top Appl Earth Obs Remote Sens. 8:4120–4129.
  • Jayaram C, Bansal S, Krishnaveni AS, Chacko N, Chowdary VM, Dutta D, Rao KH, Dutt CBS, Sharma JR, Dadhwal VK. 2016. Evaluation of SARAL / AltiKa measured significant wave height and wind speed in the Indian Ocean region. J Indian Soc Remote Sens. 44:225–231.
  • Kahma KK, Calkoen CJ. 1992. Reconciling discrepancies in the observed growth of wind-generated waves. J Phys Oceanogr. 22(12):1389–1405.
  • Kamranzad B. 2018. Persian Gulf zone classification based on the wind and wave climate variability. Ocean Eng. 169:604–635.
  • Kazeminezhad MH, Siadatmousavi SM. 2017. Performance evaluation of WAVEWATCH III model in the Persian Gulf using different wind resources. Ocean Dyn. 67:839–855.
  • Kumar UM, Swain D, Sasamal SK, Reddy NN, Ramanjappa T. 2015. Validation of SARAL/Altikasignificantwave height and wind speed observations over North Indian ocean. J Atmos Sol-Terr Phys. 135:174–180.
  • Liao YP, Kaihatu JM. 2016. The effect of wind variability and domain size in the Persian Gulf on predicting nearshore wave energy near Doha Qatar. Appl Ocean. Res. 55:18–36.
  • Liu Q, Babanin AV, Guan C, Zieger S, Sun J, Jia Y. 2016. Calibration and Validation of HY-2 altimeter wave height. J Atmos Oceanic Tech. 33(5):919–936.
  • Lorente P, Sotillo MG, Aouf L, Amo-Baladron A, Barrerra E, Dalphinet A, Toleddano C, Rainaud R, De Alfonso M, Piedracoba S, et al. 2018. Extreme wave height events in NW Spain: a combined multi-sensor and model approach. Remote Sens. 10(1): Article No. 1. https://www.mdpi.com/2072-4292/10/1/1
  • Mazaheri S, Kamranzad B, Hajivalie F. 2013. Modification of 32 years ECMWF wind field using QuikSCATdata for wave hindcasting in Iranian seas. In: Conley DC, Masselink G, Russell PE, O’Hare TJ, editors. Proceedings of the 12th International Coastal Symposium. Plymouth; J. Coastal Res., SI 65, 344–349.
  • Moeini MH, Etemad-Shahidi A, Chegini V. 2010. Wave modeling and extreme value analysis off the northern coast of the Persian Gulf. Appl Ocean Res. 32:209–218.
  • Moeini MH, Etemad-Shahidi A, Chegini V, Rahmani I. 2012. Wave data assimilation using a hybrid approach in the Persian Gulf. Ocean Dyn. 62(5):785–797.
  • Moeini MH, Etemad-Shahidi A, Chegini V, Rahmani I, Moghaddam M. 2014. Error distribution and correction of the predicted wave characteristics over the Persian Gulf. Ocean Eng. 75:81–89.
  • Nayak S, Bhaskaran PK. 2014. Coastal vulnerability due to extreme waves at kalpakkam based on historical tropical cyclones in the Bay of Bengal. Int J Climatol. 34:1460–1471.
  • Neelamani S, Al-Salem K, Rakha K. 2007. Extreme waves for Kuwaiti territorial waters. Ocean Eng. 34(10):1496–1504.
  • Panchang V, Cheng G, Newell C. 1997. Modeling hydrodynamics and aquaculture waste transport in coastal maine. Estuaries. 20:14–41.
  • Panchang VG, Jeong C, Demirbilek Z. 2013. Analyses of extreme wave heights in the Gulf of Mexico for offshore engineering applications. J Offshore Mech Arctic Eng. 135(3):15.
  • Panchang VG, Jeong C, Li D. 2008. Wave climatology in coastal maine for aquaculture and other applications. Estuaries Coasts. 31(2):289–299.
  • Rao PG, Hatwar HR, Al-Sulaiti M, Al-Mulla A. 2003. Summer shamals over the Arabian Gulf. Weather. 58(12):471–478.
  • Ris RC, Booij N, Holthuijsen LH. 1999. A third-generation wave model for coastal regions: 2. verification. J Geophys Res. 104(C4):7667–7681.
  • Rusu L, Guedes Soares C. 2013. Evaluation of a high-resolution wave forecasting system for the approaches to ports. Ocean Eng. 58:224–238.
  • Sandeepan BS, Panchang VG, Nayak S, Kumar KK, Kaihatu JM. 2018. Performance of the WRF model for surface wind prediction around Qatar. J Atmos Oceanic Technol. 35(3):575–592.
  • Sandhya KG, Murty PLN, Deshmukh AN, Balakrishnan Nair TM, Shenoi SSC. 2018. An operational wave forecasting system for the East Coast of India. Estuar Coast Shelf Sci. 202:114–124.
  • Scharroo R. 2009. OSTM/Jason-2 Products Handbook. Issue 1.3, CNES SALP-MU-M-OP-15815- CN, EUMETSAT EUM/OPS-JAS-MAN/08/0041, JPL OSTM-29-1237, NOAA/NESDIS Polar Series/OSTM J400.
  • Scharroo R. 2012. RADS version 3.1: User Manual and Format Specification. Delft Univ. of Technology, Holland.
  • Scharroo R, Leuliette EW, Lillibridge JL, Byrne D, Naeije MC, Mitchum GT. 2013. RADS: Consistent multi-mission products. In: Proceedings of the Symposium on 20 Years of Progress in Radar Altimetry, Venice, 20–28 September 2012, Eur. Space Agency, ESA SP-710.
  • Schoch GC, McCammon M. 2013. Demonstrating the Alaska Ocean observing system in Prince William sound. Continental Shelf Res. 63:S149–S158.
  • Sepulveda HH, Queffeulou P, Ardhuin F. 2015. Assessment of SARAL/AltiKa wave height measurements relative to Buoy, Jason-2, and Cryosat-2 data. Mar Geod 38(suppl.):449–465.
  • Shaeb KH, Anand A, Joshi AK, Bhandari SM. 2015. Comparison of near coastal significant wave height measurements from SARAL/AltiKa with wave rider Buoys in the Indian region. Mar Geod. 38:422–436.
  • Shore Protection Manual. 1984. Waterways experiment station. Vicksburg (MS): Army Corps of Engineers.
  • Singhal G, Panchang VG, Lillibridge JL. 2010. Reliability assessment for operational wave forecasting system in Prince William Sound, Alaska. J Waterw Port Coast Ocean Eng. 136(6):337–349.
  • Skamarock WC, Klemp JB, Dudhia J, Gill DO, Barker DM, Wang W, Powers JG. 2005. A description of the advanced research WRF Version 2 (No. NCAR/TN-468+STR). University Corporation for Atmospheric Research. doi:10.5065/D6DZ069T.
  • Thoppil PG, Hogan PJ. 2010. Persian Gulf response to a wintertime Shamal wind event. Deep Sea Res Part I. 57(8):946–955.
  • Vieira F, Cavalcante G, Campos E. 2020. Analysis of wave climate and trends in a semi-enclosed basin (Persian Gulf) using a validated SWAN model. Ocean Eng. 196:106821.
  • Vignudelli S, Kostianoy AG, Cipollini P, Benveniste J. 2011. Coastal altimetry. Heidelberg: Springer.
  • Young IR, Sanina E, Babanin AV. 2017. Calibration and cross validation of a global wind and wave database of altimeter, radiometer, and scatterometer. J Atmos Oceanic Tech. 34(6):1285–1306.
  • Zoljoodi M. 2017. Validation and coupling of the SWAN wave prediction model by WRF for the Persian gulf. Open J Marine Sci. 7(1):22–34.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.