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Articles

Direct radiative impacts of desert dust on atmospheric water content

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Pages 693-701 | Received 09 Nov 2017, Accepted 01 Mar 2018, Published online: 29 Mar 2018

References

  • Almazrouia, M., NazrulIslama, M., Jonesa, P. D., Athara, H., and Ashfaqur Rahmana, M. (2012). Recent Climate Change in the Arabian Peninsula: Seasonal Rainfall and Temperature Climatology of Saudi Arabia for 1979–2009. Atmos. Res., 111, July 2012:29–45.
  • Brooks, N. (2000). Environmental Change and Land-Atmosphere Interactions in Northern Africa: The Role of Saharan dust, Ph.D. thesis, Clim. Res. Unit, Univ. of East Anglia, Norwich, U. K.
  • Chen, D., Liu, Z., Davis, C., and Gu, Y. (2017). Dust Radiative Effects on Atmospheric Thermodynamics and Tropical Cyclogenesis Over the Atlantic Ocean using WRF-Chem Coupled with an AOD Data Assimilation System. Atmos. Chem. Phys., 17:7917–7939, https://doi.org/10.5194/acp-17-7917-2017., 2017
  • de Andrade Campos, D., Chou, S. C., Spyrou, C., Chagas, J. C. S., and Bottino, M. J. (2017). Eta Model Simulations Using Two Radiation Schemes in Clear-Sky Conditions. Meteorology Atmos. Phys., ( 2017). doi:10.1007/s00703-017-0500-6.
  • Esmaeil, N., Gharagozloo, M., Rezaei, A., and Grunig, G. (2014). Dust Events, Pulmonary Diseases and Immune System. Am. J. Clin. Exp. Immunol., 20143(1):20–29, 2014.
  • Goudie, S. A. (2013). Desert Dust and Human Health Disorders. Environ. Int., 63:101–113. doi:10.1016/j.envint.2013.10.011.
  • Heinold, B., Tegen, I., Schepanski, K., and Hellmuth, O. (2008). Dust Radiative Feedback on Saharan Boundary Layer Dynamics and Dust Mobilization. Geophys. Res. Lett., 35:L20817. doi:10.1029/2008GL035319.
  • Hess, M., Koepke, P., and Schult, I. (1998). Optical Properties of Aerosols and Clouds: The Software Package OPAC. Bull. Am. Meteorological Soc., 79:831–844.
  • Iacono, M. J., Delamere, J. S., Mlawer, E. J., Shephard, M. W., Clough, S. A., and Collins, W. D. (2008). Radiative Forcing by Long-Lived Greenhouse Gases: Calculations with the AER Radiative Transfer Models. J. Geophys. Res., 113, D13103. doi:10.1029/2008JD009944.
  • Islam, M. N. and Almazroui, M. (2012). Direct Effects and Feedback of Desert Dust on the Climate of the Arabian Peninsula During the Wet Season: A Regional Climate Model Study. Clim. Dyn., 39:2239–2250. doi:10.1007/s00382-012-1293-4.
  • Janjic, Z. I. (1994). The step-mountain eta coordinate model: Further developments of the convection, viscous sublayer, and turbulence closure schemes. Mon. Wea. Rev., 122:927–945.
  • Kalashnikova, O. V., Kahn, R., Sokolik, I. N., and Wen-Hao, L. (2005). Ability of Multiangle Remote Sensing Observations to Identify and Distinguish Mineral Dust Types: Optical Models and Retrievals of Optically Thick Plumes. J. Geophys. Res., 110:D18S14. doi:10.1029/2004JD004550
  • Kallos, G., Nickovic, S., Papadopoulos, A., Jovic, D., Kakaliagou, O., Misirlis, N., Boukas, L., Mimikou, N., Sakellaridis, G., Papageorgiou, J., Anadranistakis, E., and Manousakis, M. (1997). The Regional Weather Forecasting System Skiron: An Overview. Proceedings of the Symposium on Regional Weather Prediction on Parallel Computer Environments, 15–17 October 1997, Athens, Greece, 109–122.
  • Kushta, J., Kallos, G., Astitha, M., Solomos, S., Spyrou, C., Mitsakou, C., and Lelieveld, J. (2014). Impact of Natural Aerosols on Atmospheric Radiation and Consequent Feedbacks with the Meteorological and Photochemical State of the Atmosphere. J. Geophys. Res. Atmos., 119:1463–1491. doi:10.1002/2013JD020714.
  • Liu, Y., Jia, R., Dai, T., Xie, Y., and Shi, G. (2014). A review of aerosol optical properties and radiative effects. J. Meteor. Res., 28:1003–1028. doi:10.1007/s13351-014-4045-z.
  • Mashat, A. S., Alamodi, A. O., and Ahmed, H. A. M. (2008). Diagnostic and prognostic study for dust (sand) storms over Saudi Arabia. Tech. Rep. V18_AR-26–89, King Abdulaziz University, Faculty of Meteorology, Environment and Arid Land Agriculture, Saudi Arabia.
  • Mesinger, F., Chou, C. C., Gomes, L., Jovic, D., Bastos, P., Bustamante, J. F., Lazic, L., Lyra, A. A., Morelli, S., Ristic, I., and Veljovic, K. (2012). An Upgraded Version of the Eta Model. Meteorol. Atmos. Phys., 116:63–79, doi10.1007/s00703-012-0182-z.
  • Mesinger, F., Janjic, Z. I., Nickovic, S., Gavrilov, D., and Deaven, D. G. (1988). The Step-Mountain Coordinate: Model Description and Performance for Cases of Alpine Lee Cyclogenesis and for a Case of an Appalachian Redevelopment. Mon. Wea. Rev., 116:1493–1518.
  • Mlawer, E. J., Taubman, S. J., Brown, P. D., Iacono, M. J., and Clough, S. A. (1997). RRTM, a Validated Correlated-k Model for the Longwave. J. Geophys. Res., 102:16,663–16,682.
  • Mohalfi, S., Bedi, H. S., Krishnamurti, T. N., and Cocke, S. D. (1998). Impact of Shortwave Effects on the Summer Season Heat Low over Saudi Arabia. Monthly Weather Rev., 126:3153–3168.
  • Myhre, G., Shindell, D., Bréon, F.-M., Collins, W., Fuglestvedt, J., Huang, J., Koch, D., Lamarque, J.-F., Lee, D., Mendoza, B., Nakajima, T., Robock, A., Stephens, G., Takemura, T., and Zhang, H. (2013). Anthropogenic and Natural Radiative Forcing. In: Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, T. F.Stocker, D.Qin, G.-K.Plattner, M.Tignor, S. K.Allen, J.Boschung, A.Nauels, Y.Xia, V.Bex and P. M.Midgley (eds.), Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA.
  • Nickovic, S., Kallos, G., Papadopoulos, A., and Kakaliagou, O. (2001). A Model for Prediction of Desert Dust Cycle in the Atmosphere. J. Geoph. Res., 106:18113–18129.
  • Powers, R. W., Ramirez, L. F., Redmont, C. D., and Elberg, Jr., E. L. (1963). Geology of the Arabian Peninsula, Sedimentary Geology of Saudi Arabia U.S. Geological Survey Professional Paper 560-D.
  • Prakash, J., Stenchikov, P. G., Kalenderski, S., Osipov, S., and Bangalath, H. (2015). The Impact of Dust Storms on the Arabian Peninsula and the Red Sea. Atmos. Chem. Phys., 15:199–222. doi:10.5194/acp-15-199-2015.
  • Prospero, J. M., Ginoux, P., Torres, O., Nicholson, S. E., and Gill, T. E. (2002). Environmental Characterization of Global Sources of Atmospheric Soil Dust Identified with The Nimbus 7 Total Ozone Mapping Spectrometer (Toms) Absorbing Aerosol Product. Rev. Geophys., 40(1):1002. doi:10.1029/2000RG000095.
  • Rap, A., Scott, C. E., Spracklen, D. V., Bellouin, N., Forster, P. M., Carslaw, K. S., Schmidt, A., and Mann, G. (2013). Natural Aerosol Direct and Indirect Radiative Effects. Geophys. Res. Lett., 40:3297–3301. doi:10.1002/grl.50441.
  • Saeed, T. M., Al-Dashti, H., and Spyrou, C. (2014). Aerosol's Optical and Physical Characteristics and Direct Radiative Forcing During a Shamal Dust Storm, a Case Study. Atmos. Chem. Phys., 14:3751–3769, https://doi.org/10.5194/acp-14-3751-2014, 2014.
  • Slingo, A., Ackerman, T. P. A. R. P., Kassianov, E. I., McFarlane, S. A., Robinson, G. J., Barnard, J. C., Miller, M. A., Harries, J. E., Russell, J. E., and Dewitte, S., (2006). Observations of the Impact of a Major Saharan Dust Storm on the Atmospheric Radiation Balance. Geophys. Res. Lett., 33:L24817. doi:10.1029/2006GL027869.
  • Solomos, S., Kallos, G., Kushta, J., Astitha, M., Tremback, C., Nenes, A., and Levin, Z. (2011). An Integrated Modeling Study on the Effects of Mineral Dust and Sea Salt Particles on Clouds and Precipitation. Atmos. Chem. Phys., 11:873–892. doi:10.5194/acp-11-873-2011.
  • Spyrou, C., Kallos, G., Mitsakou, C., Athanasiadis, P., Kalogeri, C., and Iacono, M. J. (2013). Modeling the Radiative Effects of Desert Dust on Weather and Regional Climate. Atmos. Chem. Phys., 13:5489–5504. doi:10.5194/acp-13-5489-2013.
  • Spyrou, C., Mitsakou, C., Kallos, G., Louka, P., and Vlastou, G. (2010). An Improved Limited Area Model for Describing the Dust Cycle in the Atmosphere. J. Geophys. Res., 115:D17211. doi:10.1029/2009JD013682.
  • Stanellem, T., Vogel, B., Vogel, H., Baumer, D., and Kottmeier, C. (2010). Feedback Between Dust Particles and Atmospheric Processes Over West Africa During Dust Episodes in March 2006 and June 2007. Atmos. Chem. Phys., 10, 10771–10788, 2010. doi:10.5194/acp-10-10771-2010
  • Tegen, I. (2003). Modelling the Mineral Dust Aerosol Cycle in the Climate System. Quat. Sci. Rev., 22:1821–1834.
  • Tong, D. Q., Wang, J. X. L., Gill, T. E., Lei, H., and Wang, B. (2017). Intensified Dust Storm Activity and Valley Fever Infection in the Southwestern United States. Geophys. Res. Lett., 44:4304–4312. doi:10.1002/2017GL073524.
  • Wilks, D. S. (2006). Statistical Methods in the Atmospheric Sciences, Second Edition.Academic Press, London. ISBN 13: 978-0-12-751966-1.
  • Zheng, X J. (2009). Mechanics of Wind-blown Sand Movements.Berlin: Springer. doi:10.1007/978-3-540-88254-1.

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