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<article language="en">
	<journal>
		<journal_title>Atmospheric Chemistry and Physics Discussions</journal_title>
		<journal_url>www.atmos-chem-phys-discuss.net</journal_url>
		<issn>1680-7367</issn>
		<eissn>1680-7375</eissn>
		<volume_number>8</volume_number>
		<issue_number>3</issue_number>
		<publication_year>2008</publication_year>
	</journal>
	<doi>10.5194/acpd-8-10841-2008</doi>
	<article_url>http://www.atmos-chem-phys-discuss.net/8/10841/2008/</article_url>
	<abstract_html>http://www.atmos-chem-phys-discuss.net/8/10841/2008/acpd-8-10841-2008.html</abstract_html>
	<fulltext_pdf>http://www.atmos-chem-phys-discuss.net/8/10841/2008/acpd-8-10841-2008.pdf</fulltext_pdf>
	<start_page>10841</start_page>
	<end_page>10872</end_page>
	<publication_date>2008-06-05</publication_date>
	<article_title content_type="html">Concatenated non-stationary dispersive scenarios on complex terrain under summer conditions</article_title>
	<authors>
		<author numeration="1" affiliations="1">
			<name>J. L. Palau</name>
			<email>jlp@confluencia.biz</email>
		</author>
		<author numeration="2" affiliations="2">
			<name>G. Pérez-Landa</name>
		</author>
		<author numeration="3" affiliations="1">
			<name>M. M. Millán</name>
		</author>
	</authors>
	<affiliations>
		<affiliation numeration="1" content_type="html">Fundación Centro de Estudios Ambientales del Mediterráneo (CEAM), València, Spain</affiliation>
		<affiliation numeration="2" content_type="html">Environmental Department, Iberdrola Ingenieria y Construcción, Madrid, Spain</affiliation>
	</affiliations>
	<abstract content_type="html">The results and discussions presented in this paper arise from a
statistically representative study of the physical processes associated with
the multimodal distribution of pollutants aloft and around a 343-m-tall
chimney under summer conditions in the Iberian Peninsula. The
indetermination of a transversal plume to the preferred transport direction
during transitional periods implies a small (or null) physical significance
of the classical definition of horizontal standard deviation of the
concentration distribution. By experimentation and modelling, this paper
analyses the atmospheric dispersion of the SO&lt;sub&gt;2&lt;/sub&gt; emissions from a power
plant on complex terrain, describing the main dispersion features as an
ensemble of  &quot;stationary dispersive scenarios&quot; and reformulating some
&quot;classical&quot; dispersive concepts to deal with the systematically monitored
summer dispersive scenarios in inland Spain.</abstract>
	<references>
		<reference numeration="1" content_type="text"> Briggs, G. A.: Plume rise predictions, Lectures on Air Pollution and Environment Impact Analysis, Am. Meteorol. Soc., Boston, USA, 1975. </reference>
		<reference numeration="2" content_type="text"> Grell, G. A., Dudhia, J. and Stauffer, D. R.: A description of the fifth-generation Penn State/NCAR mesoscale model (MM5), NCAR/TN-398+STR 1994, 138 pp., 1994. </reference>
		<reference numeration="3" content_type="text"> Hurley, P. and Physick, W.: A Lagrangian particle model of fumigation by breakdown of the nocturnal inversion, Atmos. Environ., 25A, 7, 1313&amp;ndash;1325, 1991. </reference>
		<reference numeration="4" content_type="text"> Kalnaya, E., Kanamitsua, M., Kistlera, R., Collinsa, W., Deavena, D., Gandina, L., Iredella, M., Sahaa, S., Whitea, G., Woollena, J., Zhua, Y., Leetmaaa, A., Reynoldsa, B., Chelliahb, M., Ebisuzakib, W., Higginsb, W., Janowiakb, J., Mob, K. C., Ropelewskib, C., Wangb, J., Jennec, R., and Joseph, D.: The NCEP/NCAR 40-year reanalysis project, Bullet. Am. Meteorol. Soc., 77, 437&amp;ndash;471, 1996. </reference>
		<reference numeration="5" content_type="text"> McNider, R. T., Moran, M. D., and Pielke, R. A.: Influence of diurnal and inertial boundary-layer oscillations on long-range dispersion, Atmos. Environ., 22, 11, 2445&amp;ndash;2462, 1988. </reference>
		<reference numeration="6" content_type="text"> Millan, M. M., Gallant, A. J., and Turner, H. E.: The application of correlation spectroscopy to the study of dispersion from tall stacks, Atmos. Environ., 10, 499&amp;ndash;511, 1976. </reference>
		<reference numeration="7" content_type="text"> Millan, M. M., Mantilla, E., Salvador, R., Carratalá, A., Sanz, M. J., Alonso, L., Gangoiti, G., and Navazo, M.: Ozone cycles in the western Mediterranean basin: interpretation of monitoring data in complex coastal terrain, J. Appl. Meteorol. 39, 4, 487&amp;ndash;507, 2000. </reference>
		<reference numeration="8" content_type="text"> Millan, M. M., Salvador, R., Mantilla, E., and Kallos, G.: Photooxidant dynamics in the Mediterranean basin in summer: Results from European research projects, J. Geophys. Res., 102, 8811&amp;ndash;8823, 1997. </reference>
		<reference numeration="9" content_type="text"> Millan, M. M.: The regional transport of tall stack plumes, in: Regional and Long-range Transport of Air Pollution, edited by: Sandroni, S., Elsevier Science Publishers, Amsterdam, The Netherlands, 249&amp;ndash;280, 1987. </reference>
		<reference numeration="10" content_type="text"> Millan, M. M., Artiñano, B., Alonso, L., Navazo, M., and Castro, M.: The effect of meso-scale flows on regional and long-range atmospheric transport in the Western Mediterranean Area, Atmos. Environ., 25A, 5/6, 949&amp;ndash;963, 1991. </reference>
		<reference numeration="11" content_type="text"> Munn, R. E.: Descriptive Micrometeorology, Academic Press, New York, 245 pp., 1966. </reference>
		<reference numeration="12" content_type="text"> Palau, J. L., Pérez-Landa, G., Diéguez, J. J., Monter, C., and Millan, M. M.: The importance of meteorological scales to forecast air pollution scenarios on coastal complex terrain, Atmos. Chem. Phys., 5, 2771&amp;ndash;2785, 2005. </reference>
		<reference numeration="13" content_type="text"> Palau, J. L., Pérez-Landa, G., Melia, J., Segarra, D., and Millan, M. M.: A study of dispersion in complex terrain under winter conditions using high-resolution mesoscale and Lagrangian particle models, Atmos. Chem. Phys., 6, 1105&amp;ndash;1134, 2006. </reference>
		<reference numeration="14" content_type="text"> Palau, J. L.: Dispersión atmosférica de las emisiones de una chimenea alta en terreno complejo (Atmospheric dispersion of a tall-stack plume on complex terrain), PhD Thesis (in Spanish), University of Valencia (Spain), edited by: CEAM Foundation, 366, 2003. </reference>
		<reference numeration="15" content_type="text"> Pérez-Landa, G., Ciais, P., Sanz, M. J., Gioli, B., Miglietta, F., Palau, J. L., Gangoiti, G., and Millán, M. M.: Mesoscale circulations over complex terrain in the Valencia coastal region, Spain&amp;ndash;Part 1: Simulation of diurnal circulation regimes, Atmos. Chem. Phys., 7, 1835&amp;ndash;1849, 2007a. </reference>
		<reference numeration="16" content_type="text"> Pérez-Landa, G., Ciais, P., Gangoiti, G., Palau, J. L., Carrara, A., Gioli, B., Miglietta, F., Schumacher, M., Millán, M. M., and Sanz, M. J.: Mesoscale circulations over complex terrain in the Valencia coastal region, Spain &amp;ndash; Part 2: Modeling CO2 transport using idealized surface fluxes, Atmos. Chem. Phys., 7, 1851&amp;ndash;1868, 2007b. </reference>
		<reference numeration="17" content_type="text"> Schumann, U.: Large-eddy simulation of turbulent diffusion with chemical reactions in the convective boundary layer, Atmos. Environ., 23, 1&amp;ndash;15, 1989. </reference>
		<reference numeration="18" content_type="text"> Stauffer, D. R. and Seaman, N. L.: Multiscale four-dimensional data assimilation, J. Appl. Meteorol., 33, 416&amp;ndash;434, 1994. </reference>
		<reference numeration="19" content_type="text"> Stohl, A., Forster, C., Frank, A., Seibert, P., and Wotawa, G.: Technical note: The Lagrangian particle dispersion model FLEXPART version 6.2, Atmos. Chem. Phys., 5, 2461&amp;ndash;2474, 2005. </reference>
		<reference numeration="20" content_type="text"> Uliasz, M.: Lagrangian particle dispersion modeling in mesoscale applications, in: Environmental Modeling, edited by: Zannetti, P., Vol. II. Computational Mechanics Publications, Southampton, UK, 1994. </reference>
		<reference numeration="21" content_type="text"> Uliasz, M.: Lagrangian particle modeling in mesoscale applications, Environmental Modeling II, edited by: Zannetti, P., Computational Mechanics Publications, 71&amp;ndash;102, 1994. </reference>
		<reference numeration="22" content_type="text"> Willmott, C. J.: On the validation of models, Phys. Geogr., 2, 2, 184&amp;ndash;194, 1981. </reference>
		<reference numeration="23" content_type="text"> Zhang, D. and Anthes, R. A.: A high-resolution model of the planetary boundary layer &amp;ndash; Sensitivity tests and comparisons with SESAME-79 data, J. Appl. Meteorol., 21, 1594&amp;ndash;1609, 1982. </reference>
	</references>
</article>

