The Bolzano Tracer Experiment (BTEX)
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L. D. Monache | S. Alessandrini | B. Kosović | P. Jiménez | E. Ferrero | L. Giovannini | D. Zardi | G. Antonacci | W. Tirler | M. Falocchi | Elena Tomasi
[1] L. Giovannini,et al. Meteorological normalization of NO2 concentrations in the Province of Bolzano (Italian Alps) , 2020 .
[2] M. Rotach,et al. Atmospheric Pollutant Dispersion over Complex Terrain: Challenges and Needs for Improving Air Quality Measurements and Modeling , 2020, Atmosphere.
[3] E. Palazzi,et al. Multi-scale transport and exchange processes in the atmosphere over mountains , 2020 .
[4] G. Arduini,et al. Local and non‐local controls on a persistent cold‐air pool in the Arve River Valley , 2020, Quarterly Journal of the Royal Meteorological Society.
[5] V. Masson,et al. Semi‐idealized simulations of wintertime flows and pollutant transport in an Alpine valley. Part II: Passive tracer tracking , 2020, Quarterly Journal of the Royal Meteorological Society.
[6] V. Masson,et al. Semi‐idealized simulations of wintertime flows and pollutant transport in an Alpine valley: Origins of local circulations (Part I) , 2020, Quarterly Journal of the Royal Meteorological Society.
[7] S. Alessandrini,et al. A Lagrangian dispersion model with a stochastic equation for the temperature fluctuations , 2019, International Journal of Environment and Pollution.
[8] S. Alessandrini,et al. Turbulence parameterizations for dispersion in sub-kilometer horizontally non-homogeneous flows , 2019, Atmospheric Research.
[9] L. Giovannini,et al. A dataset of tracer concentrations and meteorological observations from the Bolzano Tracer EXperiment (BTEX) to characterize pollutant dispersion processes in an Alpine valley , 2019, Earth System Science Data.
[10] G. Arduini,et al. Impact of Along-Valley Orographic Variations on the Dispersion of Passive Tracers in a Stable Atmosphere , 2019, Atmosphere.
[11] M. Calaf,et al. Scaling, Anisotropy, and Complexity in Near‐Surface Atmospheric Turbulence , 2018, Journal of geophysical research. Atmospheres : JGR.
[12] J. Cuxart,et al. Influence of a valley exit jet on the nocturnal atmospheric boundary layer at the foothills of the Pyrenees , 2019, Quarterly Journal of the Royal Meteorological Society.
[13] L. Giovannini,et al. A method to determine the characteristic time‐scales of quasi‐isotropic surface‐layer turbulence over complex terrain: A case‐study in the Adige Valley (Italian Alps) , 2019, Quarterly Journal of the Royal Meteorological Society.
[14] S. Wekker,et al. Meteorological Applications Benefiting from an Improved Understanding of Atmospheric Exchange Processes over Mountains , 2018, Atmosphere.
[15] D. Tabarelli,et al. Cold‐air pool evolution in a wide Pyrenean valley , 2018 .
[16] S. Alessandrini,et al. Assessment of Planetary-Boundary-Layer Schemes in the Weather Research and Forecasting Model Within and Above an Urban Canopy Layer , 2018, Boundary-Layer Meteorology.
[17] G. Belluardo,et al. Estimating Hourly Beam and Diffuse Solar Radiation in an Alpine Valley: A Critical Assessment of Decomposition Models , 2018 .
[18] B. Grisogono,et al. Exchange Processes in the Atmospheric Boundary Layer Over Mountainous Terrain , 2018 .
[19] M. D. Franceschi,et al. Optimization of Noah and Noah_MP WRF Land Surface Schemes in Snow-Melting Conditions over Complex Terrain , 2017 .
[20] A. Stein,et al. A Long-Term WRF Meteorological Archive for Dispersion Simulations: Application to Controlled Tracer Experiments , 2017 .
[21] L. Giovannini,et al. The thermally driven diurnal wind system of the Adige Valley in the Italian Alps , 2017 .
[22] C. Staquet,et al. The Atmospheric Boundary Layer during Wintertime Persistent Inversions in the Grenoble Valleys , 2016, Front. Earth Sci..
[23] G. Arduini,et al. Interactions Between the Nighttime Valley-Wind System and a Developing Cold-Air Pool , 2016, Boundary-Layer Meteorology.
[24] C. Staquet,et al. Persistent inversion dynamics and wintertime PM10 air pollution in Alpine valleys , 2016 .
[25] L. Giovannini,et al. Climatological characteristics of the Ora del Garda wind in the Alps , 2015 .
[26] Ariel F. Stein,et al. Inline Coupling of WRF–HYSPLIT: Model Development and Evaluation Using Tracer Experiments , 2015 .
[27] P. Mestayer,et al. Vertical and horizontal concentration profiles from a tracer experiment in a heterogeneous urban area , 2015 .
[28] M. D. Franceschi,et al. Analysis of the diurnal development of a lake-valley circulation in the Alps based on airborne and surface measurements , 2014 .
[29] Fei Chen,et al. Numerical simulations of boundary‐layer processes and urban‐induced alterations in an Alpine valley , 2014 .
[30] R. Draxler,et al. Evaluation of Lagrangian Particle Dispersion Models with Measurements from Controlled Tracer Releases , 2013 .
[31] Dino Zardi,et al. Atmospheric boundary layer structures associated with the Ora del Garda wind in the Alps as revealed from airborne and surface measurements , 2013 .
[32] C. Whiteman,et al. Observations of Thermally Driven Wind Jets at the Exit of Weber Canyon, Utah , 2013 .
[33] Dino Zardi,et al. Residual kriging analysis of airborne measurements: application to the mapping of atmospheric boundary‐layer thermal structures in a mountain valley , 2013 .
[34] Dino Zardi,et al. Management of atmospheric pollutants from waste incineration processes: the case of Bozen , 2013, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[35] J. Lagouarde,et al. FluxSAP 2010 experimental campaign over an heterogeneous urban zone, Part 1: heat and vapour flux assessment , 2011 .
[36] D. Martin,et al. The use of cyclic perfluoroalkanes and SF6 in atmospheric dispersion experiments , 2011 .
[37] D. Anfossi,et al. Modelling the meteorology and traffic pollutant dispersion in highly complex terrain: the ALPNAP Alpine Space Project , 2011 .
[38] R. Weiss,et al. History of atmospheric SF 6 from 1973 to 2008 , 2010 .
[39] Rex Britter,et al. Urban tracer dispersion experiment in London (DAPPLE) 2003: field study and comparison with empirical prediction , 2010 .
[40] S. Belcher,et al. Urban tracer dispersion experiments during the second DAPPLE field campaign in London 2004 , 2010 .
[41] Dino Zardi,et al. Analysis of second‐order moments in surface layer turbulence in an Alpine valley , 2009 .
[42] G. Zängl. The impact of weak synoptic forcing on the valley-wind circulation in the Alpine Inn Valley , 2009 .
[43] Rex Britter,et al. Dispersion experiments in central London: the 2007 DAPPLE project. , 2009 .
[44] Stefano Alessandrini,et al. A hybrid Lagrangian–Eulerian particle model for reacting pollutant dispersion in non-homogeneous non-isotropic turbulence , 2009 .
[45] Stefan Emeis,et al. Air Pollution Transport in an Alpine Valley: Results From Airborne and Ground-Based Observations , 2009 .
[46] N. Colonna,et al. Nonlocal boundary layer: The pure buoyancy‐driven and the buoyancy‐shear‐driven cases , 2009 .
[47] D. Zardi,et al. Study of wintertime high pollution episodes during the Brenner-South ALPNAP measurement campaign , 2009 .
[48] P. Seibert,et al. Simulation of the meteorological conditions during a winter smog episode in the Inn Valley , 2009 .
[49] W. Collins,et al. Radiative forcing by long‐lived greenhouse gases: Calculations with the AER radiative transfer models , 2008 .
[50] Julia E. Flaherty,et al. Vertical Tracer Concentration Profiles Measured during the Joint Urban 2003 Dispersion Study , 2007 .
[51] Julia E. Flaherty,et al. Characteristics of puff dispersion in an urban environment , 2007 .
[52] Dino Zardi,et al. On the boundary‐layer structure over highly complex terrain: Key findings from MAP , 2007 .
[53] N. Colonna,et al. Nonlocal Treatment of the Buoyancy-Shear-Driven Boundary Layer , 2006 .
[54] L. Darby. The modulation of canyon flows by larger-scale influences , 2006 .
[55] K. Allwine,et al. Joint Urban 2003: Study Overview And Instrument Locations , 2006 .
[56] K. Allwine,et al. Dispersion of Perfluorocarbon Tracers within the Salt Lake Valley during VTMX 2000 , 2006 .
[57] K. Allwine,et al. Nocturnal Low-Level Jet in a Mountain Basin Complex. Part II: Transport and Diffusion of Tracer under Stable Conditions , 2006 .
[58] Robert M. Banta,et al. Nocturnal Low-Level Jet in a Mountain Basin Complex. Part I: Evolution and Effects on Local Flows , 2004 .
[59] M. Zappa,et al. Turbulence Structure and Exchange Processes in an Alpine Valley: The Riviera Project , 2004 .
[60] H. Niino,et al. An Improved Mellor–Yamada Level-3 Model with Condensation Physics: Its Design and Verification , 2004 .
[61] S. Hanna,et al. Air quality model performance evaluation , 2004 .
[62] E. Batchvarova,et al. Pollutant dispersion close to an urban surface – the BUBBLE tracer experiment , 2004 .
[63] Lowry A. Harper,et al. Deducing Ground-to-Air Emissions from Observed Trace Gas Concentrations: A Field Trial with Wind Disturbance , 2004 .
[64] J. Fast,et al. An Evaluation of Mesoscale Model Predictions of Down-Valley and Canyon Flows and Their Consequences Using Doppler Lidar Measurements during VTMX 2000 , 2004 .
[65] G. Zängl. A reexamination of the valley wind system in the Alpine Inn Valley with numerical simulations , 2004 .
[66] D. Anfossi,et al. Turbulence fields for atmospheric dispersion models in horizontally non-homogeneous conditions , 2003 .
[67] I. A. Min,et al. Measurement and analysis of puff dispersion above the atmospheric boundary layer using quantitative imagery , 2002 .
[68] R. Britter,et al. Results from Three Field Tracer Experiments on the Neighbourhood Scale in the City of Birmingham UK , 2002 .
[69] W. J. Steenburgh,et al. A Climatological Study of Thermally Driven Wind Systems of the U.S. Intermountain West. , 2002 .
[70] Jerome D. Fast,et al. The VTMX 2000 campaign , 2002 .
[71] W. Junkermann,et al. Assessing the meteorological conditions of a deep Italian Alpine valley system by means of a measuring campaign and simulations with two models during a summer smog episode , 2001 .
[72] J. Dudhia,et al. Coupling an Advanced Land Surface–Hydrology Model with the Penn State–NCAR MM5 Modeling System. Part I: Model Implementation and Sensitivity , 2001 .
[73] Mark C. Green,et al. Characterization of Regional Transport and Dispersion Using Project MOHAVE Tracer Data , 2000, Journal of the Air & Waste Management Association.
[74] D. Koracin,et al. A Method of Evaluating Atmospheric Models Using Tracer Measurements , 2000 .
[75] F. Fiedler,et al. Modeling of the transport and diffusion of a tracer in the Freiburg-Schauinsland area , 2000 .
[76] R. Bornstein,et al. Transport of a Power Plant Tracer Plume over Grand Canyon National Park , 1999 .
[77] Mark C. Green. The project MOHAVE tracer study: study design, data quality, and overview of results , 1999 .
[78] A. Volz-Thomas,et al. Influence of valley winds on transport and dispersion of airborne pollutants in the Freiburg‐Schauinsland area , 1999 .
[79] F. Girardi,et al. The field campaigns of the European Tracer Experiment (ETEX): overview and results , 1998 .
[80] F. Girardi,et al. ETEX. A European tracer experiment; observations, dispersion modelling and emergency response , 1998 .
[81] S. Cieślik,et al. Mesoscale transport of atmospheric trace constituents across the central Alps : Transalp tracer experiments , 1998 .
[82] C. E. Elderkin,et al. Simulation of Nocturnal Drainage Flows Enhanced by Deep Canyons: The Rocky Flats Case , 1997 .
[83] J. Irwin,et al. Tracer gas experiment to verify the dispersion from a tall stack , 1996 .
[84] J. Doran. The Influence of Canyon Winds on Flow Fields near Colorado's Front Range. , 1996 .
[85] Roger A. Pielke,et al. Evaluation of a mesoscale atmospheric dispersion modeling system with observations from the 1980 Great Plains mesoscale tracer field experiment. Part I: Datasets and meteorological simulations , 1996 .
[86] Michael D. Moran,et al. Evaluation of a Mesoscale Atmospheric Dispersion Modeling System with Observations from the 1980 Great Plains Mesoscale Tracer Field Experiment. Part II: Dispersion Simulations , 1996 .
[87] R. Coulter,et al. The Dependence of Canyon Winds on Surface Cooling and External Forcing in Colorado's Front Range , 1995 .
[88] R. Pielke,et al. Comparison of lake-breeze model simulations with tracer data , 1995 .
[89] Terry L. Clark,et al. The Dispersion of Tracer Plumes in Mountainous Regions in Central Arizona: Comparisons between Observations and Modeling Results , 1995 .
[90] D. Levinson,et al. Influence of canyon-induced flows on flow and dispersion over adjacent plains , 1995 .
[91] B. M. Bowen. Long-Term Tracer Study at Los Alamos, New Mexico. Part I: Wind, Turbulence, and Tracer Patterns , 1994 .
[92] Gianni Tinarelli,et al. Lagrangian particle simulation of tracer dispersion in the lee of a schematic two-dimensional hill , 1994 .
[93] K. Allwine. Atmospheric Dispersion and Tracer Ventilation in a Deep Mountain Valley , 1993 .
[94] D. Anfossi,et al. A Simple way of computing buoyant plume rise in lagrangian stochastic dispersion models , 1993 .
[95] W. S. Lewellen,et al. Numerical Simulation of ANATEX Tracer Data Using a Turbulence Closure Model for Long-Range Dispersion , 1993 .
[96] Brian K. Lamb,et al. Wintertime Dispersion in a Mountainous Basin at Roanoke, Virginia: Tracer Study. , 1992 .
[97] Akula Venkatram,et al. Evaluating Air-Quality Models: Review and Outlook , 1992 .
[98] D. Strimaitis,et al. Analysis of Tracer Data Collected during the SCCCAMP 1985 Intensive Measurement Periods , 1991 .
[99] Ying-Hwa Kuo,et al. Evaluation of Meteorological Analyses, Simulations, and Long-Range Transport Calculations Using ANATEX Surface Tracer Data , 1990 .
[100] P. Gudiksen,et al. The Dispersion of Atmospheric Tracers in Nocturnal Drainage Flows , 1989 .
[101] C. Whiteman. Morning transition tracer experiments in a deep narrow valley , 1989 .
[102] M. Orgill. Early Morning Ventilation of a Gaseous Tracer from a Mountain Valley , 1989 .
[103] P. H. Gudiksen,et al. Experimental Design of the 1984 ASCOT Field Study , 1989 .
[104] Y. Kuo,et al. Tracer Verification of Trajectory Models , 1987 .
[105] Domenico Anfossi,et al. Analysis of plume rise data from five TVA steam plants , 1985 .
[106] B. Hicks. Behavior of Turbulence Statistics in the Convective Boundary Layer , 1985 .
[107] J. L. Heffter,et al. Atlantic Coast Unique Regional Atmospheric Tracer Experiment (ACURATE). Technical memo , 1984 .
[108] Frans T. M. Nieuwstadt,et al. Some aspects of the turbulent stable boundary layer , 1984 .
[109] S. Arya. Parametric relations for the atmospheric boundary layer , 1984 .
[110] Erik Lyck,et al. Atmospheric Dispersion from Elevated Sources in an Urban Area: Comparison between Tracer Experiments and Model Calculations , 1984 .
[111] R. E. Kerns,et al. Hanford atmospheric dispersion data: 1960 through June 1967 , 1983 .
[112] N. E. Bowne,et al. Overview, results, and conclusions for the EPRI Plume-Model Validation and Development Project: plains site. Final report , 1983 .
[113] W. B. Johnson. Meteorological Tracer Techniques for Parameterizing Atmospheric Dispersion , 1983 .
[114] P. Nickola. Hanford 67-series: a volume of atmospheric field diffusion measurements , 1977 .
[115] D. Lenschow,et al. The characteristics of turbulent velocity components in the surface layer under convective conditions , 1977 .
[116] H. Tennekes,et al. Asymptotic Similarity in Neutral Barotropic Planetary Boundary Layers , 1968 .
[117] W. Hinds,et al. Prediction of environmental exposures from sources near the ground, based on Hanford experimental data , 1964 .
[118] Duane A. Haugen,et al. PROJECT PRAIRIE GRASS. A FIELD PROGRAM IN DIFFUSION. VOLUME 3 , 1959 .
[119] S. Alessandrini,et al. Model chain for buoyant plume dispersion , 2017 .
[120] P. Martinet,et al. La campagne Passy-2015 : dynamique atmosphérique et qualité de l’air dans la vallée de l’Arve , 2016 .
[121] Franziska Frankfurter,et al. The Atmospheric Environment , 2016 .
[122] Chad W. Higgins,et al. THE MATERHORN Unraveling the Intricacies of Mountain Weather , 2015 .
[123] Dino Zardi,et al. Sensitivity of Simulated Wind Speed to Spatial Resolution over Complex Terrain , 2014 .
[124] Dino Zardi,et al. Diurnal Mountain Wind Systems , 2013 .
[125] T. W. Horst,et al. The Persistent Cold-Air Pool Study , 2013 .
[126] Roseanne,et al. A New High , 2008 .
[127] K. Clawson,et al. Joint urban 2003 (JU03) SF₆ atmospheric tracer field tests , 2005 .
[128] S. Alessandrini,et al. Comparison of different dispersion models with tracer experiment , 2005 .
[129] J. Dudhia,et al. A Revised Approach to Ice Microphysical Processes for the Bulk Parameterization of Clouds and Precipitation , 2004 .
[130] S. Gryning,et al. The Copenhagen tracer experiments: Reporting of measurements , 2002 .
[131] Gianni Tinarelli,et al. A New High Performance Version of the Lagrangian Particle Dispersion Model Spray, Some Case Studies , 2000 .
[132] Sven-Erik Gryning,et al. Air Pollution Modeling and Its Application XIII , 2000 .
[133] Joseph S. Scire,et al. A User's Guide for the CALPUFF Dispersion Model , 2000 .
[134] B. Sivertsen. Tracer Experiments to Estimate Diffusive Leakages and to Verify Dispersion Models , 1988 .
[135] J. Deardorff,et al. Concentration Fluctuations Within a Laboratory Convectively Mixed Layer , 1988 .
[136] T. W. Horst,et al. An evaluation of Gaussian plume-depletion models with dual-tracer field measurements , 1985 .
[137] H. Pamperin,et al. Nächtliche Grenzschicht und LLJ im Alpenvorland nahe dem Inntalausgang , 1985 .
[138] Steven R. Hanna,et al. Applications in Air Pollution Modeling , 1984 .
[139] S. Hanna,et al. A complex terrain dispersion model for regulatory applications at the Westvaco luke mill , 1984 .
[140] G. Briggs,et al. Plume Rise Predictions , 1982 .
[141] F. Nieuwstadt,et al. Atmospheric turbulence and air pollution modelling : a course held in The Hague, 21-25 September, 1981 , 1982 .
[142] Sven-Erik Gryning,et al. Elevated source SF6-tracer dispersion experiments in the Copenhagen area , 1981 .
[143] Gilbert Ferber,et al. Demonstration of a long-range atmospheric tracer system using perfluorocarbons , 1981 .
[144] J. Emberlin,et al. A sulphur hexafluoride tracer experiment from a tall stack over complex topography in a coastal area of Southern England , 1981 .
[145] A. L. Boni,et al. Measured weekly and twice-daily krypton-85 surface air concentrations within 150 km of the Savannah River Plant (March 1975 through September 1977). Final report , 1980 .