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2“... decrease the heterogeneous nucleation rate of ice crystals and lower the homogeneous freezing temperature...”
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3by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“...) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second type (TIC-2...”
Published in Journal of Geophysical Research: Atmospheres (2012)
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4by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“...) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second type (TIC-2...”
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5by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“... (radar unseen) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second...”
Published in Journal of Geophysical Research: Atmospheres (2012)
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6by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“... (radar unseen) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second...”
Published in Journal of Geophysical Research: Atmospheres (2012)
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7by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“... (radar unseen) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second...”
Published in Journal of Geophysical Research: Atmospheres (2012)
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8by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“... (radar unseen) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second...”
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9by Jouan, Caroline, Girard, Eric, Pelon, Jacques, Gultepe, Ismail, Delanoë, Julien, Blanchet, Jean-Pierre“... (radar unseen) ice crystals (TIC-1), is found more frequently in pristine environment, whereas the second...”
Published in Journal of Geophysical Research: Atmospheres (2012)
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10Simulating Arctic Ice Clouds during Spring Using an Advanced Ice Cloud Microphysics in the WRF Modelby Keita, Setigui Aboubacar, Girard, Eric, Raut, Jean-Christophe, Pelon, Jacques, Blanchet, Jean-Pierre, Lemoine, Olivier, Onishi, Tatsuo“... and early spring. TIC-1 are composed by non-precipitating small ice crystals of less than 30 µm in diameter...”
Published in Atmosphere (2019)
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11“... of the aerosol, cloud droplet, and ice crystal spectra. The following physical processes are simulated...”
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12by Keita, Setigui Aboubacar, Girard, Eric, Raut, Jean-Christophe, Leriche, Maud, Blanchet, Jean-Pierre, Pelon, Jacques, Onishi, Tatsuo, Cirisan, Ana“... of ice clouds (TICs): (1) TIC1 clouds characterized by a large concentration of very small crystals...”
Published in Geoscientific Model Development (2020)
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13Simulating Arctic Ice Clouds during Spring Using an Advanced Ice Cloud Microphysics in the WRF Modelby Keita, Setigui Aboubacar, Girard, Eric, Raut, Jean-Christophe, Pelon, Jacques, Blanchet, Jean-Pierre, Lemoine, Olivier, Onishi, Tatsuo“... and early spring. TIC-1 are composed by non-precipitating small ice crystals of less than 30 µm in diameter...”
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14by Keita, Setigui Aboubacar, Girard, Eric, Raut, Jean-Christophe, Leriche, Maud, Blanchet, Jean-Pierre, Pelon, Jacques, Onishi, Tatsuo, Cirisan, Ana“... of ice clouds (TICs): (1) TIC1 clouds characterized by a large concentration of very small crystals...”
Published in Geoscientific Model Development (2023)
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15“..., and the gravitational deposition of ice crystals/water droplets and the deposition/condensation of water vapor onto ice...”
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16“... of the aerosol, cloud droplet, and ice crystal spectra. The following physical processes are simulated...”
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17“..., and the gravitational deposition of ice crystals/water droplets and the deposition/condensation of water vapor onto ice...”
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18by Keita, Setigui Aboubacar, Girard, Eric, Raut, Jean-Christophe, Leriche, Maud, Blanchet, Jean-Pierre, Pelon, Jacques, Onishi, Tatsuo, Cirisan, Ana“... of ice clouds (TICs): (1) TIC1 clouds characterized by a large concentration of very small crystals...”
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19Simulating Arctic Ice Clouds during Spring Using an Advanced Ice Cloud Microphysics in the WRF Modelby Keita, Setigui A., Girard, Eric, Raut, Jean-Christophe, Pelon, Jacques, Blanchet, Jean-Pierre, Lemoine, Olivier, Onishi, Tatsuo“... the polar night and early spring. TIC-1 are composed by non-precipitating small ice crystals of less than 30...”
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20Simulating Arctic Ice Clouds during Spring Using an Advanced Ice Cloud Microphysics in the WRF Modelby Keita, Setigui A., Girard, Eric, Raut, Jean-Christophe, Pelon, Jacques, Blanchet, Jean-Pierre, Lemoine, Olivier, Onishi, Tatsuo“... the polar night and early spring. TIC-1 are composed by non-precipitating small ice crystals of less than 30...”
Published in Atmosphere (2019)
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