Ha-Young YANG, Ki-Deok JEONG, Jae-Cheol NAM, Ki-Ho CHANG, Gyun-Myoung PARK, Myoung-Joo LEE, Byung-Chul CHOI, Joo-Wan CHA, Jin-Yim JEONG, Sung-Soo YUM, Kyungsik KIM. 2009: Preliminary Results of the Ground-Based Orographic Snow Enhancement Experiment for the Easterly Cold Fog (Cloud) at Daegwallyeong during the 2006 Winter. Adv. Atmos. Sci, 26(2)., https://doi.org/10.1007/s00376-009-0222-x
Citation: Ha-Young YANG, Ki-Deok JEONG, Jae-Cheol NAM, Ki-Ho CHANG, Gyun-Myoung PARK, Myoung-Joo LEE, Byung-Chul CHOI, Joo-Wan CHA, Jin-Yim JEONG, Sung-Soo YUM, Kyungsik KIM. 2009: Preliminary Results of the Ground-Based Orographic Snow Enhancement Experiment for the Easterly Cold Fog (Cloud) at Daegwallyeong during the 2006 Winter. Adv. Atmos. Sci, 26(2)., https://doi.org/10.1007/s00376-009-0222-x

Preliminary Results of the Ground-Based Orographic Snow Enhancement Experiment for the Easterly Cold Fog (Cloud) at Daegwallyeong during the 2006 Winter

  • The snow enhancement experiments, carried out by injecting AgI and water vapor into orographically enhanced clouds (fog), have been conducted to confirm Li and Pitter's forced condensation process in a natural situation. Nine ground-based experiments have been conducted at Daegwallyeong in the Taebaek Mountains for the easterly foggy days from January--February 2006. We then obtained the optimized conditions for the Daegwallyeong region as follows: the small seeding rate (1.04 g min-1) of AgI for the easterly cold fog with the high humidity of Gangneung. Additional experiments are needed to statistically estimate the snowfall increment caused by the small AgI seeding into the orographical fog (cloud) over the Taebaek Mountains.
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