본문 바로가기

연구성과

더 나은 예측을 향한 연구의 결실

수치예보의 발전을 위해 쌓아 온 KIAPS의 연구성과를 소개합니다.
논문부터 기술과 소프트웨어까지, 더 정확한 예측을 위한 지식과
경험을 나눕니다.

[논문] Refinement of Mesoscale and Turbulent-Scale Surface stresses in the Korean Integrated Model (KIM) for Global Weather Forecasting

작성자
마스터관리자
작성일
조회수
20
Abstract:
This study attempted to improve the skill of the Korean Integrated Model (KIM) for global numerical weather prediction. To this end, mesoscale stress and turbulent-scale stress caused by subgrid-scale orography (SSO) and surface layer physics, respectively, were refined. The SSO data computation method was revised by considering the mathematical moments of the statistics over the cubed-sphere grid. The modifications made in this study resulted in increased mesoscale stress over mountainous regions. The boundary layer stress due to the turbulent form drag is weakened, but the turbulent stress due to changes in the vegetation table value is largely increased owing to the enhanced roughness length for momentum. The enhancement of mesoscale drag over mountainous areas is robust; however, the partitioning into mesoscale and turbulent stresses varies over particular regions. The forecast skill at medium-range time scales was largely improved not only in surface parameters but also in the upper meteorological variables.

Citation:
Koo M. S., & Hong, S. Y. (2025). Refinement of Mesoscale and Turbulent-Scale surface stresses in the Korean Integrated Model (KIM) for global weather forecasting. Weather and Forecasting, 40(9), 1631–1643.