Role of Land–Atmosphere Interaction in the 2016 Northeast Asia Heat Wave: Impact of Soil Moisture Initialization

Author:

Yoon Donghyuck1ORCID,Kang Taehun1,Cha Dong‐Hyun1ORCID,Song Chang‐Keun1ORCID,Lee Myong‐In1ORCID,Min Ki‐Hong2ORCID,Kim Joowan3ORCID,Chun Jong Ahn4ORCID,Seo Eunkyo5

Affiliation:

1. Department of Urban and Environmental Engineering Ulsan National Institute of Science and Technology Ulsan Republic of Korea

2. Department of Astronomy and Atmospheric Sciences Kyungpook National University Daegu Republic of Korea

3. Department of Atmospheric Science Kongju National University Gongju Republic of Korea

4. Prediction Research Department APEC Climate Center Busan Republic of Korea

5. Department of Environmental Atmospheric Sciences Pukyong National University Busan Republic of Korea

Abstract

AbstractThe impact of soil moisture initialization on the 2016 Northeast Asian heat wave was explored using the Land Information System (LIS) Weather Research and Forecasting (WRF) model. To obtain advanced soil moisture estimates, various meteorological variables from the Global Data Assimilation System analysis and Integrated Multi‐Satellite Retrievals for Global Precipitation Measurement observation data were used as atmospheric forcings for the offline simulation of the Noah land surface model (Noah‐LSM). Based on the LIS, Soil Moisture Active Passive satellite were assimilated in the Noah LSM simulation. The assimilated soil moisture estimates revealed the drier land surface conditions over Northeast Asia compared with the product from the National Centers for Environmental Prediction Final Analysis (FNL) and were used as the initial condition of the WRF model. The WRF experiment initialized by the assimilated soil moisture product (LIS experiment) exhibited the observed surface air temperature (SAT) and 500 hPa geopotential height (500 GPH) over Northeast Asia compared with the result from the experiment initialized by the FNL (CTL experiment). At Week 1, the LIS experiment simulated warmer SAT than that from the CTL experiment, which was induced by the negative anomaly of latent heat flux over Mongolia. Then, 500 GPH became strong and spatially expanded in response to the thermal low induced by the warmer SAT, and the SAT was further increased during Weeks 2 and 3.

Funder

Korea Meteorological Administration

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geophysics

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