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Sanghun Lim

Researcher at Colorado State University

Publications -  67
Citations -  1243

Sanghun Lim is an academic researcher from Colorado State University. The author has contributed to research in topics: Radar & Weather radar. The author has an hindex of 14, co-authored 66 publications receiving 1084 citations. Previous affiliations of Sanghun Lim include Cooperative Institute for Research in the Atmosphere & Korea Institute of Civil Engineering and Building Technology.

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A New Dual-Polarization Radar Rainfall Algorithm: Application in Colorado Precipitation Events

TL;DR: In this paper, a new rainfall algorithm is developed using hydrometeor identification (HID) to guide the choice of the particular rainfall estimation algorithm, which can better account for the presence of ice in the sampling volume.
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Hydrometeor classification system using dual-polarization radar measurements: model improvements and in situ verification

TL;DR: The hydrometeor classification system is evaluated by comparing inferred results from the CSU CHILL Facility dual-polarization radar measurements with the in situ sample data collected by the T-28 aircraft during the Severe Thunderstorm Electrification and Precipitation Study.
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Recent advances in classification of observations from dual polarization weather radars

TL;DR: A summary of the advances since the early papers on dual-polarization radar based hydrometeor classification is provided, with an emphasis on how the successful operational applications have influenced this field.
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A Robust C-Band Hydrometeor Identification Algorithm and Application to a Long-Term Polarimetric Radar Dataset

TL;DR: In this article, a 10-category, polarimetric-based hydrometeor identification algorithm (HID) for C band is developed from theoretical scattering simulations including wet snow, hail, and big drops/melting hail.
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Dual-polarization radar signatures in snowstorms: Role of snowflake aggregation

TL;DR: In this paper, a potential role of snowflake growth by aggregation on formation of dual-polarization radar signatures in winter storms is discussed, where the observed bands of increased values of specific differential phase (Kdp) can be linked to the onset of aggregation.