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Characteristics of Strong Winds on the Korean Peninsula during the Non-typhoon Period: Data Analysis for 116 Years from 1904 to 2019
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근대 기상관측 이후, 비태풍 시기 한반도 강풍의 장기특성 분석: 1904년부터 2019년까지 116년간 자료분석

논문 기본 정보

Type
Academic journal
Author
Hana Na (인제대학교) Woo-Sik Jung (인제대학교)
Journal
Korean Society for Atmospheric Environment Journal of Korean Society for Atmospheric Environment Vol.37 No.1 KCI Excellent Accredited Journal SCOPUS
Published
2021.2
Pages
55 - 65 (11page)
DOI
10.5572/KOSAE.2021.37.1.055

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Characteristics of Strong Winds on the Korean Peninsula during the Non-typhoon Period: Data Analysis for 116 Years from 1904 to 2019
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Research history (44)

2021

관측자료에 기반한 한반도 근대기상관측 이후 비태풍 시기 ‘태풍급 강풍’의 시공간적 특성 강해지고 있는 태풍, 그리고 태풍 영향예보에 활용 가능한 한국형 태풍사전방재모델 Analysis of Typhoon Characteristics on the Korean Peninsula using the Korean Typhoon Type Index - The top 10 Typhoons in Property Damage - Spatio-temporal Characteristics of Strong Winds on the Korean Peninsula Based on Observations - Typhoon Period and Non-tropical Period - Extreme Value Change of Typhoon Affecting the Korean Peninsula Based on Observations Spatial Distribution of Strong Winds on the Korean Peninsula during the Non-Typhoon affecting Period - Observations and Strong Wind Special Report - A Study on Improving the Prediction Accuracy of a Typhoon Disaster Prevention Model Part III: Sensitivity of the WRF Model to Soil Data Characteristics of Strong Winds on the Korean Peninsula during the Non-typhoon Period: Data Analysis for 116 Years from 1904 to 2019

2019

Predictive Sensitivity Study of Maximum Instantaneous Wind Speed (3-Second Gust) Derived from Typhoon Pre-disaster Model - Analysis of Soil Data (GDAPS SOIL, GFS SOIL) Evaluation of WRF Performance by Soil Data (GDAPS SOIL, GFS SOIL) for Predicting 3-Second Gust of Typhoon Evaluation of WRF Performance by Initial Meteorological Input Data (GDAPS, RDAPS, GFS) for Predicting 3-Second Gust of Typhoon Predictive Sensitivity Study of Maximum Instantaneous Wind Speed (3-Second Gust) Derived from Typhoon Pre-disaster Model - Application of High Resolution SST & FDDA - Predictive Sensitivity Study of Maximum Instantaneous Wind Speed (3-Second gust) Derived from Typhoon Pre-disaster Model - Analysis by Meteorological Input Data (GDAPS, RDAPS, GFS) 고해상도 SST와 기상 자료동화 적용 시 태풍사전방재모델의 3초 gust 예측력 분석 태풍의 최대순간풍속 예측 정확도 향상을 위한 WRF 수행력 평가 - 기상입력자료(GDAPS, RDAPS, GFS)에 따른 분석 - 기상입력자료(GDAPS, RDAPS, GFS)별 태풍사전방재모델의 3초 gust 예측력 분석 태풍의 최대순간풍속 예측 정확도 향상을 위한 WRF 수행력 평가 - 토양자료(GFS SOIL, GDAPS SOIL)에 따른 분석 - 토양자료(GFS SOIL, GDAPS SOIL)별 태풍사전방재모델의 3초 gust 예측력 분석 A Study on Improving the Prediction Accuracy of a Typhoon Disaster Prevention Model - Part I: Sensitivity of the WRF Model to High-Resolution SST Data and Meteorological Data Assimilation Characteristics of Monthly Maximum Wind Speed of Typhoons Affecting the Korean Peninsula -Typhoon RUSA, MAEMI, KOMPASU, and BOLAVEN - Assessment of the Suitability of the Typhoon Disaster Prevention Model according to the Typhoon Maximum Wind Speed Radius and Surface Roughness Length A Study on the Characteristics of Maximum Wind Speed Distributions by Typhoon Track in the Korean Peninsula

2018

한반도 영향 태풍의 월별 강풍 특징과 사례 연구 : 태풍 루사 · 매미 · 볼라벤을 대상으로 태풍에 대한 사전 방재 기상 정보의 태풍 진로 유형별 구축 WRF의 해수면 온도 및 자료 동화 효과 분석을 통한 RAM의 정확도 향상 연구 High-resolution Sea Surface Temperature Sensitivity and Data Assimilation Effects to Improve the Predicted Accuracy of RAM Establishment of Basic Data for Typhoon Protection System : Analysis of Typhoon Track Type Establishment of Basic Data for Typhoon Protection System : Analysis of Monthly and Typhoon RUSA, MAEMI, BOLAVEN Establishment of Basic Data for Typhoon Protection System : Analysis of El-Nino and Na-nina and Annual Change (2002~2015) Verification of RAM by Comparing the Maximum Wind Speed and Observation that Can Occur during Typhoon Building Baseline Data for a Typhoon Protection System via Calculation of the Extreme Wind Speed During a Typhoon
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Abstract· Keywords

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Strong winds analyzed in this study were described as winds of more than 14 m/s, among all winds developed during the period, except during the typhoon season, which affected the Korean Peninsula. In order to analyse the temporal and spatial characteristics of strong winds during non-typhoon periods from 1904 to 2019, hourly wind speed data recorded at all weather observation points (ASOS, Bouy, Beacon) in Korea were utilized. Both the rate of occurrence of strong winds and the strong winds were higher in coastal in metropolitan cities. The annual change in wind speed showed a tendency to decrease in coastal areas and seas, and a complex increase and decrease in inland areas by point. Looking at the overall rate of occurrence of strong winds and strong wind speeds in Korea during all periods of the study, the overall trend has declined since modern weather observations, but has been increasing again since the early and mid-1970s. In terms of seasonal characteristics of strong winds, except for winter (December, January, February), the rate of occurrence of strong winds and strong wind speeds was relatively higher in March and April, which are spring months.

Contents

Abstract
1. 서론
2. 자료 및 방법
3. 결과
4. 결론
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