• 제목/요약/키워드: Meteorological

검색결과 5,195건 처리시간 0.039초

조기경보시스템 검증을 위한 무인기상관측망 실황자료 표출 시스템 (A System Displaying Real-time Meteorological Data Obtained from the Automated Observation Network for Verifying the Early Warning System for Agrometeorological Hazard)

  • 김대준;박주현;김수옥;김진희;김용석;심교문
    • 한국농림기상학회지
    • /
    • 제22권3호
    • /
    • pp.117-127
    • /
    • 2020
  • 농촌진흥청 농업기상재해 조기경보시스템은 기상청으로부터 제공되는 기상정보를 활용하여 농장 단위로 상세 추정하고, 추정된 상세 기상정보를 바탕으로 작물의 생육 추정 및 생육이 진행됨에 따라 발생할 수 있는 기상 재해를 예측하여 사용자에게 미리 전달한다. 이들 예측 정보를 검증하기 위한 무인기상관측망을 연구 지역 내에 구축하였으며, 관측망으로부터 수집되는 기상 실황 자료의 실시간 웹 표출 시스템을 구축하였다. 기상관측장비로부터 수집되는 기상요소로는 기온, 습도, 일사량, 강우량, 토양수분, 일조시간, 풍속, 풍향 등이며, 1분단위로 수집 및 10분 간격으로 서버로 전송된다. 자료 표출 시스템은 기상관측장비로 부터 수집되는 1분 단위의 기상자료를 DB로 구축하는 1단계, 수집된 기상자료를 10분, 1시간, 1일 단위로 통계 분석하는 2단계, 수집 및 분석한 기상자료를 웹으로 표출하는 3단계로 구성된다. DB에 수집된 기상자료는 웹 페이지를 통해, 전체 지점 또는 1개 지점의 1분단위, 10분단위, 1시간 단위, 1일 단위로 조회할 수 있으며, CSV 포맷으로 다운로드 할 수 있다. 자료 표출 시스템 접속 URL은 http://aws.agmet.kr 이다.

Different Approaches to Design a Meteorological Buoy for Weather Monitoring Purposes

  • Lee, Chee-Cheong;Park, Soo-Hong
    • Journal of information and communication convergence engineering
    • /
    • 제8권3호
    • /
    • pp.301-306
    • /
    • 2010
  • This project is to study and design a meteorological buoy. It mainly covers and compares two approaches to design a meteorological buoy where their functions are same. The comparison will be made between mechanical structure, type of sensors, and electronics system design and power consumption issues.

Design of Client/Server System for Meteorological Map Service Using Mobile Phone Sensor

  • Choi, Jin-Oh
    • Journal of information and communication convergence engineering
    • /
    • 제7권4호
    • /
    • pp.525-529
    • /
    • 2009
  • On the limited urban area meteorological data are hard to be collected because of the cost problem. The facilities collecting the data require high installment cost. Recently, the sensor network technique comes to the fore as a solution. Furthermore a mobile phone also becomes to be recognized as a sensor. This paper studies an application to service the meteorological map using mobile phone sensor. A design results for system implementation are introduced in this paper.

기상청 기후예측시스템(GloSea6) - Part 2: 기후모의 평균 오차 특성 분석 (The KMA Global Seasonal forecasting system (GloSea6) - Part 2: Climatological Mean Bias Characteristics)

  • 현유경;이조한;신범철;최유나;김지영;이상민;지희숙;부경온;임소민;김혜리;류영;박연희;박형식;추성호;현승훤;황승언
    • 대기
    • /
    • 제32권2호
    • /
    • pp.87-101
    • /
    • 2022
  • In this paper, the performance improvement for the new KMA's Climate Prediction System (GloSea6), which has been built and tested in 2021, is presented by assessing the bias distribution of basic variables from 24 years of GloSea6 hindcasts. Along with the upgrade from GloSea5 to GloSea6, the performance of GloSea6 can be regarded as notable in many respects: improvements in (i) negative bias of geopotential height over the tropical and mid-latitude troposphere and over polar stratosphere in boreal summer; (ii) cold bias of tropospheric temperature; (iii) underestimation of mid-latitude jets; (iv) dry bias in the lower troposphere; (v) cold tongue bias in the equatorial SST and the warm bias of Southern Ocean, suggesting the potential of improvements to the major climate variability in GloSea6. The warm surface temperature in the northern hemisphere continent in summer is eliminated by using CDF-matched soil-moisture initials. However, the cold bias in high latitude snow-covered area in winter still needs to be improved in the future. The intensification of the westerly winds of the summer Asian monsoon and the weakening of the northwest Pacific high, which are considered to be major errors in the GloSea system, had not been significantly improved. However, both the use of increased number of ensembles and the initial conditions at the closest initial dates reveals possibility to improve these biases. It is also noted that the effect of ensemble expansion mainly contributes to the improvement of annual variability over high latitudes and polar regions.