• 제목/요약/키워드: orographic effect

검색결과 26건 처리시간 0.025초

산지성호우의 환상스팩트럼 추정 (Estimation of Radial Spectrum for Orographic Storm)

  • 이재형;선우중홍;김민환;심명필
    • 대한토목학회논문집
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    • 제10권4호
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    • pp.53-66
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    • 1990
  • 산악의 영향을 받는 지역에서 비정상성 평균을 사용하는 G.C.모델에 의하여 총강우량의 우량곡면을 구성하였다. 구성된 우량곡면에 2차원 프리에 해석을 실시하여 강우의 주기성분을 분리하였다. 강우의 지엽성분, 즉 강우잔차는 우량곡면에서 주기성분을 제거하여 얻은 강우잔차를 균일한 무작위장의 표본함수라고 가정해서 이 무작위장의 특성을 자기상관함수로 나타냈다. 자기상관함수를 변환하여 스팩트럼 밀도를 구했고, 이 결과를 토대로 한강, 금강유역의 환상스팩트럼 분포함수의 모델을 제안했다.

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봄철 영동 지역 국지 하강풍 메커니즘과 지형 효과에 대한 연구 (Study on Mechanisms and Orographic Effect for the Springtime Downslope Windstorm over the Yeongdong Region)

  • 김정훈;정일웅
    • 대기
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    • 제16권2호
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    • pp.67-83
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    • 2006
  • The statistical analysis for the springtime windstorm in Korea shows that Yeongdong region has the highest occurrence frequency during recent 10 years. The objective of this study is to find possible mechanisms for the downslope windstorm formation in the Yeongdong region by using a mesoscale numerical model, WRF. Dynamical process, wave breaking (hereafter WB), is qualitatively investigated as the candidate mechanism for a windstorm event occurred in 5 April, 2005. WB is developed in upper troposphere downstream, since stable air is lifted by the Taebaek mountain. This process can cause and maintain the severe downslope windstorm by drawing the upper flow down to the surface. And the intensified downslope wind leads the hydraulic jump (hereafter HJ) in downstream region. Froude numbers at Chuncheon (upslope side), Seorak Mountain (crest), Yangyang (lee side), and the East Sea (distant downstream position) are estimated by about 0.4, 1.0, 1.6, and 0.6, respectively. This result implies that the accelerated and supercritical (Fr>1) flow adjusts to the ambient subcritical (Fr<1) conditions in the turbulent HJ. In addition, we find the formation of upstream inversion near top level of the mountain cause the intensification of HJ. Experiments to examine the orographic effect on the mechanisms suggest that the magnitudes of WB and HJ are larger in the experiment of higher topography, but there is no significant difference of windstorm magnitude among the experiments. Another important result from these sensitivity experiments is that the intensity of downslope windstorm strongly depends on the magnitude of upper (2~4 km) wind in upstream side.

겨울철 대관령지역 지형성 구름에 대한 지상기반 구름씨뿌리기 영향 사례연구 (A Case Study on the Impact of Ground-based Glaciogenic Seeding on Winter Orographic Clouds at Daegwallyeong)

  • 양하영;채상희;정진임;서성규;박영산;김백조
    • 한국지구과학회지
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    • 제36권4호
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    • pp.301-314
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    • 2015
  • 본 연구에서는 겨울철 대관령지역의 지형성 구름에 대해 인공증설을 위한 구름씨뿌리기(이하 시딩) 영향을 알아보기 위해서 2013년 3월 13일 실험사례를 분석하였다. 지상연소기를 이용하여 기온 $-4^{\circ}C$ 이하, 풍향 $45-130^{\circ}$, 풍속 $5ms^{-1}$ 이하일 때 AgI 입자를 시딩 하였으며 대관령지역에서 적절한 시딩량을 알아보기 위해 $38gh^{-1}$ (SR1)과 $113gh^{-1}$ (SR2)에 대해 실험을 수행하였다. AgI point-source 모듈을 추가한 WRF (Weather Research and Forecast) 수치모의실험을 통해 시딩 물질의 확산장을 알아보았다. 수치모의 결과 과냉각수적이 충분히 존재한 상태에서 실험이 실시되었으며 시딩 물질은 주풍에 따라 이동하는 경향을 보였다. 시딩 효과를 알아보기 위해 안개입자측정기, 강수입자측정기와 광학우적계에서 관측된 자료를 분석하였다. 본 연구사례에서는 빙정핵 시딩에 의해 1 mm 이하 크기의 강수입자 수농도의 증가가 나타났으며 대관령지역에는 SR1 시딩이 더 적절하다고 판단된다.

복잡 지형 지역에서의 KMAPP 지상 풍속 예측 성능 평가와 개선 (Evaluation and Improvement of the KMAPP Surface Wind Speed Prediction over Complex Terrain Areas)

  • 금왕호;이상현;이두일;이상삼;김연희
    • 대기
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    • 제31권1호
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    • pp.85-100
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    • 2021
  • The necessity of accurate high-resolution meteorological forecasts becomes increasing in socio-economical applications and disaster risk management. The Korea Meteorological Administration Post-Processing (KMAPP) system has been operated to provide high-resolution meteorological forecasts of 100 m over the South Korea region. This study evaluates and improves the KMAPP performance in simulating wind speeds over complex terrain areas using the ICE-POP 2018 field campaign measurements. The mountainous measurements give a unique opportunity to evaluate the operational wind speed forecasts over the complex terrain area. The one-month wintertime forecasts revealed that the operational Local Data Assimilation and Prediction System (LDAPS) has systematic errors over the complex mountainous area, especially in deep valley areas, due to the orographic smoothing effect. The KMAPP reproduced the orographic height variation over the complex terrain area but failed to reduce the wind speed forecast errors of the LDAPS model. It even showed unreasonable values (~0.1 m s-1) for deep valley sites due to topographic overcorrection. The model's static parameters have been revised and applied to the KMAPP-Wind system, developed newly in this study, to represent the local topographic characteristics better over the region. Besides, sensitivity tests were conducted to investigate the effects of the model's physical correction methods. The KMAPP-Wind system showed better performance in predicting near-surface wind speed during the ICE-POP period than the original KMAPP version, reducing the forecast error by 21.2%. It suggests that a realistic representation of the topographic parameters is a prerequisite for the physical downscaling of near-ground wind speed over complex terrain areas.

Local Surface Ground Temperature based on Energy Balance Model with the use of GRID/GIS, Remote Sensed and Meteorological Station Data

  • Ha, Kyung-Ja;Shin, Sun-Hee;Oh, Hyun-Mi;Kim, Jae-Hwan
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2003년도 Proceedings of ACRS 2003 ISRS
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    • pp.63-65
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    • 2003
  • The purpose of the study is to produce the surface ground temperature diagnostically using surface EBM with the use of GRID model in Geographic Information Systems (GIS). Certain characteristics have been analyzed for local slope effect, coastal effect and influence of high orographic aspect on the surface ground temperature. We present discussions on the meteorological responsibility for their temperature. The derived surface ground temperatures can be provided for comparison with those from satellite-based observ ation.

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한반도 지형이 대상수렴운의 생성에 미치는 영향에 관한 WRF 민감도 실험 (WRF Sensitivity Experiments on the Formation of the Convergent Cloud Band in Relation to the Orographic Effect of the Korean Peninsula)

  • 김유진;이재규
    • 대기
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    • 제25권1호
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    • pp.51-66
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    • 2015
  • This study was conducted to perform various sensitivity experiments using WRF (Weather Research and Forecasting) model in order to determine the effects of terrains of the Korean Peninsula and the land-sea thermal contrast on the formation and development of the convergent cloud band for the cases of 1 February 2012. The sensitivity experiments consist of the following five ones: CNTL experiment (control experiment), and TMBT experiment, BDMT experiment and ALL experiment that set the terrain altitude of Taeback Mountains and Northern mountain complex as zero, respectively, and the altitude of the above-mentioned two mountains as zero, and LANDSEA experiment that set to change the Korean Peninsula into sea in order to find out the land-sea thermal contrast effect. These experiment results showed that a cold air current stemming from the Siberian high pressure met the group of northern mountains with high topography altitude and was separated into two air currents. These two separated air currents met each other again on the Middle and Northern East Sea, downstream of the group of northern mountains and converged finally, creating the convergent cloud band. And these experiments suggested that the convergent cloud band located on the Middle and Northern East Sea, and the cloud band lying on the southern East sea to the coastal waters of the Japanese Island facing the East Sea, were generated and developed by different dynamical mechanisms. Also it was found that the topography of Taeback Mountains created a warm air advection region due to temperature rise by adiabatic compression near the coastal waters of Yeongdong Region, downstream of the mountains. In conclusion, these experiment results clearly showed that the most essential factor having an effect on the generation and development of the convergent cloud band was the topography effect of the northern mountain complex, and that the land-sea thermal contrast effect was insignificant.

국지규모 지형영향을 고려하기 위한 MM5-A2C 결합 모델링 특성 분석 (The Analysis of Regional Scale Topographic Effect Using MM5-A2C Coupling Modeling)

  • 최현정;이순환;김학성
    • 한국지구과학회지
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    • 제36권3호
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    • pp.210-221
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    • 2015
  • 지형적인 형태와 지표면의 물리적인 특성은 기상장 뿐 만 아니라 대기질 수치 모델링에서도 가장 중요한 입력변수가 된다. 대부분 복잡지형에서 일어나는 국지적인 기상의 일변동들이 지형적인 불균일성에 의해 지배되기도 한다. 이러한 지형적인 특징들은 열적으로 유도된 대기흐름에 영향을 일으키며 직접적으로는 풍계의 변화를 가져오거나 지표면 가열 온도 자체에서의 중요한 변화를 가져와 간접적으로 영향을 주기도 한다. 복잡지형에서 이러한 변화양상들은 지형적인 특징 즉, 지형적 경사와 성질에 의한 태양복사 에너지의 불균등한 분배에 기인한다. 그러므로 기상장 묘사가 어려운 복잡지형에서는 관측값에 더 가까운 정확한 바람장을 예측하기 위해 상세한 지형 정보와 지표면 자료가 중요하게 된다. 본 연구에서는 상세한 지표면과 지형자료를 지표 경계자료로 활용한 MM5-A2C 모델을 이용하여 복잡한 지형적 조건을 가진 산지지역에서의 바람장 수치모의를 하고자 한다. MM5-A2C에 의해 유도된 기상장은 국지규모의 산지주변에서의 지형강제력에 의한 기상장 해석을 정밀하게 예측하여 모델 내의 지형적 조건이 미치는 영향에 대해 직접적인 영향을 주고 있음을 알 수 있었다.

Characterization Of Rainrate Fields Using A Multi-Dimensional Precipitation Model

  • Yoo, Chul-sang;Kwon, Snag-woo
    • Water Engineering Research
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    • 제1권2호
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    • pp.147-158
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    • 2000
  • In this study, we characterized the seasonal variation of rainrate fields in the Han river basin using the WGR multi-dimensional precipitation model (Waymire, Gupta, and Rodriguez-Iturbe, 1984) by estimating and comparing the parameters derived for each month and for the plain area, the mountain area and overall basin, respectively. The first-and second-order statistics derived from observed point gauge data were used to estimate the model parameters based on the Davidon-Fletcher-Powell algorithm of optimization. As a result of the study, we can find that the higher rainfall amount during summer is mainly due to the arrival rate of rain bands, mean number of cells per cluster potential center, and raincell intensity. However, other parameters controlling the mean number of rain cells per cluster, the cellular birth rate, and the mean cell age are found invariant to the rainfall amounts. In the application to the downstream plain area and upstream mountain area of the Han river basin, we found that the number of storms in the mountain area was estimated a little higher than that in the plain area, but the cell intensity in the mountain area a little lower than that in the plain area. Thus, in the mountain area more frequent but less intense storms can be expected due to the orographic effect, but the total amount of rainfall in a given period seems to remain the same.

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도심 실제 거칠기 적용과 장래 도심 개발계획에 따른 국지 기상장 변화 수치 모의 (The Effect of Atmospheric Flow Field According to the Urban Roughness Parameter and the Future Development Plan on Urban Area)

  • 최현정;이화운;김민정
    • 한국환경과학회지
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    • 제19권6호
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    • pp.703-714
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    • 2010
  • In this study, we analyzed the impact of orographic and thermal forcing on the atmospheric flow field over the urban metropolitan areas on urban artificial buildings and future development plan. Several numerical experiments have been undertaken in order to clarify the impacts of the future development plan on urban area by analyzing practical urban ground conditions, we revealed that there were large differences in the meteorological differences in each case. The prognostic meteorological fields over complex areas of Seoul, Korea are generated by the PSU/NCAR mesoscale model(MM5). we carried out a comparative examination on the meteorological fields of topography and land-use that had building information and future development plan. A higher wind speed at daytimes tends to be forecasted when using new topography and land use data that have a high resolution with an appropriate limitation to the mixing height and the nocturnal boundary layer(NCB). During nighttime periods, since radiation cooling development is stronger after development plan, the decreased wind speed is often generated.

A Comparative Analysis of the Accuracy of Areal Precipitation According to the Rainfall Analysis Method of Mountainous Streams

  • Kang, Bo-Seong;Yang, Sung-Kee;Kang, Myung-Soo
    • 한국환경과학회지
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    • 제28권10호
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    • pp.841-849
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    • 2019
  • The purpose of this study was to evaluate the method of estimating the areal precipitation reflecting the altitude of the mountainous terrain on Jeju Island by comparing and analyzing the areal precipitation using the Thiessen polygon method and the isohyetal method in mountainous streams. In terms of constructing the Thiessen polygon network, rainfall errors occurred in 94.5% and 45.8% of the Thiessen area ratio of the Jeju and Ara stations, respectively. This resulted in large areal precipitation and errors using the isohyetal method at altitudes below 600 m in the target watershed. In contrast, there were small errors in the highlands. Rainfall errors occurred in 18.91% of the Thiessen area ratio of Eorimok, 2.41% of Witseoreum, and 2.84% of Azalea Field because of the altitudinal influence of stations located in the highlands at altitudes above 600 m. Based on the areal precipitation estimation using the Thiessen polygon method, it was considered to be partially applicable to streams on Jeju Island depending on the altitude. However, the method is not suitable for mountainous streams such as the streams on Jeju Island because errors occur with altitude. Therefore, the isohyetal method is considered to be more suitable as it considers the locations of the rainfall stations and the orographic effect and because there are no errors with altitude.