• 제목/요약/키워드: Mountainous Terrain

검색결과 178건 처리시간 0.019초

Study on the micro-scale simulation of wind field over complex terrain by RAMS/FLUENT modeling system

  • Li, Lei;Zhang, Li-Jie;Zhang, Ning;Hu, Fei;Jiang, Yin;Xuan, Chun-Yi;Jiang, Wei-Mei
    • Wind and Structures
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    • 제13권6호
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    • pp.519-528
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    • 2010
  • A meteorological model, RAMS, and a commercial computational fluid dynamics (CFD) model, FLUENT are combined as a one-way off-line nested modeling system, namely, RAMS/FLUENT system. The system is experimentally applied in the wind simulation over a complex terrain, with which numerical simulations of wind field over Foyeding weather station located in the northwest mountainous area of Beijing metropolis are performed. The results show that the method of combining a meteorological model and a CFD model as a modeling system is reasonable. In RAMS/FLUENT system, more realistic boundary conditions are provided for FLUENT rather than idealized vertical wind profiles, and the finite volume method (FVM) of FLUENT ensures the capability of the modeling system on describing complex terrain in the simulation. Thus, RAMS/FLUENT can provide fine-scale realistic wind data over complex terrains.

지역 기후 모형을 이용한 한반도 강수 모의에서 수평 해상도의 영향 (Impact of Horizontal Resolution of Regional Climate Model on Precipitation Simulation over the Korean Peninsula)

  • 이영호;차동현;이동규
    • 대기
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    • 제18권4호
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    • pp.387-395
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    • 2008
  • The impact of horizontal resolution on a regional climate model was investigated by simulating precipitation over the Korean Peninsula. As a regional climate model, the SNURCM(Seoul National University Regional Climate Model) has 21 sigma layers and includes the NCAR CLM(National Center for Atmospheric Research Community Land Model) for land-surface model, the Grell scheme for cumulus convection, the Simple Ice scheme for explicit moisture, and the MRF(Medium-Range Forecast) scheme for PBL(Planetary Boundary Layer) processing. The SNURCM was performed with 20 km resolution for Korea and 60 km resolution for East Asia during a 20-year period (1980-1999). Although the SNURCM systematically underestimated precipitation over the Korean Peninsula, the increase of model resolution simulated more precipitation in the southern region of the Korean Peninsula, and a more accurate distribution of precipitation by reflecting the effect of topography. The increase of precipitation was produced by more detailed terrain data which has a 10 minute terrain in the 20 km resolution model compared to the 30 minute terrain in the 60 km resolution model. The increase in model resolution and more detailed terrain data played an important role in generating more precipitation over the Korean Peninsula. While the high resolution model with the same terrain data resulted in increasing of precipitation over the Korean Peninsula including the adjoining sea, the difference of the terrain data resolution only influenced the precipitation distribution of the mountainous area by increasing the amount of non-convective rain. In conclusion, the regional climate model (SNURCM) with higher resolution simulated more precipitation over the Korean Peninsula by reducing the systematic underestimation of precipitation over the Korean Peninsula.

미세먼지 발생 레미콘시설에서의 대기확산모델 CALPUFF와 AERMOD 비교 분석 (Comparative Analysis of the CALPUFF and AERMOD Atmospheric Dispersion Models for Ready-Mixed Concrete Manufacturing Facilities Generating Particulate Matter)

  • 한진희;김영희
    • 한국환경보건학회지
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    • 제47권3호
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    • pp.267-278
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    • 2021
  • Objectives: Using atmospheric dispersion representative models (AERMOD and CALPUFF), the emissions characteristics of each model were compared and analyzed in ready-mixed concrete manufacturing facilities that generate a large amount of particulate matter (PM-10, PM-2.5). Methods: The target facilities were the ready-mixed concrete manufacturing facilities (Siheung RMC, Goyang RMC, Ganggin RMC) and modeling for each facility was performed by dividing it into construction and operation times. The predicted points for each target facility were selected as 8-12ea (Siheung RMC 10, Goyang RMC 8, and Gangjin RMC 12ea) based on an area within a two-kilometer radius of each project district. The terrain input data was SRTM-3 (January-December 2019). The meteorological input data was divided into surface weather and upper layer weather data, and weather data near the same facility as the target facility was used. The predicted results were presented as a 24-hour average concentration and an annual average concentration. Results: First, overall, CALPUFF showed a tendency to predict higher concentrations than AERMOD. Second, there was almost no difference in the concentration between the two models in non-complex terrain such as in mountainous areas, but in complex terrain, CALPUFF predicted higher concentrations than AERMOD. This is believed to be because CALPUFF better reflected topographic characteristics. Third, both CALPUFF and AERMOD predicted lower concentrations during operation (85.2-99.7%) than during construction, and annual average concentrations (76.4-99.9%) lower than those at 24 hours. Fourth, in the ready-mixed concrete manufacturing facility, PM-10 concentration (about 40 ㎍/m3) was predicted to be higher than PM-2.5 (about 24 ㎍/m3). Conclusions: In complex terrain such as mountainous areas, CALPUFF predicted higher concentrations than AERMOD, which is thought to be because CALPUFF better reflected topographic characteristics. In the future, it is recommended that CALPUFF be used in complex terrain and AERMOD be used in other areas to save modeling time. In a ready-mixed concrete facility, PM-10, which has a relatively large particle size, is generated more than PM-2.5 due to the raw materials used and manufacturing characteristics.

자연스러운 지형 생성을 위한 침식 시뮬레이션 (Creation of Natural Terrain by Erosion Simulation)

  • 한영덕
    • 한국게임학회 논문지
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    • 제15권6호
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    • pp.171-182
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    • 2015
  • 지형에 대한 기존의 침식 시뮬레이션은 주로 소규모의 지형 변화에 초점을 맞추고 있다. 이 논문에서는 물에 의한 침식과 열적 침식과정을 결합하여 강의 네트워크와 산들로 이루어진 자연스러운 대규모의 지형을 형성하는 방법을 제안한다. 물의 흐름에는 shallow water 시뮬레이션의 파이프 모델을 사용하며, 강물의 줄기가 쉽게 형성되게 하기 위해 속도에 의존하는 침식을, 강줄기 주변에 V자형 골짜기가 생성되게 하기 위해 열적 침식을 적용한다. 시뮬레이션 결과 $K_c$(퇴적물 수용상수)와 $K_v$(속도의존 침식강도)의 값이 적당한 범위에 있을 때만 목적한 모양의 지형이 생성되며, 이렇게 생성된 대표적인 자연스러운 모양의 지형을 예시한다. 또한 기존의 열적 침식 방법의 개선과 $K_c$가 큰 값일 때 발생하는 문제점을 해결할 방안을 제시한다.

A Study on the Variation of Ground Safety Factor by Earthworks

  • Kim, Jinhwan;Kwon, O-Il;Baek, Yong;Kim, Chang-Yong
    • 지질공학
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    • 제24권3호
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    • pp.333-341
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    • 2014
  • The construction of roads, tunnels, and bridges results in changes to the local terrain that may influence the ground safety factor, which represents the stability of geotechnical structures. In this study, we assessed construction sites that had collapsed as a result of terrain change, and then simulated variation in the ground safety factor with respect to terrain change caused by road construction. We assumed steep slopes to simulate changes in terrain in a mountainous area and assumed that earthworks took place for road construction by cutting a platform into the slope and altering the slope angle of the terrain both above and below the road. We calculated values of the ground safety factor through a stability analysis of the slope both above and below the road, and examined the variation in the safety factor of the above- and below-road slopes with respect to changes in road width. We found that if the slope angle was the same above and below the road, then the change in the ground safety factor during/after road construction occurred in the slope below the road, and if the slope angle above the road differed from that below, then the change occurred in both the above- and below-road slopes. Furthermore, the ground safety factor was essentially constant for road widths exceeding 2-6 m, depending on both above- and below-road slope angle. The findings of this study can be used to guide the management of construction sites and to assess changes in ground stability during road construction work, particularly in the early stages of earthworks, when the road width is narrow.

지형 추종을 위한 모델 예측제어와 비선형 외란 관측기를 이용한 백스테핑 슬라이딩 모드 제어기법 설계 (A Design of Model Predictive Control and Nonlinear Disturbance Observer-based Backstepping Sliding Mode Control for Terrain Following)

  • 이동우;홍경우;임철수;방효충;임동주;박대성;송기훈
    • 한국군사과학기술학회지
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    • 제27권4호
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    • pp.495-506
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    • 2024
  • In this study, we propose the terrain following algorithm using model predictive control and nonlinear disturbance observer-based backstepping sliding mode controller for an aircraft system. Terrain following is important for military missions because it helps the aircraft avoid detection by the enemy radar. The model predictive control is used to replace the generating trajectory and guidance with the flight path angle constraint. In addition, the aircraft is affected to the parameter uncertainty and unknown disturbance such as wind near the mountainous terrain. Therefore, we suggest the nonlinear disturbance-based backstepping sliding mode control method for the aircraft that has highly nonlinearity to enhance flight path angle tracking performance. Through the numerical simulation, the proposed method showed the better tracking performance than the traditional backstepping method. Furthermore, the proposed method presented the terrain following maneuver maintaining the desired altitude.

Analysis for Forest Fire Damage Severity Map in Cheongyang

  • Jung Tae-Woong;Yoon Bo-Yeol;Yoo Jae-Wook;Kim Choen
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2004년도 Proceedings of ISRS 2004
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    • pp.537-540
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    • 2004
  • Space-borne multi-sensor data could provide fire scar and bum severity mapping. This paper will present detail mapping of burnt areas in Cheongyange Yesan of Korea with ETM+ image. Burn severity map based on ETM+ image was found to be affected by strong topographic illumination effects in mountainous forest area. Topographic effect is a factor which causes errors in classification of high spatial resolution image like IKONOS image. Minnaert constants J( in each band of ETM+ image is derived for reduction of mountainous terrain effects. Finally, this paper computes quantitative analysis of forest fire damage by each forest types.

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Relationship between Forest Stands Characteristics and NASA/JPL AIRSAR Polarimetric Data Over Mountainous Terrain

  • Kim, Du-Ra;Lee, Kyu-Sung
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.435-440
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    • 2002
  • The objective of this study is to analyze the relationship between polarimetric radar backscatters and stand characteristics over the mountainous forest area. L- and P-band full polarimetric airborne SAR data obtained in September 2000 were processed to compare with forest stand maps and ground collected stand variables. After the geometric registration of SAR image, mean radar backscatters were extracted for those ground plots where the stand parameters, such as tree height, DBH, and basal area, were measured during and after the SAR data acquisition. Preliminary analysis was focused on the topographic influence of radar backscattering under the homogeneous forest stand condition. Topographic effects, assessed by the local incidence angles, were different obvious in L-band data while it was not clear with P-band data.

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일사 수광량 보정에 의한 산악지대 매시기온의 공간내삽 (Spatial Interpolation of Hourly Air Temperature over Sloping Surfaces Based on a Solar Irradiance Correction)

  • 정유란;윤진일
    • 한국농림기상학회지
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    • 제4권2호
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    • pp.95-102
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    • 2002
  • 관측밀도가 낮고 지형이 복잡한 산악지역을 대상으로 낮 시간대 기온의 경시변화를 기존의 방법으로 내삽할 경우 일사수광량의 불균일한 분포 때문에 심각한 추정오차가 발생할 수 있다. 이를 해결하기 위해 기존의 기온감율을 고려한 거리역산가중 내삽모형에 일사수광량 보정항을 추가하고 오차경감 정도를 평가하였다. 강원도 평창군 일대 14km$\times$22km 지역을 10m 해상도의 수치고도모형으로 표현하고, 각 격자점에 대해 태양과 지표면 사이의 기하학적 관계를 바탕으로 시간대별 실제 일사 수광량을 직달, 산란, 반사 등 성분별로 계산하였다. 수평면 일사량과의 편차를 산출한 다음 이 지역에서 경험적으로 얻은 일사-기온 변환당량을 적용하여 보정값을 얻었다. 기존의 방법에 의해 내삽된 기온값에 이 보정값을 적용하여 대상지역 전역의 기온분포도를 작성하였다. 대상 지역 내 경사향이 서로 다른 8개 지점에서 기온을 측정하여 기온분포도와 비교한 결과 추정오차가 크게 줄어들었음을 확인할 수 있었다.

산지복잡지형과 생태적 비균질성: 산지경관의 생산성과 수자원/수질에 관한 생태계 서비스 평가 (Complex Terrain and Ecological Heterogeneity (TERRECO): Evaluating Ecosystem Services in Production Versus water Quantity/quality in Mountainous Landscapes)

  • 강신규
    • 한국농림기상학회지
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    • 제12권4호
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    • pp.307-316
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    • 2010
  • 산지복잡지형은 지구표면의 약 20%를 차지하며, 절반 정도의 인류에게 맑은 물을 제공하는 지역이고, 대부분의 주요하천의 발원지로서 국가 혹은 지역 간 사회-경제적 경쟁과 정치적 논란의 대상지역이기도 하다. 산지경관생태계는 우리에게 폭넓은 생태계 생산물과 서비스(맑은 물, 에너지, 식량 및 산림자원 등)를 제공하며, 관광과 휴식활동의 대상으로 크게 부각되고 있다. 이들 지역은 특히 매우 높은 생물다양성과 육상탄소의 주요 저장원이기도 하다. TERRECO사업은 산지복잡지형의 생태계 과정에 대한 이해를 증진하고, 생태계 서비스와 관련한 생태계 기능들을 공간적으로 평가하는 데에 중점을 둔다. 특히 정교한 평가체계를 개발함으로써 산지복잡지형에서의 기후와 토지이용변화에 따른 생태계 서비스 기능의 변화를 정량화할 것이다. 이러한 구도에서 산지복잡지형의 수문학, 수자원, 생산성, 생물다양성, 토양생지화학, 미량가스방출 및 수질 등을 복합적으로 규명하고 있다. TERRECO사업은 총 34개의 세부연구과제로 구성되었으며, 한국산지복잡지형에서의 공동연구를 통해 연구기법의 개발 및 적용을 수행 중에 있다. 세부연구과제들은 산지복잡지형의 경관비균질성에 따른 (1) 물순환과 수자원, (2) 용존유기탄소(DOC), 미세입자상 유기탄소(fPOC), 질소화합물(TN)과 인 함유 물질(TP)의 수송과 수질에 영향을 미치는 탄소와 질소 저장원, (3) 환경적 관심이 높은 미량가스($CO_2$, $N_2O$, $CH_4$)의 포집과 방출, (4) 경관의 생물다양성과 생물다양성에 기인한 생태계 서비스들, 그리고 마지막으로 (5) 농업과 산림 생산성의 차이를 조사하도록 고안하였다. 따라서 TERRECO사업은 한국 산지복잡지형의 생태계 서비스를 조절하는 원리들을 규명하고, 총 34개 세부연구과제의 결과들이 생태계 서비스의 정량적 평가체계를 수립하는 데에 기여하도록 조직화함으로써 새로운 수준의 학제간 정보교환프로그램을 개발하는 데에 기여할 것으로 기대된다.