• 제목/요약/키워드: environmental simulation

검색결과 3,793건 처리시간 0.038초

환경감쇠인자를 고려한 레이더 탐지 확률 변화에 관한 연구 (Study on the Radar Detection Probability Change Considering Environmental Attenuation Factor)

  • 김영웅;박상철
    • 한국시뮬레이션학회논문지
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    • 제24권4호
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    • pp.23-28
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    • 2015
  • 탐지 분야는 전장에 영향을 미치는 요인들 중 중요한 부분이다. 기본적으로 레이더는 정해진 방향으로 탐지를 수행하기 위해 전파를 방출한다. 그러나 기존의 레이더들 대부분이 돌아온 전파를 이용해 신호처리 과정에 의해 표적을 확인할 때, 환경 감쇠 요소는 반영되지 않는다. 이러한 전자파를 이용하는 레이더는 환경적 조건에 의한 감쇠요인에 따라 탐지 결과가 달라질 수 있는 가능성을 가지고 있어, 실제 전장에서 작전상 문제가 발생할 수도 있다. 그렇기 때문에, 이 논문에서는 전파가 돌아올때, 기존의 레이더 방정식에 환경 감쇠 요인을 반영하여 더 정확한 표적을 확인하기 위한 시도를 해보고자 한다.

장기모의를 통한 도시유역 비점오염원 처리장치 용량 산정 (Determination of Design Capacity for NPS Pollutant Treatment Facilities by Long-term Simulation in Urban Areas)

  • 주진걸;유도근;김중훈
    • 한국물환경학회지
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    • 제27권6호
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    • pp.841-847
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    • 2011
  • In this study, a method to determine the design capacities of nonpoint source (NPS) pollutant treatment facilities in urban areas was suggested. A facility capacity to treat 80 percent of total SS discharge was estimated by 2-year rainfall - runoff - build-up and wash-off simulation at Goonja drainage district in Seoul. For wash-off simulation, four wash-off models (EMC, RC, EXP, and Joo model) were used. As the results, 80 percent of total SS discharge could be treated with only 7.7~31.4% facility capacity of peak flow. The suggested method and results will provide a guideline to determine design capacities of NPS pollutant treatment facility in urban areas.

WRF-SWAN모델을 이용한 상세 연안기상 모의 특성 분석 (The Characteristics in the Simulation of High-resolution Coastal Weather Using the WRF and SWAN Models)

  • 손고은;정주희;김현수;김유근
    • 한국환경과학회지
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    • 제23권3호
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    • pp.409-431
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    • 2014
  • In this study, the characteristics in the simulation of high-resolution coastal weather, i.e. sea surface wind (SSW) and significant wave height (SWH), were studied in a southeastern coastal region of Korea using the WRF and SWAN models. This analyses was performed based on the effects of various input factors in the WRF and SWAN model during M-Case (moderate days with average 1.8 m SWH and $8.4ms^{-1}$ SSW) and R-Case (rough days with average 3.4 m SWH and $13.0ms^{-1}$ SSW) according to the strength of SSW and SWH. The effects of topography (TP), land cover (LC), and sea surface temperature (SST) for the simulation of SSW with the WRF model were somewhat high on v-component winds along the coastline and the adjacent sea of a more detailed grid simulation (333 m) during R-Case. The LC effect was apparent in all grid simulations during both cases regardless of the strength of SSW, whereas the TP effect had shown a difference (decrease or increase) of wind speed according to the strength of SSW (M-Case or R-Case). In addition, the effects of monthly mean currents (CR) and deepwater design waves (DW) for the simulation of SWH with the SWAN model predicted good agreement with observed SWH during R-Case compared to the M-Case. For example, the effects of CR and DW contributed to the increase of SWH during R-Case regardless of grid resolution, whereas the differences (decrease or increase) of SWH occurred according to each effect (CR or DW) during M-Case.

분산 시뮬레이션 시스템에서 합성 환경 표현 및 교환 표준(SEDRIS) 기반의 전장 환경 구축 (Generation of the Battlefield in Distributed Simulation System Based on Synthetic Environment Representation and Interchange Standard (SEDRIS))

  • 함원경;김정훈;나영남;천상욱;박상철
    • 정보화연구
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    • 제9권3호
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    • pp.253-263
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    • 2012
  • 본 논문은 분산 시스템에서의 표준합성환경 기반 수중 교전 시뮬레이션을 위한 방법론이다. 수중 교전 시뮬레이션의 경우 염분과 수온 등의 수중 환경 데이터를 시뮬레이션에 반영하는 것이 중요하다. 분산 시뮬레이션 시스템에서 이러한 환경 데이터의 재사용성과 상호운용성 향상을 위해 합성 환경 표현 및 교환 표준(Synthetic Environmental Data Representation and Interchange Specification, SEDRIS(ISO standard for environmental data))이 개발되었고, 본 논문에서는 SEDRIS를 활용하여 수중 합성환경을 구축한다. 본 논문을 통해 SEDRIS가 합성환경 데이터의 국제 표준이지만 그 방대함과 복잡함으로 인하여 사용이 저해된 문제점을 대기/해양 환경에 대해 효율적인 SEDRIS 기술 활용 방법을 제시하여 해결한다. 본 논문의 최종 목적은 대기/해양 환경 표현을 위한 다차원 격자 기반의 SEDRIS 구조를 구축하고, High Level Architecture (HLA)/Run-Time Infrastructure (RTI) 기반의 분산 시스템에서 대기/해양 합성전장환경 구축에 SEDRIS 적용 방법을 제시한다.

KORUS-AQ 기간 동안 초기 입력 자료에 따른 WRF 기상장 모의 결과 비교 (Impact of Different Meteorological Initializations on WRF Simulation During the KORUS-AQ Campaign)

  • 문정혁;전원배;이화운
    • 한국환경과학회지
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    • 제29권1호
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    • pp.33-44
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    • 2020
  • Recently, a variety of modeling studies have been conducted to examine the air quality over South Korea during the Korea - United States Air Quality (KORUS-AQ) campaign period (May 1 to June 10, 2016). This study investigates the impact of different meteorological initializations on atmospheric modeling results. We conduct several simulations during the KORUS-AQ period using the Weather Research and Forecasting (WRF) model with two different initial datasets, which is FNL of NCEP and ERA5 of ECMWF. Comparing the raw initial data, ERA5 showed better accuracy in the temperature, wind speed, and mixing ratio fields than those of NCEP-FNL. On the other hand, the results of WRF simulations with ERA5 showed better accuracy in the simulated temperature and mixing ratio than those with FNL, except for wind speed. Comparing the nudging efficiency of temperature and wind speed fields, the grid nudging effect on the FNL simulation was larger than that on the ERA5 simulation, but the results of mixing ratio field was the opposite. Overall, WRF simulation with ERA5 data showed a better performance for temperature and mixing ratio simulations than that with FNL data. For wind speed simulation, however, WRF simulation with FNL data indicated more accurate results compared to that with ERA5 data.

위성영상 해상풍 축출에 의한 수치바람모의 검증 (Validation of Numerical Wind Simulation by Offshore Wind Extraction from Satellite Images)

  • 김현구;황효정;이화운;김동혁;김덕진
    • 한국환경과학회지
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    • 제18권8호
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    • pp.847-855
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    • 2009
  • As a part of effort to establish an offshore wind resource assessment system of the Korean Peninsula, a numeric wind simulation using mesoscale climate model MM5 and a spatial distribution of offshore wind extracted from SAR remote-sensing satellite image is compared and analyzed. According to the analyzed results, the numeric wind simulation is found to have wind speed over predication tendency at the coastal sea area. Therefore, it is determined that a high-resolution wind simulation is required for complicated coastal landforms. The two methods are verified as useful ways to identify the spatial distribution of offshore wind by mutual complementation and if the meteor-statistical comparative analysis is performed in the future using adequate number of satellite images, it is expected to derive a general methodology enabling systematic validation and correction of the numeric wind simulation.

역삼투-압력지연삼투 조합공정 공정모사 및 비용예측 프로그램 개발 (Development of SWRO-PRO hybrid process simulation and cost estimation program)

  • 최용준;신용현;이상호;김승현
    • 상하수도학회지
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    • 제30권3호
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    • pp.299-312
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    • 2016
  • The main objective of this paper is to develop computer simulation program for performance evaluation and cost estimation of a reverse osmosis (RO) and pressure-retarded osmosis (PRO) hybrid process to propose guidelines for its economic competitiveness use in the field. A solution-diffusion model modified with film theory and a simple cost model was applied to the simulation program. Using the simulation program, the effects of various factors, including the Operating conditions, membrane properties, and cost parameters on the RO and RO-PRO hybrid process performance and cost were examined. The simulation results showed that the RO-PRO hybrid process can be economically competitive with the RO process when electricity cost is more than 0.2 $/kWh, the PRO membrane cost is same as RO membrane cost, the power density is more than $8W/m^2$ and PRO recovery is same as 1/(1-RO recovery).

WRF-UCM을 이용한 연안산업도시지역 고해상도 기상 모델링 (High-resolution Meteorological Simulation Using WRF-UCM over a Coastal Industrial Urban Area)

  • 방진희;황미경;김양호;이지호;오인보
    • 한국환경과학회지
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    • 제29권1호
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    • pp.45-54
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    • 2020
  • High-resolution meteorological simulations were conducted using a Weather Research and Forecasting (WRF) model with an Urban Canopy Model (UCM) in the Ulsan Metropolitan Region (UMR) where large-scale industrial facilities are located on the coast. We improved the land cover input data for the WRF-UCM by reclassifying the default urban category into four detailed areas (low and high-density residential areas, commercial areas, and industrial areas) using subdivided data (class 3) of the Environmental and Geographical Information System (EGIS). The urban area accounted for about 12% of the total UMR and the largest proportion (47.4%) was in the industrial area. Results from the WRF-UCM simulation in a summer episode with high temperatures showed that the modeled temperatures agreed greatly with the observations. Comparison with a standard WRF simulation (WRF-BASE) indicated that the temporal and spatial variations in surface air temperature in the UMR were properly captured. Specifically, the WRF-UCM reproduced daily maximum and nighttime variations in air temperature very well, indicating that our model can improve the accuracy of temperature simulation for a summer heatwave. However, the WRF-UCM somewhat overestimated wind speed in the UMR largely due to an increased air temperature gradient between land and sea.

수질모형을 이용한 수질오염사고의 모의분석 (Simulation of Water Pollution Accident with Water Quality Model)

  • 최현구;박준형;한건연
    • 환경영향평가
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    • 제23권3호
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    • pp.177-186
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    • 2014
  • Depending on the change of lifestyle and the improvement of people's living standards and rapid industrialization, urbanization of recent, demand for water is increasing rapidly. So emissions of domestic wastewater and various industrial waste water has increased, and water quality is worsening day by day. Therefore, in order to provide a measure against the occurrence of water pollution accident, this study was tried to simulate water pollution accident. This study simulated 2008 Gimcheon phenol accident using 1,2-D model, and analyze scenario for prevent of water pollution accident. Consequently the developed 1-D model presents high reappearance when compared with 2-D model, and has been able to obtain results in a short simulation run time. This study will contribute to the water pollution incident response prediction system and water quality analysis in the future.

RC교각을 이용한 실시간 하이브리드 실험 시스템의 적용성 연구 (Verification of Real-time Hybrid Test System using RC Pier Model)

  • 이진행;박민석;채윤병;김철영
    • 한국지진공학회논문집
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    • 제22권4호
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    • pp.253-259
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    • 2018
  • Structure behaviors resulting from an earthquake are experimentally simulated mainly through a shaking table test. As for large-scale structures, however, size effects over a miniature may make it difficult to assess actual behaviors properly. To address this problem, research on the hybrid simulation is being conducted actively. This method is to implement numerical analysis on framework members that affect the general behavior of the structure dominantly through an actual scale experiment and on the rest parts by applying the substructuring technique. However, existing studies on hybrid simulation focus mainly on Slow experimental methods, which are disadvantageous in that it is unable to assess behaviors close to the actual level if material properties change depending on the speed or the influence of inertial force is significant. The present study aims to establish a Real-time hybrid simulation system capable of excitation based on the actual time history and to verify its performance and applicability. The hybrid simulation system built up in this study utilizes the ATS Compensator system, CR integrator, etc. in order to make the target displacement the same with the measured displacement on the basis of MATLAB/Simulink. The target structure was a 2-span bridge and an RC pier to support it was produced as an experimental model in order for the shaking table test and Slow and Real-time hybrid simulations. Behaviors that result from the earthquake of El Centro were examined, and the results were analyzed comparatively. In comparison with the results of the shaking table test, the Real-time hybrid simulation produced more similar maximum displacement and vibration behaviors than the Slow hybrid simulation. Hence, it is thought that the Real-time hybrid simulation proposed in this study can be utilized usefully in seismic capacity assessment of structural systems such as RC pier that are highly non-linear and time-dependent.