• Title/Summary/Keyword: high-intensity wind

검색결과 139건 처리시간 0.025초

캠퍼스 내 녹지공간의 온도분석 및 온도영향요인 규명 실험 (Analysis of Temperature Influence Experiment on Green Spaces in Campus)

  • 김재경;김원희;김은일
    • 한국산학기술학회논문지
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    • 제21권2호
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    • pp.511-520
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    • 2020
  • 지구온난화로 인해 하절기 폭염현상과 열대야가 강해짐에 따라, 도시공원 등 녹지공간의 열환경 개선에 대한 연구가 활발히 진행 중이다. 하지만, 녹지의 식재패턴과 바람의 세기로 인해 변화하는 도시 열환경 개선 연구는 아직까지 미흡한 실정이다. 본 연구는 공공 휴게 녹지공간의 온도분석 및 온도의 변화요인을 파악하는데 목적이 있다. 대상지로는 전남대학교 민주마루 앞 광장을 설정하였다. 대상지의 피복상태, 식재형태를 조사 후, 온도, 습도, 풍향, 풍속 등을 측정하여 요인들을 분석하였다. 측정기준은 기상청 기준 오후 2시에 전운량 30% 이하, 습도 90% 이하, 온도는 최고온도 30℃ 이상인 날로 지정하였다. 온도 실측은 크게 1차 실측과 2차 실측으로 구분하여 측정하였다. 1차 실험은 2018년 6월 1일부터 6월 21일까지 30도를 기준일로 6일간, 2차 실험은 2018년 7월 27일부터 8월 1일까지 35도를 기준으로 3일간 측정을 실시하였다. 온도분포에 가장 큰 영향을 미치는 요인은 증발산과 바람에 의한 열 이동으로 판단된다. 온도변화요인으로는 피복유형, 풍속/풍향, 식재유형 등이 있었다. 피복유형에서 목본 식재지는 저온역으로, 초지와 아스팔트 포장은 고온역으로 구분되었다. 풍속/풍향에서는 3.5m/s 이상의 바람이 불어올 때 남풍에서 1.2도, 서풍에서 0.7도, 북풍에서 0.4도, 동풍에서 0.5도씩 순간온도가 저감되었다. 식재유형에서는 녹지량이 많고, 바람의 영향을 많이 받는 형태일수록 온도가 저감되었다. 온도변화요인을 알아보기 위해 등온선을 작성하여, 풍향과 수목식재 위치 관계를 파악하였다.

겨울철 도시지역과 교외지역의 기온변화 특성 (Characteristics of Temperature Variation in Urban and Suburban Areas During Winter)

  • 권성일;김진수;박종화;오광영;송철민
    • 한국농공학회논문집
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    • 제50권2호
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    • pp.55-63
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    • 2008
  • We investigated characteristics of temperature variation in urban and suburban areas(e.g., paddy field, upland, park, residential area) and urban heat island(UHI) during winter(December 2005 to February 2006). The daily maximum air temperature was not significantly different between suburban and urban areas, whereas the daily minimum air temperatures were significantly lower in the suburban areas than that in the residential area. The wind speed in the urban park(0.3 m/s) was much lower than that in the paddy fields(2.3 m/s), likely due to an urban canopy layer formed by high buildings. The UHI intensity was represented by differences in daily minimum temperatures between urban residential and paddy field areas. The UHI intensity($4.1^{\circ}C$) in winter was larger than that($2.6^{\circ}C$) in summer. This may be because a stable boundary layer develops in the winter, and thereby this inhibits diffusion of heat from surface.

재분석자료들을 이용한 최근 35년(1979~2013) 동북아시아 상층제트의 변동특성 (Characteristic Variations of Upper Jet Stream over North-East Asian Region during the Recent 35 Years (1979~2013) Based on Four Reanalysis Datasets)

  • 소은미;서명석
    • 대기
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    • 제25권2호
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    • pp.235-248
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    • 2015
  • In this study, we analyzed the three dimensional variations (latitude, longitude, and height of Jet core) and wind speed of upper Jet stream in the East Asian region using recent 35 years (1979~2013) of four reanalysis data (NCEP-R2, MERRA, ERA-Interim. and JRA-55). Most of Jet core is located in $30.0{\sim}37.5^{\circ}N$ and $13.0{\sim}157.5^{\circ}E$ although there are slight differences among the four reanalysis data. The wind speed differences among reanalysis are about $3m\;s^{-1}$ regardless of seasons, the weakest in NCEP-R2 and the strongest in JRA-55. Although significance level is not high, most of reanalysis showed that the Jet core has a tendency of southward moving during spring and winter, but moving northward during summer and fall. This amplified seasonal variation of Jet core suggests that seasonal variations of weather/climate can be increased in the East Asian region. The longitude of Jet core has a tendency of systematically westward moving and decreasing of zonal variations regardless of averaging methods and reanalysis data. In general, the Jet core shows a tendency of moving south-west-ward and upward, getting intensified during spring and winter regardless of the reanalysis data. However, the Jet core shows a tendency of moving westward and downward, and getting weakened during summer. In fall, there were no distinctive trends not only in wind speed but also three dimensional locations compared to other seasons. Although the significance levels are not high and variation patterns are slightly different according to the reanalysis data, our findings are more or less different from the previous results. So, more works are needed to clarify the three dimensional variation patterns of Jet core over the East Asian region as a result of global warming.

양산시 산업단지에서 측정한 악취물질의 농도 분포 특성 및 대기확산 모델링 (Characteristics of Malodor Pollutants and Their Dispersion Measured in Several Industrial Source Regions in Yangsan)

  • 송상근;손장호;김유근;박흥재
    • 한국환경과학회지
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    • 제18권10호
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    • pp.1103-1114
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    • 2009
  • In this study, the environmental behavior of malodor pollutants (MPs: $H_2S$, $CH_3SH$, DMS, and DMDS) was investigated around areas influenced by strong anthropogenic processes based on observations and modeling study (a CALPUFF dispersion model). The MP emission concentrations were measured from 8 industrial source regions (tire plants (S1-S3), waste water disposal plant (S4), and oil refinery (S5) in an urban center area and paper mill/incineration plant (S6) and livestock feedlots (S7-S8) in Ungsang area) in Yangsan city during a fall period in 2008 (21 October 2008). Overall, the most MPs emitted from the urban center area were found to affect the malodor pollution in their downwind areas during early morning (06:00 LST) and nighttime (18:00 and 21:00 LST), compared with those in the Ungsang area. For malodor intensity, the most MPs in the urban center area (especially S1 and S2) were found to be a significant contributor, whereas $CH_3SH$ and $H_2S$ in the Ungsnag area (especially S6) were the dominant contributor. The model study showed agreement in the spatial distributions of simulated MPs with those of the observations. The largest impact of MPs in the urban center area on the malodor pollution in its residential areas occurred at S1, S2, and S3 sites during nighttime, while that of MPs in the Ungsang area occurred at S6 and S8 sites. This may be caused mainly by the high MP emissions and in part by wind conditions (prevailing northeasterly winds with low wind speeds of 2-3 m/s).

한반도 영향 태풍의 이동경로에 따른 재해 특성 (The Characteristics of Disaster by Track of Typhoon Affecting the Korean Peninsula)

  • 안숙희;김백조;이성로;김호경
    • 한국방재학회 논문집
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    • 제8권3호
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    • pp.29-36
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    • 2008
  • 본 연구의 목적은 동 서해를 중심으로 한반도 주변 해역을 통과하는 태풍과 관련된 재해 특성을 조사하는 것이다. 먼저, 1951년부터 2006년까지 Regional Specialized Meteorological Center (RSMC)-Tokyo의 태풍 자료를 이용하여 한반도에 영향을 준 태풍을 우리나라의 서해와 동해를 통과하는 사례로 구분하고, 각 사례별로 연도별 및 월별의 빈도와 강도에 대해 분석하였다. 특히, 1973년부터 2006년까지의 기간에 대해서는 사례별 태풍 재해의 규모를 파악하여 비교하였다. 서해를 통과하는 태풍의 발생빈도는 거의 변화가 없고 강도가 약한 반면에 동해를 통과하는 태풍의 발생빈도는 증가하는 추세를 보이고 강도가 점차 강해지고 있다. 동해를 통과하는 태풍의 경우에는 집중호우에 의한 침수면적과 농경지피해가 크게 나타났으며, 서해를 통과하는 경우에는 주택, 선박, 도로 및 교량 등 강풍에 의한 시설물 파손에 의한 피해가 크게 발생하였다. 태풍 재해 발생과 관련하여 강수량과 최대풍속 자료를 비교 분석한 결과, 동해를 통과한 태풍의 경우는 집중호우, 서해를 통과한 태풍은 강한 바람에 의한 영향이 크게 나타난 것으로 보였다.

기상청 고해상도 국지 앙상블 예측 시스템 구축 및 성능 검증 (Development and Evaluation of the High Resolution Limited Area Ensemble Prediction System in the Korea Meteorological Administration)

  • 김세현;김현미;계준경;이승우
    • 대기
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    • 제25권1호
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    • pp.67-83
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    • 2015
  • Predicting the location and intensity of precipitation still remains a main issue in numerical weather prediction (NWP). Resolution is a very important component of precipitation forecasts in NWP. Compared with a lower resolution model, a higher resolution model can predict small scale (i.e., storm scale) precipitation and depict convection structures more precisely. In addition, an ensemble technique can be used to improve the precipitation forecast because it can estimate uncertainties associated with forecasts. Therefore, NWP using both a higher resolution model and ensemble technique is expected to represent inherent uncertainties of convective scale motion better and lead to improved forecasts. In this study, the limited area ensemble prediction system for the convective-scale (i.e., high resolution) operational Unified Model (UM) in Korea Meteorological Administration (KMA) was developed and evaluated for the ensemble forecasts during August 2012. The model domain covers the limited area over the Korean Peninsula. The high resolution limited area ensemble prediction system developed showed good skill in predicting precipitation, wind, and temperature at the surface as well as meteorological variables at 500 and 850 hPa. To investigate which combination of horizontal resolution and ensemble member is most skillful, the system was run with three different horizontal resolutions (1.5, 2, and 3 km) and ensemble members (8, 12, and 16), and the forecasts from the experiments were evaluated. To assess the quantitative precipitation forecast (QPF) skill of the system, the precipitation forecasts for two heavy rainfall cases during the study period were analyzed using the Fractions Skill Score (FSS) and Probability Matching (PM) method. The PM method was effective in representing the intensity of precipitation and the FSS was effective in verifying the precipitation forecast for the high resolution limited area ensemble prediction system in KMA.

관측과 기상모델을 이용한 춘천지역의 도시열섬현상 연구 (A Study of Urban Heat Island in Chuncheon Using WRF Model and Field Measurements)

  • 이종범;김재철;장윤정
    • 한국대기환경학회지
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    • 제28권2호
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    • pp.119-130
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    • 2012
  • Heat island phenomena in Chuncheon (Korea) were investigated using air temperature measured by automatic weather stations and temperature dataloggers located at rural and urban sites. Numerical simulation of the phenomena was performed using Weather Research and Forecasting Urban Canopy Model (WRF-UCM) and results were compared with the observation. The model was initialized with NCEP/FNL data. The horizontal resolution of the fine domain is 0.33 km. The results of observational analyses show that the intensity of heat island was significantly higher during the nighttime than during the daytime. The highest measured temperature difference between rural and urban site is $3.49^{\circ}C$ and average temperature difference varies between 1.4 and $1.9^{\circ}C$. Good agreement was found between the simulated and observed temperatures. However, significantly overestimated wind speed was found at the urban sites. The linear regression analysis between observed and simulated temperature shows high correlation coefficient 0.96 for urban and 0.94 for rural sites while for wind speed, a very low correlation coefficient was found, 0.30 and 0.55 respectively.

Effects of Storm Waves Caused by Typhoon Bolaven (1215) on Korean Coast: A Comparative Analysis with Deepwater Design Waves

  • Taegeon Hwang;Seung-Chul Seo;Hoyeong Jin;Hyeseong Oh;Woo-Dong Lee
    • 한국해양공학회지
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    • 제38권4호
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    • pp.149-163
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    • 2024
  • This paper employs the third-generation simulating waves nearshore (SWAN) ocean wave model to estimate and analyze storm waves induced by Typhoon Bolaven, focusing on its impact along the west coast and Jeju Island of Korea. Utilizing reanalyzed meteorological data from the Japan Meteorological Agency meso scale model (JMA-MSM), the study simulated storm waves from Typhoon Bolaven, which maintained its intensity up to high latitudes as it approached the Korean Peninsula in 2012. Validation of the SWAN model against observed wave data demonstrated a strong correlation, particularly in regions where wind speeds exceeded 20 m/s and wave heights surpassed 5 m. Results indicate significant storm wave heights across Jeju Island and Korea's west and southwest seas, with coastal grid points near islands recording storm wave heights exceeding 90% of the 50-year return period design wave heights. Notably, specific grid points near islands in the northern West Sea and southwest Jeju Island estimated storm wave heights at 90.22% and 91.48% of the design values, respectively. The paper highlights the increased uncertainty and vulnerability in coastal disaster predictions due to event-driven typhoons and emphasizes the need for enhanced accuracy and speed in typhoon wave predictions amid the escalating climate crisis.

The Structural Design of Tianjin Goldin Finance 117 Tower

  • Liu, Peng;Ho, Goman;Lee, Alexis;Yin, Chao;Lee, Kevin;Liu, Guang-lei;Huang, Xiao-yun
    • 국제초고층학회논문집
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    • 제1권4호
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    • pp.271-281
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    • 2012
  • Tianjin Goldin Finance 117 tower has an architectural height of 597 m, total of 117 stories, and the coronation of having the highest structural roof of all the buildings under construction in China. Structural height-width ratio is approximately 9.5, exceeding the existing regulation code significantly. In order to satisfy earthquake and wind-resisting requirements, a structure consisting of a perimeter frame composed of mega composite columns, mega braces and transfer trusses and reinforced concrete core containing composite steel plate wall is adopted. Complemented by some of the new requirements from the latest Chinese building seismic design codes, design of the super high-rise building in high-intensity seismic area exhibits a number of new features and solutions to professional requirements in response spectrum selection, overall stiffness control, material and component type selection, seismic performance based design, mega-column design, anti-collapse and stability analysis as well as elastic-plastic time-history analysis. Furthermore, under the prerequisite of economic viability and a series of technical requirements prescribed by the expert review panel for high-rise buildings exceeding code limits, the design manages to overcome various structural challenges and realizes the intentions of the architect and the client.

O-ring 을 이용한 원주의 저항감소에 관한 실험적 연구 (Drag Reduction of a Circular Cylinder With O-rings)

  • 임희창;이상준
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 춘계학술대회
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    • pp.2089-2094
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    • 2003
  • The flow around a circular cylinder was controlled by attaching O-rings to reduce drag force acting on the cylinder. Four experimental models were tested in this study; one smooth cylinder of diameter D (D=60mm) and three cylinders fitted with O-rings of diameters d=0.0167D, 0.05D and 0.067D with pitches of PPD=1D, 0.5D and 0.25D. The drag force, mean velocity and turbulent intensity profiles in the near wake behind the cylinders were measured for Reynolds numbers based on the cylinder diameter in the range of $Re_D=7.8{\times}10^3{\sim}1.2{\times}10^5$. At $Re_D=1.2{\times}10^5$, the cylinder fitted with O-rings of d=0.0167D in a pitch interval of 0.25D shows the maximum drag reduction of about 5.4%, compared with the smooth cylinder. The drag reduction effect of O-rings of d=0.067D is not so high. For O-ring circulars, as the Reynolds number increases, the peak location of turbulence intensity shifts downstream and the peak magnitude is decreased. Flow field around the cylinders was visualized using a smoke-wire technique to see the flow structure qualitatively. The size of vortices and vortex formation region formed behind the O-ring cylinders are smaller, compared with the smooth cylinder.

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