• 제목/요약/키워드: Upper wind condition

검색결과 58건 처리시간 0.019초

축소모형 풍동시험을 이용한 고속열차의 유동 상부경계층 측정 및 분석 (Measurement and Analysis for the Upper Side Flow Boundary Layer of a High Speed Train Using Wind Tunnel Experiments with a Scaled Model)

  • 오혁근;권혁빈;곽민호;김석원;박춘수
    • 한국철도학회논문집
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    • 제19권1호
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    • pp.11-19
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    • 2016
  • 고속열차의 주위의 유통특성은 열차의 항력 및 소음 등 전반적인 특성에 영향을 주는 인자이다. 특히 고속열차의 유동 경계층은 유동 특성에 큰 영향을 미치는데, 기존의 연구는 주로 열차 주행 시 발생하는 측면 열차풍이나 열차의 하부 열차풍에 대한 연구가 주로 이루어져왔다. 열차 상부 경계층의 측정 및 분석도 매우 중요한데, 이는 열차 상부에 위치한 팬터그래프의 유동입력 조건에 상부 경계층이 가장 큰 영향을 미치기 때문이다. 본 연구에서는 차세대 고속열차의 1/20 축소모델을 이용하여 열차의 상부경계층 조건을 확인하였고, 그 결과를 풀 스케일 전산유체해석결과와 비교하여 그 타당성을 검증하였다. 이를 통하여 팬터그래프로 유입되는 유동속도는 열차 주행속도의 약 85% 수준임을 확인하였으며, 또한 열차 길이방향에 따른 유동 경계층의 성장특성을 분석하였다.

한반도 대기정체의 특성 및 지역기후모델 HadGEM3-RA를 이용한 미래 전망 (Characteristics of Air Stagnation over the Korean Peninsula and Projection Using Regional Climate Model of HadGEM3-RA)

  • 김도현;김진욱;김태준;변재영;김진원;권상훈;김연희
    • 대기
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    • 제30권4호
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    • pp.377-390
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    • 2020
  • Not only emissions, but also atmospheric circulation is a key factor that affects local particulate matters (PM) concentrations in Korea through ventilation effects and transboundary transports. As part of the atmospheric circulation, air stagnation especially adversely affects local air quality due to weak ventilation. This study investigates the large-scale circulation related to air stagnation over Korea during winter and projects the climate change impacts on atmospheric patterns, using observed PM data, reanalysis and regional climate projections from HadGEM3-RA with Modified Korea Particulate matter Index. Results show that the stagnation affects the PM concentration, accompanied by pressure ridge at upper troposphere and weaken zonal pressure gradient at lower troposphere. Downscaling using HadGEM3-RA is found to yield Added-Value in the simulated low tropospheric winds. For projection of future stagnation, SSP5-8.5 and SSP1-2.6 (high and low emission) scenarios are used here. It has been found that the stagnation condition occurs more frequently by 11% under SSP5-8.5 and by 5% under SSP1-2.6 than in present-day climate and is most affected by changes in surface wind speed. The increase in the stagnation conditions is related to anticyclonic circulation anomaly at upper troposphere and weaken meridional pressure gradient at lower troposphere. Considering that the present East Asian winter monsoon is mainly affected by change in zonal pressure gradient, it is worth paying attention to this change in the meridional gradient. Our results suggest that future warming condition increase the frequency of air stagnation over Korea during winter with response of atmospheric circulation and its nonlinearity.

2010년 3월 20일 부산지역에 발생한 극심한 황사의 에어로솔 농도 분포 특성 (Characterization of Aerosol Concentration during Severe Asian Dust Period at Busan, Korea in 20 March 2010)

  • 정운선;박성화;이동인;강덕두;김동철
    • 한국환경과학회지
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    • 제23권2호
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    • pp.275-289
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    • 2014
  • Asian dust (or yellow sand) occurring mainly in spring in East Asia is affected by the distribution of weather systems. This study was performed to investigate the characteristics of suspended particulate for Asian dust at Busan, Korea in 20 March 2010, which was one of the extreme case for the last 10 years. There was used the data of weather chart, satellite, automatic weather system (AWS), $PM_{10}$, laser particle counter (LPC), and backward trajectories model. In synoptically, the high pressure was located in the northwestern part and low pressure was located in the northeastern part of Korea. The strong westerly winds from surface to upper layer makes it possible to move air masses rapidly. Air masses passing through Gobi Desert in Mongolia and Inner Mongolia plateau covered the entire Korean peninsula. As the results of aerosol analysis, $PM_{10}$ concentration at Gudeok mountain in Busan was recorded $2,344{\mu}g/m^3$ in 2300 LST 20 March 2010 and their concentration was markedly increased at coarse mode particle. In surface condition, westerly wind about 3 ~ 5 m/s was dominant and small particles of $0.3{\sim}0.5{\mu}m$ were distributed on the whole. In heavy metal components analysis, the elements from the land was predominated.

한.중 공동주택의 생활환경요인을 통한 단위평면 비교 연구 - 서울과 상하이 전통, 근대, 현대 공동주택 사례를 중심으로 - (A Comparative Study on the Apartment Unit Plans According to the Living Environment Elements of Housing in Korea and China - Focused on Apartment cases in Seoul and Shanghai -)

  • 양비;윤혜경;박현수
    • 한국실내디자인학회논문집
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    • 제19권2호
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    • pp.136-143
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    • 2010
  • This study aims to seek a direction of development in apartment interior planning method, considering residential condition and historical planning schemes in South Korea and China. In this study, South Korea and China's traditional housing and modern apartment unit was studied to identify environmental attributes of residence. For Korea, Banga, where upper class residents lived, and modern urban Hanok were chosen to be analyzed. For China, two types of housing wear studied: Sahapwon, original form of China housing, and Yinong house which is a typical Sanghai house. First, the elements of living environment in two major cities; Seoul and Sanghai was defined to analyze factors of traditional houses in both cities. Depending on those factors, relationship among traditional and modern housing types were compared and analyzed, focusing on unit plan case studies for a better understanding of living environment in South Korea and China. From this study, similarities and differences between apartment plans in Seoul and Shanghai was examined according to their residential style, surrounding natural environment and lifestyle factors. In Seoul's apartment, spacial composition and movement lines were mainly formed around the public space in Seoul, while public space of living and dining room was located at housing entrance area in the Shanghai's residential system, configuring narrow form of housing unit. In respect of the natural environment, the unit plan of rectangular form in Seoul was more efficient in day lighting and wind circulation than the unit plan of narrow form in Shanghai. It was also found that cultural differences of stand-up and seat life style influenced on the composition of unit plans in Seoul and Shanghai.n Apartment cases in Seoul and Shanghai.

2000년대 초반 우리나라 장마기간 강수량의 십년 변화 특성 (Decadal Change in Rainfall During the Changma Period in Early-2000s)

  • 우성호;임소영;권민호;김동준
    • 대기
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    • 제27권3호
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    • pp.345-358
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    • 2017
  • The decadal change in rainfall for Changma period over the South Korea in early-2000s is detected in this study. The Changma rainfall in P1 (1992~2002) decade is remarkably less than in P2 (2003~2013) decade. The much rainfall in P2 decade is associated with the increase of rainy day frequency during Changma period, including the frequent occurrences of rainy day with a intensity of 30 mm/day or more in P2 decade. This decadal change in the Changma rainfall is due to the decadal change of atmospheric circulation around the Korean Peninsula which affects the intensity and location of Changma rainfall. During P2 decade, the anomalous anti-cyclone over the south of the Korean Peninsula, which represents the expansion of the North Pacific high with warm and wet air mass toward East Asia, is stronger than in P1 decade. In addition, the upper level zonal wind and meridional gradient of low-level equivalent potential temperature in P2 decade is relatively strengthened over the northern part of the Korean Peninsula than in P1 decade, which corresponds with the intensification of meridional gradient between air mass related to the East Asian summer monsoon nearby the Korean Peninsula in P2 decade. The enhanced meridional gradient of atir mass during P2 decade is favorable condition for the intensification of Changma rainfall band and more Changma rainfall. The atmospheric conditions related to enhanced Changma rainfall during P2 decade is likely to be influenced by the teleconnection linked to the suppressed convection anomaly over the southern part of China and South China Sea in P2 decade.

기포제 혼입 단열형 경량모르타르의 물리적 특성 및 압축강도 추정에 관한 기초적 연구 (Fundamental Study on Estimating Compressive Strength and Physical Characteristic of Heat insulation Lightweight Mortar With Foam Agent)

  • 민태범;우영제;이한승
    • KIEAE Journal
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    • 제10권3호
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    • pp.89-96
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    • 2010
  • In comparison with ordinary or heavy-weight concrete, light-weight air void concrete has the good aspects in optimizing super tall structure systems for the process of design considering wind load and seismic load by lightening total dead load of buildings and reducing natural resources used. Light-weight air void concrete has excellent properties of heat and sound insulating due to its high amount porosity of air voids. So, it has been used as partition walls and the floor of Ondol which is the traditional Korean floor heating system. Under the condition of which the supply of light-weight aggregates are limited, the development of light-weight concrete using air voids is highly required in the aspects of reduced manufacturing prices and mass production. In this study, we investigated the physical properties and thermal behaviors of specimens that applied different mixing ratios of foaming agent to evaluate the possibility of use in the structural elements. We proposed the estimating equation for compressive strength of each mix having different ratio of foaming agent. We also confirmed that the density of cement matrix is decreased as the mixing amount of foaming agent increase up to 0.6% of foaming agent mixing ratio which was observed by SEM. Based on porosity and compressive strength of control mortar without foaming agent, we built the estimating equations of compressive strength for mortars with foaming agent. The upper limit of use in foaming agent is about 0.6% of the binder amount. Each air void is independent, and size of voids range from 50 to $100{\mu}m$.

장마전선 상에서 발생한 중규모 호우계 구조에 대한 연구 (Structure of Mesoscale Heavy Precipitation Systems Originated from the Changma Front)

  • 박창근;이태영
    • 대기
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    • 제18권4호
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    • pp.317-338
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    • 2008
  • Analyses of observational data and numerical simulations were performed to understand the mechanism of MCSs (Mesoscale Convective Systems) occurred on 13-14 July 2004 over Jindo area of the Korean Peninsula. Observations indicated that synoptic environment was favorable for the occurrence of heavy rainfall. This heavy rainfall appeared to have been enhanced by convergence around the Changma front and synoptic scale lifting. From the analyses of storm environment using Haenam upper-air observation data, it was confirmed that strong convective instability was present around the Jindo area. Instability indices such as K-index, SSI-index showed favorable condition for strong convection. In addition, warm advection in the lower troposphere and cold advection in the middle troposphere were detected from wind profiler data. The size of storm, that produced heavy rainfall over Jindo area, was smaller than $50{\times}50km^2$ according to radar observation. The storm developed more than 10 km in height, but high reflectivity (rain rate 30 mm/hr) was limited under 6 km. It can be judged that convection cells, which form cloud clusters, occurred on the inflow area of the Changma front. In numerical simulation, high CAPE (Convective Available Potential Energy) was found in the southwest of the Korean Peninsula. However, heavy rainfall was restricted to the Jindo area with high CIN (Convective INhibition) and high CAPE. From the observations of vertical drop size distribution from MRR (Micro Rain Radar) and the analyses of numerically simulated hydrometeors such as graupel etc., it can be inferred that melted graupels enhanced collision and coalescence process of heavy precipitation systems.

수도권지역 오존오염 패턴과 기상학적 특성 (Ozone Pollution Patterns and the Relation to Meteorological Conditions in the Greater Seoul Area)

  • 오인보;김유근;황미경
    • 한국대기환경학회지
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    • 제21권3호
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    • pp.357-365
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    • 2005
  • The typical patterns of surface $O_3$ pollution and their dependence on meteorology were studied in the Greater Seoul Area (GSA) during warm season (April-September) from 1998 to 2002. In order to classify the $O_3$ pollution patterns, two-stage (average linkage then k-means) clustering technique was employed based on daily maximum $O_3$ concentrations obtained from 53 monitoring sites during high $O_3$ events (118 days). The clustering technique identified four statistically distinct $O_3$ pollution patterns representing the different horizontal distributions and levels of $O_3$ in GSA. The prevailed pattern (93 days, $49.5\%$) distinctly showed the gradient of $49.5\%$ concentrations going from west to east in GSA. Very high $49.5\%$ concentrations throughout GSA (24 days, $12.8\%$) were also found as a significant pattern of severe $O_3$ pollution. In order to understand the characteristics of $O_3$ pollution patterns, the relationship between $O_3$ pollution patterns and meteorological conditions were analyzed using both synoptic charts and surface/upper air data. Each pattern was closely associated with surface wind interacted with synoptic background flow allowing to transport and accumulate $O_3$ and its precursor. In particular, the timing and inland penetration of sea-breeze were apparently found to play very important role in determining $O_3$ distributions.

Influence of geometric factors on pull-out resistance of gravity-type anchorage for suspension bridge

  • Hyunsung, Lim;Seunghwan, Seo;Junyoung, Ko;Moonkyung, Chung
    • Geomechanics and Engineering
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    • 제31권6호
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    • pp.573-582
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    • 2022
  • The geometry of the gravity-type anchorage changes depends on various factors such as the installation location, ground type, and relationship with the upper structure. In particular, the anchorage geometry embedded in the ground is an important design factor because it affects the pull-out resistance of the anchorage. This study examined the effect of four parameters, related to anchorage geometry and embedded ground conditions, on the pull-out resistance in the gravity-type anchorage through two-dimensional finite element analysis, and presented a guide for major design variables. The four parameters include the 1) flight length of the stepped anchorage (m), 2) flight height of the stepped anchorage (n), 3) the anchorage heel height (b), and 4) the thickness of the soil (e). It was found that as the values of m increased and the values of n decreased, the pull-out resistance of the gravity-type anchorage increased. This trend is related to the size of the contact surface between the anchorage and the rock, and it was confirmed that the value of n, which has the largest change rate of the contact surface between the anchorage and the rock, has the greatest effect on the pull-out resistance of the anchorage. Additionally, the most effective design was achieved when the ratio of the step to the bottom of the anchorage (m) was greater than 0.7, and m was found to be an important factor in the pull-out resistance behavior of the anchorage.

금대봉 산림유전자원보호림의 하층식생 분포양상 (Distributional Patterns of Understory Vegetation at Mt. Geumdae's Protected Area for Forest Genetic Resources)

  • 전승훈;이형숙;임종환
    • 한국산림과학회지
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    • 제98권3호
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    • pp.339-350
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    • 2009
  • 본 연구는 금대봉 산림유전자원보호림의 희귀식물 및 유용 식물자원의 분포실태와 상층식생의 군집구조에 따른 하층식생의 분포양상을 파악하기 위하여 수행되었다. 금대봉 산림유전자원보호림지역내 출현하고 있는 관속식물상은 모두 59과 160속 218종류로 확인되었으며, 산림청 지정 희귀식물은 나도개감채, 연령초, 말나리, 노랑무늬붓꽃, 홀아비바람꽃, 금강제비꽃 등 6종류가 분포하고 있는 것으로 나타났다. 또한, 전 지역에 걸쳐 대규모 군락지 형태의 분포양상을 나타내는 홀아비바람꽃 등 8종류의 초본종과 소규모 패치상 또는 적은 개체수가 흩어져 출현하는 나도잠자리난 등 15종류의 초본종이 유용 식물자원인 것으로 판단되었다. 한편, 금대봉 산림유전자원보호림의 현존식생은 하층식생의 분포양상을 파악하기 위하여 설정한 방형구의 조사자료를 기준으로 유집분석한 결과 상층식생의 군집은 신갈나무 우점 군집, 일본잎갈나무 우점 군집, 그리고 과거 산림벌채와 풍충성 고산지대의 영향으로 인한 초본식생 우점 군집으로 분류되었다. 하층식생의 분포양상은 임분 내 상층 및 중층식생의 군집구조와 어느 정도 연관성을 갖는 것으로 나타났지만, 다른 한편으로 교란에 따른 입지적 특성과 하층식생의 종 조성의 차이 및 경쟁압력으로 인하여 상당한 차이를 보였다. 따라서 산림유전자원인 주요 하층 식생의 보존을 위해서 상층식생의 밀도조절 등으로 인해 야기되는 하층식생의 동태 및 생육환경의 변화를 정확하게 파악 한 후 간벌 등 산림시업처리를 실행하는 것이 바람직할 것으로 판단되었다.