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        검색결과 6

        1.
        2019.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Seasonal succession of zooplankton community and species composition was studied from 2003 to 2014 in a deep reservoir, Lake Soyang, in monsoon climate region, Korea. Annual precipitation was concentrated more than 70% between June and September and it showed remarkably that seasonal variation in water quality. Seasonal variation of water quality in Lake Soyang appeared to be more significant than annual variations, and the inflow of turbid water during the summer rainfall was the most important environmental factor. Zooplankton sepecies composition in Lake Soyang showed obvious tendency through two periods (May to June and August to October) every year. Small zooplankton (rotifer; Keratella cochlearis, Polyarthra vulgaris) dominated in spring and mesozooplankton such as copepods and crustaceans were dominant in summer and fall. Zooplankton biomass showed the maximum in September after monsoon rainfall, and chlorophyll showed a similar seasonal variation and it showed a high correlation (r=0.45). The increase of zooplankton biomass is considered to be a bottom-up effect due to the increase of primary producers and inflow of nutrients and organic matter from rainfall. In this study, we found that the variation of zooplankton community was affected by rainfall in monsoon climate region and inflow of turbid water was an important environmental factor, which influenced the water quality, zooplankton seasonal succession in Lake Soyang. It was also considered to be influenced by hydrological characteristics of lake and environment of watershed. In conclusion, seasonal succession of zooplankton species composition was the same as the PEG model. But seasonal succession of zooplankton biomass differed not only in the temperate lake but also in the monsoon region.
        4,000원
        2.
        2012.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        To elucidate the mechanism associated with the development of heavy precipitation system, a field experiment was carried out in Jejudo (or Jeju Island) and Marado, Korea from 22 June to 12 July 2006. The synoptic atmospheric conditions were analyzed using the National Centers for Environmental Prediction-National Center for Atmospheric Research's (NCEP/NCAR) reanalyzed data, weather maps, and sounding data. The kinematic characteristics of each precipitation system were investigated by dual Doppler radar analysis. During the field experiment, data of four precipitation events with more than 20 mm rainfall were collected. In F case (frontal precipitation), a typical Changma front was dominant and the observation field was fully saturated. However there was no convective instability near the surface. LF case (low pressure accompanied with Changma front) showed strong convective instability near the surface, while a strong convergence corresponded to the low pressure from China accompanied with Changma front. In FT case (Changma front indirectly influenced by typhoon), the presence of a convective instability indicated the transport of near surface, strong additional moisture from the typhoon 'EWINIAR'. The convergence wind field was ground to be located at a low level. The convective instability was not significant in T case (precipitation of the typhoon 'EWINIAR'), since the typhoon passed through Jejudo and the Changma front was disappeared toward the northeastern region of the Korean peninsula. The kinematic (convergence and divergence) characteristics of wind fields, convective instability, and additional moisture inflow played important roles in the formation and development of heavy precipitation.
        5,200원
        3.
        2008.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 인도양 해수면 온도의 변동성과 1970년 중 후반 이후 동아시아 여름 몬순의 변화의 상관성을 분석하였다. 전반기의 인도양 해수면 온도는 동아시아 여름강수편차(EASRA), 북서태평양 몬순지수(WNPMI)와 상관관계가 거의 없었지만 후반부에서는 인도양 전 부분에 걸쳐 상관관계가 크게 증가하였다. 인도양 해수면 온도와 동아시아 몬순과의 상관성 관계는 봄철과 여름철 각각 지역적으로 차이를 보였다. 봄철의 경우에는 적도 인도양을 중심으로 높은 상관성을 보인 반면 여름철의 경우에는 벵갈만 근처의 인도양에서 높은 상관성을 보였다. 인도양 해수면 온도의 수십년 주기의 변동성은 ENSO의 변동성보다 동아시아 여름 강수편차에 상관성이 높게 나타나고 있으며 따라서 ENSO보다도 인도양 해수면 온도의 변동성이 동아시아 여름몬순에 더 큰 영향을 줄 수 있다. 이러한 인도양 해수면 온도의 수십년주기의 변동성 차이(후반기 해수면 온도와 전반기 해수면 온도의 차이)를 모델의 강제력으로 주고 AGCM실험을 수행하여 그 결과를 비교하였다. 모델 실험 결과 실제 전 후반기 강수량의 차이 패턴인 동아시아 북부의 강수 감소, 한반도와 일본 남부의 강수 증가, 중국 남부의 강수 증가의 패턴이 보였다. 특히 8월의 북서태평양고기압의 확장으로 인한 강수의 증가는 실제 기후변화 차이를 나타낸다. 인도양 해수면 증가로 인한 모델상에서의 대기 순환은 벵갈만-인도양과 북서태평양의 상승기류 중심을 더욱 강화시키는 역할을 해주며 북서태평양에는 고기압성 기류를 강화시키고 동아시아 지역에서는 저기압성 기류를 강화시키는 역할을 한다. 또한 상승기류 중심을 북쪽으로 이동시킨다. 따라서 인도양 해수면 온도의 증가 효과는 동아시아 지역과 북서태평양 지역의 반대위상의 변화를 강화시키는 역할을 하고 있다. 인도양지역별 해수면 온도의 민감성 실험에서는 적도인도양의 강제력의 경우에 북서태평양 상승기류을 강화하여 동아시아 여름몬순에 영향을 주었다.
        4,800원
        4.
        2015.06 KCI 등재 서비스 종료(열람 제한)
        This study analyzed a correlation between South China Sea summer (June to September) monsoon (SCSSM) and the ENSO for the last 32 years (1979 to 2010). There was a correlation that the higher (lower) the SST in the Niño-3.4 region was, the weaker (stronger) the SCSSM intensity was. To identify the reason for this correlation, a difference of means between 8 El Niño years and 8 La Niña years (June to September). The analysis on the difference between two groups with respect to the 850 hPa stream flows showed that there were anomalous huge cyclones in the subtropical Pacific in the both hemispheres so that cold and dry anomalous northerlies were strengthened in the South China Sea relatively while anomalous westerlies were strengthened from the Maritime Continent to the off the coast of Chile. The analysis on the difference between two groups with respect to the 200 hPa stream flows showed that the opposite anomalous pressure system pattern to that in the 850 hPa stream flows were shown. In the subtropical Pacific of the both hemispheres, anomalous anticyclones existed so that anomalous easterlies were strengthened from the Maritime Continent to the equatorial central Pacific. Considering the anomalous atmospheric circulations in the upper and lower layers of the troposphere, upward airflows from the equatorial central and eastern Pacific were downward in the South China Sea and the Maritime Continent, which was a structure of anomalous atmospheric circulations. This means that the Walker Circulation was weakened and it was a typical structure of atmospheric circulations revealed in El Niño years.
        5.
        2014.10 KCI 등재 서비스 종료(열람 제한)
        This study is carried out in order to bridge the gap to understand the relationships between South Asian and East Asian monsoon systems by comparing the summer (June-September) precipitation of Nepal and South Korea. Summer monsoon precipitation data from Nepal and South Korea during 30 years (1981-2010) are used in this research to investigate the association. NCEP/NCAR reanalysis data are also used to see the nature of large scale phenomena. Statistical applications are used to analyze these data. The analyzed results show that summer monsoon precipitation is higher over Nepal (1513.98 ± 159.29 mm y-1) than that of South Korea (907.80 ± 204.71 mm y-1) and the wettest period in both the countries is July. However, the coefficient of variation shows that amplitude of interannual variation of summer monsoon over South Korea (22.55%) is larger in comparison to that of Nepal (10.52%). Summer monsoon precipitation of Nepal is found to be significantly correlated to that of South Korea with a correlation coefficient of 0.52 (99% confidence level). Large-scale circulations are studied to further investigate the relationship between the two countries. wind and specific humidity at 850 hPa show a strong westerly from Arabian Sea to BOB and from BOB, wind moves towards Nepal in a northwestward direction during the positive rainfall years. In case of East Asia, strong northward displacement of wind can be observed from Pacific to South Korea and strong anticyclone over the northwestern Pacific Ocean. However, during the negative rainfall years, in the South Asian region we can find weak westerly from the Arabian Sea to BOB, wind is blowing in a southerly direction from Nepal and Bangladesh to BOB.
        6.
        2009.02 KCI 등재 서비스 종료(열람 제한)
        The observed relationships between the Asian summer monsoon and the sea surface temperature (SST) anomalies in the northwestern Pacific (NW Pacific) are verified using the intermediate complexity global climate model (GCM) (Planet Simulator: PLASIM). The climate responses over Asia for the monsoon season to forcing from NW Pacific SST anomalies are simulated in the GCM with the enhanced SST anomalies in the NW Pacific for the pre-monsoon season compared to climatological SST. During the pre-monsoon season, the enhanced SST anomalies result in an increase in lower-level convection and precipitation in the NW Pacific. A significantly weakened Indian summer monsoon is simulated for the enhanced SST experiment in the NW Pacific for the pre-monsoon season (p-value<0.05). PLASIM dose a good job at representing the observed patterns of zonally averaged surface temperature, precipitation, and 850 hPa u-wind, although with some regional differences from observations (p-values of zonal correlation coefficients<0.01).