• 제목/요약/키워드: Geostrophic Velocity

검색결과 19건 처리시간 0.024초

ESTIMATING THE GEOSTROPHIC VELOCITY COMPONENT IN THE SEA SURFACE VELOCITY OBSERVED BY THE HF RADAR IN THE UPSTREAM OF THE KUROSHIO

  • Tokeshi, Ryoko;Ichikawa, Kaoru;Fujii, Satoshi;Sato, Kenji;Kojima, Shoichiro
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume II
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    • pp.672-675
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    • 2006
  • The geostrophic current component is estimated from the sea surface velocity observed by the long-range High-Frequency Ocean Radar (HF radar) system in the upstream of the Kuroshio, by comparing with geostrophic velocity determined from along-track T/P and Jason-1 altimetry data. However, the sea surface velocity of the HF radar (HF velocity) contains not only the geostrophic current but also the ageostrophic current such as tidal current and wind-driven Ekman current. Tidal current component is first extracted by the harmonic analysis of the time series of the HF velocity. Then, the Ekman current is further estimated from daily wind data of IFREMER by applying the least-square method to the residual difference between the HF velocity and the altimetry geostrophic velocity. As a result, the Ekman current in the HF velocity is estimated as 1.32 % of the wind speed and as rotated 45$^{\circ}$ clockwise to the wind direction. These parameters are found almost common in the Kuroshio area and in the Open Ocean. After these corrections, the geostrophic velocity component in the HF velocity agrees well with the altimetry geostrophic velocity.

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A Gaussian Jet Model for Deriving Absolute Geostrophic Velocity from Satellite Altimetry

  • Kim, Seung-Bum
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.610-614
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    • 2002
  • Time-mean and absolute geostrophic velocities of the Kuroshio current south of Japan are derived from TOPEX/Poseidon altimeter data using a Gaussian jet model. When compared with simultaneous measurements from a shipboard acoustic Doppler current profiler (ADCP) at two intersection points, the altimetric and ADCP absolute velocities correlate well with the correlation of 0.55 to 0.74. The time-mean velocity is accurate to 1 cm s$^{-1}$ to 5 cm s$^{-1}$. The errors in the absolute and the mean velocities are similar to those reported previously far other currents. The comparable performance suggests the Gaussian jet model is a promising methodology for determining absolute geostrophic velocities, noting that in this region the Kuroshio does not meander sufficiently, which provides unfavorable environment for the performance of the Gaussian jet model.

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Geostrophic Velocities Derived from Satellite Altimetry in the Sea South of Japan

  • Kim, Seung-Bum
    • 대한원격탐사학회지
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    • 제18권5호
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    • pp.243-253
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    • 2002
  • Time-mean and absolute geostrophic velocities of the Kuroshio current south of Japan are derived from TOPEX/Poseidon altimeter data using a Gaussian jet model. When compared with simultaneous measurements from a shipboard acoustic Doppler current profiler (ADCP) at two intersection points, the altimetric and ADCP absolute velocities correlate well with the correlation coefficient of 0.55 to 0.74. The accuracy of time-mean velocity ranges from 1 cm s$^{-1}$ to 5 cm s$^{-1}$. The errors in the absolute and the mean velocities are similar to those reported previously for other currents. The comparable performance suggests the Gaussian jet model is a promising methodology for determining absolute geostrophic velocities, noting that in this region the Kuroshio does not meander sufficiently and thus provides unfavorable environment for the performance of the Gaussian jet model.

AVHRR 자료를 이용한 지형류의 추정과 그 적용 (A Note on the Geostrophic Velocity Estimation from a AVHRR Image and its Application)

  • 이태신;정종률;오임상
    • 대한원격탐사학회지
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    • 제9권1호
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    • pp.79-93
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    • 1993
  • NOAA AVHRR의 MCSST를 이용하여 지형류의 상대속도를 추정하였으며 이것을 대한 해협에 적용하였다. 원격탐사는 관측시에 광범위한 지역에 대해서 동시성 및 반복성이 유지되기 때문에 해양현상을 연구하는 데 있어서 훌륭한 도구로써 쓰일 수 있다. 특히 AVHRR 자료는 높 은 분해능으로 인해서 선상관측 자료보다도 지형류를 더욱 정밀하게 구할 수 있다. 연구 결과에 의하면 1992년 4월에 대한해협 서수도에서의 상대속도는 골이 있는 해역에서 가장 크며 이때 유 속의 크기는 약 23.8cm/sec로 나타났다. 그러나 이 결과는 geopotential anomaly를 계산할 때 염 분의 효과를 무시한 만큼의 오류를 포함하고 있다. 또한 대한해협 서수도에서 지형류의 수송량은 약 0.3Sv이며 쓰시마와 골이 있는 해역 사이에서 수송량이 가장 큰 것으로 나타났다.

동해의 해면지형 계산에 의한 지형류의 흐름 추정 (Estimation of Geostrophic Current Calculated from Sea Surface Topography in East Sea)

  • 윤홍식;이동하
    • 한국측량학회지
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    • 제24권2호
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    • pp.159-165
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    • 2006
  • 본 논문에서는 위성고도계자료를 이용하여 개발된 평균해면모델인 CLS_SHOM과 지구중력장 모델인 EGM96으로부터 평균해면고와 지오이드고를 계산하여 해면지형을 계산하고, 이를 이용하여 지형류의 흐름을 추정하였다 지형류의 추정을 통하여 해양의 물리학적인 특성을 연구할 수 있기 때문에 외국에서는 많은 연구가 수행되어 왔으나 우리나라의 경우에는 연구가 이루어지지 않은 상태이다. 본 연구에서는 지형류에 대한 기초연구로서 동해에서의 지형류 흐름특성을 분석하여 제시하였다. 연구결과 동해지역에 대한 해면지형의 평균은 약 37cm로 계산되었고, 지형류 속도는 평균 -0.028m/sec로 계산되었다. 지형류의 흐름은 태평양 해수가 대한해협을 통과하면서 속도가 증가한 후에 일본열도의 외측단을 따라서 동북동 방향으로 거의 일정한 속도로 흐르다가 좁은 Tsugaru 해협과 Soya 해협을 통하여 유출되며, 한반도의 동해안을 따라서 북쪽으로 흐르다가 Soya해협과 북동북으로 향하여 Okhotsk해로 유출되는 것으로 나타났다.

수직격판이 있는 용기 내의 지균류 (Geostrophic Flows in a Container with a Vertical Plate)

  • 최윤환;서용권
    • 한국해양공학회지
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    • 제13권4호통권35호
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    • pp.124-131
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    • 1999
  • In this paper, we show the numerical and experimental results of two-dimensional fluid motions inside a rectangular container with a vertical plate subjected to a background rotation added by a rotational oscillation. In the PIV experiment we apply a new algorithm, NTSS, to the velocity calculation. In the numerical computation, the linear Ekman-pumping model was used to take the bottom friction effect into account. It was found that it showed good agreement with the experimental results at low ${\epsilon}$ number.

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INTERACTIONS WITH EDDIES IN THE UPSTREAM OF THE KUROSHIO AS SEEN BY THE HF RADAR AND ALTIMETRY DATA

  • Ichikawa, Kaoru;Tokeshi, Ryoko
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume II
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    • pp.969-972
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    • 2006
  • The long-range High-Frequency (HF) ocean radar system has observed surface velocity field in the upstream of the Kuroshio north of Ishigaki Island and east of Taiwan since 2001. Applying a new method to extract geostrophic velocity component from the HF surface velocity data with the aid of satellite-born wind data, time series of daily surface geostrophic velocity field has been determined. Despite limited width of the study area of the HF radar, analysis of the sea surface height anomaly determined from the satellite altimetry data in a wider area can provide estimated dates of arrival of mesoscale eddies in the study area of the HF radar. Variations of the Kuroshio position and strength are studied in detail for these cases of interaction with mesoscale eddy, although number of occurrence of direct interaction with the Kuroshio in the study area is not statistically enough. For example, when an anticyclonic eddy approaches to the Kuroshio, the Kuroshio axis is found tend to move northward, keeping away from the approaching eddy from the east.

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Variability of Current and Sea Level Difference in the Western Channel of the Korea Strait in Winter 1995-96

  • Lee Jae Chul;Lee Sang-Ryong;Byun Sang-Kyoung;Park Moon-Jin;Kim Jeong-Chang;Yoon Hong-Joo
    • Fisheries and Aquatic Sciences
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    • 제1권2호
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    • pp.276-282
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    • 1998
  • As a part of the long-term ADCP mooring program to measure the mass flux through the Korea Strait, current velocity data were obtained for 39 days in the deepest point of the strait. Near-surface velocity of this observation was compared with Izuhara-Pusan sea level difference (SLD) to investigate the geostrophic relationship. Principal direction of the Tsushima Current at the mooring station is 44.6 degrees to the north from the east. Variability of the tidal current is greater than the nontidal current by a factor of two. Correlation coefficient of tidal current against SLD is 0.46 but the nontidal current is not correlated. The current velocity (U in cm/s) can be estimated from the demeaned SLD (in cm) by the relation U=23.63+0.64SLD where the maximum range of SLD is 52.9 cm. Current is coherent with SLD at semidiurnal, diurnal and 42.7-hour periods. A dominant nontidal variability with about 5-day period is not coherent with SLD.

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Structure and Vorticity of the Current Observed Across the Western Channel of the Korea Strait in September of 1987-1989

  • Byun, Sang-Kyung;Kaneko, Arata
    • Ocean and Polar Research
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    • 제21권2호
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    • pp.99-108
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    • 1999
  • With sectional data obtained in September of 1987, 1988 and 1989 by quadrireciprocal ADCP measurement and CTD cast, the current structure, volume transport and vorticity in the Western Channel of the Korea Strait were studied. The characteristics of Tsushima Current water persisted throughout the summer especially in the homogeneous water of temperature $14-16^{\circ}C$ located at the depth of 50-100m below seasonal termocline. Thickness and velocity of the homogeneous layer are about 10-170m and 20-60cm/s. and the relative vorticity for this layer is shown to be nearly constant and it is smaller than the planetary vorticity. Potential vorticity of $2.70-7.10{\times}10^{-6}m^{-1}s^{-1}$ is found to be dependent mainly on planetary rather than on the relative vorticities. The Tsushima Current water represented by the homogeneous layer R14-16^{\circ}C$ may keep the potential vorticity at the area of strong current in the Strait. The ADCP current structure is similar to geostrophic current and the core of the current with the speed of 30-50cm/s is situated in the middle layer over the deep trough. With large tidal fluctuation the volume transport has mean value of 1.17sv which was about 40% larger than that of geostrophic calculation.

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An Estimation Of Average Current Velocity In The Western Channel Of The Korea Strait From Mean Sea Level Data

  • Lee, Jae Chul;Jung, Chang Hee
    • 한국해양학회지
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    • 제12권2호
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    • pp.67-74
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    • 1977
  • With the serial observation data and the tidal records at Busan and Izuhara from 1966 to 1973, the geostrophic current velocity and its relation to the difference of mean sea level of both sides were studied in order to estimate indirectly the average current velocity from the tidal observations. The results shows that the current velocity is estimated by the relationship V=4.016(H-98.3) with the 95% confidence limits of V 4.2 cm/sec. Ther relationship between the observed current velocity and the simultaneous daily mean sea level difference shows a similar result, V=4.717(H-99.6). The two equations were applied to the evaluation of annual variations of current velocity from the average monthly mean sea level data of both stations.

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