• 제목/요약/키워드: Low sea surface salinity

검색결과 166건 처리시간 0.025초

Temporal and spatial Analysis of Sea Surface Temperature and Thermal Fronts in the Korean Seas by Satellite data

  • Yoon Hong-Joo;Byun Hye-Kyung
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2004년도 Proceedings of ISRS 2004
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    • pp.696-700
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    • 2004
  • In the Korean seas, Sea Surface Temperature (SST) and Thermal Fronts (TF) were analyzed temporally and spatially during 8 years from 1993 to 2000 using NOAA/AVHRR MCSST. As the result of harmonic analysis, distributions of the mean SST were $10~25^{\circ}C,$ and generally SST decreased as latitude increased. SST increased in the order as following; the South Sea $(20\~23^{\circ}C),$ the East Sea $(17\~19^{\circ}C)$, and the West $Sea(13\~16^{\circ}C).$ Annual amplitudes and phases were $4\~11^{\circ}C,\;210\~240^{\circ}$ and high values were shown as following; the West Sea $(A1,\;9\~11^{\circ}C),$ the Northern East Sea $(A5,\;8\~9^{\circ}C),$ the Southern East Sea $(A4,\;6\~8^{\circ}C),$ the South Sea $(A3,\;6\~7^{\circ}C),$ the East China Sea $(A2,\;4\~7^{\circ}C)$ and phases; $A3\;(238\~242^{\circ}),\;A4\;(235\~240^{\circ}),\;A5\;(225\~235^{\circ}),\;Al\;(220\~230^{\circ}),\;A2\;(210\~235^{\circ}),$ respectively, Both of them were related inversely except the area A2, therefore the rest areas were affected by seasonal variations. TF were detected by Soble Edge Detection Method using gradient of SST. Consequently, TF were divided into 4 fronts; the Subpolar Front (SPF) based on the Cold Water Mass (low SST and salinity Subartic Water), resulting from the North Korea Cold Current (NKCC) and the East Sea Proper Cold Water in the middle and low layer, and the Warm Water Mass (high SST and salinity Subtropical Water), resulting from the Tsushima Warm Current (TWC) in area A4 and 5, the Kuroshio Front (KF) based on the Kuroshio Current (KC) and shelf waters in the East China Sea (ESC) in A2, and the South Sea Coastal Front (SSCF) based on the South Sea Coastal Water (SSCW) and TWC in A3. Also, the Tidal Front was weakly appeared in AI. TF located in steep slope of submarine topography. Annual amplitudes and phases were bounded in the same place, and these results should be considered to influence of seasonal variations.

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여수연안 정치망 어장의 환경요인과 어항 변동에 관한 연구 (Environmental Factors and Catch Fluctuation of Set-Net Grounds in the Coastal Waters of Yeosu)

  • 김동수;노홍길
    • 수산해양기술연구
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    • 제29권1호
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    • pp.1-10
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    • 1993
  • In order to investigate the environmental properties of set net grounds located in the coastal waters of Yeosu, oceanographic observations on the fishing grounds were carried out by the training ship of Yeosu Fisheries University from Jun. 1988 to Dec. 1990. The resultes obtained are summarized as follows; 1) The water mass in the fishing grounds were divided into the inner water (29.50-31.00$\textperthousand$), the mixed water (31.10-32.70$\textperthousand$) and the offshore water (32.70-34.30$\textperthousand$) according to the distribution of salinity from T-S diagram plotted all salinity data observed from Jun. 1988 to Dec. 1990. In spring the mixing water prevailed and in summer the inner and mixing water. But in autumn and winter the mixing and offshore waters prevailed. 2) The inner water which was formed by land water from the river of Somjin and the precipitation in the Yeosu district flowed southerly along the coast of Dolsando and spread south-easterly in the vicinity of Kumodo. The inner water and offshore water which supplied from the vicinity of Sorido and Yokchido formed the thermal front and halofront. 3) As the mixing water flowing from the western sea of Cheju to the southern coast of korea was low in temperature, the water mass of low temperature which appeared at the offshore bottom of Sorido in summer was considered not to be the Tsushima warm current. 4) As vertical mixing was made frequently in spring, autumn and winter, the differences in temperature and salinity between surface and bottom was respectively small. In summer, however, the mixing was not made because of the inner water expanded offshore through the space between surface and 10m layer and so a thermocline of $2.0^{\circ}C$/10m and halocline of 4.0$\textperthousand$/10m respectively in vertical gradient was formed. 5) In the vicinity of Dolsando and Kum a water low in salinity prevailed, but in the vicinity of Namhaedo and YoKchido the reverse took place. The inner and mixing waters formed at these arease was limited to the observation area not to spread widely.

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다종 위성자료와 기계학습을 이용한 고해상도 표층 염분 추정 (Estimation of High Resolution Sea Surface Salinity Using Multi Satellite Data and Machine Learning)

  • 성태준;심성문;장은나;임정호
    • 대한원격탐사학회지
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    • 제38권5_2호
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    • pp.747-763
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    • 2022
  • 해양 염분은 전 지구 규모에서 해수 순환에 영향을 미칠 뿐만 아니라, 연·근해 지역 저염분수가 어족자원 및 수산업에 피해를 줄 수 있는 등 해양 식생환경의 변화를 줄 수 있다. 해수의 표면 특성인 sea surface salinity (SSS)에 따라 마이크로웨이브 영역의 방사율이 달라지며, 이를 통해 Soil Moisture Active Passive (SMAP) 등 위성 센서를 활용한 SSS 산출물이 제공되고 있다. 하지만 마이크로파 위성 센서 기반의 SSS 산출물은 낮은 시공간해상도로 자료를 생산하며, 연안지역과 고위도 지역에서 정확도가 낮다. 이러한 이유로 연·근해 지역 SSS의 상세한 시공간적 변화를 관측하기에는 적합하지 않다. 본 연구에서는 Jang et al. (2022)에서 제시한 기계학습 기반의 개선된 SMAP SSS (SMAP SSS (Jang))를 참조자료로 활용하여, 정지궤도해색센서(Geostationary Ocean Color Imager, GOCI) 영상으로부터 고해상도 SSS를 추정하는 Light Gradient Boosting Machine (LGBM) 기반의 모델을 개발하였다. 3가지 입력변수 조합을 테스트하였고, Multi-scale Ultra-high Resolution Sea Surface Temperature (SST) 자료가 추가된 scheme 3가 가장 높은 정확도를 보였다(R2 = 0.60, RMSE = 0.91 psu). 이를 바탕으로 본 연구영역에서 SST가 SSS 모의에 효과적인 환경변수로 작용함을 보였다. 본 연구에서 제시한 LGBM 기반의 GOCI SSS는 SMAP SSS (Jang)와 비슷한 시공간적 패턴을 보였지만, 더 높은 공간해상도를 바탕으로 SSS의 보다 상세한 공간적 분포와 더불어 SMAP SSS (Jang)에서 산출하지 않는 연안 지역의 정보까지 모의하였다. 또한, 중국 남방지역에 대홍수가 발생하였던 2020년 8월을 대상으로 양자강 유출수(Changjiang Diluted Water)의 거동을 분석한 결과, GOCI SSS는 한국 해양수산연구원의 보도자료와 비교하여 일관성 있는 시공간적 변화를 보였다. 본 연구의 결과로 연안 지역의 저염수 뿐 아니라, 원해 지역에서 광학위성 신호를 활용한 고해상도 SSS 산출의 가능성을 제시하였다.

해양환경모니터링을 위한 표류부이 개발 (Development of a Floating Buoy for Monitoring Ocean Environments)

  • 유영호;강용수;이원부
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권5호
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    • pp.705-712
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    • 2009
  • The state changes of ocean covered over 70% of earth surface are one of the greatest factor of weather catastrophe. Recently weather extraordinary events are followed by steep increase of sea water temperature and scientists in various fields are studying and warning the weather changes. In this paper, floating buoy is developed to monitor ocean environments via Orbcomm satellite and a method is proposed to increase measurement accuracy of sea water temperature with common low price temperature sensor. Experimental results are presented to illustrate the usability and effectiveness of the developed system. A web-based real time monitoring system is built to monitor ocean environmental information such as sea and air temperature, salinity according to the position of buoy through the internet for user convenience.

Circulation in the Southwestern East Sea (Japan Sea) in July 1993 Determined by an Inverse Method

  • Shin, Chang-Woong;Byun, Sang-Kyung;Kim, Cheol-Soo;Seung, Young-Ho;Lee, Jae-Hak
    • Ocean and Polar Research
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    • 제21권2호
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    • pp.87-97
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    • 1999
  • To estimate absolute transports by advection in the southwestern East Sea (Japan Sea), an inverse method was applied to CTD data obtained in July 1993. The relative velocities are calculated using the thermal wind equation. The inverse model was formulated to obtain a reference velocity based on the mass conservation in each of four vertical layers within a region enclosed by hydrographic sections and the coastal boundary. The flow patterns in the surface layer are clockwise and anti-clockwise in the regions south and northwest of Ulleung Island, respectively, and a strong northward flow appears in between them. In the second layer, the flow fields are generally weak. The inverse calculation yields the southward flow along the coast, and this suggests that the subsurface low salinity water in the Ulleung Basin is supplied by the southward transport along the east coast of Korea.

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A numerical study on the dispersion of the Yangtze River water in the Yellow and East China Seas

  • Park, Tea-Wook;Oh, Im-Sang
    • Journal of the korean society of oceanography
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    • 제39권2호
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    • pp.119-135
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    • 2004
  • A three-dimensional numerical model using POM (the Princeton Ocean Model) is established in order to understand the dispersion processes of the Yangtze River water in the Yellow and East China Seas. The circulation experiments for the seas are conducted first, and then on the bases of the results the dispersion experiments for the river water are executed. For the experiments, we focus on the tide effects and wind effects on the processes. Four cases of systematic experiments are conducted. They comprise the followings: a reference case with no tide and no wind, of tide only, of wind only, and of both tide and wind. Throughout this study, monthly mean values are used for the Kuroshio Current input in the southern boundary of the model domain, for the transport through the Korea Strait, for the river discharge, for the sea surface wind, and for the heat exchange rate across the air-sea interface. From the experiments, we obtained the following results. The circulation of the seas in winter is dependent on the very strong monsoon wind as several previous studies reported. The wintertime dispersion of the Yangtze River water follows the circulation pattern flowing southward along the east coast of China due to the strong monsoon wind. Some observed salinity distributions support these calculation results. In summertime, generally, low-salinity water from the river tends to spread southward and eastward as a result of energetic vertical mixing processes due to the strong tidal current, and to spread more eastward due to the southerly wind. The tide effect for the circulation and dispersion of the river water near the river mouth is a dominant factor, but the southerly wind is still also a considerable factor. Due to both effects, two major flow directions appear near the river mouth. One of them is a northern branch flow in the northeast area of the river mouth moving eastward mainly due to the weakened southerly wind. The other is a southern branch flow directed toward the southeastern area off the river mouth mostly caused by tide and wind effects. In this case, however, the tide effect is more dominant than the wind effect. The distribution of the low salinity water follows the circulation pattern fairly well.

2005년 7-8월에 관측한 북동태평양 $131.5^{\circ}W$의 해수특성 및 해양구조 (Hydrographic Structure Along $131.5^{\circ}W$ in the Northeastern Pacific in July-August 2005)

  • 신홍렬;황상철
    • 한국해양학회지:바다
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    • 제13권3호
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    • pp.190-199
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    • 2008
  • 북동태평양 열대 해양의 해수특성과 해양구조를 파악하기 위하여 2005년 7-8월에 $131.5^{\circ}W$ 관측선에서 관측한 CTD 자료를 분석하였다. 또한 적도 부근 태평양의 해수특성을 전반적으로 이해하기 위하여 서태평양 $137^{\circ}-142^{\circ}E$에서의 CTD 자료도 분석하여 동태평양의 분석 결과와 비교하였다. 여름철 동태평양의 표층수온은 적도반류 해역에서 가장 높았다. 이것은 $28^{\circ}C$ 이상의 고온수가 봄과 여름철에 적도반류를 타고 서태평양으로부터 동태평양으로 이동하여 약 $4^{\circ}-15^{\circ}N$ 사이에서 동서로 연결되기 때문이다. 북적도해류의 표층에 나타나는 저염분 고용존산소의 해수는 동태평양의 파나마만으로부터 서태평양의 필리핀 부근까지 이동하는 저염분수 때문이다. 반면 남적도해류의 표층에 고염분과 저용존산소의 해수가 분포하는 것은 남태평양 아열대 기원의 고염분수가 적도를 넘어 남적도해류 표층의 열대해수(Tropical Water)와 심층의 고염분수를 형성하고 있기 때문이다. 수심 약 500-1500 m 사이의 중층에서는 염분최소층이 분포하는데, $5^{\circ}N$ 이남은 남극중층수(AAIW) 기원의 해수가, $5^{\circ}N$ 이북은 북태평양중층수(NPIW) 기원의 해수가 분포한다. $4^{\circ}-6^{\circ}N$ 해역에서는 직경 약 200 km이며 반시계 방향으로 회전하는 냉수성 소용돌이(cold eddy)가 관측되었다. 서태평양에 비해 동태평양에서 표층수온은 $1^{\circ}C$ 이상 낮았으며 표층염분은 높았다. 적도 부근의 표층 아래에 분포하는 고염분수는 동태평양에서 상대적으로 저염분(약 0.5 psu) 이었고, $14^{\circ}N$ 이남에서 염분최소층의 염분과 밀도는 동태평양에서 높았다.

광양만 임해 매립지 느티나무 식재지 토양의 수직적 특성 변화 (Property Changes of Vertical Soil Layers Planted with Zelkova serrata(Thunberg) Makino on the Reclaimed Land from the Sea in the Gwangyang Bay, Korea)

  • 김도균;김용식
    • 한국조경학회지
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    • 제33권2호
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    • pp.60-70
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    • 2005
  • This study was carried out to elucidate the vertical characteristics of soil properties at six planted sites of land reclaimed from the sea, in Gwangyang Bay, Jeollanam-do Province, Korea. Based on the types of planting site, the chemical properties of the vertical soil layers varied. The vertical variation was great in the planting sites $Z_1\;and\;Z_2$, but less varied in the mounded planting sites $Z_3,\;Z_5,\;and\;Z_6$. Major reasons for the vertical variation in soil chemical properties included differences in the accumulation of organic matter, soil disturbance by heavy construction equipment, and heterogeneity of soil properties between soil horizons. As soil depths increased, soil salts varied. The electrical conductivity (ECe) increased in the lower areas of planting sites $Z_1\;and\;Z_2$, and the disturbed, saline planting site $Z_3$, but decreased in the lower areas of $Z_3,\;Z_5,\;and\;Z_6$. These tendencies did not coincided with exchange cation concentrations $(Na^+,\;K^+,\;Mg^{++},\;Ca^{++})$. Both total carbon (T-C) and total nitrogen (T-N) accumulated more in the lower areas of planting sites than in the higher areas, and levels were higher closer to the surface than in the soil depths. It is supposed that these tendencies are related to the accumulation of fallen leaves or other organic matter at the soil surface, and the soil chemicals then slowly move downward from the surface. Impediments to tree growth included soil hardiness, high soil salinity and exchangeable cation concentration, low soil moisture content, acidic or alkaline soil, low organic matter, heterogeneity of soil texture and establishment of soil stratification.

제주도 중문관광단지 연안해역 수질의 계절변동 (Seasonal Variations of Water Quality in the Coastal Sea of Jungmun Resort Complex in Jeiu Island)

  • 장승민;최영찬
    • 한국해양환경ㆍ에너지학회지
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    • 제5권2호
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    • pp.3-18
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    • 2002
  • This study has been carried out to find the water Quality in coastal sea of fungmun area, southern Jeju Island. In-situ observations and water sampling had been made every month from July 1997 to June 2000. The distributions of water temperature and salinity over the study area have been 13.8~27.0℃ and 30.0~34.7‰, respectively. Salinity is showed low salinity from June to September (rainy season) because of rain. Tsushima Warm Waters (TWW) as ≥15℃ and ≥34‰ influence the adjacent sea around Jeju Island all year round. Yangtse Coastal Waters (YCW) influence the surface layer around Jeju from June to September and so strong stratification (termocline, halocline) resulted at the depth of between 20~30m at outer-sea. However the stratification does not happen even in summer at inner-sea, which seem to be caused due to vertical mixing by wind, waves and tides. A water mass of high value of water temperature and salinity (respectively 14.1~17.7℃, 33.9~34.1‰) stayed at the lower layer in outer-sea all the year round. It is probably formed by mixing between TWW and YSBCW(Yellow Sea Bottom Cold Water). The mean value of DO was the lowest in summer and the highest in winter. COD and TH were the highest in summer and the lowest in winter. However, TP showed the lowest value in summer season, because the mean value of N/P ratio was over 16. The mean of N/P ratio was under 16 in other seasons. The phosphate would be a limiting factor in the growth of phytoplanHon in summer. Nitrate would be a limiting factor in other seasons. Distribution of chlorophyll a did not show any seasonal change in the study period, but especially increased during April and May in the first year(1998) and the second year(1999) all over the study area, which suggested that phytoplankton inhabitation distributed widely in the study area. The space averaged values were the highest for TIN in rainy season and lower for TP in rainy season than in other seasons. It suggests that river runoff influences the inner-sea.

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제주도 연안해수의 영양염류에 관한 연구 (Distribution of Nutrients in the Coastal Sea of Jeju Island)

  • 박길순
    • 한국수산과학회지
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    • 제15권4호
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    • pp.255-262
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    • 1982
  • 1. 일반적으로 제주도 연안역에서의 영양염류 농도는 성분에 따라 차이가 있으나 표층보다 50 m이심에서의 농도가 $0.5\sim3$배 정도 높다. 2. 제주도 남동쪽 해역의 수온, 염분과 규산염, 질산염, 인산염, 용존산소의 농도 분포가 단조롭고 비교적 각 성분의 량도 적다. 3. 제주도 북쪽 해역은 한국남안연 안수의 영향을 받아 각 성분의 농도 분포가 복잡하고 그 변동 범위도 크다. 또 영양염류도 이 해역이 남동쪽 해역보다 풍부하다. 4. 제주도 남서쪽 해역은 황해저층냉수의 영향을 받아 영양염이 풍부하나 황해난류와 만나는 호경역이므로 그 분포상은 매우 복잡하다.

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