• 제목/요약/키워드: Altimeter

검색결과 154건 처리시간 0.029초

인공위성 고도계 해상풍 검증과 해상상태편차와의 관련성 - 이어도, 마라도, 외연도 해상풍 관측치를 중심으로 - (Validation of Sea Surface Wind Speeds from Satellite Altimeters and Relation to Sea State Bias - Focus on Wind Measurements at Ieodo, Marado, Oeyeondo Stations)

  • 최도영;우혜진;박경애;변도성;이은일
    • 한국지구과학회지
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    • 제39권2호
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    • pp.139-153
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    • 2018
  • 해상풍은 장기간동안 인공위성 산란계와 마이크로파 복사계를 주로 활용하여 관측되어왔다. 반면 위성 고도계 산출 풍속 자료의 중요성은 산란계의 탁월한 해상풍 관측 성능으로 인해 거의 부각되지 않았다. 인공위성 고도계 풍속자료는 해수면고도를 산출하기 위한 해상상태편차(sea state bias) 보정항의 입력 자료로서 활용됨에 따라 높은 정확도가 요구된다. 본 연구에서는 인공위성 고도계(GFO, Jason-1, Envisat, Jason-2, Cryosat-2, SARAL) 풍속을 검증하고 오차 특성을 분석하기 위하여 이어도 해양과학기지와 마라도, 외연도 해양기상부이의 풍속 자료를 활용하여 2007년 12월부터 2016년 5월까지 총 1504개의 일치점 자료를 생성하였다. 해양실측 풍속에 대한 고도계 풍속은 $1.59m\;s^{-1}$의 평균 제곱근오차와 $-0.35m\;s^{-1}$의 음의 편차를 보였다. 해양실측 풍속에 대한 고도계 해상풍 오차를 분석한 결과 고도계 해상풍은 풍속이 약할 때 과대추정되며 풍속이 강할 때 과소추정되는 특징을 보였다. 위성-실측 자료 간의 거리에 따른 고도계 풍속 오차를 분석한 결과 구간별 오차의 최댓값과 최솟값의 차는 거리에 따라 점차 증가하였다. 고도계 풍속의 정확도 향상을 위하여 분석된 오차 특성을 기반으로 보정식을 유도한 후 고도계 풍속을 보정하였다. 보정 전후의 풍속자료를 활용하여 해상상태편차를 산출하였으며 Jason-1의 해상상태편차에 대한 해상풍 오차 보정의 영향을 확인하였다.

비행시험을 통한 경비행기의 속도계 보정에 대한 연구 (Airspeed and Altitude Calibration of Light Airplane via Flight Test)

  • 이정훈;김성훈
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.891-896
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    • 2007
  • This paper contained the flight test calibration for the airspeed indicator and the altimeter of the light airplane ChangGong-91, which is the first type certified aircraft from Korean Ministry of Construction and Transportation, as a part of the flight test validation. The flight test for airspeed position error calibration was performed using tower fly by method in order to calibrate swivel head testboom which is attached to the right wing tip of the airplane, and using system to system method for airspeed indicator. The altimeter calibration was calculated using flight test data for airspeed calibration. The flight test was conducted at the basis of the 'Korean Airworthiness Standard' regulation of Korean Ministry of Construction and Transportation.

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다양한 중력자료를 이용한 우리나라 정밀 지오이드 모델 개발 (The Precision Geoid Development based on Various Gravity Data)

  • 이지선;권재현;금영민
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2010년 춘계학술발표회 논문집
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    • pp.35-37
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    • 2010
  • To construct precision geoid model, the gravity data having equal distribution and quality is necessary. In previous study, however, the geoid model has low precision since the biased distributed gravity data and some unverified data has been used and the gap between land and ocean exists. Now, the airborne and land gravity data was collected by various survey and the ship-borne gravity data and altimeter data has been achieved. Therefore, the precision geoid model development would be possible. And the GPS/Leveling data obtained by NGII could be used for construction of hybrid geoid in Korea. In this study, the procedure of geoid construction based on airborne, land, ship-borne and altimeter data using Remove-Restore technique will be explained. And the verification of gravimetric geoid and hybrid geoid would be introduced.

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Validation of Significant Wave Height from Satellite Altimeter in the Seas around Korea and Error Characteristics

  • Park, Kyung-Ae;Woo, Hye-Jin;Lee, Eun-Young;Hong, Sungwook;Kim, Kum-Lan
    • 대한원격탐사학회지
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    • 제29권6호
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    • pp.631-644
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    • 2013
  • Significant Wave Height (SWH) data measured by satellite altimeters (Topex/Poseidon, Jason-1, Envisat, and Jason-2) were validated in the seas around Korea by comparison with wave height measurements from marine meteorological buoy stations of Korea Meteorological Administration (KMA). A total of 1,070 collocation matchups between Ku-band satellite altimeter data and buoy data were obtained for the periods of the four satellites from 1992 to the present. In the case of C-band and S-band observations, 1,086 matchups were obtained and used to assess the accuracy of satellite SWH. Root-Mean-Square (RMS) errors of satellite SWH measured with Ku-band were evaluated to roughly 0.2_2.1 m. Comparisons of the RMS errors and bias errors between different frequency bands revealed that SWH observed with Ku-band was much more accurate than other frequencies, such as C-band or S-band. The differences between satellite SWH and buoy wave height, satellite minus buoy, revealed some dependence on the magnitude of the wave height. Satellite SWH tended to be overestimated at a range of low wave height of less than 1 m, and underestimated for high wave height of greater than 2 m. Such regional characteristics imply that satellite SWH should be carefully used when employed for diverse purposes such as validating wave model results or data assimilation procedures. Thus, this study confirmed that satellite SWH products should be continuously validated for regional applications.

VULNERABILITY OF KOREAN COAST TO THE SEA-LEVEL RISE DUE TO $21^{ST}$ GLOBAL WARMING

  • 조광우;맹준호;윤종휘
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2003년도 추계학술발표회
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    • pp.219-225
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    • 2003
  • The present study intends to assess the long-term steric sea-level change and its prediction, and potential impacts to the sea-level rise due to the 21st global warming in the coastal zone of the Korea in which much socioeconomic activities have been occurred. The analysis of the 23 tide-gauge data near Korea reveals the overall mean sea-level trend of 2.31 mm/yr.In the satellite altimeter data (Topex/Poseidon and ERS), the sea-level trend in the East Sea is 4.6mm/yr. Both are larger than those of the global average value. However, it is quite questionable that the sea-level trends with the tide-gauge data on the neighboring seas of Korea relate to global warming because of the relatively short observation period and large spatial variability. It is also not clear whether the high trend of altimeter data in the East Sea is related to the acceleration of sea level rise in the Sea, short response time of the Sea, natural variability such as decadal variability, short duration of the altimeter. The coastal zone of Korea appears to be quite vulnerable to the 21st sea level rise such that for the I-m sea level rise with high tide and storm surge, the inundation area is 2,643 km2, which is about $1.2\%$ of total area and the population in the risk areas of inundation is 1.255 million, about $2.6\%$ of total population. The coastal zone west of Korea is appeared to be the most vulnerable area compared to the east and south. In the west of the Korea, the North Korea appears to be more vulnerable than South Korea. In order to cope with the future possible impact of sea-level rise to the coastal zone of Korea effectively, it is essential to improve scientific information in the sea-level rise trend, regional prediction, and vulnerability assessment near Korean coast.

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Eddy Kinetic Energy in the East Sea Estimated from Topex/Poseidon Altimeter Measurements

  • Cho Kwangwoo;Cho Kyu-Dae
    • Fisheries and Aquatic Sciences
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    • 제5권3호
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    • pp.219-228
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    • 2002
  • Based on the five-year (October 1992 through September 1997) Topex/Poseidon altimeter measurements, we describe the statistical characteristics of the eddy variability in the East Sea in terms of sea surface height anomaly, slope variability, and eddy kinetic energy (EKE). The sea surface height anomalies in the East Sea are produced with standard corrections from Topex/Poseidon measurements. In order to eliminate the high frequency noise in the sea surface height anomaly data, the alongtrack height anomaly data was filtered by about 40 km low-pass Lanczos filter based on Strub et al. (1997) and Kelly et a1. (1998). We find that there exists a distinct spatial contrast of high eddy variability in the south and low eddy energy in the north, bordering the Polar Front. In the northwestern area $(north\;of\;39^{\circ}N\;and\;west\;of\;133^{\circ}E)$ from the Polar Front where the eddies frequently appear, the EKE is also considerabel. The high kinetic energy in the southern East Sea reveals a close connection with the paths of the Tsushima Warm Current, suggesting that the high variability in the south is mainly generated by the baroclinic instability process of the Tsushima Warm Current. This finding is supported by other studies (Fu and Zlontnicki, 1989; Stammer, 1997) wh.ch have shown the strong eddy energy coupled in the major current system. The monthly variation of the EKE in both areas of high and low eddy variability shows a strong seasonality of a high eddy kinetic energy from October to February and a relatively low one from March to September. The sequential pattern of wind stress curl shows resemblance with those of monthly and seasonal EKE and the two sequences have a correlation of 0.82 and 0.67, respectively, providing an evidence that wind stress curl can be the possible forcing for the monthly and seasonal variation of the EKE in the East Sea. The seasonality of the EKE also seems to correlate with the seasonality of the Tsushima Warm Current. There also exists the large spatial and interannual variabilities in the EKE.