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조석 조화 분석×음향 도플러 유속계×CTD 프로파일링×지형류 속도×
분야해양학해양학해양학해양학
계열Process / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
기원 연도1867198319771942
창시자William ThomsonRD InstrumentsNeil BrownHarald Sverdrup
유형fourier-analysisinstrumentalinstrumentaltheoretical-method
원전Godin, G. (1972). The Analysis of Tides. University of Toronto Press. link ↗RD Instruments. (1996). Acoustic Doppler Current Profiler Principles of Operation. A Practical Primer. RD Instruments Technical Note. link ↗UNESCO/IOC. (1991). Processing of oceanographic station data. UNESCO Technical Papers in Marine Science, 60. link ↗Sverdrup, H. U., Johnson, M. W., & Fleming, R. H. (1942). The Oceans: Their Physics, Chemistry, and General Biology. Prentice-Hall. link ↗
별칭Tidal Constituents, Harmonic Tidal PredictionADCPCTD, Rosette SamplingGeostrophic Current, Thermal Wind Equation
관련3333
요약Tidal harmonic analysis is a mathematical method that decomposes observed sea level or current time series into a sum of sinusoidal components with specific frequencies, amplitudes, and phases corresponding to astronomical tidal constituents. Developed by William Thomson (Lord Kelvin) in 1867, harmonic analysis enables prediction of tides and understanding of tidal dynamics in coastal regions.The Acoustic Doppler Current Profiler (ADCP) is an instrument that uses Doppler-shifted acoustic backscatter to measure water velocity profiles along a vertical profile. Developed by RD Instruments in the 1980s, it has become the standard method for high-resolution current profiling in oceanographic research. ADCPs provide unprecedented spatial and temporal resolution of ocean circulation patterns.Conductivity-Temperature-Depth (CTD) profiling is the primary method for measuring vertical profiles of seawater properties in oceanography. Developed by Neil Brown in 1977, CTD instruments are equipped with sensors for conductivity, temperature, and pressure (depth), and are typically mounted on water-sampling rosettes. CTD profiling provides essential hydrographic data that characterizes water mass structure, stratification, and circulation patterns.Geostrophic velocity is the current driven by balance between the pressure gradient force and the Coriolis force, derived from the thermal wind equation. In most of the ocean away from the equator and coastal boundaries, geostrophic balance is an excellent approximation to the actual flow. Developed by Harald Sverdrup and colleagues in the 1940s, geostrophic velocity calculation from hydrographic data enables estimation of ocean currents without direct current measurements.
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ScholarGate방법 비교: Tidal Harmonic Analysis · Acoustic Doppler Current Profiler · CTD Profiling · Geostrophic Velocity. 2026-06-19에 다음에서 검색함: https://scholargate.app/ko/compare