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Comparison of Sea Surface Heights Derived from Satellite Altimetry and from Ocean Bottom Pressure Gauges: The SW Pacific MOTEVAS Project

机译:卫星测高仪和海底压力计得出的海面高度比较:西南太平洋MOTEVAS项目

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摘要

A bottom pressure gauge (BPG) was installed in proximity (3.7 km at closest approach) of Jason-1 and formerly TOPEX/Poseidon (T/P) ground track No. 238 at the Wusi site, located ~10 km offshore off the west coast of Santo Island, Vanuatu, Southwest (SW) Pacific. Sea level variations are inferred from the bottom pressure, seawater temperature, and salinity, corrected for the measured surface atmospheric pressure. The expansion of the water column (steric increase in sea surface height, SSH) due to temperature and salinity changes is approximated by the equation of state. We compare time series of SSH derived from TIP Side B altimeter Geophysical Data Records (GDR) and Jason-1 Interim Geophysical Data Records (IGDR), with the gauge-inferred sea level variations. Since altimeter SSH is a geocentric measurement, whereas the gauge-inferred observation is a relative sea level measurement, SSH comparison is conducted with the means of both series removed in this study. In addition, high-rate (1-Hz) bottom pressure implied wave heights (H_(1/3)) are compared with the significant wave height (SWH) measured by Jason-1. Noticeable discrepancy is found in this comparison for high waves, however the differences do not contribute significantly to the difference in sea level variations observed between the altimeter and the pressure gauge. In situ atmospheric pressure measurements are also used to verify the inverse barometer (IB) and the dry troposphere corrections (DTC) used in the Jason IGDR. We observe a bias between the IGDR corrections and those derived from the local sensors. Standard deviations of the sea level differences between TIP and BPG is 52 mm and is 48 mm between Jason and BPG, indicating that both altimeters have similar performance at the Wusi site and that it is feasible to conduct long-term monitoring of altimetry at such a site.
机译:底部压力表(BPG)安装在Jason-1的附近(最接近位置3.7公里处),其前身是Wusi站点的TOPEX / Poseidon(T / P)地面跟踪238号,位于西偏西约10公里处西南太平洋地区瓦努阿图的桑托岛海岸。从底部压力,海水温度和盐度推断海平面变化,并针对测得的表面大气压力进行校正。温度和盐度变化引起的水柱膨胀(海面高度的空间增加,SSH)可以通过状态方程来近似。我们比较了由TIP侧边B高度计地球物理数据记录(GDR)和Jason-1临时地球物理数据记录(IGDR)导出的SSH的时间序列,以及量尺推断的海平面变化。由于高度计SSH是地心测量,而量表推断的观测值是相对海平面测量,因此在进行此项比较时,将这两个系列都删除了,从而进行了SSH比较。另外,将高速率(1-Hz)底压隐含波高(H_(1/3))与Jason-1测量的有效波高(SWH)进行了比较。在此比较中,对于高波发现了明显的差异,但是,差异不会明显影响高度计和压力计之间观测到的海平面变化。现场大气压测量也用于验证Jason IGDR中使用的反向气压计(IB)和对流层干修正(DTC)。我们观察到IGDR校正与从本地传感器得出的校正之间存在偏差。 TIP和BPG之间的海平面差的标准偏差为52 mm,Jason和BPG之间的海平面差为48 mm,这表明两个高度表在Wusi站点的性能相似,并且在这种情况下进行长期测高是可行的现场。

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