首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A method for estimating sea surface nitrate concentrations from remotely sensed SST and chlorophyll a-a case study for the north Pacific Ocean using OCTS/ADEOS data
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A method for estimating sea surface nitrate concentrations from remotely sensed SST and chlorophyll a-a case study for the north Pacific Ocean using OCTS/ADEOS data

机译:一种从遥感SST和叶绿素a估算海表硝酸盐浓度的方法-以OCTS / ADEOS数据为例的北太平洋案例研究

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摘要

Proposes a method to estimate sea surface nitrate (N) from space using satellite measurements of sea surface temperature (SST) and chlorophyll a (chl a). The procedure relies on empirical relationships between shipboard measurements of N and its predictor variables, temperature (T) and chl a in surface and near surface waters. Although N appears to be controlled primarily by T, the addition of the biological variable chl a helps improve N prediction by reducing local and regional differences in the character of the temperature-nitrate (T-N) relationship. The authors have applied these empirical algorithms to SST and chl a data from the Ocean Color and Temperature Scanner (OCTS) on board the Advanced Earth Observation Satellite (ADEOS). The results clearly suggest that measurements of SST and chl a now possible by modern-day ocean satellites could be exploited usefully to extend the resolution of shipboard N measurements over large spatial and temporal scales. Systematic errors in estimates of N that could result from errors in satellite estimates of SST and chl a are examined through sensitivity analyses.
机译:提出了一种使用卫星测量海表温度(SST)和叶绿素a(chla)的方法从空间估算海表硝酸盐(N)的方法。该程序依赖于船上N的测量值与其预测变量,地表水和近地表水的温度(T)和chl a之间的经验关系。尽管N似乎主要受T控制,但生物变量chl a的添加通过减少温度与硝酸盐(T-N)关系的特征的局部和区域差异,有助于改善N预测。作者已将这些经验算法应用于SST,并从高级地球观测卫星(ADEOS)上的海洋颜色和温度扫描仪(OCTS)中获取数据。结果清楚地表明,现代海洋卫星现在可以进行的SST和chl a的测量可以有效地用于扩大舰船N测量的分辨率,从而在较大的时空尺度上进行扩展。通过敏感性分析检查了可能由SST和chl a卫星估计误差引起的N估计系统误差。

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