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The spatial distribution of salinity in the Pearl River Estuary in China from space

机译:中国珠江口盐度的空间分布

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Sea surface salinity of ocean waters has been obtained from L-band microwave radiometer on satellite, such SMOS,Aquarius and SMAP. It provides a new technology and way to observe the salinity over large region from space.However, it is still difficult to get the sea surface salinity of the coastal waters due to that the effect on satellite-observedmicrowave radiance of radio frequency interference over near-shore regions. Fortunately, the colored dissolved organicmatter (CDOM) has conservative or semi-conservative property in the freshwater areas of coastal rivers and it has a goodlinear correlation between the absorption coefficient of CDOM and salinity. Based on those, a conservative mixingrelationship between the fresh water from the Pearl River and the sea water from the South China Sea are established andthe distribution of sea surface salinity from MODIS-retrieved absorption coefficient of CDOM (aCDOM) at 355nmwavelength in this study. The linear relationship between salinity and aCDOM at 355 nm under conservative mixingconditions can be established from the in-situ observed salinity and MODIS-retrieved aCDOM at 355 nm at the centralwater mass in the Pearl River Estuary and the northern basin region of South China Sea. By comparing daily observedMODIS-retrieved sea surface salinity with the in-site observed salinity, it shows that the salinity retrieved from satellitebasedaCDOM has good agreement with observations, and it can better capture the location of low salinity fresh water inthe Pearl River. For the summer averaged satellite-based salinity from 2002 to 2018, sea surface salinity are graduallyincreases from the vertical coastline to the sea in the Pearl River Estuary region. The salinity in coastal region is low bythe effect of the Pearl River diluted water, and the salinity in offshore region is high. On average, the distribution ofsalinity shows that the diffusion of fresh water from the Pearl River generally spread along the coastline to the east andwest in summer, while the runoff on the westward is larger and on the eastward it is affected by some flushing water ofother rivers. In the future, MODIS-retrieved salinity can be as a supplement to salinity inversion of Microwaveradiometer in the coastal region.
机译:海水海水盐度已从卫星的L波段微波辐射计获​​得,如SMOS,水瓶座和湿度。它提供了一种新的技术和观察来自空间的大区域的盐度。然而,由于对卫星观察的影响,沿着沿海水域的海面盐度仍然很难近岸地区射频干扰的微波辐射。幸运的是,彩色溶解有机物质(CDOM)在沿海河流的淡水地区具有保守或半保守财产,它具有良好的CDOM和盐度的吸收系数与盐度之间的线性相关性。基于那些,保守搅拌珠江淡水与南海海水之间的关系成立和从355nm处的CDOM(ACDom)的MODIS检索的吸收系数的海面盐度分布本研究中的波长。保守搅拌下355 nm盐度与Acdom之间的线性关系可以从原位观察到的盐度和Modis检索的Acdom在中央的355nm处建立条件珠江河口水质和南海北部流域地区。通过比较日常观察到Modis-Reserveed海表面盐度与现场观察到的盐度,它表明盐度从卫星置换中检索ACDOM与观察结果吻合良好,它可以更好地捕获低盐度淡水的位置珍珠河。对于2002年至2018年的夏季平均卫星盐度,海面盐度逐渐从垂直海岸线增加到珠江河口地区的海洋。沿海地区的盐度低珠江稀释水的影响,海上地区的盐度高。平均而言,分布盐度表明,淡水从珠江的扩散一般沿着海岸线传播到东部夏天西方,虽然西方的径流更大,在东方,它受到一些冲洗水的影响其他河流。将来,Modis检索的盐度可以是微波的盐度反转的补充沿海地区的辐射计。

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