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    发表于 2010-5-8 18:41 |只看该作者 |倒序浏览
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    本帖最后由 厚积薄发 于 2010-5-8 22:00 编辑



    欧洲航天局5月5日发表公报说,卫星图像显示,墨西哥湾原油泄漏形成的油污带与当地的海洋环流“擦肩而过”,因此油污带近日基本在“原地打转”。

    欧航局说,该机构的“ENVISAT”环境观测卫星运用高级合成孔径雷达对原油泄漏的情况进行了拍摄。科学家通过对比不同时间的图像总结出这一结论。

    此前曾有人担心,墨西哥湾的油污带南部就是海洋环流。在风力的作用下,油污带可能与环流会合,并在后者带动下向佛罗里达群岛移动,从而对当地的珊瑚礁形成威胁。

    法国海洋开发研究所专家贝特朗·沙普尤说,从目前数据来看,上述情况不太可能发生。“ENVISAT”卫星会继续**油污带的“风吹草动”。

    美国原油泄漏事故发生后,美国在《空间和重大灾害国际宪章》的框架下向欧航局申请获得“ENVISAT”卫星获取的图像,以帮助清污。该宪章是欧航局等发起建立的减灾合作机制,目前有10个成员。宪章规定在遇到重大灾害时,所有成员都必须免费和无**地提供其掌握的相关数据和资料。


    来源:科学网

    原文:
    ASAR product for 29 April  
    Envisat monitors oil spill proximity to Loop Current


    5 May 2010
    As fears grow that the Loop Current in the Gulf of Mexico could soon catch the oil slick and drag it south towards coral reefs in the Florida Keys, scientists are monitoring the situation closely with ESA’s Envisat radar data.

    By combining su**ce roughness and current flow information with Envisat Advanced Synthetic Aperture Radar (ASAR) data of the spill, SAR image analysts are able to detect the direction in which the spill boundaries can drift.
    In these two ASAR images for 29 April and 2 May, advanced processing methods have been performed to display ocean su**ce roughness variations and Doppler-derived ocean su**ce radial velocities. Merging this information provides insight into the spatial structure of the spill and its dispersion by the upper ocean turbulent flow.

    In the 29 April image, smooth su**ces appear as black patches inside the oil spill and in the very low wind region east of the spill, where the flow analysis is not possible.  

      
    ASAR product for 2 May
    As visible in both images, the spill still appears relatively confined around its point of origin and is still north of the Loop Current, a powerful conveyor belt that circulates clockwise around the Gulf toward Florida before joining the powerful Gulf Stream.

    An intriguing shape is detected in the 2 May image that seems to follow passively the flow derived from the Doppler measurements.

    The fear is that winds could push the oil slick south until it joins the Loop Current, which would carry the oil towards Florida. If that were to happen, the oil could flow into the Gulf Stream and be carried up to the US East Coast.

    "As observed, this does not seem to be the case at the moment as no connection between the spill and the intense current presently occurs," said Dr Bertrand Chapron of IFREMER, the French Research Institute for Exploitation of the Sea. "Thanks to systematic Envisat ASAR planning over this area, close monitoring of the situation is ensured as long as there is some wind to contrast the su**ce roughness."


      
    Path of Loop Current and Gulf Stream  
    Dr Chapron and Dr Fabrice Collard of France's CLS (formerly the BOOST Technologies Company) created these products using ASAR in Wide Swath mode. They have been working with radar data for many years and have developed sets of algorithms that allow ASAR data to be processed in near-real time and to produce state-of-the-art ocean parameters. These are made widely available on the SOPRANO ocean products demonstration website developed with ESA.

    "The upcoming Sentinel-1 SAR instrument will have an enhanced capability to capture the su**ce flow information on top of the higher resolution sea su**ce roughness," Dr Chapron explained. "As demonstrated, these combined products are very promising for strengthening the use of SAR data to help fight oil-spill consequences on coastal zones."

    Sentinel-1 is a two-satellite system. The first Sentinel-1 satellite is planned for launch at the end 2012 and will ensure the continuity of SAR data. The second Sentinel-1 satellite is planned for launch in 2014. The fleet of Sentinel satellites is being developed by ESA within the EU’s Global Monitoring for Environment and Security initiative.
    来源:http://www.esa.int/esaCP/SEM4ABKPO8G_index_0.html
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