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Oceano-meteorological conditions observed during severe storms in the southern Bay of Biscay

机译:比斯开湾南部暴风雨期间观测到的海洋气象条件

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Severe storms happen every year in the North coast of Spain. If certain weather and oceanic conditions match, they can be quite destructive, both for ships and structures on the sea and buildings, cars, people or city furniture on land. Systems of meteorological and oceanographic observations are fundamental tools for improve the prediction models and help to reduce the impact of storms on ships, coastal structures and people and improve the security at sea and along the coast. On November 2010 a severe storm took place at the southern Bay of Biscay causing important damage. The relevant aspects of this storm will be studied and compared with previous storms in December 2007, March 2008 and January 2009, leaving this last one a record wave of 26.13m measured at the Augusto Gonzalez de Lináres (AGL) buoy. On June 2007, the IEO moored the AGL ocean-meteorological Buoy, 22 miles north of Santander over about 2850m depth, at the position 43°50.67''N, 3°46.2''W to complete the ocean information with the ocean-atmosphere interaction. This buoy is integrated seamlessly in the national buoy network, contributing with its data to oceanographic research, operative ocean-meteorological predictions and seasonal climate predictions. This applications will also be shown in this paper. The AGL buoy is equipped with several sensors, meteorological, oceanographic and biologic. Some relevant parameters than can be obtained from these sensors are: air temperature, wind speed and direction, humidity, air pressure, water temperature, wave height and direction, wave periods, current speed and direction in the first 100m of water, salinity, fluorescence and dissolved oxygen concentration. All the data obtained from the buoy is stored internally and some other parameters are transfered hourly to the Santander IEO center via satellite. The data stored in the buoy is recovered and deployed on every buoys maintenance operation, which takes place three times a year. Dur--ing the storms in 2007, 2008 and 2009 the AGL buoy measured significant wave heights of more than 10m for all of them, translating to maximum wave heights of 15.22m, 19.77m and 26.13m respectively. The storm in 2010 produced smaller significant wave heights than the previous ones, but during almost all the storm period (November 8th, 9th and 10th) this parameter was always above 6 meters. This persistence made it more destructive in economic terms. Sustained strong winds generated also a continuous pattern of high height waves which reached the coast during spring tides and where the mean water level was also at a maximum value, 0.34 meters over the mean of the corresponding month and 0.46 meters over the annual mean, and, finding tidal residuals up to 0.40 meters at high water level. The weather conditions that raised these waves will be studied and compared deeply in this paper. For this purpose, the help of meteorological models is invaluable.
机译:每年西班牙北部海岸都会发生严重风暴。如果某些天气和海洋条件相匹配,则它们对于海上的船舶和构筑物以及陆地上的建筑物,汽车,人或城市家具而言,都可能具有极大的破坏力。气象和海洋观测系统是改进预报模型,帮助减少风暴对船舶,沿海结构和人员的影响并提高海上和沿海安全性的基本工具。 2010年11月,比斯开湾南部发生了严重风暴,造成了严重破坏。将对该风暴的相关方面进行研究,并将其与2007年12月,2008年3月和2009年1月的先前风暴进行比较,从而使这最后一次风暴创下2613m的创纪录高潮,在奥古斯托·冈萨雷斯·利纳雷斯(AGL)浮标上测得。 2007年6月,IEO在桑坦德以北22英里处,深度约2850m处停泊了AGL海洋气象浮标,其位置为北纬43°50.67英寸,北纬3°46.2英寸,以完成关于海洋的海洋信息相互作用。该浮标无缝集成在国家浮标网络中,其数据可用于海洋学研究,有效的海洋气象预测和季节性气候预测。此应用程序也将在本文中显示。 AGL浮标配备了多种传感器,包括气象,海洋和生物传感器。从这些传感器可以获取的一些相关参数是:空气温度,风速和风向,湿度,气压,水温,波高和风向,波周期,水的前100m中的当前风向和风向,盐度,荧光和溶解氧浓度。从浮标获得的所有数据都存储在内部,并且每小时通过卫星将一些其他参数传输到桑坦德IEO中心。浮标中存储的数据将被恢复并部署到每个浮标维护操作中,该操作每年进行三次。杜尔 -- 在2007年,2008年和2009年的暴风雨中,AGL浮标测量的所有波高均超过10m,最大波高分别为15.22m,19.77m和26.13m。 2010年的风暴产生的重要波高比以前的要小,但在几乎所有风暴期间(11​​月8日,9日和10日),该参数始终高于6米。这种持久性使其在经济方面更具破坏性。持续的强风还产生了连续的高潮波,这些波在春季潮汐时到达海岸,并且平均水位也达到最大值,比相应月份的平均值高0.34米,比年度平均值高0.46米,并且,在高水位时发现潮汐残差不超过0.40米。本文将对引起这些海浪的天气条件进行深入研究和比较。为此,气象模型的帮助是无价的。

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