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High resolution model for assessment of contamination by chemical warfare agents dumped in the Baltic Sea

机译:高分辨率模型,用于评估波罗的海倾倒的化学战争污染

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The leakage of any substances at the sea bottom consequently leads to contamination. The polluted area will strongly depend on the type of pollution which can be dissolved, material and the physical state of the bottom layers. Although the systems that monitor the particles or pollution on the sea surface already exists, there is no similar tool for the bottom area. This work aims at developing the High Resolution Dispersion Model (HRDM) that calculates transport of the pollution in case of potential leakage from chemical ammunition dumped into the Baltic Sea. The model has been embedded into existing operational system that covers the whole region of the Baltic Sea. Thus, it consists of the three main elements: operational atmospheric model that makes calculations every day, coupled ice-ocean model covering the whole Baltic Sea area and HRDM. The horizontal resolution of the atmospheric part is about 10 km, the coupled system is driven on 2.3 km grid and HRDM is implemented on 50 m horizontal resolution. The clients are able to make integration since 2014. Access to the system is granted via REpresentational State Transfer (REST) API that separates user interface from the server site. It is possible to make simulations for instantaneous and continuous type of leakage. The results are served in binary form (as a netcdf file) and as a georeferenced tiff picture. The temporal resolution of the output data is 1 h. The HRDM consists of half-life of sulfur mustard and the results for both-'with and without half-life calculations are included in the output files. The HRDM has been created as a part of Decision Support System and is not (and will not be) available for public.
机译:因此,海底的任何物质泄漏导致污染。污染区域将强烈取决于可以溶解,材料和底层物理状态的污染类型。虽然在海面上监控粒子或污染的系统已经存在,但是底部区域没有类似的工具。这项工作旨在开发高分辨率分散模型(HRDM),计算在倾倒在波罗的海的化学弹药潜在漏出的情况下,计算污染的运输。该模型已嵌入到现有的运营系统中,涵盖波罗的海的整个地区。因此,它包括三个主要元素:运营大气模型,每天进行计算,耦合覆盖整个波罗的海地区和HRDM的冰海模型。大气部分的水平分辨率约为10公里,耦合系统在2.3km Grid中驱动,HRDM在50米的水平分辨率下实现。自2014年以来,客户端可以进行集成。通过将用户界面与服务器站点分隔用户界面的代表状态传输(REST)API,授予对系统的访问。可以进行瞬时和连续泄漏的模拟。结果以二进制形式(作为Netcdf文件)为由和地理学的TIFF图片提供服务。输出数据的时间分辨率为1小时。 HRDM由硫磺芥末的半衰期组成,输出文件中包含-'With且没有半衰期计算的结果。 HRDM已作为决策支持系统的一部分创建,而不是(并且不会)可供公众使用。

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