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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Energy Consumption Modeling and Sensitivity Analysis for Deep-Argo Otarriinae Profiling Float
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Energy Consumption Modeling and Sensitivity Analysis for Deep-Argo Otarriinae Profiling Float

机译:深度Argo Otarriinae分析浮法的能量消耗建模与敏感性分析

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Deep-Argo Otarriinae profiling float is a new type of Argo profiling float that has a maximum diving depth of more than 4,000?m. It can collect ocean scientific data all-weather and uninterruptedly, which provides reliable data support for the global ocean scientific research. The working time of Deep-Argo profiling float is an important indicator of its practicality and economy, and it is clear that the energy consumption is a key factor in determining its working time. In this paper, the single profile energy consumption model with 19 parameters of Deep-Argo Otarriinae is established and the main effect indices and total effect indices of the energy consumption parameters to energy consumption are calculated using Sobol’ sensitivity analysis method, aiming to find the parameters that have the greatest impact on energy consumption. The results show that the gliding angle, the diving depth, and the gliding speed have a significant impact on energy consumption of Deep-Argo Otarriinae. The results of simulation have a good match with the actual application and have certain reference significance for the determination of the design parameters and the selection of the navigation parameters. This paper also provides a new idea of multiparameter energy consumption modeling for underwater equipment using buoyancy regulation.
机译:Deep-Argo Otarriinae Profiling Float是一种新型的Argo分析浮子,最大潜水深度超过4,000米。它可以不间断地收集海洋科学数据全天候,为全球海洋科学研究提供可靠的数据支持。 Deep-Arago分析浮动的工作时间是其实用性和经济的重要指标,很明显,能源消耗是确定其工作时间的关键因素。在本文中,建立了具有19个深度奥氏菌素的1个参数的单型概况能量消耗模型,并使用Sobol'敏感性分析方法计算了能量消耗参数的主要效果指数和能量消耗的总效应指标,旨在找到对能耗影响最大的参数。结果表明,滑动角度,潜水深度和滑动速度对深度Argo Otarriinae的能量消耗产生了重大影响。仿真结果与实际应用具有良好的匹配,并且对确定设计参数和导航参数的选择具有一定的参考意义。本文还提供了利用浮力调节的水下设备的多道琼布能耗建模的新思想。

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