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万吨级船舶弧形机械式滑道下水优化设计 被引量:1
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作者 李兰兰 周晓明 《船舶工程》 CSCD 北大核心 2020年第9期105-109,148,共6页
文章对万吨级船舶在弧形机械式滑道下水开展研究,结合实际生产,分析现有船台的极限下水状态,对船舶下水关键区域的支撑结构和关键下水状态的方案进行优化设计。结果表明,优化首支点和尾部支撑结构、调整下水水位和尾部压载水量、捆绑排... 文章对万吨级船舶在弧形机械式滑道下水开展研究,结合实际生产,分析现有船台的极限下水状态,对船舶下水关键区域的支撑结构和关键下水状态的方案进行优化设计。结果表明,优化首支点和尾部支撑结构、调整下水水位和尾部压载水量、捆绑排车等因素对船舶安全下水有显著影响。文章提出大型船舶下水计算过程中需要注意的事项及优化方案,为大型工程船舶的下水提供重要的技术参考。 展开更多
关键词 万吨级船舶 弧形机械式滑道 船舶下水计算 下水优化设计
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基于“虚拟仿真实验”的课程思政探索与实践——以“地下水开采优化设计”为例 被引量:1
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作者 董进国 王妙真 +2 位作者 曹书宁 梁堃 顾晓敏 《南京师大学报(自然科学版)》 CAS 北大核心 2023年第S01期127-131,共5页
为了积极响应国家课程思政建设的号召,推进现代信息技术在课程思政教学中的应用,落实“立德树人”的任务,本文将借助虚拟仿真技术开展“地下水开采优化设计”的实验并进行课程思政探索.文章分析了“地下水开采优化”虚拟仿真实验开展课... 为了积极响应国家课程思政建设的号召,推进现代信息技术在课程思政教学中的应用,落实“立德树人”的任务,本文将借助虚拟仿真技术开展“地下水开采优化设计”的实验并进行课程思政探索.文章分析了“地下水开采优化”虚拟仿真实验开展课程思政的必要性,围绕数据收集、地下水开采优化、环境地质灾害认知与防控等实验内容,进行科学精神、生态文明理念等思政元素的挖掘与融合,以提升学生思政素养,实现“三位一体”的育人目标. 展开更多
关键词 课程思政 虚拟仿真实验 下水开采优化设计
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Design of Underwater Robot Lines Based on a Hybrid Automatic Optimization Strategy 被引量:2
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作者 Wenjing Lyu Weilin Luo 《Journal of Marine Science and Application》 2014年第3期274-280,共7页
In this paper, a hybrid automatic optimization strategy is proposed for the design of underwater robot lines. Isight is introduced as an integration platform. The construction of this platform is based on the user pro... In this paper, a hybrid automatic optimization strategy is proposed for the design of underwater robot lines. Isight is introduced as an integration platform. The construction of this platform is based on the user programming and several commercial software including UG6.0, GAMBIT2.4.6 and FLUENT12.0. An intelligent parameter optimization method, the particle swarm optimization, is incorporated into the platform. To verify the strategy proposed, a simulation is conducted on the underwater robot model 5470, which originates from the DTRC SUBOFF project. With the automatic optimization platform, the minimal resistance is taken as the optimization goal;the wet surface area as the constraint condition; the length of the fore-body, maximum body radius and after-body's minimum radius as the design variables. With the CFD calculation, the RANS equations and the standard turbulence model are used for direct numerical simulation. By analyses of the simulation results, it is concluded that the platform is of high efficiency and feasibility. Through the platform, a variety of schemes for the design of the lines are generated and the optimal solution is achieved. The combination of the intelligent optimization algorithm and the numerical simulation ensures a global optimal solution and improves the efficiency of the searching solutions. 展开更多
关键词 hybrid optimization strategy automatic optimization platform underwater robot lines hydrodynamic numerical simulation computational fluid dynamics
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