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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Numerical and experimental study on hydrodynamic bulbous bow hull-form optimization for various service conditions due to slow steaming of container vessel
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Numerical and experimental study on hydrodynamic bulbous bow hull-form optimization for various service conditions due to slow steaming of container vessel

机译:集装箱容器慢蒸发的各种服务条件下流体动力球体弓壳体优化的数值和实验研究

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摘要

In this article, an innovative hydrodynamic optimization design of bulbous bow hull-form under various service conditions resulting from the slow steaming of container vessel is presented, improving the overall performances for the real multi-variant usage situations more practical than the single specification of design, which includes both numerical computation and experimental validation. Effects of slow steaming-based statistical analysis of the actual operative occurrence during the lifetime is conducted, obtaining a combined probability density distribution of speed and displacement ushering in the evaluation of objective function. Three main component elements of the hydrodynamic optimization procedure that comprises parametric design of bulbous bow hull-form variation part, hydrodynamic numerical solver part, and optimization technique part are established and integrated. The proposed optimization process is subsequently applied to find the optimal bulbous bow of a container carrier for the hipping demand of different speeds and displacement distributed utilization, reducing significantly total conditions resistance of the hull, on a higher level decreasing the operative cost as well as gas emissions of the ship. Finally, there is an experimental campaign carried out between the optimal and original models to validate the numerical optimization computations. The compared investigation has provided a good agreement from the perspective of both numerical and experimental studies, as a result confirming the success of the present optimization framework and the utility value of the proposed optimization consideration on various service conditions during ship design stage.
机译:在本文中,提出了由集装箱容器缓慢蒸汽引起的各种服务条件下的制弓壳体形式的创新流体动力优化设计,提高了实际多变体使用情况的整体性能,比单一的设计规格更实用,其中包括数值计算和实验验证。对寿命期间实际手术发生的基于蒸汽的统计分析的效果,从而在客观函数评估中升温的组合概率密度分布。制定并集成了包括球形弓壳变形部分,流体动力学求解器部分和优化技术部件的参数化的流体动力优化过程的三个主要组成部分。随后施加所提出的优化过程,以找到容器载体的最佳球形弓,用于覆盖不同速度和位移的升温的需求,分布分布利用率,降低船体的显着总条件,更高的水平降低了操作成本以及气体船的排放。最后,在最佳和原始模型之间进行了实验活动,以验证数值优化计算。比较的调查从数值和实验研究的角度提供了良好的一致性,结果证实了本优化框架的成功以及船舶设计阶段各种服务条件的所提出的优化考虑的实用价值。

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