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W-Fe-Ni合金磨削加工的工艺改进
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作者 董华超 杨丁山 欧李涛 《精密制造与自动化》 2024年第1期51-53,共3页
针对W-Fe-Ni合金薄板工件磨削过程中出现的问题,本文分析了其加工难点,并提出了独特的改进措施,保证了加工精度。实践证明,此改进措施效果较好,为此类零件的加工提供了一种可供借鉴的工艺方法。
关键词 W-Fe-Ni合金薄板 加工变形 磨削加工 工艺改进
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基于凹槽结构的导管螺旋桨梢部流动研究
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作者 金志辉 王鹏 +2 位作者 董华超 温志文 丁永乐 《船舶力学》 EI CSCD 北大核心 2024年第6期866-876,共11页
针对导管螺旋桨的梢部流动,受压气机中“机匣处理”的启发,将矩形凹槽结构应用于导管内壁,用于降低导管螺旋桨梢涡强度和抑制梢涡空化,进而有望改善导管螺旋桨的水动力和空泡性能。采用计算流体力学方法,针对19A导管和Ka4-70螺旋桨有无... 针对导管螺旋桨的梢部流动,受压气机中“机匣处理”的启发,将矩形凹槽结构应用于导管内壁,用于降低导管螺旋桨梢涡强度和抑制梢涡空化,进而有望改善导管螺旋桨的水动力和空泡性能。采用计算流体力学方法,针对19A导管和Ka4-70螺旋桨有无凹槽/不同凹槽结构进行非定常数值计算,研究凹槽结构对桨叶叶梢压力、梢涡强度、梢涡结构以及水动力性能的影响。结果表明:凹槽结构会明显改变导管螺旋桨梢部流场涡的形成,减弱梢涡强度,提高叶片梢部最小压力,并且对推进性能几乎没有影响。研究结果可为导管螺旋桨的梢涡控制以及减振降噪提供一种新的解决途径。 展开更多
关键词 导管螺旋桨 凹槽结构 梢涡结构 空泡 机匣处理
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A Double-Stage Surrogate-Based Shape Optimization Strategy for Blended-Wing-Body Underwater Gliders 被引量:3
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作者 LI Cheng-shan WANG Peng +1 位作者 QIU Zhi-ming dong hua-chao 《China Ocean Engineering》 SCIE EI CSCD 2020年第3期400-410,共11页
In this paper,a Double-stage Surrogate-based Shape Optimization(DSSO)strategy for Blended-Wing-Body Underwater Gliders(BWBUGs)is proposed to reduce the computational cost.In this strategy,a double-stage surrogate mode... In this paper,a Double-stage Surrogate-based Shape Optimization(DSSO)strategy for Blended-Wing-Body Underwater Gliders(BWBUGs)is proposed to reduce the computational cost.In this strategy,a double-stage surrogate model is developed to replace the high-dimensional objective in shape optimization.Specifically,several First-stage Surrogate Models(FSMs)are built for the sectional airfoils,and the second-stage surrogate model is constructed with respect to the outputs of FSMs.Besides,a Multi-start Space Reduction surrogate-based global optimization method is applied to search for the optimum.In order to validate the efficiency of the proposed method,DSSO is first compared with an ordinary One-stage Surrogate-based Optimization strategy by using the same optimization method.Then,the other three popular surrogate-based optimization methods and three heuristic algorithms are utilized to make comparisons.Results indicate that the lift-to-drag ratio of the BWBUG is improved by 9.35%with DSSO,which outperforms the comparison methods.Besides,DSSO reduces more than 50%of the time that other methods used when obtaining the same level of results.Furthermore,some considerations of the proposed strategy are further discussed and some characteristics of DSSO are identified. 展开更多
关键词 shape optimization double-stage surrogate model KRIGING blended-wing-body underwater glider lift-to-drag ratio
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Shape Optimization for A Conventional Underwater Glider to Decrease Average Periodic Resistance 被引量:1
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作者 LI Jing-lu WANG Xin-jing +2 位作者 WANG Peng dong hua-chao CHEN Cai-hua 《China Ocean Engineering》 SCIE EI CSCD 2021年第5期724-735,共12页
As a type of autonomous underwater vehicle(AUV),underwater gliders(UG)are getting increasing attention in ocean exploration.To save energy and satisfy the mission requirements of a longer voyage,shape optimization for... As a type of autonomous underwater vehicle(AUV),underwater gliders(UG)are getting increasing attention in ocean exploration.To save energy and satisfy the mission requirements of a longer voyage,shape optimization for UGs has become a key technique and research focus.In this paper,a conventional UG,including its fuselage and hydrofoil,is optimized,which aims to decrease the average resistance in one motion cycle.To operate the optimization progress for the complex object,multiple free form deformation(FFD)volumes are established for geometric parameterization.High-fidelity simulation models are employed for objective function evaluation and gradients calculation.And sequential quadratic programming(SQP)method is adopted as an optimization algorithm.The optimization results show that there exists a UG with symmetrical and non-horizontal hydrofoils that has lower resistance. 展开更多
关键词 underwater glider shape optimization conventional configuration free form deformation
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