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基于多边形维诺图的梯度弹性多孔结构设计
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作者 陈小满 谢卓尊 曹伟 《制造业自动化》 北大核心 2023年第10期179-185,共7页
针对当前梯度弹性多孔结构设计过程复杂、性能控制困难,以及在3D打印过程中需要添加支撑等问题,提出一种基于多边形维诺图的自支撑梯度弹性多孔结构设计方法,选择k-棱锥计算多边形距离,通过站点密度场驱动随机采样算法,在设计域内生成站... 针对当前梯度弹性多孔结构设计过程复杂、性能控制困难,以及在3D打印过程中需要添加支撑等问题,提出一种基于多边形维诺图的自支撑梯度弹性多孔结构设计方法,选择k-棱锥计算多边形距离,通过站点密度场驱动随机采样算法,在设计域内生成站点;提出一种基于体素的多边形维诺多孔结构生成算法,生成模型每个切片层的灰度图像,并重构生成自支撑的维诺多孔结构。为了实现对多孔结构的控制,通过数值均质化和控制变量法,分析设计参数对维诺多孔结构的几何结构和弹性性能的影响。最后,通过多种应用案例表明所提出的多边形维诺多孔结构建模方法具有较高的可行性和适用性。 展开更多
关键词 多边形维诺图 多孔结构 自支撑 梯度 数值均质化
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基于k-nearest算法的增强型正交各向异性多孔结构设计 被引量:1
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作者 曹伟 蔡和伦 +2 位作者 谢卓尊 刘斌 江开勇 《计算机集成制造系统》 EI CSCD 北大核心 2022年第12期3789-3804,共16页
针对各向异性多孔结构设计复杂、力学性能可控性低等问题,提出一种基于k-nearest算法的增强型正交各向异性多孔结构设计方法。首先,通过站点密度场驱动随机采样算法,在设计域内生成站点。然后提出一种基于黎曼距离的改进k-nearest算法,... 针对各向异性多孔结构设计复杂、力学性能可控性低等问题,提出一种基于k-nearest算法的增强型正交各向异性多孔结构设计方法。首先,通过站点密度场驱动随机采样算法,在设计域内生成站点。然后提出一种基于黎曼距离的改进k-nearest算法,叠加全域方向场,生成2.5D/3D增强型正交各向异性多孔结构。该方法不仅可以通过黎曼椭圆/球的拉伸比例控制局部正交各向异性程度,通过方向场控制各向异性的朝向,还可以通过站点密度场调控多孔结构力学性能的梯度分布。最后,分别通过数值均质化和压缩实验对3D打印的多孔结构的力学性能、失效状态、随机性和弹性设计空间进行分析。实验结果表明,采用所提方法设计的正交各向异性多孔结构具有更优良的弹性性能和更大的弹性设计空间。 展开更多
关键词 梯度多孔结构 正交各向异性 数值均质化 力学性能
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Numerical investigations on HCCI engine with increased induction induced swirl and engine speed 被引量:1
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作者 T.Karthikeya Sharma G.Amba Prasad Rao K.Madhu Murthy 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3837-3848,共12页
Homogeneous charge compression ignition(HCCI) mode of combustion is popularly known for achieving simultaneous reduction of NOx as well as soot emissions as it combines the compression ignition(CI) and spark ignition(... Homogeneous charge compression ignition(HCCI) mode of combustion is popularly known for achieving simultaneous reduction of NOx as well as soot emissions as it combines the compression ignition(CI) and spark ignition(SI) engine features. In this work, a CI engine was simulated to work in HCCI mode and was analyzed to study the effect of induction induced swirl under varying speeds using three-zone extended coherent flame combustion model(ECFM-3Z, compression ignition) of STAR-CD. The analysis was done considering speed ranging from 800 to 1600 r/min and swirl ratios from 1 to 4. The present study reveals that ECFM-3Z model has well predicted the performance and emissions of CI engine in HCCI mode. The simulation predicts reduced in-cylinder pressures, temperatures, wall heat transfer losses, and piston work with increase in swirl ratio irrespective of engine speed. Also, simultaneous reduction in CO2 and NOx emissions is realized with higher engine speeds and swirl ratios. Low speeds and swirl ratios are favorable for low CO2 emissions. It is observed that increase in engine speed causes a marginal reduction in in-cylinder pressures and temperatures. Also, higher turbulent energy and velocity magnitude levels are obtained with increase in swirl ratio, indicating efficient combustion necessitating no modifications in combustion chamber design. The investigations reveal a total decrease of 38.68% in CO2 emissions and 12.93% in NOx emissions when the engine speed increases from 800 to 1600 r/min at swirl ratio of 4. Also an increase of 14.16% in net work done is obtained with engine speed increasing from 800 to 1600 r/min at swirl ratio of 1. The simulation indicates that there is a tradeoff observed between the emissions and piston work. It is finally concluded that the HCCI combustion can be regarded as low temperature combustion as there is significant decrease in in-cylinder temperatures and pressures at higher speeds and higher swirl ratios. 展开更多
关键词 HCCI engine ECFM-3Z swirl ratio emissions and performance
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