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Uncertainty analysis for the calculation of marine environmental design parameters in the South China Sea
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作者 Guilin LIU Xinsheng ZHOU +3 位作者 Yi KOU Fang WU Daniel ZHAO Yu XU 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2023年第2期427-443,共17页
The calculation results of marine environmental design parameters obtained from different data sampling methods,model distributions,and parameter estimation methods often vary greatly.To better analyze the uncertainti... The calculation results of marine environmental design parameters obtained from different data sampling methods,model distributions,and parameter estimation methods often vary greatly.To better analyze the uncertainties in the calculation of marine environmental design parameters,a general model uncertainty assessment method is necessary.We proposed a new multivariate model uncertainty assessment method for the calculation of marine environmental design parameters.The method divides the overall model uncertainty into two categories:aleatory uncertainty and epistemic uncertainty.The aleatory uncertainty of the model is obtained by analyzing the influence of the number and the dispersion degree of samples on the information entropy of the model.The epistemic uncertainty of the model is calculated using the information entropy of the model itself and the prediction error.The advantages of this method are that it does not require many-year-observation data for the marine environmental elements,and the method can be used to analyze any specific factors that cause model uncertainty.Results show that by applying the method to the South China Sea,the aleatory uncertainty of the model increases with the number of samples and then stabilizes.A positive correlation was revealed between the dispersion of the samples and the aleatory uncertainty of the model.Both the distribution of the model and the parameter estimation results of the model have significant effects on the epistemic uncertainty of the model.When the goodness-of-fit of the model is relatively close,the best model can be selected according to the criterion of the lowest overall uncertainty of the models,which can both ensure a better model fit and avoid too much uncertainty in the model calculation results.The presented multivariate model uncertainty assessment method provides a criterion to measure the advantages and disadvantages of the marine environmental design parameter calculation model from the aspect of uncertainty,which is of great significance to analyze the uncertainties in the calculation of marine environmental design parameters and improve the accuracy of the calculation results. 展开更多
关键词 South China Sea marine environmental design parameters model uncertainty information entropy Monte Carlo method
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Optimization of design parameters for controlled rocking steel braced dual-frames
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作者 Sobhan Ghasemi M.Firoozi Nezamabadi +1 位作者 Abdolreza S.Moghadam Mahmood Hosseini 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2022年第4期1053-1068,共16页
A controlled rocking concentrically steel braced frame(CR-CSBF)is introduced as an alternative to conventional methods to prevent major structural damage during large earthquakes.It is equipped with elastic post-tensi... A controlled rocking concentrically steel braced frame(CR-CSBF)is introduced as an alternative to conventional methods to prevent major structural damage during large earthquakes.It is equipped with elastic post-tensioned(PT)cables and replaceable devices or fuses to provide overturning resistance and dissipate energy,respectively.Although CR-CSBFs are not officially legalized in globally valid codes for new buildings,it is expected to be presented in them in the near future.The main goal of this study is to determine the optimal design parameters consist of the yield strength and modulus of elasticity of the fuse,the initial force of the PT cable,and the gravity load on the rocking column,considering different heights of the frame,spanning ratios and ground motion types for dual-configuration CR-CSBF.Nonlinear time-history analyses are performed in OpenSees.This study aims to define the optimal input variables as effective design parameters of CR-CSBFs by comparing four seismic responses consisting of story drift,roof displacement,roof acceleration and base shear,and also using the Euclidean metric optimization method.Despite the previous research,this study is innovative and first of its kind.The results demonstrate that the optimal design parameters are variable for various conditions. 展开更多
关键词 self-centering rocking steel braced frame design parameters OPTIMIZATION low damage
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A New Result on Regular Designs under Baseline Parameterization
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作者 Mengru Qin Yuna Zhao 《Open Journal of Applied Sciences》 2024年第2期441-449,共9页
The study on designs for the baseline parameterization has aroused attention in recent years. This paper focuses on two-level regular designs for the baseline parameterization. A general result on the relationship bet... The study on designs for the baseline parameterization has aroused attention in recent years. This paper focuses on two-level regular designs for the baseline parameterization. A general result on the relationship between K-aberration and word length pattern is developed. 展开更多
关键词 Baseline parameterization K-Aberration Regular design Word Length Pattern
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Review of Design of Process Parameters for Squeeze Casting
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作者 Jianxin Deng Bin Xie +1 位作者 Dongdong You Haibin Huang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第6期22-35,共14页
Squeeze casting(SC)is an advanced net manufacturing process with many advantages for which the quality and properties of the manufactured parts depend strongly on the process parameters.Unfortunately,a universal effic... Squeeze casting(SC)is an advanced net manufacturing process with many advantages for which the quality and properties of the manufactured parts depend strongly on the process parameters.Unfortunately,a universal efficient method for the determination of optimal process parameters is still unavailable.In view of the shortcomings and development needs of the current research methods for the setting of SC process parameters,by consulting and analyzing the recent research literature on SC process parameters and using the CiteSpace literature analysis software,manual reading and statistical analysis,the current state and characteristics of the research methods used for the determination of SC process parameters are summarized.The literature data show that the number of pub-lications in the literature related to the design of SC process parameters generally trends upward albeit with signifi-cant fluctuations.Analysis of the research focus shows that both“mechanical properties”and“microstructure”are the two main subjects in the studies of SC process parameters.With regard to materials,aluminum alloys have been extensively studied.Five methods have been used to obtain SC process parameters:Physical experiments,numeri-cal simulation,modeling optimization,formula calculation,and the use of empirical values.Physical experiments are the main research methods.The main methods for designing SC process parameters are divided into three categories:Fully experimental methods,optimization methods that involve modeling based on experimental data,and theoreti-cal calculation methods that involve establishing an analytical formula.The research characteristics and shortcomings of each method were analyzed.Numerical simulations and model-based optimization have become the new required methods.Considering the development needs and data-driven trends of the SC process,suggestions for the develop-ment of SC process parameter research have been proposed. 展开更多
关键词 Squeeze casting Process parameter design Process parameter optimization DATA-DRIVEN Neural network Research method analysis Literature analysis CITESPACE
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Nonlinear dynamic analysis of low viscosity fluid-lubricated tilting-pad journal bearing for different design parameters 被引量:2
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作者 Yingze JIN Fei CHEN +1 位作者 Jimin XU Xiaoyang YUAN 《Friction》 SCIE CSCD 2020年第5期930-944,共15页
To reveal nonlinear dynamic rules of low viscosity fluid-lubricated tilting-pad journal bearings(TPJBs),the effects of design parameters on journal center orbits and dynamic minimum film thicknesses of water-lubricate... To reveal nonlinear dynamic rules of low viscosity fluid-lubricated tilting-pad journal bearings(TPJBs),the effects of design parameters on journal center orbits and dynamic minimum film thicknesses of water-lubricated TPJBs with and without static loads are investigated.The hydrodynamic bearing force used in the nonlinear dynamic analysis is an approximate analytical solution including the turbulence effect.The results reveal the methods for vibration suppression and load capacity improvement and give an optimal pivot offset and clearance ratio that can maximize the minimum film thickness.The results also show that four-pad TPJBs with loads between pads are preferred due to good dynamic performance and load capacity.This study would provide some guidance for nonlinear design of low viscosity fluid-lubricated TPJBs under dynamic loads. 展开更多
关键词 journal center orbit dynamic minimum film thickness tilting-pad journal bearing bearing design parameter
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3D structure parameterization design and modeling for irregular structure of stope bottom 被引量:3
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作者 曾庆田 Wang Liguan 《High Technology Letters》 EI CAS 2016年第1期55-62,共8页
Stope mining design is a very important and complicated task in daily production design and technical management of an underground mine.Based on workface technology and human-computer interaction technology,this study... Stope mining design is a very important and complicated task in daily production design and technical management of an underground mine.Based on workface technology and human-computer interaction technology,this study introduces a method of 3D parametric design for the irregular structure of stope bottoms,and focuses on solving technical problems in surface modeling of stope bottom structure.Optimization of the minimum span length algorithm(MSLA) and the shortest path search algorithm(SPSA) is conducted to solve the problem of contour-line based instant modeling of stope bottom structures,which makes possible the 3D parametric design for irregular structure of stope bottom.Implementation process and relevant methods of the proposed algorithms are also presented.Feasibility and reliability of the proposed modeling method are testified in a case study.In practice,the proposed 3 D parameterization design method for irregular structure stope bottom proves to be very helpful to precise 3D parametric design.This method is capable of contributing to improved efficiency and precision of stope design,and is worthy of promotion. 展开更多
关键词 采场底部结构 参数化设计方法 不规则结构 建模方法 三维参数化设计 最短路径搜索算法 3维 人机交互技术
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The Method for Optimum Design of Water Rocket Flight Stability Performance Conditions Using CAE with T Method and Robust Parameter Design 被引量:1
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作者 Eiji Toma Yoshihiro Ito 《Journal of Applied Mathematics and Physics》 2021年第11期2669-2697,共29页
A water rocket is a rocket system that obtains thrust by injecting water with compressed air of up to about 8 atmospheres. It is usually manufactured using a pressure-resistant PET bottle. The mechanical elements and ... A water rocket is a rocket system that obtains thrust by injecting water with compressed air of up to about 8 atmospheres. It is usually manufactured using a pressure-resistant PET bottle. The mechanical elements and principles contained in the water rocket have much in common with the actual small rocket system, and are suitable as educational and research teaching materials in the field of mechanics. Especially in the field of disaster prevention and mitigation, the use of water rockets is being researched and developed as a rescue tool in the event of a flood or earthquake as a disaster countermeasure. However, since the water rocket is a flying object based on the mechanical principle, it is important to ensure the accuracy and stability of the flight path. In this paper, a mechanical simulator is developed with a numerical calculation program based on the mechanical consideration of water rocket flight performance. In addition, the correlation between the flight distance obtained in the simulation and the estimated flight distance is analyzed by applying a multivariate analysis method and verifying the validity of the flight distance calculated from the result. Based on the verification results, we will apply a statistical optimization method to approach the optimization of flight stability performance conditions for water rockets. 展开更多
关键词 Flying Principle Multivariate Analysis T Method Robust parameter design Flight Stability Energetic SN Ratio
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Parameterized design of nonlinear feedback controllers for servo positioning systems 被引量:1
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作者 Cheng Guoyang Jin Wenguang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第3期593-599,共7页
To achieve fast, smooth and accurate set point tracking in servo positioning systems, a parameterized design of nonlinear feedback controllers is presented, based on a so-called composite nonlinear feedback (CNF) cont... To achieve fast, smooth and accurate set point tracking in servo positioning systems, a parameterized design of nonlinear feedback controllers is presented, based on a so-called composite nonlinear feedback (CNF) control technique. The controller designed here consists of a linear feedback part and a nonlinear part. The linear part is responsible for stability and fast response of the closed-loop system. The nonlinear part serves to increase the damping ratio of closed-loop poles as the controlled output approaches the target reference. The CNF control brings together the good points of both the small and the large damping ratio cases, by continuously scheduling the damping ratio of the dominant closed-loop poles and thus has the capability for superior transient performance, i.e. a fast output response with low overshoot. In the presence of constant disturbances, an integral action is included so as to remove the static bias. An explicitly parameterized controller is derived for servo positioning systems characterized by second-order model. Practical application in a micro hard disk drive servo system is then presented, together with some discussion of the rationale and characteristics of such design. Simulation and experimental results demonstrate the effectiveness of this control design methodology. 展开更多
关键词 控制系统 非线性反馈 参数设计 伺服系统 扰动
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Development of six sigma concurrent parameter and tolerance design method based on response surface methodology
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作者 张志红 何祯 《Journal of Pharmaceutical Analysis》 SCIE CAS 2008年第3期198-201,212,共5页
Using Response Surface Methodology (RSM), an optimizing model of concurrent parameter and tolerance design is proposed where response mean equals its target in the target being best. The optimizing function of the mod... Using Response Surface Methodology (RSM), an optimizing model of concurrent parameter and tolerance design is proposed where response mean equals its target in the target being best. The optimizing function of the model is the sum of quality loss and tolerance cost subjecting to the variance confidence region of which six sigma capability can be assured. An example is illustrated in order to compare the differences between the developed model and the parameter design with minimum variance. The results show that the proposed method not only achieves robustness, but also greatly reduces cost. The objectives of high quality and low cost of product and process can be achieved simultaneously by the application of six sigma concurrent parameter and tolerance design. 展开更多
关键词 six sigma concurrent parameter and tolerance design response surface methodology confidence region cost reduction
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Design for Optimization of Polymer-flooded Pumping Parameter
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作者 Yan Xizhao Sun Zhi +1 位作者 Wang Changsheng Duan Wensheng 《China Oil & Gas》 2000年第1期36-38,共3页
关键词 design for Optimization of Polymer-flooded Pumping parameter
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基于Revit二次开发的渡槽正向参数化智能建模方法
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作者 张延 姜国辉 +3 位作者 唐守艺 谷成麟 田世福 马天骁 《水电能源科学》 北大核心 2024年第3期137-141,共5页
针对渡槽工程在前期设计阶段单纯依靠Revit软件进行三维翻模,难以与渡槽工程实际建造节奏相匹配的问题,对Revit软件进行定制化开发,提出渡槽正向参数化智能建模方法,包括渡槽正向设计智能管理平台、渡槽构件模型参数化创建和渡槽钢筋参... 针对渡槽工程在前期设计阶段单纯依靠Revit软件进行三维翻模,难以与渡槽工程实际建造节奏相匹配的问题,对Revit软件进行定制化开发,提出渡槽正向参数化智能建模方法,包括渡槽正向设计智能管理平台、渡槽构件模型参数化创建和渡槽钢筋参数化建模三部分。该方法的建立实现了对渡槽水力参数、结构参数等的设计与分类管理,简化了繁琐的建模步骤,缩短了设计人员建模时间,提高了设计效率。结合具体渡槽工程实例,对渡槽正向参数化智能建模方法的准确性及实用性进行验证,前期设计阶段的工作效率得到显著提高,为BIM正向设计在水利工程领域进行推广应用提供了新的解决方案。 展开更多
关键词 REVIT 二次开发 渡槽 正向设计 参数化
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涡轮叶片气动设计软件BladeDesign 被引量:10
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作者 李剑白 卿雄杰 +1 位作者 周山 曾军 《燃气涡轮试验与研究》 2011年第3期11-15,6,共6页
涡轮叶片气动设计软件BladeDesign将涡轮气动设计中迭代最频繁的叶栅几何设计、S1流面计算、叶片积叠三个环节集成起来,极大地提高了涡轮部件设计的效率。叶栅型线设计采用目前流行的Bezier曲线,叶栅造型方法充分考虑了工程实际。集成... 涡轮叶片气动设计软件BladeDesign将涡轮气动设计中迭代最频繁的叶栅几何设计、S1流面计算、叶片积叠三个环节集成起来,极大地提高了涡轮部件设计的效率。叶栅型线设计采用目前流行的Bezier曲线,叶栅造型方法充分考虑了工程实际。集成的S1流面计算网格划分采用ANSYS ICEM CFD 11.0,分析采用ANSYS CFX 11.0。软件提供了与ANSYS TurboGrid的接口,用于生成叶片排的全三维流场计算网格。 展开更多
关键词 涡轮叶片 气动设计 参数化 贝赛尔曲线 CFD
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环绕式涡桨进气道主流道设计及优化方法
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作者 张宜琳 钟易成 《机械制造与自动化》 2024年第1期73-77,共5页
为研究环绕式涡桨进气道主流道设计方法,使用环形截面设计方法进行参数化设计,使用型线方程和3次B样条曲线构建进气道气动型面。使用数值模拟的方法,开展不同上、下型线参数方程和圆心扩展角变化规律对进气道性能影响的研究,通过调整参... 为研究环绕式涡桨进气道主流道设计方法,使用环形截面设计方法进行参数化设计,使用型线方程和3次B样条曲线构建进气道气动型面。使用数值模拟的方法,开展不同上、下型线参数方程和圆心扩展角变化规律对进气道性能影响的研究,通过调整参数得到进气道优化后的构型。结果表明:优化后得到的进气道模型相较于初始模型总压恢复系数提高0.13%,总压畸变降低8.4%。 展开更多
关键词 涡桨发动机 进气道 参数化 优化设计 总压畸变
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基于BIM技术的隧道洞口二三维同步设计方法研究
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作者 徐博 《铁道标准设计》 北大核心 2024年第1期138-145,共8页
为解决设计人员完成隧道洞口二维设计文件后还需耗费额外时间进行BIM翻模的问题,提高隧道洞口设计质量,实现精细化设计目标。基于Bentley OpenRailDesigner CE软件对地形与线路中线支持的特性,结合隧道洞口设计流程与习惯,提出基于中心... 为解决设计人员完成隧道洞口二维设计文件后还需耗费额外时间进行BIM翻模的问题,提高隧道洞口设计质量,实现精细化设计目标。基于Bentley OpenRailDesigner CE软件对地形与线路中线支持的特性,结合隧道洞口设计流程与习惯,提出基于中心数据库的隧道洞口二、三维同步设计方法;利用数字地形高程生成网格化地形模型,基于三维线路中线定位动态剖切地形模型生成横、纵断面,参数化驱动洞门设计模板图元,选取与地形适应的洞门类型并确定洞口位置;通过二三维互动的参数化交互方式设计边仰坡开挖及支护参数、明洞回填高度与坡度、端墙式洞门结构参数、洞口截水沟及超前大管棚设计参数;最后,通过这些设计参数同步生成三维BIM模型与二维设计图纸,并统计相关工程数量。利用C#、C++API接口研发了“隧道洞口二三维同步设计系统”。通过在西十、西康高铁项目中应用表明,该方法与系统符合设计习惯,能够实现隧道洞口工程的二维与三维设计与成果输出,在后续项目中具有推广应用价值。 展开更多
关键词 隧道洞口 BIM OpenRaildesigner 设计方法 参数化 数量计算
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支持Top-Down Design的内燃机参数化建模 被引量:5
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作者 易际明 杨靖 张亮峰 《中国制造业信息化(学术版)》 2004年第3期100-102,共3页
以三维参数化特征造型软件Pro/Engineer为平台 ,结合SL1 1 2 6内燃机设计实例 ,介绍了基于参数化技术的自顶向下设计过程与实施方法 ,给出了自顶向下设计所涉及的关键技术 ,该设计思想和方法支持并行工程及协同设计。
关键词 内燃机 参数化建模 参数化设计 自顶向下设计 PRO/E CAD
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落地扇风叶参数化气动优化设计研究
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作者 雷国茂 陈飞帆 +1 位作者 许志华 李田 《机械设计与制造》 北大核心 2024年第2期250-254,共5页
以某落地扇风叶为研究对象,建立风叶参数化模型,搭建多学科优化设计平台,以风扇风量和扭矩分别为目标开展单目标优化,优化设计变量为翼型安装角、翼型弦长、叶片弯度和叶片积叠线弯度及掠度。采用粒子群优化算法进行寻优,分别得到了不... 以某落地扇风叶为研究对象,建立风叶参数化模型,搭建多学科优化设计平台,以风扇风量和扭矩分别为目标开展单目标优化,优化设计变量为翼型安装角、翼型弦长、叶片弯度和叶片积叠线弯度及掠度。采用粒子群优化算法进行寻优,分别得到了不同指标下最优的扇叶配置,并确定了扇叶关键设计参数对扇叶气动性能的设计权重以及影响规律。对风量和扭矩影响最大的都是翼型安装角和弦长,随着翼型安装角和弦长的增大,风量增大,扭矩也增大。 展开更多
关键词 风叶 参数化模型 粒子群优化算法 设计权重
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室内设计中的数字化设计技术探索——以世界顶尖科学家论坛永久会址室内设计为例
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作者 张颖 《工程建设(维泽科技)》 2024年第3期171-173,共3页
随着数字化设计技术的不断发展,其在实践应用中的广度、深度都在不断的延伸,与设计的结合也越来越密切。参数化设计、BIM系统等数字化设计技术在室内设计领域广泛地被运用,为设计工作打开了全新的思路。在室内设计中如何更有效地融合数... 随着数字化设计技术的不断发展,其在实践应用中的广度、深度都在不断的延伸,与设计的结合也越来越密切。参数化设计、BIM系统等数字化设计技术在室内设计领域广泛地被运用,为设计工作打开了全新的思路。在室内设计中如何更有效地融合数字化设计技术是一个重要的行业研究和发展方向。作者以参与设计工作的世界顶尖科学家论坛永久会址室内设计项目为对象。首先对数字化设计技术的原则进行了研究归纳。接着针对项目中的几个重点设计部位展开分析总结。最后基于分析对数字设计技术在室内设计中的运用进行了总结。本文是融合了数字设计技术的一次室内设计实践,也是一次工程实际探索。 展开更多
关键词 数字化设计 参数化设计 室内设计 国际会议中心
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基于空气动力学的高速列车车头造型参数化设计
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作者 刘颖 朱湘楠 陈昳 《工业设计》 2024年第3期76-79,共4页
文章以高速列车车头造型为研究对象,探究不同截面框架生成的设计方案对风阻系数的影响差异,使用参数化设计方法改变车头横截面形状,逐步建立完整的列车数据模型。采用模拟流体分析的方式,证明横截面参数均匀化的车头形状的空气阻力系数... 文章以高速列车车头造型为研究对象,探究不同截面框架生成的设计方案对风阻系数的影响差异,使用参数化设计方法改变车头横截面形状,逐步建立完整的列车数据模型。采用模拟流体分析的方式,证明横截面参数均匀化的车头形状的空气阻力系数最小,论证了参数化设计方法在实际应用中的可行性,以期为列车外观设计提供有效的参考数据和有益的优化经验。 展开更多
关键词 工业设计 空气动力学 高速列车 造型设计 参数化
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编织形态建筑参数化表皮设计研究
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作者 申帅兵 庞春美 《智能建筑与智慧城市》 2024年第3期88-90,共3页
当代建筑设计方法数字化转变已成一种必然趋势,建筑表皮设计作为一种建筑立面形式的特殊表达方法,与数字化、参数化的结合可以呈现出更加丰富的表现效果。文章通过研究总结建筑表皮的特点和以竹编织为代表的自然编织形态特征,利用参数... 当代建筑设计方法数字化转变已成一种必然趋势,建筑表皮设计作为一种建筑立面形式的特殊表达方法,与数字化、参数化的结合可以呈现出更加丰富的表现效果。文章通过研究总结建筑表皮的特点和以竹编织为代表的自然编织形态特征,利用参数化的方法还原编织的原型,将建筑表皮的编织形态总结成三大类六小类,从而整理出编织类建筑表皮参数化建模的原理和步骤,最后将实际项目结合建模步骤进行表皮生成,将编织这一传统元素融入到建筑表皮设计中进行创新性表达,以期为后续的学习研究提供一些参考与借鉴。 展开更多
关键词 编织形态 表皮形态 参数化 表皮设计
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Pro/MoldDesign在零件模具设计中的应用
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作者 孙召瑞 王连海 郭丽波 《机械工程师》 2005年第7期46-48,共3页
按照模具设计的基本流程,介绍了参照零件和工件的创建、模型的检验(拔模等)分型线/面的创建,模具体积块的创建及模拟打开过程,为利用现有实体模型设计生成模具提供了一种切实可行的模具设计方案。
关键词 三维设计 Pro/Molddesign 模具元件 参数化设计
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