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High-thermal free vibration analysis of functionally graded microplates using a new finite element formulation based on TSDT and MSCT
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作者 Huu Trong Dang Nhan Thinh Hoang +2 位作者 Quoc Hoa Pham Trung Thanh Tran Huy Gia Luong 《Defence Technology(防务技术)》 2025年第2期131-149,共19页
Recent advancements in additive manufacturing(AM)have revolutionized the design and production of complex engineering microstructures.Despite these advancements,their mathematical modeling and computational analysis r... Recent advancements in additive manufacturing(AM)have revolutionized the design and production of complex engineering microstructures.Despite these advancements,their mathematical modeling and computational analysis remain significant challenges.This research aims to develop an effective computational method for analyzing the free vibration of functionally graded(FG)microplates under high temperatures while resting on a Pasternak foundation(PF).This formulation leverages a new thirdorder shear deformation theory(new TSDT)for improved accuracy without requiring shear correction factors.Additionally,the modified couple stress theory(MCST)is incorporated to account for sizedependent effects in microplates.The PF is characterized by two parameters including spring stiffness(k_(w))and shear layer stiffness(k_(s)).To validate the proposed method,the results obtained are compared with those of the existing literature.Furthermore,numerical examples explore the influence of various factors on the high-temperature free vibration of FG microplates.These factors include the length scale parameter(l),geometric dimensions,material properties,and the presence of the elastic foundation.The findings significantly enhance our comprehension of the free vibration of FG microplates in high thermal environments.In addition,the findings significantly enhance our comprehension of the free vibration of FG microplates in high thermal environments.In addition,the results of this research will have great potential in military and defense applications such as components of submarines,fighter aircraft,and missiles. 展开更多
关键词 Microplates functionally graded material Finite element method Modified couple stress theory New TSDT High-thermal free vibration Pasternak foundation
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Exact solution for thermal vibration of multi-directional functionally graded porous plates submerged in fluid medium 被引量:1
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作者 Quoc-Hoa Pham Van Ke Tran Phu-Cuong Nguyen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期77-99,共23页
An analytical method for analyzing the thermal vibration of multi-directional functionally graded porous rectangular plates in fluid media with novel porosity patterns is developed in this study.Mechanical properties ... An analytical method for analyzing the thermal vibration of multi-directional functionally graded porous rectangular plates in fluid media with novel porosity patterns is developed in this study.Mechanical properties of MFG porous plates change according to the length,width,and thickness directions for various materials and the porosity distribution which can be widely applied in many fields of engineering and defence technology.Especially,new porous rules that depend on spatial coordinates and grading indexes are proposed in the present work.Applying Hamilton's principle and the refined higher-order shear deformation plate theory,the governing equation of motion of an MFG porous rectangular plate in a fluid medium(the fluid-plate system)is obtained.The fluid velocity potential is derived from the boundary conditions of the fluid-plate system and is used to compute the extra mass.The GalerkinVlasov solution is used to solve and give natural frequencies of MFG porous plates with various boundary conditions in a fluid medium.The validity and reliability of the suggested method are confirmed by comparing numerical results of the present work with those from available works in the literature.The effects of different parameters on the thermal vibration response of MFG porous rectangular plates are studied in detail.These findings demonstrate that the behavior of the structure within a liquid medium differs significantly from that within a vacuum medium.Thereby,they offer appropriate operational approaches for the structure when employed in various mediums. 展开更多
关键词 Plate-fluid contact Galerkin Vlasov's method Multi-directional functionally graded plate Novel porosity Thermal vibration Refined higher-order shear deformation theory
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Method of lines for temperature field of functionally graded materials 被引量:1
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作者 戴耀 孙琦 +2 位作者 郝贵祥 燕秀发 李永东 《Journal of Central South University》 SCIE EI CAS 2005年第S2期230-232,共3页
The finite element method (FEM) and the boundary element method (BEM) are often adopted. However, they are not convenient to spatially vary thermal properties of functionally graded material (FGM). Therefore, the meth... The finite element method (FEM) and the boundary element method (BEM) are often adopted. However, they are not convenient to spatially vary thermal properties of functionally graded material (FGM). Therefore, the method of lines (MOL) is introduced to solve the temperature field of FGM. The basic idea of the method is to semi-discretize the governing equation into a system of ordinary differential equations (ODEs) defined on discrete lines by means of the finite difference method. The temperature field of FGM can be obtained by solving the ODEs. The functions of thermal properties are directly embodied in these equations and these properties are not discretized in the domain. Thus, difficulty of FEM and BEM is overcome by the method. As a numerical example, the temperature field of a plane problem is analyzed for FGMs through varying thermal conductivity coefficient by the MOL. 展开更多
关键词 functionally GRADED MATERIALS method of LINES TEMPERATURE FIELD
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Static and free vibration analyses of functionally graded porous variable-thickness plates using an edge-based smoothed finite element method 被引量:3
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作者 Trung Thanh Tran Quoc-Hoa Pham Trung Nguyen-Thoi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第3期971-986,共16页
The main purpose of this paper is to present numerical results of static bending and free vibration of functionally graded porous(FGP) variable-thickness plates by using an edge-based smoothed finite element method(ES... The main purpose of this paper is to present numerical results of static bending and free vibration of functionally graded porous(FGP) variable-thickness plates by using an edge-based smoothed finite element method(ES-FEM) associate with the mixed interpolation of tensorial components technique for the three-node triangular element(MITC3), so-called ES-MITC3. This ES-MITC3 element is performed to eliminate the shear locking problem and to enhance the accuracy of the existing MITC3 element. In the ES-MITC3 element, the stiffness matrices are obtained by using the strain smoothing technique over the smoothing domains formed by two adjacent MITC3 triangular elements sharing an edge. Materials of the plate are FGP with a power-law index(k) and maximum porosity distributions(U) in the forms of cosine functions. The influences of some geometric parameters, material properties on static bending, and natural frequency of the FGP variable-thickness plates are examined in detail. 展开更多
关键词 functionally graded porous(FGP)plates Edge-based smoothed finite element method(ES-FEM) Mixed interpolation of tensorial components(MITC) Static bending Free vibration
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Method of lines for functionally gradient materials
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作者 戴耀 燕秀发 +2 位作者 王海军 何家文 韩志海 《Journal of Central South University of Technology》 2005年第2期145-149,共5页
The method of lines(MOL) for solving the problems of functionally gradient materials(FGMs) was studied. Navier’s equations for FGMs were derived, and were semi-discretized into a system of ordinary differential (equa... The method of lines(MOL) for solving the problems of functionally gradient materials(FGMs) was studied. Navier’s equations for FGMs were derived, and were semi-discretized into a system of ordinary differential (equations(ODEs)) defined on discrete lines with the finite difference. By solving the system of ODEs, the solutions to the problem can be obtained. An example of three-point bending was given to demonstrate the application of MOL for a crack problem in the FGM. The computational results show that the more accurate results can be obtained with less computational time and resources. The obvious difficulties of numerical method for crack problems in FGMs, such as the effect of material nonhomogeneity and the existence of high gradient stress and strain near a crack tip, can be overcome without additional consideration if this method is adopted. 展开更多
关键词 method of lines functionally gradient material CRACK stress intensity factor
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An improved limit equilibrium method for rock slope stability analysis under stress-based calculation mode for slip surface
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作者 DENG Dong-ping ZHANG Dian +1 位作者 PENG Yi-hang CHEN Hao-yu 《Journal of Central South University》 2025年第1期262-287,共26页
This study proposes an alternative calculation mode for stresses on the slip surface(SS).The calculation of the normal stress(NS)on the SS involves examining its composition and expanding its unknown using the Taylor ... This study proposes an alternative calculation mode for stresses on the slip surface(SS).The calculation of the normal stress(NS)on the SS involves examining its composition and expanding its unknown using the Taylor series.This expansion enables the reasonable construction of a function describing the NS on the SS.Additionally,by directly incorporating the nonlinear Generalized Hoke-Brown(GHB)strength criterion and utilizing the slope factor of safety(FOS)definition,a function of the shear stress on the SS is derived.This function considers the mutual feedback mechanism between the NS and strength parameters of the SS.The stress constraints conditions are then introduced at both ends of the SS based on the spatial stress relation of one point.Determining the slope FOS and stress solution for the SS involves considering the mechanical equilibrium conditions and the stress constraint conditions satisfied by the sliding body.The proposed approach successfully simulates the tension-shear stress zone near the slope top and provides an intuitive description of the concentration effect of compression-shear stress of the SS near the slope toe.Furthermore,compared to other methods,the present method demonstrates superior processing capabilities for the embedded nonlinear GHB strength criterion. 展开更多
关键词 stability of rock slope nonlinear GHB strength criterion limit equilibrium method stress function on slip surface stress constraint conditions at both ends of slip surface
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Kernel matrix learning with a general regularized risk functional criterion 被引量:3
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作者 Chengqun Wang Jiming Chen +1 位作者 Chonghai Hu Youxian Sun 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2010年第1期72-80,共9页
Kernel-based methods work by embedding the data into a feature space and then searching linear hypothesis among the embedding data points. The performance is mostly affected by which kernel is used. A promising way is... Kernel-based methods work by embedding the data into a feature space and then searching linear hypothesis among the embedding data points. The performance is mostly affected by which kernel is used. A promising way is to learn the kernel from the data automatically. A general regularized risk functional (RRF) criterion for kernel matrix learning is proposed. Compared with the RRF criterion, general RRF criterion takes into account the geometric distributions of the embedding data points. It is proven that the distance between different geometric distdbutions can be estimated by their centroid distance in the reproducing kernel Hilbert space. Using this criterion for kernel matrix learning leads to a convex quadratically constrained quadratic programming (QCQP) problem. For several commonly used loss functions, their mathematical formulations are given. Experiment results on a collection of benchmark data sets demonstrate the effectiveness of the proposed method. 展开更多
关键词 kernel method support vector machine kernel matrix learning HKRS geometric distribution regularized risk functional criterion.
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Analysis of steady heat conduction for 3D axisymmetric functionally graded circular plate 被引量:3
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作者 刘五祥 《Journal of Central South University》 SCIE EI CAS 2013年第6期1616-1622,共7页
The thermal conduction behavior of the three-dimensional axisymmetric functionally graded circular plate was studied under thermal loads on its top and bottom surfaces. Material properties were taken to be arbitrary d... The thermal conduction behavior of the three-dimensional axisymmetric functionally graded circular plate was studied under thermal loads on its top and bottom surfaces. Material properties were taken to be arbitrary distribution functions of the thickness. A temperature function that satisfies thermal boundary conditions at the edges and the variable separation method were used to reduce equation governing the steady state heat conduction to an ordinary differential equation (ODE) in the thickness coordinate which was solved analytically. Next, resulting variable coefficients ODE due to arbitrary distribution of material properties along thickness coordinate was also solved by the Peano-Baker series. Some numerical examples were given to demonstrate the accuracy, efficiency of the present model, mad to investigate the influence of different distributions of material properties on the temperature field. The numerical results confirm that the influence of different material distributions, gradient indices and thickness of plate to temperature field in plate can not be ignored. 展开更多
关键词 functionally graded circular plate variable separation method steady heat conduction Peano-Baker series
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Method and Practice on Water Function Division of the Yangtze River Region 被引量:1
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作者 YUAN Hong-renProfessor-senior Engineer, Yangtze Valley Water Resources Protection Bureau, Wuhan 430051, China LUO Xiao-yongSenior Engineer, Yangtze Valley Water Resources Protection Bureau, Wuhan 430051, China 《人民长江》 北大核心 2002年第S1期54-57,共4页
Water function classification is to divide the waters in a basin or a region into different water function regions according to the natural features such as water resources condition, physical geographical location, e... Water function classification is to divide the waters in a basin or a region into different water function regions according to the natural features such as water resources condition, physical geographical location, environmental condition, etc. and social features such as the status quo of development and utilization, the requirement of social and economic development on water quantity and quality etc. Water function division has not ever been carried out in China and no ready-made theory and method can be complied with, in the meantime, it is a fundamental work with strong practical function. Therefore, the basic concept and theory foundation and research method are put forward on the base of summary of water resources management and developed and will be perfected in practice process of water function division. The Yangtze function zone covers the Yangtze river basin, the Lancang river basin and the rivers in the western area of the Lancang river in Southwest China. According to the technical outline of national water function division and combined with division practice of the Yangtze function zone, this paper presents the scope determination, procedure and method of water function division. 展开更多
关键词 WATER function DIVISION procedure method scope YANGTZE river
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Simulation of three-dimensional tension-induced cracks based on cracking potential function-incorporated extended finite element method 被引量:1
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作者 WANG Xiang-nan YU Peng +4 位作者 ZHANG Xiang-tao YU Jia-lin HAO Qing-shuo LI Quan-ming YU Yu-zhen 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期235-246,共12页
In the finite element method,the numerical simulation of three-dimensional crack propagation is relatively rare,and it is often realized by commercial programs.In addition to the geometric complexity,the determination... In the finite element method,the numerical simulation of three-dimensional crack propagation is relatively rare,and it is often realized by commercial programs.In addition to the geometric complexity,the determination of the cracking direction constitutes a great challenge.In most cases,the local stress state provides the fundamental criterion to judge the presence of cracks and the direction of crack propagation.However,in the case of three-dimensional analysis,the coordination relationship between grid elements due to occurrence of cracks becomes a difficult problem for this method.In this paper,based on the extended finite element method,the stress-related function field is introduced into the calculation domain,and then the boundary value problem of the function is solved.Subsequently,the envelope surface of all propagation directions can be obtained at one time.At last,the possible surface can be selected as the direction of crack development.Based on the aforementioned procedure,such method greatly reduces the programming complexity of tracking the crack propagation.As a suitable method for simulating tension-induced failure,it can simulate multiple cracks simultaneously. 展开更多
关键词 extended finite element method CRACK three-dimensional calculation cracking potential function tensile failure
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Adaptive phase field modelling of crack propagation in orthotropic functionally graded materials
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作者 Hirshikesh Emilio Martínez-Paneda Sundararajan Natarajan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第1期185-195,共11页
In this work,we extend the recently proposed adaptive phase field method to model fracture in orthotropic functionally graded materials(FGMs).A recovery type error indicator combined with quadtree decomposition is emp... In this work,we extend the recently proposed adaptive phase field method to model fracture in orthotropic functionally graded materials(FGMs).A recovery type error indicator combined with quadtree decomposition is employed for adaptive mesh refinement.The proposed approach is capable of capturing the fracture process with a localized mesh refinement that provides notable gains in computational efficiency.The implementation is validated against experimental data and other numerical experiments on orthotropic materials with different material orientations.The results reveal an increase in the stiffness and the maximum force with increasing material orientation angle.The study is then extended to the analysis of orthotropic FGMs.It is observed that,if the gradation in fracture properties is neglected,the material gradient plays a secondary role,with the fracture behaviour being dominated by the orthotropy of the material.However,when the toughness increases along the crack propagation path,a substantial gain in fracture resistance is observed. 展开更多
关键词 functionally graded materials Phase field fracture Polygonal finite element method Orthotropic materials Recovery based error indicator
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Static and dynamic stability responses of multilayer functionally graded carbon nanotubes reinforced composite nanoplates via quasi 3D nonlocal strain gradient theory
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作者 Ahmed Amine Daikh Mohamed Sid Ahmed Houari +2 位作者 Mohamed Ouejdi Belarbi Salwa A.Mohamed Mohamed A.Eltaher 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第10期1778-1809,共32页
This manuscript presents the comprehensive study of thickness stretching effects on the free vibration,static stability and bending of multilayer functionally graded(FG)carbon nanotubes reinforced composite(CNTRC)nano... This manuscript presents the comprehensive study of thickness stretching effects on the free vibration,static stability and bending of multilayer functionally graded(FG)carbon nanotubes reinforced composite(CNTRC)nanoplates.The nanoscale and microstructure influences are considered through a modified nonlocal strain gradient continuum model.Based on power-law functions,four different patterns of CNTs distribution are considered in this analysis,a uniform distribution UD,FG-V CNTRC,FG-X CNTRC,and FG-O CNTRC.A 3D kinematic shear deformation theory is proposed to include the stretching influence,which is neglected in classical theories.Hamilton's principle is applied to derive the governing equations of motion and associated boundary conditions.Analytical solutions are developed based on Galerkin method to solve the governing equilibrium equations based on the generalized higher-order shear deformation theory and the nonlocal strain gradient theory and get the static bending,buckling loads,and natural frequencies of nanoplates.Verification with previous works is presented.A detailed parametric analysis is carried out to highlight the impact of thickness stretching,length scale parameter(nonlocal),material scale parameter(gradient),CNTs distribution pattern,geometry of the plate,various boundary conditions and the total number of layers on the stresses,deformation,critical buckling loads and vibration frequencies.Many new results are also reported in the current study,which will serve as a benchmark for future research. 展开更多
关键词 3D shear deformation theory Free vibration Buckling Bending Galerkin method functionally graded nanotube Nonlocal strain gradient theory
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不同提取方法对杏仁蛋白结构和功能特性的影响 被引量:1
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作者 李晶晶 罗婷婷 +5 位作者 胡海玥 耿东宇 刘雅萱 王丽娜 杨晨 汪建明 《食品工业科技》 北大核心 2025年第5期72-80,共9页
为提高杏仁蛋白(Almond protein,AP)的利用率,本研究使用等电点沉淀法(Alkaline extraction by isoelectric precipitation,AI)、热碱法(Thermal-alkaline,TA)和盐析法(Salt extraction,SE)提取AP,分别为AIAP、TAAP和SEAP,探究提取方法... 为提高杏仁蛋白(Almond protein,AP)的利用率,本研究使用等电点沉淀法(Alkaline extraction by isoelectric precipitation,AI)、热碱法(Thermal-alkaline,TA)和盐析法(Salt extraction,SE)提取AP,分别为AIAP、TAAP和SEAP,探究提取方法对蛋白质结构和功能特性的影响。结果表明,不同提取方法对AP的结构和功能特性具有显著影响。SEAP的提取率(55.94%)和纯度(88.21%)最高,AIAP的纯度最低(75.06%),TAAP的提取率最低(50.71%)。AIAP表面粗糙且结构疏松,而TAAP和SEAP的结构致密,AIAP的β-折叠含量(44.97%)和表面疏水性高于TAAP和SEAP。相较于TAAP和SEAP,AIAP的持水性和持油性较高。SEAP和TAAP的溶解度显著高于AIAP,且乳化特性和起泡特性较好。本研究为杏仁蛋白在食品工业的应用提供一定的理论参考。 展开更多
关键词 提取方法 杏仁蛋白 结构 功能特性
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文化遗产保护机构档案资源分类的问题解析与体系重构——以敦煌研究院为例 被引量:2
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作者 孙胜利 祝洁 +1 位作者 刘越男 王雪莲 《北京档案》 北大核心 2025年第1期16-22,共7页
档案资源既是文化遗产保护机构的重要资产,也是文化遗产保护和利用的关键。现有研究对文化遗产保护机构档案资源分类原理及标准的探讨相对薄弱,实践中的类别划分更较为混乱,与文化遗产领域实践运用的现实需求之间的矛盾日益突显。论文... 档案资源既是文化遗产保护机构的重要资产,也是文化遗产保护和利用的关键。现有研究对文化遗产保护机构档案资源分类原理及标准的探讨相对薄弱,实践中的类别划分更较为混乱,与文化遗产领域实践运用的现实需求之间的矛盾日益突显。论文通过对文化遗产保护机构档案资源分类现存问题进行深入分析,秉持科学性、全面性、系统性、合规性四项构建原则,结合对象分类法和职能分类法,构建了档案资源分类体系的理论框架。以敦煌研究院档案资源分类体系为例,系统阐述了其架构过程,为文化遗产保护机构档案管理的理论发展和实践应用提供指导与参考。 展开更多
关键词 文化遗产 档案资源 文化遗产本体档案 职能分类法 对象分类法
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生物质基衍生炭的制备与功能化改性研究进展 被引量:1
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作者 陆佳 王玉鹏 +1 位作者 苏小红 王怡心 《新能源进展》 北大核心 2025年第3期277-284,共8页
在“碳达峰、碳中和”战略背景下,利用生物质为碳源制备衍生炭材料是生物质资源化、高值化、减碳化重要的利用方式之一。生物质衍生炭被誉为“黑色黄金”,在吸附净化、催化、储能领域应用前景广阔。生物质衍生炭的结构特性及应用领域与... 在“碳达峰、碳中和”战略背景下,利用生物质为碳源制备衍生炭材料是生物质资源化、高值化、减碳化重要的利用方式之一。生物质衍生炭被誉为“黑色黄金”,在吸附净化、催化、储能领域应用前景广阔。生物质衍生炭的结构特性及应用领域与原料、制备及改性方法息息相关。基于生物质衍生炭组成与结构,系统梳理介绍了热解碳化法、水热碳化法、活化碳化法、模板法等常用的制备方法。为改善原始生物质衍生炭的固有缺陷以满足其特定的应用需求,在性能提升方面,归纳了酸碱、杂原子掺杂、金属盐及其氧化物等功能化改性方法。最后介绍机器学习在预测调控生物质衍生炭中的应用,并对未来研究重点及发展前景进行展望,以期为生物质衍生炭材料的制备与应用发展提供参考。 展开更多
关键词 生物质衍生炭 热解碳化 水热碳化 模板法 功能化改性
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一类新的无参数的填充打洞函数法
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作者 袁柳洋 汤梦瑶 迟晓妮 《运筹学学报(中英文)》 北大核心 2025年第2期214-220,共7页
自填充函数算法被提出以来,参数被视为制约算法效率的主要因素,因此构造无参数的填充函数显得极为重要。为了提高算法效率,本文构造了一类新的无参数的填充打洞函数,分析并讨论了该函数的性质。基于新的填充打洞函数,提出了一个新的全... 自填充函数算法被提出以来,参数被视为制约算法效率的主要因素,因此构造无参数的填充函数显得极为重要。为了提高算法效率,本文构造了一类新的无参数的填充打洞函数,分析并讨论了该函数的性质。基于新的填充打洞函数,提出了一个新的全局优化算法,并对算法进行了数值实验,数值实验结果表明该算法可行且有效。 展开更多
关键词 填充函数法 打洞函数法 全局优化算法 局部极小点 全局极小点
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基于不同目标函数的WRF-Hydro模型参数敏感性研究 被引量:1
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作者 谷黄河 石怀轩 +2 位作者 孙敏涛 丁震 顾苏烨 《中国农村水利水电》 北大核心 2025年第1期61-69,共9页
水文与气象预报相结合可以有效提高洪水预报的精度和延长预见期,陆气耦合模型已成为水文气象学者研究的重点。WRF-Hydro模型作为新一代分布式陆气耦合模型在多尺度洪水预报中具有广阔的应用前景,但由于各物理过程参数化方案复杂,模型计... 水文与气象预报相结合可以有效提高洪水预报的精度和延长预见期,陆气耦合模型已成为水文气象学者研究的重点。WRF-Hydro模型作为新一代分布式陆气耦合模型在多尺度洪水预报中具有广阔的应用前景,但由于各物理过程参数化方案复杂,模型计算量大,对该模型的参数敏感性研究还不充分,也影响着模型的模拟精度。研究以湿润区的新安江上游屯溪流域为研究对象,构建多个单目标和多目标函数,并结合Morris全局参数敏感性分析方法,探究了WRF-Hydro模型在不同目标函数下的参数敏感性。结果表明:土壤参数(DKSAT、SMCMAX、BEXP)主要影响壤中流和地表径流,对径流量影响显著,尤其DKSAT最为敏感,直接影响水在土壤中的下渗速度,增大时基流量显著增高而洪峰流量则明显降低;产流参数(SLOPE、REFKDT)主要影响地表径流和基流分配,对洪水过程线形状有重要影响;河道汇流参数ManN影响汇流速度并主要控制峰现时间;植被参数MP对于总水量有一定影响;坡面汇流参数OVROUGHRTFAC和地下水参数Zmax则最不敏感。不同目标函数下的参数敏感性顺序和最优参数取值有一定差异,单目标函数中以相对误差为优化目标会更侧重于全年径流总量和低流量部分的模拟精度,而以效率系数和Kling-Gupta系数为目标则更侧重于场次洪水和高流量部分的模拟效果;基于几个单目标函数组合的多目标函数综合考虑了不同目标函数的影响,结果在一定程度上优于单目标函数。研究可为合理确定WRF-Hydro模型参数优化策略提供参考。 展开更多
关键词 WRF-Hydro模型 Morris法 敏感性分析 多目标函数 洪水预报
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引入Green函数实现电阻率法总电位高精度三维正演
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作者 熊彬 熊心如 +2 位作者 徐志锋 陆裕国 张健辉 《地球物理学报》 北大核心 2025年第7期2786-2791,共6页
在电阻率法正演中,采用有限单元法数值求解总电位V时,关于总电位V的泛函中含有点电流源项,而位函数V在源点处具有奇异性.为了有效模拟点电流源邻近总电位V的变化情况,人们采用线性插值、二次插值甚至更高次插值,也难以完全消除其影响,... 在电阻率法正演中,采用有限单元法数值求解总电位V时,关于总电位V的泛函中含有点电流源项,而位函数V在源点处具有奇异性.为了有效模拟点电流源邻近总电位V的变化情况,人们采用线性插值、二次插值甚至更高次插值,也难以完全消除其影响,均不能收获令人满意的精度.本文将满足Possion方程的Green函数引入稳定电流场所满足的边值问题,借助Galerkin加权余量法构建有限单元法控制方程,进而实现基于总电位的高精度电阻率法三维正演.理论计算结果表明,本文提出算法的稳定性颇佳,对网格的依赖性低,且计算精度与基于异常电位正演的计算精度相当. 展开更多
关键词 电阻率法 正演 有限单元法 GREEN函数 总电位
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等几何拓扑优化非齐次边界条件施加技术研究
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作者 王书亭 谢晴天 +3 位作者 杨奥迪 李小兵 熊体凡 谢贤达 《中国机械工程》 北大核心 2025年第3期525-535,共11页
非均匀有理B样条(NURBS)基函数缺乏插值性,导致等几何拓扑优化方法无法直接在控制顶点处施加非齐次边界条件。为此,介绍了面向等几何分析的两类非齐次边界条件处理方法,通过强施加方法和弱施加方法分别对边界条件施加的精度进行提升。... 非均匀有理B样条(NURBS)基函数缺乏插值性,导致等几何拓扑优化方法无法直接在控制顶点处施加非齐次边界条件。为此,介绍了面向等几何分析的两类非齐次边界条件处理方法,通过强施加方法和弱施加方法分别对边界条件施加的精度进行提升。数值算例结果验证了前述方法在等几何分析非齐次边界条件施加过程的可行性。将前述方法嵌入至等几何拓扑优化流程,创新性地提出惩罚因子自适应的非齐次边界条件处理方法,提高了等几何拓扑优化求解的精度,进一步论证了文中方法的有效性。 展开更多
关键词 等几何拓扑优化 非齐次边界条件 边界配点法 自适应罚函数法
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过滤函数对拓扑优化效率和灰度单元的影响 被引量:1
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作者 杜家政 陈炬 李功明 《北京工业大学学报》 北大核心 2025年第5期523-538,572,共17页
为了提高拓扑优化效率和减少灰度单元的数量,基于独立连续映射(independent continuous mapping,ICM)方法引入幂函数、复合指数型函数以及有理分式函数作为过滤函数,建立以质量最小为目标、位移为约束的拓扑优化模型。通过数值算例,研究... 为了提高拓扑优化效率和减少灰度单元的数量,基于独立连续映射(independent continuous mapping,ICM)方法引入幂函数、复合指数型函数以及有理分式函数作为过滤函数,建立以质量最小为目标、位移为约束的拓扑优化模型。通过数值算例,研究了3种过滤函数以及单元质量和单元刚度过滤函数的参数比对拓扑优化效率和灰度单元的影响。数值算例表明有理分式函数能有效减少中间灰度单元数量,提高收敛速度,降低结构质量。对于幂函数,当单元质量和单元刚度过滤函数的参数比为1∶7时效果最佳;对于复合指数型函数,当单元质量和单元刚度过滤函数的参数比为1.3∶0.1时效果最佳;对于有理分式过滤函数,当单元质量和单元刚度过滤函数的参数比为3∶63时效果最佳。 展开更多
关键词 ICM方法 过滤函数 拓扑优化 位移约束 优化效率 灰度单元
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