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Dynamic analysis of the composite laminated repaired perforated plates by using multi-patch IGA method 被引量:2
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作者 Jamshid FAZILATI Vahid KHALAFI 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2021年第1期266-280,共15页
The bonded repair techniques seem to be the most frequent procedures in the aviation maintenance.The achieved composite repaired perforated thin-walled plate is a complex geometry with high numerical analysis cost.The... The bonded repair techniques seem to be the most frequent procedures in the aviation maintenance.The achieved composite repaired perforated thin-walled plate is a complex geometry with high numerical analysis cost.The NURBS-based Isogeometric Analysis(IGA)proposes a sensible and affordable tool to carry out such geometry analysis.In this context,a well-known technique is to divide the original geometry assembly into number of simple neighbors connected geometries.In the present study the free vibration analysis of the perforated plates repaired on one side with an external bonded composite laminated patch is investigated.A multi-patch geometry modeling approach is implemented in line with the first order shear deformation theory of plates.In order to hold the geometry integrity and uniformity,all the degrees of freedom between adjacent geometry patches are completely tied through implementing a Nitsche method.To show the effectiveness and accuracy of the developed formulation,some representative results are extracted and compared with those from literature.The effects of geometrical as well as material parameters including boundary condition,cutout shape,and repair layup on the dynamic response of the repaired perforated plates are then investigated. 展开更多
关键词 Composite laminate Perforated plate Bonded repair Isogeometric analysis(IGA) multi-patch model
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A High-Accuracy Single Patch Representation of Multi-Patch Geometries with Applications to Isogeometric Analysis 被引量:2
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作者 Jinlan Xu Ningning Sun Gang Xu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第8期627-642,共16页
This paper presents a novel approximating method to construct highprecision single-patch representation of B-spline surface from a multi-patch representation for isogeometric applications.In isogeometric analysis,mult... This paper presents a novel approximating method to construct highprecision single-patch representation of B-spline surface from a multi-patch representation for isogeometric applications.In isogeometric analysis,multi-patch structure is not easy to achieve high continuity between neighboring patches which will reduce the advantage of isogeometric analysis in a sense.The proposed method can achieve high continuity at surface stitching region with low geometric error,and this technique exploits constructing the approximate surface with several control points are from original surfaces,which guarantees the local feature of the surface can be well-preserved with high precision.With the proposed approximating method,isogeometric analysis results using the new single-patch can be obtained efficiently compared with the original multi-patch structure.Several examples are presented to illustrate the effectiveness,accuracy and efficiency of the proposed method. 展开更多
关键词 Isogeometric analysis patch merging multi-patch structure computational efficiency
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Multi-Patch Black-White Topology Optimization in Isogeometric Analysis
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作者 Qingyuan Hu Yuan Liang +2 位作者 Menghao Liu Manfeng Hu Yawen Mao 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第1期459-481,共23页
Topological optimization plays a guiding role in the conceptual design process.This paper conducts research on structural topology optimization algorithm within the framework of isogeometric analysis.For multi-compone... Topological optimization plays a guiding role in the conceptual design process.This paper conducts research on structural topology optimization algorithm within the framework of isogeometric analysis.For multi-component structures,the Nitsche’smethod is used to glue differentmeshes to performisogeometricmulti-patch analysis.The discrete variable topology optimization algorithm based on integer programming is adopted in order to obtain clear boundaries for topology optimization.The sensitivity filtering method based on the Helmholtz equation is employed for averaging of curved elements’sensitivities.In addition,a simple averaging method along coupling interfaces is proposed in order to ensure the material distribution across coupling areas is reasonably smooth.Finally,the performance of the algorithm is demonstrated by numerical examples,and the effectiveness of the algorithm is verified by comparing it with the results obtained by single-patch and ABAQUS cases. 展开更多
关键词 Isogeometric topology optimization nitsche multi-patch integer programming
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Perceptual Image Outpainting Assisted by Low-Level Feature Fusion and Multi-Patch Discriminator
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作者 Xiaojie Li Yongpeng Ren +5 位作者 Hongping Ren Canghong Shi Xian Zhang Lutao Wang Imran Mumtaz Xi Wu 《Computers, Materials & Continua》 SCIE EI 2022年第6期5021-5037,共17页
Recently,deep learning-based image outpainting has made greatly notable improvements in computer vision field.However,due to the lack of fully extracting image information,the existing methods often generate unnatural... Recently,deep learning-based image outpainting has made greatly notable improvements in computer vision field.However,due to the lack of fully extracting image information,the existing methods often generate unnatural and blurry outpainting results in most cases.To solve this issue,we propose a perceptual image outpainting method,which effectively takes the advantage of low-level feature fusion and multi-patch discriminator.Specifically,we first fuse the texture information in the low-level feature map of encoder,and simultaneously incorporate these aggregated features reusability with semantic(or structural)information of deep feature map such that we could utilizemore sophisticated texture information to generate more authentic outpainting images.Then we also introduce a multi-patch discriminator to enhance the generated texture,which effectively judges the generated image from the different level features and concurrently impels our network to produce more natural and clearer outpainting results.Moreover,we further introduce perceptual loss and style loss to effectively improve the texture and style of outpainting images.Compared with the existing methods,our method could produce finer outpainting results.Experimental results on Places2 and Paris StreetView datasets illustrated the effectiveness of our method for image outpainting. 展开更多
关键词 Deep learning image outpainting low-level feature fusion multi-patch discriminator
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Multi-patch multi-group epidemic model with varying infectivity 被引量:1
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作者 Raphaël Forien Guodong Pang Étienne Pardoux 《Probability, Uncertainty and Quantitative Risk》 2022年第4期333-364,共32页
This paper presents a law of large numbers result,as the size of the population tends to infinity,of SIR stochastic epidemic models,for a population distributed over distinct patches(with migrations between them)and d... This paper presents a law of large numbers result,as the size of the population tends to infinity,of SIR stochastic epidemic models,for a population distributed over distinct patches(with migrations between them)and distinct groups(possibly age groups).The limit is a set of Volterra-type integral equations,and the result shows the effects of both spatial and population heterogeneity.The novelty of the model is that the infectivity of an infected individual is infection age dependent.More precisely,to each infected individual is attached a random infection-age dependent infectivity function,such that the various random functions attached to distinct individuals are i.i.d.The proof involves a novel construction of a sequence of i.i.d.processes to invoke the law of large numbers for processes in,by using the solution of a MacKean-Vlasov type Poisson-driven stochastic equation(as in the propagation of chaos theory).We also establish an identity using the Feynman-Kac formula for an adjoint backward ODE.The advantage of this approach is that it assumes much weaker conditions on the random infectivity functions than our earlier work for the homogeneous model in[20],where standard tightness criteria for convergence of stochastic processes were employed.To illustrate this new approach,we first explain the new proof under the weak assumptions for the homogeneous model,and then describe the multipatch-multigroup model and prove the law of large numbers for that model. 展开更多
关键词 Stochastic epidemic model multi-patch multi-group Varying infectivity SIR model Law of large numbers Feynman-Kac formula Poisson-driven(McKean-Vlasov type)stochastic equations Propagation of chaos
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A SING ULAR PARAM ETERIZED FINITE VOLUME METHOD FOR THE ADVECTION-DIFFUSION EQUATION IN IRREGULAR GEOMETRIES 被引量:1
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作者 Chang Yang Meng Wu 《Journal of Computational Mathematics》 SCIE CSCD 2019年第5期579-608,共30页
Solving the advection-diffusion equation in irregular geometries is of great importance for realistic simulations.To this end,we adopt multi-patch parameterizations to describe irregular geometries.Different from the ... Solving the advection-diffusion equation in irregular geometries is of great importance for realistic simulations.To this end,we adopt multi-patch parameterizations to describe irregular geometries.Different from the classical multi-patch parameterization method,C 1-continuity is introduced in order to avoid designing interface conditions between adjacent patches.However,singularities of parameterizations can’t always be avoided.Thus,in this paper,a finite volume method is proposed based on smooth multi-patch singular parameterizations.It is called a singular parameterized finite volume method.Firstly,we present a numerical scheme for pure advection equation and pure diffusion equation respectively.Secondly,numerical stability results in L2 norm show that the numerical method is not suffered from the singularities.Thirdly,the numerical method has second order accurate in L2 norm.Finally,three numerical tests in different irregular geometries are presented to show efficiency of this numerical method. 展开更多
关键词 Finite volume method Smooth multi-patch singular parameterizations The advection-diffusion equation Irregular geometries.
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Role of short-term dispersal on the dynamics of Zika virus in an extreme idealized environment 被引量:1
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作者 Victor M.Moreno Baltazar Espinoza +2 位作者 Derdei Bichara Susan A.Holechek Carlos Castillo-Chavez 《Infectious Disease Modelling》 2017年第1期21-34,共14页
In November 2015,El Salvador reported their first case of Zika virus(ZIKV)infection,an event followed by an explosive outbreak that generated over 6000 suspected cases in a period of two months.National agencies began... In November 2015,El Salvador reported their first case of Zika virus(ZIKV)infection,an event followed by an explosive outbreak that generated over 6000 suspected cases in a period of two months.National agencies began implementing control measures that included vector control and recommending an increased use of repellents.Further,in response to the alarming and growing number of microcephaly cases in Brazil,the importance of avoiding pregnancies for two years was stressed.In this paper,we explore the role of mobility within communities characterized by extreme poverty,crime and violence.Specifically,the role of short term mobility between two idealized interconnected highly distinct communities is explored in the context of ZIKV outbreaks.We make use of a Lagrangian modeling approach within a two-patch setting in order to highlight the possible effects that short-term mobility,within highly distinct environments,may have on the dynamics of ZIKV outbreak when the overall goal is to reduce the number of cases not just in the most affluent areas but everywhere.Outcomes depend on existing mobility patterns,levels of disease risk,and the ability of federal or state public health services to invest in resource limited areas,particularly in those where violence is systemic.The results of simulations in highly polarized and simplified scenarios are used to assess the role of mobility.It quickly became evident that matching observed patterns of ZIKV outbreaks could not be captured without incorporating increasing levels of heterogeneity.The number of distinct patches and variations on patch connectivity structure required to match ZIKV patterns could not be met within the highly aggregated model that is used in the simulations. 展开更多
关键词 Vector-borne diseases Zika virus Residence times multi-patch model
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