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Time-Domain Analysis of Body Freedom Flutter Based on 6DOF Equation
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作者 Zhehan Ji Tongqing Guo +2 位作者 Di Zhou zhiliang lu Binbin Lyu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第1期489-508,共20页
The reduced weight and improved efficiency of modern aeronautical structures result in a decreasing separation of frequency ranges of rigid and elastic modes.Particularly,a high-aspect-ratio flexible flying wing is pr... The reduced weight and improved efficiency of modern aeronautical structures result in a decreasing separation of frequency ranges of rigid and elastic modes.Particularly,a high-aspect-ratio flexible flying wing is prone to body freedomflutter(BFF),which is a result of coupling of the rigid body short-periodmodewith 1st wing bendingmode.Accurate prediction of the BFF characteristics is helpful to reflect the attitude changes of the vehicle intuitively and design the active flutter suppression control law.Instead of using the rigid body mode,this work simulates the rigid bodymotion of the model by using the six-degree-of-freedom(6DOF)equation.A dynamicmesh generation strategy particularly suitable for BFF simulation of free flying aircraft is developed.An accurate Computational Fluid Dynamics/Computational Structural Dynamics/six-degree-of-freedom equation(CFD/CSD/6DOF)-based BFF prediction method is proposed.Firstly,the time-domain CFD/CSD method is used to calculate the static equilibrium state of the model.Based on this state,the CFD/CSD/6DOF equation is solved in time domain to evaluate the structural response of themodel.Then combinedwith the variable stiffnessmethod,the critical flutter point of the model is obtained.This method is applied to the BFF calculation of a flyingwing model.The calculation results of the BFF characteristics of the model agree well with those fromthe modalmethod andNastran software.Finally,the method is used to analyze the influence factors of BFF.The analysis results show that the flutter speed can be improved by either releasing plunge constraint or moving the center ofmass forward or increasing the pitch inertia. 展开更多
关键词 Body freedom flutter time-domain CFD/CSD/6DOF method dynamic mesh generation strategy aeroelasticity
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Analysis on the Breeding and Major Traits of Wide-adaptability Indica CMS Line Yungu 3A
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作者 Yonggang lu Huafeng DENG +6 位作者 Jinwen ZHANG Wei DENG Yuran XU Anyu GU Wei NIAN zhiliang lu Xiaolin LI 《Agricultural Biotechnology》 CAS 2015年第3期35-38,42,共5页
Breeding sterile lines is the key to the development of hybrid rice with wide adaptability. However, at present, few wide-adaptability sterile lines have been applied in production practice. In this study, Yungu 3A, a... Breeding sterile lines is the key to the development of hybrid rice with wide adaptability. However, at present, few wide-adaptability sterile lines have been applied in production practice. In this study, Yungu 3A, a new WA-type Indica CMS line with good grain quality, was developed by hybridization between Yunfeng 66A with wide adaptability as female parent and F1 plants of Yunfeng 66B/D62B as male parent and continuous backcrossing. According to the results, the finally obtained lndica CMS line Yungu 3A has good plant type and leaf shape, strong tillering ability, excellent flowering habit, stable and complete male sterility with the sterile plant rate and pollen sterility rate of 100%, strong combining ability, high outcrossing rate, low sensitivity to light and temperature, and strong disease resistance, which was approved by Yunnan Provincial Crop Variety Appraisal Committee in 2013. Yungu 3A is conducive to the development of new hybrid rice combinations with good quality and wide adaptability, exhibiting a promising prospect of application. 展开更多
关键词 Indica CMS lines Wide adaptability High quality Flowering habits Combining ability
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S100A7 attenuates immunotherapy by enhancing immunosuppressive tumor microenvironment in lung squamous cell carcinoma 被引量:2
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作者 Chengming Liu Sufei Zheng +6 位作者 zhiliang lu Zhanyu Wang Sihui Wang Xiaoli Feng Yan Wang Nan Sun Jie He 《Signal Transduction and Targeted Therapy》 SCIE CSCD 2022年第11期4025-4027,共3页
Dear Editor,In recent years,the rapid development of immunotherapy has brought survival benefits for lung squamous cell carcinoma(LUSC)patients who have rare treatment options.Nevertheless,there are still some patient... Dear Editor,In recent years,the rapid development of immunotherapy has brought survival benefits for lung squamous cell carcinoma(LUSC)patients who have rare treatment options.Nevertheless,there are still some patients with immunotherapy resistance,which is the root cause of the low benefit rate and disease progression of the overall population,and it is an urgent problem to be solved.Except for tumor mutation burden,the tumor immune microenvironment(TIME)as characterized by infiltration of CD8+tumor-infiltrating lymphocytes(TILs)and PD-L1 expression has been associated with the efficacy of immune checkpoint inhibitors(ICIs).In our previous studies,we have demonstrated that psoriasin,also known as S100 calcium-binding protein A7(S100A7),not only accelerates tumor progression via the activation of the p-Erk pathway in LUSC and the p-Erk and p-FAK pathways in esophageal squamous cell carcinomas(ESCC)but also remodels the tumor microenvironment by promoting angiogenesis and M2 macrophage infiltration in ESCC.1,2 However,the role of S100A7 in the TIME and immunotherapy efficacy in LUSC remains to be elucidated. 展开更多
关键词 S100A7 IMMUNOTHERAPY SQUAMOUS
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Simulation of Viscous Flows Around A Moving Airfoil by Field Velocity Method with Viscous Flux Correction 被引量:1
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作者 Ning Gu zhiliang lu Tongqing Guo 《Advances in Applied Mathematics and Mechanics》 SCIE 2012年第3期294-310,共17页
Based on the field velocity method,a novel approach for simulating unsteady pitching and plunging motion of an airfoil is presented in this paper.Responses to pitching and plunging motions of the airfoil are simulated... Based on the field velocity method,a novel approach for simulating unsteady pitching and plunging motion of an airfoil is presented in this paper.Responses to pitching and plunging motions of the airfoil are simulated under different conditions.The obtained results are compared with those of moving grid method and good agreement is achieved.In the conventional field velocity method,the Euler solver is usually used to simulate the movement of the airfoil.However,when viscous effect is considered,unsteady Navier-Stokes equations have to be solved and the viscous flux correction must be taken into account.In this work,the viscous flux correction is introduced into the conventional field velocity method when non-uniform grid speed distribution is occurred.Numerical experiments for the flow around NACA0012 airfoil showed that the proposed approach can well simulate viscous moving boundary flow problems. 展开更多
关键词 Gust response unsteady Navier-Stokes equations field velocity method viscous flux correction
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CFD/CSD-based flutter prediction method for experimental models in a transonic wind tunnel with porous wall
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作者 Tongqing GUO Daixiao lu +3 位作者 zhiliang lu Di ZHOU Binbin LYU Jiangpeng WU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第12期3100-3111,共12页
To predict the flutter dynamic pressure of a wind tunnel model before flutter test,an accurate Computational Fluid Dynamics/Computational Structural Dynamics(CFD/CSD)-based flutter prediction method is proposed under ... To predict the flutter dynamic pressure of a wind tunnel model before flutter test,an accurate Computational Fluid Dynamics/Computational Structural Dynamics(CFD/CSD)-based flutter prediction method is proposed under the conditions of a 2.4 m×2.4 m transonic wind tunnel with porous wall.From the CFD simulations of the flows through an inclined hole of this wind tunnel,the Nambu's linear porous wall model between the flow rate and the differential pressure is extended to the porous wall with inclined holes,so that the porous wall can be conveniently modeled as a boundary condition.According to the flutter testing approach for the current wind tunnel,the steady CFD calculation is conducted to achieve the required inlet Mach number.A timedomain CFD/CSD method is then employed to evaluate the structural response of the experimental model,and the critical flutter point is obtained by increasing the dynamic pressure step by step at a fixed Mach number.The present method is applied to the flutter calculations for a vertical tail model and an aircraft model tested in the current transonic wind tunnel.For both models,the computed flutter characteristics agree well with the experimental results. 展开更多
关键词 CFD/CSD Experimental models FLUTTER Porous wall Transonic wind tunnel
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An Efficient Dynamic Mesh Generation Method for Complex Multi-Block Structured Grid 被引量:3
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作者 Li Ding zhiliang lu Tongqing Guo 《Advances in Applied Mathematics and Mechanics》 SCIE 2014年第1期120-134,共15页
Aiming at a complex multi-block structured grid,an efficient dynamic mesh generation method is presented in this paper,which is based on radial basis functions(RBFs)and transfinite interpolation(TFI).When the object i... Aiming at a complex multi-block structured grid,an efficient dynamic mesh generation method is presented in this paper,which is based on radial basis functions(RBFs)and transfinite interpolation(TFI).When the object is moving,the multi-block structured grid would be changed.The fast mesh deformation is critical for numerical simulation.In this work,the dynamic mesh deformation is completed in two steps.At first,we select all block vertexes with known deformation as center points,and apply RBFs interpolation to get the grid deformation on block edges.Then,an arc-lengthbased TFI is employed to efficiently calculate the grid deformation on block faces and inside each block.The present approach can be well applied to both two-dimensional(2D)and three-dimensional(3D)problems.Numerical results show that the dynamic meshes for all test cases can be generated in an accurate and efficient manner. 展开更多
关键词 Multi-block structured grid mesh deformation radial basis functions transfinite interpolation.
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A Three-Dimensional Gas-Kinetic BGK Scheme for Simulating Flows in Rotating Machinery
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作者 Di Zhou zhiliang lu Tongqing Guo 《Advances in Applied Mathematics and Mechanics》 SCIE 2019年第1期168-196,共29页
This paper focuses on the development and application of a threedimensional gas-kinetic Bhatnagar-Gross-Krook(BGK)method for the viscous flows in rotating machinery.For such flows,a rotating frame of reference is usua... This paper focuses on the development and application of a threedimensional gas-kinetic Bhatnagar-Gross-Krook(BGK)method for the viscous flows in rotating machinery.For such flows,a rotating frame of reference is usually used in formulating the Navier-Stokes(N-S)equations,and there are two major concerns in constructing the corresponding BGK model.One is the change of the convective velocities in the N-S equations,which can be reflected through modification of the gas streaming velocity.The other one is the necessity to account for the effect of the additional Coriolis and centrifugal forces.Here,a specifically-designed acceleration term is added into the modified Boltzmann equation so that the source effects can be naturally included into the gas evolution process and the resulted fluxes.Under the finitevolume framework,the constructed BGK model is locally solved at each cell interface and then the numerical fluxes can be evaluated.When employing the BGK scheme,it is sometimes found that the calculated spatial derivatives of the initial and equilibrium distribution functions are sensitive to the mesh quality especially in complex rotating flow applications,which may significantly influence flux evaluation.Therefore,an improved approach for computing these slopes is adopted,through which the modeling capability for viscous flows is enhanced.For validation,several numerical examples are presented.The computed results show that the present method can be well applied to a wide range of flows in rotating machinery with favorable accuracy. 展开更多
关键词 Gas-kinetic scheme BGK model non-inertial reference frame acceleration term rotating machinery
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