Xinxing Lin

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Common Coauthors
Commonly Cited References
Action Title Year Authors # of times referenced
+ PDF Chat A novel design of an isochronous integration [<i>i</i>Integration] framework for first/second order multidisciplinary transient systems 2014 Masao Shimada
Siti Ujila Masuri
Kumar K. Tamma
1
+ PDF Chat A robust composite time integration scheme for snap-through problems 2015 Yenny Chandra
Yang Zhou
Ilinca Stanciulescu
Thomas Eason
S. Michael Spottswood
1
+ Design, analysis, and synthesis of generalized single step single solve and optimal algorithms for structural dynamics 2003 Xiangmin Zhou
Kumar K. Tamma
1
+ An alpha modification of Newmark's method 1980 W. L. Wood
M. Bossak
O. C. Zienkiewicz
1
+ The time dimension: A theory towards the evolution, classification, characterization and design of computational algorithms for transient/ dynamic applications 2000 Kumar K. Tamma
Xiangmin Zhou
D. Sha
1
+ An explicit time integration scheme for the analysis of wave propagations 2013 Gunwoo Noh
Klausā€JĆ¼rgen Bathe
1
+ Conserving energy and momentum in nonlinear dynamics: A simple implicit time integration scheme 2006 Klausā€JĆ¼rgen Bathe
1
+ A Time Integration Algorithm for Structural Dynamics With Improved Numerical Dissipation: The Generalized-Ī± Method 1993 Jaeung Chung
Gregory M. Hulbert
1
+ Error and extrapolation of a compact LOD method for parabolic differential equations 2010 Yuan-Ming Wang
1
+ On a composite implicit time integration procedure for nonlinear dynamics 2005 Klausā€JĆ¼rgen Bathe
Mirza Moiz Baig
1
+ Design of order-preserving algorithms for transient first-order systems with controllable numerical dissipation 2011 Siti Ujila Masuri
Mathieu Sellier
Xiangmin Zhou
Kumar K. Tamma
1
+ Algorithms by design with illustrations to solid and structural mechanics/dynamics 2006 Xiangmin Zhou
Kumar K. Tamma
1
+ Extension of LMS formulations for Lā€stable optimal integration methods with U0ā€“V0 overshoot properties in structural dynamics: the levelā€symmetric (LS) integration methods 2007 Veniamin Aleksandrovich Leontiev
1
+ PDF Chat Improved numerical dissipation for time integration algorithms in structural dynamics 1977 Hans M. Hilber
Thomas J.R. Hughes
Robert L. Taylor
1
+ A generalized-Ī± method for integrating the filtered Navierā€“Stokes equations with a stabilized finite element method 2000 Kenneth E. Jansen
Christian H. Whiting
Gregory M. Hulbert
1
+ Accuracy of a composite implicit time integration scheme for structural dynamics 2016 Jie Zhang
Yinghua Liu
Donghuan Liu
1
+ A novel sub-step composite implicit time integration scheme for structural dynamics 2016 Weibin Wen
Kai Wei
Hongshuai Lei
Shengyu Duan
Daining Fang
1
+ An improved implicit time integration algorithm: The generalized composite time integration algorithm 2017 Wooram Kim
Su Y. Choi
1
+ Generalized heat conduction model in moving media emanating from Boltzmann Transport Equation 2017 Tao Xue
Xiaobing Zhang
Kumar K. Tamma
1
+ Optimization of a class of composite method for structural dynamics 2018 H.M. Zhang
Yufeng Xing
1
+ The Bathe time integration method revisited for prescribing desired numerical dissipation 2018 Mohammad Mahdi Malakiyeh
Saeed Shojaee
Klausā€JĆ¼rgen Bathe
1
+ The Bathe time integration method with controllable spectral radius: The Ļāˆž-Bathe method 2018 Gunwoo Noh
Klausā€JĆ¼rgen Bathe
1
+ An alternative to the Bathe algorithm 2018 Jinze Li
Kaiping Yu
1
+ A unified computational methodology for dynamic thermoelasticity with multiple subdomains under the GSSSS framework involving differential algebraic equation systems 2019 D. Maxam
Rohit R. Deokar
Kumar K. Tamma
1
+ A novel family of controllably dissipative composite integration algorithms for structural dynamic analysis 2019 Jinze Li
Kaiping Yu
Xiangyang Li
1
+ On the construction of a type of composite time integration methods 2019 Yufeng Xing
Yi Ji
Huimin Zhang
1
+ For direct time integrations: A comparison of the Newmark and<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" altimg="si1.svg"><mml:msub><mml:mi>Ļ</mml:mi><mml:mi>āˆž</mml:mi></mml:msub></mml:math>-Bathe schemes 2019 Gunwoo Noh
Klausā€JĆ¼rgen Bathe
1
+ An analysis of implicit time integration schemes for wave propagations 2020 S.H. Kwon
Klausā€JĆ¼rgen Bathe
Gunwoo Noh
1
+ An improved implicit method with dissipation control capability: The simple generalized composite time integration algorithm 2020 Wooram Kim
1
+ An optimized three-sub-step composite time integration method with controllable numerical dissipation 2020 Yi Ji
Yufeng Xing
1
+ Design/analysis of GEGS4-1 time integration framework with improved stability and solution accuracy for first-order transient systems 2020 Yazhou Wang
D. Maxam
Kumar K. Tamma
Guoliang Qin
1
+ An accurate and simple universal a posteriori error estimator for GS4-1 framework: Adaptive time stepping in first-order transient systems 2020 Yazhou Wang
Tao Xue
Kumar K. Tamma
D. Maxam
Guoliang Qin
1
+ New insights into the Ī²1/Ī²2-Bathe time integration scheme when L-stable 2020 Mohammad Mahdi Malakiyeh
Saeed Shojaee
Saleh Hamzeheiā€Javaran
Klausā€JĆ¼rgen Bathe
1
+ Generalized Petrov-Galerkin time finite element weighted residual methodology for designing high-order unconditionally stable algorithms with controllable numerical dissipation 2021 Yazhou Wang
Kumar K. Tamma
Tao Xue
D. Maxam
Guoliang Qin
1
+ An Overview of High-Order Implicit Algorithms for First-/Second-Order Systems and Novel Explicit Algorithm Designs for First-Order System Representations 2021 Yazhou Wang
Kumar K. Tamma
D. Maxam
Tao Xue
Guoliang Qin
1
+ A three-time-level a posteriori error estimator for GS4-2 framework: Adaptive time stepping for second-order transient systems 2021 Yazhou Wang
Tao Xue
Kumar K. Tamma
D. Maxam
Guoliang Qin
1
+ Selecting the load at the intermediate time point of the Ļāˆž-Bathe time integration scheme 2021 S.H. Kwon
Klausā€JĆ¼rgen Bathe
Gunwoo Noh
1
+ Directly self-starting higher-order implicit integration algorithms with flexible dissipation control for structural dynamics 2021 Jinze Li
Rui Zhao
Kaiping Yu
Xiangyang Li
1
+ On the application of the GS4-1 framework for fluid dynamics and adaptive time-stepping via a universal <i>A</i>-posteriori error estimator 2022 Yazhou Wang
Ningning Xie
Likun Yin
Tong Zhang
Xuelin Zhang
Shengwei Mei
Xiaodai Xue
Kumar K. Tamma
1
+ PDF Chat Adaptive, second-order, unconditionally stable partitioned method for fluidā€“structure interaction 2022 Martina Bukač
Cătălin Trenchea
1
+ On an accurate A-posteriori error estimator and adaptive time stepping for the implicit and explicit composite time integration algorithms 2022 Yazhou Wang
Tong Zhang
Xuelin Zhang
Shengwei Mei
Ningning Xie
Xiaodai Xue
Kumar K. Tamma
1
+ Time splitting ratio in the Ļāˆž-Bathe time integration method for higher-order accuracy in structural dynamics and heat transfer 2022 Bokyu Choi
Klausā€JĆ¼rgen Bathe
Gunwoo Noh
1