Search Results - Explicit numerical integration algorithm

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  1. 1

    Response to Maxam and Tamma's discussion (EQE‐18‐0306) to Kolay and Ricles's paper, “Development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation” by Kolay, Chinmoy, Ricles, James M.

    ISSN: 0098-8847, 1096-9845
    Published: Bognor Regis Wiley Subscription Services, Inc 10.04.2019
    “… “Development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation.”…”
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    Journal Article
  2. 2

    Discussion of “development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation” by Chinmoy Kolay and James M. Ricles by Maxam, Dean J., Tamma, Kumar K.

    ISSN: 0098-8847, 1096-9845
    Published: Bognor Regis Wiley Subscription Services, Inc 10.04.2019
    “…Summary The time integration method proposed by Kolay and Ricles, which was claimed to be both explicit and unconditionally stable, is shown to be implicit in the sense of requiring the factorization…”
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  3. 3

    Two third-order explicit integration algorithms with controllable numerical dissipation for second-order nonlinear dynamics by Li, Jinze, Yu, Kaiping, Zhao, Rui

    ISSN: 0045-7825
    Published: Amsterdam Elsevier B.V 15.05.2022
    “…No literature has reported an explicit integration algorithm to achieve controllable numerical dissipation and identical third-order accuracy simultaneously…”
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  4. 4

    A semi-explicit integration algorithm with controllable numerical damping for real-time hybrid simulation by Lai, Zhenfeng, Liu, Yanhui, Tan, Ping, Peng, Jinqiang, Zhou, Fulin

    ISSN: 2352-0124, 2352-0124
    Published: Elsevier Ltd 01.04.2025
    Published in Structures (Oxford) (01.04.2025)
    “… This study presents a single-step semi-explicit integration algorithm SSE-α, designed to enhance the precision and robustness of numerical computations in RTHS…”
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  5. 5

    Development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation by Kolay, Chinmoy, Ricles, James M.

    ISSN: 0098-8847, 1096-9845
    Published: Chichester Blackwell Publishing Ltd 25.07.2014
    “… Based on this analysis, a one‐parameter family of explicit direct integration algorithms with controllable numerical energy dissipation, referred to as the explicit KR‐α…”
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  6. 6

    Discussion of paper 'Development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation' by Chinmoy Kolay and James M. Ricles, Earthquake Engineering and Structural Dynamics 2014; 43:1361-1380 by Chang, Shuenn-Yih

    ISSN: 0098-8847, 1096-9845
    Published: Bognor Regis Blackwell Publishing Ltd 01.02.2015
    “…‐by‐step integration because it simultaneously integrates unconditional stability, explicit formulation, and numerical dissipation together…”
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  7. 7

    An improved explicit integration algorithm with controllable numerical dissipation for structural dynamics by Yang, Chao, Wang, Xi, Li, Qiang, Xiao, Shoune

    ISSN: 0939-1533, 1432-0681
    Published: Berlin/Heidelberg Springer Berlin Heidelberg 01.11.2020
    Published in Archive of applied mechanics (1991) (01.11.2020)
    “…In order to acquire efficient algorithms for complicated problems in structural dynamics, an improved integration algorithm with controllable numerical dissipation is developed based on a two-step…”
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  8. 8

    Discussion of paper 'Development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation' by Chinmoy Kolay and James M. Ricles, Earthquake Engineering and Structural Dynamics 2014; 43:1361-1380 by Chang, Shuenn-Yih

    ISSN: 0098-8847, 1096-9845
    Published: Bognor Regis Wiley Subscription Services, Inc 10.07.2015
    “…SUMMARY It seems that the explicit KR-[alpha] method (KRM) is promising for the step-by-step integration because it simultaneously integrates unconditional stability, explicit formulation, and numerical dissipation together…”
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    Three-dimensional train–track–bridge coupled dynamics model based on the explicit finite element method by Zeng, Zhi-Ping, Liu, Fu-Shan, Wang, Wei-Dong

    ISSN: 0267-7261, 1879-341X
    Published: Barking Elsevier Ltd 01.02.2022
    “… Using explicit numerical methods and coupling the subsystems by the load term on the right end of the dynamic equations, repetitive iteration in the dynamic response solution process was avoided…”
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  12. 12

    Two families of dual-explicit model-based integration algorithms with controllable numerical damping for structural dynamic problems by Fu, Bo, Lavery Ilunga, Stephane, Chen, Jin

    ISSN: 0888-3270, 1096-1216
    Published: Elsevier Ltd 01.09.2024
    Published in Mechanical systems and signal processing (01.09.2024)
    “… of dual-explicit model-based integration algorithms for solving linear and nonlinear dynamic problems…”
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  13. 13

    Discussion of Paper 'Improved Explicit Integration Algorithms for Structural Dynamic Analysis with Unconditional Stability and Controllable Numerical Dissipation' by Chinmoy Kolay & James M. Ricles, Journal of Earthquake Engineering 2017, http://www.tandfonline.com/loi/ueqe20 by Chang, Shuenn-Yih, Veerarajan, S., Wu, Tsui-Huang

    ISSN: 1363-2469, 1559-808X
    Published: Abingdon Taylor & Francis 06.12.2021
    Published in Journal of earthquake engineering : JEE (06.12.2021)
    “…Although it was claimed that the MKR-α method can improve the overshoot and nonlinear stability characteristics of the KR-α method, it seems that it still has…”
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    Comparative study of numerical explicit time integration algorithms by Rio, Gérard, Soive, Anthony, Grolleau, Vincent

    ISSN: 0965-9978
    Published: Elsevier Ltd 01.04.2005
    Published in Advances in engineering software (1992) (01.04.2005)
    “…The aim of the present research is to make a comparative study of numerical explicit time integration algorithms used in the domain of shock and impact…”
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  16. 16

    Improved Explicit Integration Algorithms for Structural Dynamic Analysis with Unconditional Stability and Controllable Numerical Dissipation by Kolay, Chinmoy, Ricles, James M.

    ISSN: 1363-2469, 1559-808X
    Published: Abingdon Taylor & Francis 28.05.2019
    Published in Journal of earthquake engineering : JEE (28.05.2019)
    “…) direct integration algorithms featuring second-order accuracy, unconditional stability for linear systems, and controllable numerical dissipation is developed for solving inertial problems…”
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  17. 17

    Suite of meshless algorithms for accurate computation of soft tissue deformation for surgical simulation by Joldes, Grand, Bourantas, George, Zwick, Benjamin, Chowdhury, Habib, Wittek, Adam, Agrawal, Sudip, Mountris, Konstantinos, Hyde, Damon, Warfield, Simon K., Miller, Karol

    ISSN: 1361-8415, 1361-8423, 1361-8423
    Published: Netherlands Elsevier B.V 01.08.2019
    Published in Medical image analysis (01.08.2019)
    “…•Meshless algorithms for the computation of soft tissue deformation for surgical simulation…”
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  18. 18

    A coupled time integration algorithm for discontinuous deformation analysis using the numerical manifold method by Qu, Xiaolei, Ma, Guowei, Qi, Chengzhi, Dyskin, Arcady V., Xia, Chen

    ISSN: 0363-9061, 1096-9853
    Published: Bognor Regis Wiley Subscription Services, Inc 10.06.2020
    “…‐domain coupled explicit‐implicit time integration algorithm is proposed. A subdomain partition algorithm based on a super manifold element is developed for the numerical manifold method to simulate dynamic motions of blocky rock mass…”
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  19. 19

    Retracted: Discussion of paper ‘Development of a family of unconditionally stable explicit direct integration algorithms with controllable numerical energy dissipation’ by Chinmoy Kolay and James M. Ricles, Earthquake Engineering and Structural Dynamics 2014; 43:1361–1380 by Chang, Shuenn‐Yih

    ISSN: 0098-8847, 1096-9845
    Published: 10.07.2015
    “…SUMMARY It seems that the explicit KR‐α method (KRM) is promising for the step‐by‐step integration because it simultaneously integrates unconditional stability, explicit formulation, and numerical dissipation together…”
    Get full text
    Journal Article
  20. 20

    Explicit numerical integration algorithm for a class of non-linear kinematic hardening model by Wang, C. H., Hu, W., Sawyer, J. P. G.

    ISSN: 0178-7675, 1432-0924
    Published: Heidelberg Springer Nature B.V 01.08.2000
    Published in Computational mechanics (01.08.2000)
    “…An explicit updating algorithm has been developed for the Armstrong–Frederick family of non-linear kinematic hardening model, based on the trapezoidal and the backward Euler integration method…”
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