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Computational Mechanics 1991: Vol 8 Table of Contents PDF

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Computational Miechanics Solids, Fluids, Fracture, Transport Phenomena Multi-Body Dynamics and Variational Methods Vol. 8 - 1991 Editors-in-Chief S. N. Atluri G. Yagawa Atlanta Tokyo Springer International Computational Mlechanics The purpose of this journal is to report original research of scholarly value and of reasonable permanence in those areas of computational mechanics which involve and enrich the rational application of mechanics, mathematics, and numerical methods in the practice of modern engineering. The scope of the research reported in this journal will include theoretical and computational methods, and their rational application, in: (a) solid and structural mechanics, multi-body system dynamics, constitutive modeling, inelastic and finite deformation response, structural control; (b) fluid mechanics and fluids engineering, compressible and incompressible flows, and aerodynamics; (c) fracture mechanics and structural integrity; (d) transport phenomea and heat transfer; and (e) modern variational methods in mechanics, in general. Editors-in-Chief S.N. Atluri, Center for the Advancement of Computational Mechanics, School of Civil Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA, Tel. (404) 894-2758, Telex 542 507 GTRC OCA ATL G. Yagawa, Department of Nuclear Engineering, The Faculty of Engineering, The University of Tokyo, Bunkyo-ku, Tokyo, 113 Japan, Tel. (03) 812-2111 Senior Advisors I. Babuska, College Park, MD - A. S. Kobayashi, Seattle, WA - Th. H. H. Pian, Cambridge, MA Managing Editors W.-H. Chen, Hsinchu H. A. Mang, Vienna Y. Seguchi, Osaka Y-K. Cheung, Hong Kong L. Morino, Rome J.C. Simo, Stanford, CA H. Abé, Sendai P.G. Ciarlet, Paris A.K. Noor, Hampton, VA E. Stein, Hannover T. Belytschko, Evanston, IL M. Geradin, Liége E Onate, Barcelona R.I. Tanner, Sydney P.G. Bergan, Hovik N.S. Khot, Wright Patterson S.V. Patankar, Minneapolis, MN Y. Yoshida, Tokyo D.E. Beskos, Patras AFB, OH C.V. Ramakrishnan, New Delhi D-C. Zhu, Beijing F. Brezzi, Pavia M. Kleiber, Warsaw A. Samuelsson, Goteborg Editorial Advisory Board Q-H. Du, Beijing S.W. Lee, College Park, MD R. Rannacher, Saarbriicken G. Gallavotti, Rome C-X. Li, Beijing F.J. Rizzo, Ames, IA A.K. Amos, Washington, DC M. Hafez, Davis, CA R. McMeeking, Santa Barbara, CA W. Schiehlen, Stuttgart S. Aoki, Tokyo R. T. Haftka, Blacksburg, VA T. Miyoshi, Tokyo R. Schwertassek, Oberpfaffenhofen D.J. Arnold, State College, PA P. Harbord, Berlin S. Mukherjee, Ithaka, NY C.F. Shih, Providence, RI J.S. Arora, lowa City, IA G. C. Hsiao, Newark, DE T. Mura, Evanston, IL R.L. Spilker, Troy, NY R.S. Barsoum, Watertown, MA R. Jones, Melbourne A. Needleman, Providence, RI M. Tanaka, Nagano H. Bufler, Stuttgart M.F. Kanninen, San Antonio, TX H. Ohtsubo, Toyko L-M. Tang, Dalian H.D. Bui, Paris M. Kawahara, Tokyo L. Olson, Ann Arbor, MI T.E. Tezduyar, Minneapolis, MN T. Y. Chang, Akron, OH F. Kikuchi, Tokyo P.M. Pinsky, Stanford, CA P. Tong, Cambridge, MA D-P. Chen, Emei N. Kikuchi, Ann Arbor, MI R. Piva, Rome S. Valliappan, Sydney M.A. Crisfield, Berkshire F.G. Kollmann, Darmstadt Y. Rajapakse, Arlington, VA W. Wendland, Darmstadt T.A. Cruse, San Antonio, TX W.B. Kratzig, Bochum 1.S. Raju, Hampton, VA W. Wunderlich, Bochum E.H. Dill, Piscataway, NJ R.D. Krieg, Albuquerque, NM K.N. Raju, Bangalore L-A. Ying, Beijing Manuscripts: Manuscripts should be sent as per instructions on the inside works, or resale. 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Salem, MA 01970, USA, stating the ISSN 0178-7675, the volume, and the © Springer-Verlag Berlin Heidelberg 1991 — Printed in Germany. first and last page number of each article copied. The copyright owner's Springer-Verlag GmbH & Co. KG, W-1000 Berlin 33, FRG. consent does not include copying for general distribution, promotion, new Table of contents Advani, S. H.: see Lee, T. S. et al. 111 Karamanos, S. A.: see Papadrakakis, M. 235 Arora, J. S.: see Jao, S. Y. et al. 25 Kratzig, W. B., Li, L. Y., Nawrotzki, P.: Stability conditions Atluri, S. N.: see Chien, C. C. et al. 57 for non-conservative dynamical systems 145 Krishna, L.: see Padovan, J. et al. 205 Balakrishnan, A. V.: Combined structure-controls-integrated Kooi, B. W.: On the mechanics of the modern working-recurve optimization using distributed parameter models 125 bow 291 Banda, S. S.: see Heise, S. A. et al. 305 Bennett, J. G.: see Girrens, S. P. 399 Lagoudas, D. C., Gavazzi, A. C., Nigam, H.: Elastoplastic Bruno, R.: see Milman, M. et al. 1 behavior of metal matrix composites based on incremental plasticity and the Mori~Tanaka averaging scheme 193 Carini, A., Diligenti, M., Maier, G.: Boundary integral equa- Lee, J. K.: see Lee, T. S. et al. 111 tion analysis in linear viscoelasticity: variational and Lee, S. M.: see Sheu, T. W. H. et al. 365 saddle point formulations 87 Lee, T. S., Advani, S. H., Lee, J. K., Moon, H.: A fixed grid Chang, T. Y. P., Saleeb, F. A., Li, G.: Large strain analysis of finite element method for nonlinear diffusion problems rubber-like materials based on a perturbed Lagrangian with moving boundaries 111 variational principle 221 Li, G.: see Chang, T. Y. P. et al. 221 Chien, C. C., Rajiyah, H., Atluri, S. N.: On the evaluation of Li, L. Y.: see Kratzig, W. B. et al. 145 hyper-singular integrals arising in the boundary element Li, Y.-N., Liang, R. Y., Wang, D.-J.: On convergence rate of method for linear elasticity 57 finite element eigenvalue analysis with mass lumping by Chinosi, C., Scapolla, T., Sacchi, G.: A hierarchic family of C' nodal quadrature 249 finite elements for 4" order elleptic problems 181 Liu, S. W., Datta, S. K.: Transient response of ground surface Chiou, J. Y. B.: see Sheu, T. W. H. et al. 365 due to incident SH waves 99 Coleman, C. J.: see Zheng, R. et al. 71 Liang, R. Y.: see Li, Y.-N. et al. 249 Datta, S. K.: see Liu, S. W. 99 Maier, G.: see Carini, A. et al. 87 Diligenti, M.: see Carini, A. et al. 87 Milman, M., Salama, M., Scheid, R. E., Bruno, R., Gibson, J. S.: Dong, Z. F., Ebadian, M. A.: Convective heat transfer in the Combined control-structural optimization 1 entrance region of a rectangular duct with two indented Mishra, K. L., Thakur, O. P., Thakur, K. P.: Mechanical sides 269 stability of iron under hydrostatic stresses 343 Moon, M.: see Lee, T. S. et al. 111 Ebadian, M. A.: see Dong, Z. F. 269 Eldred, L. B.: see Kapania, R. K. 173 Na, Y., Yoo, J. Y.: A finite volume technique to simulate the Eley, J. A., Fleeter, S.: Oscillating cascade unsteady aero- flow ofa viscoelastic fluid 43 dynamics including separated flow effects 383 Natke, H. G.: Error localization within spatially finite-dimen- sional mathematical models. A review of methods and the Fleeter, S.: see Eley, J. A. 383 application of regularization techniques 153 Nawrotzki, P.: see Kratzig, W. B. et al. 145 Gavazzi, A. C.: see Lagoudas, D.C. et al. 193 Nigam, H.: see Lagoudas, D.C. et al. 193 Gellert, M.: see Harbord, R. 19 Gibson, J. S.: see Milman, M. et al. 1 Padovan, J., Krishna, L., Guo, Y. H.: Partitioned multiply Girrens, S. P., Bennett, J. G.: Thermomechanically driven scaled pseudo conjugate gradient schemes 205 mass diffusion around elliptical notches 399 Papadrakakis, M., Karamanos, S. A.: A simple and efficient Glaister, P.: A shock capturing scheme for steady, super- solution method for the limit elasto—plastic analysis of critical, free-surface flow 135 plane frames 235 Glaister, P.: An algorithm for the shallow water equations Phan-Thein, N.: see Zheng, R. et al. 71 with body fitted meshes 313 Phan-Thien, N.: see Jin, H. et al. 409 Guo, Y. H.: see Padovan, J. et al. 205 Rajiyah, H.: see Chien, C. C. et al. 57 Haddow, J. B.: see Wegner, J. L. et al. 355 Harbord, R., Gellert, M.: A simple least-squares method for Sacchi, G.: see Chinosi, C. et al. 181 FE analysis of the Navier-Stokes problem 19 Salama, M.: see Milman, M. et al. 1 Heise, S. A., Banda, S. S., Yeh, H.-H: Robust control of a Saleeb, F. A.: see Chang, T. Y. P. et al. 221 flexible space structure in the presence of parameter varia- Scapolla, T.: see Chinosi, C. et al. 181 tions and unmodelled dynamics 305 Sheu, T. W. H. et al.: A non-oscillating solution technique for Hill, J.M.: see Tordesillas, A. A. 257 skew upwind and QUICK-family schemes 365 Holzapfel, G. A.: Hermitian-method for the nonlinear analysis Scheid, R. E.: see Milman, M. et al. 1 of arbitrary thin shell structures 279 Soric¢, J.: Elastic buckling of internally pressurized imperfect torispherical shell 161 Jao, S. Y., Arora, J. S., Wu, H. C.: An optimization approach Suh, I. G.: see Tosaka, N. 331 for material-constant determination for the endochronic constitutive model 25 Tanner, R. L.: see Jin, H. et al. 409 Jiang, L.: see Wegner, J. L. et al. 355 Thakur, K. P.: see Mishra, K. L. et al. 343 Jin, H. et al.: A finite element analysis of the flow past a sphere Thakur, O. P.: see Mishra, K. L. et al. 343 in a cylindrical tube: PTT fluid model 409 Tordesillas, A. A., Hill, J. M.: Three-dimensional frictionless contact between layered elastic bodies and incorporating Kapania, R. K., Eldred, L. B.: Solution of nonlinear partial sharp edges 257 differential equations using the Chebyshev spectral Tosaka, N., Suh, I. G.: Boundary element analysis of dynamic method 173 coupled thermoelasticity problems 331 IV Computational Mechanics 8 (1991) Vainshtok, V. A.: Some applications of the weight functions Yang, K. O.: see Sheu, T. W. H. et al. 365 theory to the analysis of cracks 319 Yeh, H.-H.: see Heise, S. A. et al. 305 Yoo, J. Y.: see Na, Y. 43 Wang, D.-J.: see Li, Y.-N. et al. 249 Wegner, J. L., Jiang, L., Haddow, J. B.: Application of a Zheng, R., Phan-Thien, N., Coleman, C. J.: A boundary ele- second-order Godunov-type finite difference scheme to a ment approach for non-linear boundary-value problems 71 nonlinear elastodynamic problem 355 Wu, H. C.: see Jao, S. Y. et al. 25 Announcements 354

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