Kirjandus

ABD79
J. H. Argyris, H.-P. Balmer, J. St. Doltsinis, P. C. Dunne, M. Haase, M. Kleiber, G. A. Malejannakis, H. P. Mlejnek, M. Müller, D. W. Scharpf.
Finite element method - the natural approach.
Computer Methods in Applied Mechanics and Engineering, vol. 17-18, pp. 1-106, 1979.

And12
N. Andjelic.
Torsional analysis of open section thin-walled beams. 21.1
Belgrade: FME Transactions, vol. 40, no. 2, pp. 93-97, 2012.

ANS92

ANSYS User's Manual for Revision 5.0. Vol. IV, Theory. P. Kohnke (ed.). Chp. 3: Geometric Nonlinearities, 21.2
pp. 3-1-3-27. Houston, PA: Swanson Analysis Systems, Inc., 1992.

Arg82
J. H. Argyris.
An excursion into large rotations.
Computer Methods in Applied Mechanics and Engineering, vol. 32, no. 1-3, pp. 85-155, 1982.

BC09
O. A. Bauchau, J. I. Craig.
Structural Analysis: With Applications to Aerospace Structures. 21.3
Dordrecht, Heidelberg, London, New York: Springer Verlag, 2009.

BKL13
Z. Brzoska, Z. Kaczkowski, J. Lipka, Z. Olesiak, M. Zyczkowski.
Strength of Structural Elements. 21.4 Studies in Applied Mechanics. Vol. 26.
Elsevier Science Ltd, 2013.

BŠ73
{\twlcyr\cyracc V.\hspace*{2pt}N. Branets, I.\hspace*{2pt}P. Shmyglevski{\u\i}.}
{\twlcyi\cyracc Primenenie kvaternionov v zadachah orientatsii tverdogo tela}.
{\twlcyr\cyracc Mosk\-va: Nauka}, 1973.

Bõt62
{\twlcyr\cyracc D.\hspace*{2pt}V. By{ch}kov.}

{\twlcyi\cyracc Stroitel{\cprime}naya mehanika sterzhnevyh tonkostennyh konstruk{ts}i{\u\i}.} 21.5
{\twlcyr\cyracc Mosk\-va: Gosstro{\u\i}izdat}, 1962.

DK90
L. Damkilde, S. Krenk.
MModels of Thin-Walled Beam Connections. 21.6
Dept. of Building Technology and Structural Engineering, Aalborg University. Engineering Mechanics, no. 3, 1990.

Din11
D. Dinkler.
Grundlagen der Baustatik. Modelle und Berechnungsmethoden für ebene Stabtragwerke. 1. Auflage 2011. 21.7
Vieweg+Teubner Verlag | Springer Fachmedien Wiesbaden GmbH, 2011.

Fil78
{\twlcyr\cyracc A. P. Filin.}

{\twlcyi\cyracc Prikladnaya mehanika tverdogo deformiruemogo tela:} {\twlcyr\cyracc Soprotivlenie materialov
s {\\lq e}lementami teorii sploshnyh sred i stroitel{\cprime}no{\u\i} mehaniki.} {\twlcyr\cyracc Tom} II.
{\twlcyr\cyracc Moskva: Nauka}, 1978.

Gei14
K. Geißler.
Handbuch Brückenbau. 21.8
Berlin: John Wiley & Sons, 2014.

GS94
A. S. Gendy, A. F. Saleeb.
Generalized mixed finite element model for pre- and post-quasistatic buckling response of thin-walled framed structures.
International Journal for Numerical Methods in Engineering, vol. 37, pp. 297-322, 1994.

HIM11
A. F. Hughes, D. C. Iles, A. S. Malik.
Design of Steel Beams in Torsion. In accordance with Eurocodes and the UK National Annexes. 21.9
Ascot, Berkshire: Steel Construction Institute (SCI), 2011.

HM12
M. Horácek, J. Melcher.
Mathematical definitions and experimentally verification of the torsion characteristics of perforated steel beams. 21.10 In: Proc. of the 14th WSEAS International Conference on Mathematical and Computational Methods in Science and Engineering (MACMESE '12), Sliema, Malta September 7-9, 2012.
WSEAS 21.11 Press, 2012, pp. 91-96.

Jür85
A. Jürgenson.
Tugevusõpetus. 21.12 21.13
Tallinn: Valgus, 1985.

KK13
R. Kindmann, U. Krüger.
Stahlbau. Teil 1: Grundlagen. Mit Beispielen nach Eurocode 3. 5. Auflage. 21.14
Berlin: Ernst & Sohn, 2013.

KMPR12
A. Klauson, J. Metsaveer, P. Põdra, U. Raukas.
Tugevusõpetus.
Tallinn: Tallinna Tehnikaülikooli kirjastus, 2012.

Kre09
S. Krenk.
Non-linear Modeling and Analysis of Solids and Structures. 21.15
Cambridge: Cambridge University Press, 2009.

Lah12
A. Lahe.
Ehitusmehaanika. 21.16
Tallinn: Tallinna Tehnikaülikooli kirjastus, 2012.

Lah14
A. Lahe.
The EST Method. Structural Analysis. 21.17
Tallinn: Tallinn University of Technology Press, 2014.

Lah97a
A. Lahe.
The transfer matrix and the boundary element method. 21.18
Proc. Estonian Acad. Sci. Engng., 1997, 3, 1. pp. 3-12.

Lah97b
A. Lahe.
The EST method for the frame analysis.
In: Proc. Tenth Nordic Seminar on Computational Mechanics, October 24-25, 1997. Tallinn: Tallinn University of Technology Press, 1997, pp. 202-205.

Lah98a
A. Lahe.
The EST method for the frame analysis in second order theory.
In: Proc. of the NSCM-11: Nordic Seminar on Computational Mechanics, October 16-17, 1997. Royal Institute of Technology, Department of Structural Engineering, Stockholm, TRITA-BKN. Bulletin 39, Stockholm, 1998, pp. 167-170.

Lah08
A. Lahe.
L oplike elementide meetod. 21.19
Tallinn: Tallinna Tehnikaülikooli kirjastus, 2008.

LH13
J. P. Lebet, M. A. Hirt.
Steel Bridges. Conceptual and Structural Design of Steel and Steel-Concrete Composite Bridges. 21.20
Lausanne: EPFL Press. Distributed by CRC Press, 2013, p. 232.

LR71
Ü. Lepik, L. Roots.
Teoreetiline mehaanika. 21.21
Tallinn: Valgus, 1971.

Loo08
K. Loorits.
Teraskonstruktsioonide arvutus Eurokoodeks 3 järgi. 21.22
Tallinn: Eesti Teraskonstruktsiooniühing, 2008.

MR96
J. Metsaveer, U. Raukas.
Varda sisejõud ja pinged. 21.23
Tallinn: Tallinna Tehnikaülikool, mehaanikainstituut, 1996.

MW03
D. B. Moore, F. Wald (eds.).
Design of Structural Connections according to Eurocode 3 - Frequently Asked Questions. 21.24 21.25
Watford, UK: Building Research Establishment Ltd, 2003.

Pra74
W. Prager.
Introduction to Structural Optimization. CISM Lecture Notes. Vol. 212.
Wien: Springer Verlag, 1974.

BP68

{\twlcyi\cyracc Prochnost{\cprime}, usto{\u\i}chivost{\cprime}, kolebaniya.} {\twlcyr\cyracc Spravochnik v treh tomah. \mbox{Tom 1.}
Pod red. I.\hspace*{2pt}A. Birgera i Ya.\hspace*{2pt}G. Panovko.}
{\twlcyr\cyracc Moskva: Mashinostroenie}, 1968.

RB86
C. C. Rankin, F. A. Brogan.
An element independent corotational procedure for the treatment of large rotations.
Journal of Pressure Vessel Technology - ASME, vol. 108, no. 2, pp. 165-174, 1986.

Sad63
{\twlcyr\cyracc S.\hspace*{2pt}Ya. Sad{\\lq e}tov.}

{\twlcyi\cyracc Ras{ch}et tonkostennyh ster{zh}ne\u{\i} otkrytogo profilya.}
{\twlcyr\cyracc Moskva: Rosvuzizdat}, 1963.

Smi75
{\twlcyr\cyracc A.\hspace*{2pt}F. Smirnov.}
{\twlcyi\cyracc Soprotivlenie materialov.}
{\twlcyr\cyracc Moskva: Vys{sh}aya {sh}kola}, 1975.

Ste59
{\twlcyr\cyracc V.\hspace*{2pt}V. Stepanov.}

{\twlcyi\cyracc Kurs differentsial{\cprime}nyh uravneni\u{i}.}
{\twlcyr\cyracc Moskva: Gos. izd-vo fiziko-matematichesko\u{i} literatury}, 1959.

Teh05
L. H. Teh.
Spatial rotation kinematics and flexural-torsional buckling. 21.26
University of Wollongong, Research Online. 2005.

VN87
T. A. Vernon, Y. Nadeau.
Thin-Walled Beam Theories and Their Applications in the Torsional Strength Analysis of Ship Hulls. ADA178296 Technical Memorandum 87/202. 21.27 21.28
Canada: Defence Research Establishment Atlantic, 1987.

Vla59
{\twlcyr\cyracc V.\hspace*{2pt}Z. Vlasov.}
{\twlcyi\cyracc Tonkostennye uprugie ster{zh}ni.} {\twlcyr\cyracc 2-oe izdanie.} 21.29
{\twlcyr\cyracc Moskva: Gos. izd-vo fiziko-matematichesko\u{i} literatury}, 1959.

WE98
W. Wagner, G. Erlhof.
Praktische Baustatik. Teil 2. 15. Auflage. 21.30
Stuttgart: B. G. Teubner, 1998.

YM86
Y.-B. Yang, W. McGuire.
Joint rotation and geometric nonlinear analysis.
ASCE Journal of Structural Engineering, vol. 112, no. 4, pp. 879-905, 1986.

YSM00
A. Yavari, S. Sarkani, E. T. Moyer, Jr.
On applications of generalized functions to beam bending problems. 21.31
International Journal of Solids and Structures, vol. 37, no. 40, pp. 5675-5705, 2000.

Zie77
H. Ziegler.
Principles of Structural Stability. 2nd edition.
Basel: Birkhäuser, 1977.



andres
2016-04-15