[1] | P. L. Pasternak. On a New Method of Analysis of an Elastic Foundation by Means of Two Foundation Constants. Gosudarstvennoe Izdatelstvo Literaturi po Stroitelstvu I Arkhitekture, Moscow, 1954. Russian. |
[2] | Vladimír Kolář and Ivan Němec. Modeling of Soil-Structure Interaction. Elsevier Science Publishers with Academica Prague, Amsterdam, edition = 2. 1989. |
[3] | Vladimír Kolář et al. Kurs für Statiker von Gründungsbauwerken und Erdkörpern. Haus der Technik, Ostrau, 1983. Czech. |
[4] | Ivan Němec and Vladimír Kolář. Finite Element Analysis of Structures - Principles and Praxis. Shaker Verlag, Aachen, 2010. |
[5] | Barth, C., & Rustler, W. (2013). Finite Elemente in der Baustatik-Praxis (2nd ed.). Berlin: Beuth. |
[6] | Vladimír Kolář et al. Bemessung von zwei- und dreidimensionalen Strukturen mit FEM. Springer-Verlag, New York / Wien, 1975. Chapters 1 (1D element) and 6 (variational principle) |
[7] | Vladimír Kolář and Ivan Němec. Finite Element Analysis of Structures. United Nations Development Program, Economic Com. for Europe, Workshop on CAD Techniques, Prague - Geneva, 1984. |
[8] | Eduardo N. Dvorkin and Klaus-Jürgen Bathe. A continuum mechanics based four-node shell element for general non-linear analysis. Engineering Computations, 1, 1984. |
[9] | P. G. Bergan. Finite Elements Based on Energy Orthogonal Functions. International Journal for Numerical Methods in Engineering, 15, 1980. |
[10] | P. G. Bergan and M. K. Nygård. Finite Elements With Increased Freedom in Choosing Shape Functions. International Journal for Numerical Methods in Engineering, 20, 1984. |
[11] | P. G. Bergan and Carlos A. Felippa. A Triangular Membrane Element With Rotational Degrees of Freedom. Computer Methods in Applied Mechanics and Engineering, 50, 1985. |
[12] | Olgierd Cecil Zienkiewicz. The Finite Element Method in Engineering Science. Mc Graw-Hill, London edition = 3, 1979. Chapter 18 - 19 (Nonlinear Problems). |
[13] | I. Sevčík. 3D Finite Elements with Rotational Degrees of Freedom. FEM Consulting s.r.o, Brno. |
[14] | S. Timoshenko and S. Woinowski-Krieger. Theory of Plates and Shells. McGraw-Hill, New York, edition = 2. 1959. |
[15] | Olgierd Cecil Zienkiewicz and Yau Kai Cheung. The Finite Element Method in Structural and Continuum Mechanics. McGraw-Hill, New York, London, 1967. |
[16] | Vladimír Kolář et al. Berechnung von Flächen- und Raumtragwerken nach der Methode der finiten Elemente. SMTL Prag, 1972. Czech. |
[17] | Vladimír Kolář et al. Berechnung von Flächen- und Raumtragwerken nach der Methode der finiten Elemente. Springer, Wien, New York, 1975. |
[18] | Klaus Stiglat and Herbert Wippel. Massive Platten. Betonkalender, 1, 1989. |
[19] | Fritz Czerny. Tafeln für Rechteckplatten. Betonkalender, 1, 1990. |
[20] | Walter Wunderlich et al. Modellierung und Berechnung von Deckenplatten mit Unterzügen. Bauingenieur, 69, 1994. |
[21] | Emil Grasser and Gerd Thielen. Hilfsmittel zur Berechnung der Schnittgrößen und Formänderungen von Stahlbetontragwerken nach DIN 1045. Deutscher Ausschuss für Stahlbeton, 1978. |
[22] | Emil Grasser and Karl Kordina and Ulrich Quast. Bemessung von Beton- und Stahlbetonbauteilen nach DIN 1045. Deutscher Ausschuss für Stahlbeton, 1979. |
[23] | Vladimír Kolář and Ivan Němec. Contact stress and settlement in the structure-soil interface. Acadamia Prag, 1991. Czech. |
[24] | Christian Petersen. Stahlbau. Vieweg & Sohn, Wiesbaden, 1988. |
[25] | Klaus-Jürgen Bathe. Finite Element Procedures. Prentice Hall, 1996. |
[26] | Th. Baumann. Zur Frage der Netzbewehrung von Flächentragwerken. Der Bauingenieur, 47, 1972. |
[27] | Jörg Schlaich and Kurt Schäfer. Konstruieren im Stahlbetonbau. Betonkalender, 1993. |
[28] | Fritz Leonhardt. Vorlesungen über Massivbau, volume 6. Springer, Berlin, Heidelberg, New York, 1979. |
[29] | Beton und Stahlbeton, Bemessung und Ausführung. In . |
[30] | DIN 1045-1: Concrete, reinforced and prestressed concrete structures - Part 1: Design and construction. Beuth Verlag GmbH, Berlin, 2001. |
[31] | DIN 18800 (11.90) Steel structures - Part 1: Design and construction. Beuth Verlag GmbH, Berlin, 2008. |
[32] | DIN 18800 (11.90) Steel structures - Part 2: Stability - Buckling of bars and skeletal structures. Beuth Verlag GmbH, Berlin, 2008. |
[33] | Oswald Klingmuller and Michael Lawo and Georg Thierauf. Stabtragwerke, Matrizenmethoden der Statik und Dynamik. Vieweg & Sohn, Wiesbaden, 1983. |
[34] | Vladimír Koloušek. Dynamik der Baukonstruktionen. VEB-Verlag f. Bauwesen, Berlin, 1962. |
[35] | Erwin Krämer. Maschinendynamik. Springer, Berlin, 1984. |
[36] | Theodor Lehmann. Elemente der Mechanik IV: Schwingungen, Variationsprinzipe. Vieweg & Sohn, Wiesbaden, 1979. |
[37] | Janusz Lipinski. Fundamente und Tragkonstruktionen für Maschinen. Bauverlag, Wiesbaden, 1972. |
[38] | Hans Lorenz. Grundbau-Dynamik. Springer, Berlin, 1960. |
[39] | F. P. Müller. Baudynamik. Betonkalender, 1978. |
[40] | Hans-Günter Natke. Baudynamik. B. G. Teubner, Stuttgart, 1989. |
[41] | Witold Nowacki. Baudynamik. Springer, Berlin, 1974. |
[42] | Rainer Flesch. Baudynamik praxisgerecht. Bauverlag, Wiesbaden, Berlin, 1993. |
[43] | Meskouris, K. (1999). Baudynamik, Modelle, Methoden, Praxisbeispiele. Berlin: Ernst & Sohn. |
[44] | Richard Bareš. Tabellen für die Berechnung von Platten und Wänden. SNTL, Prag, 1989b. |
[45] | Paulo José Lourenço. Computational Strategies for Masonry Structures. Delft University Press, 1996. |
[46] | Albert, A. (2020). Schneider - Bautabellen für Ingenieure mit Berechnungshinweisen und Beispielen (24th ed.). Cologne: Reguvis. |
4 Model Data
- 4.1 Nodes
- 4.2 Lines
- 4.3 Materials
- 4.4 Surfaces
- 4.5 Solids
- 4.6 Openings
- 4.7 Nodal Supports
- 4.8 Line Supports
- 4.9 Surface Supports
- 4.10 Line Hinges
- 4.11 Variable Thicknesses
- 4.12 Orthotropic Surfaces and Membranes
- 4.13 Cross-Sections
- 4.14 Member Hinges
- 4.15 Member Eccentricities
- 4.16 Member Divisions
- 4.17 Members
- 4.18 Ribs
- 4.19 Member Elastic Foundations
- 4.20 Member Nonlinearities
- 4.21 Sets of Members
- 4.22 Intersections
- 4.23 FE Mesh Refinements
- 4.24 Nodal Releases
- 4.25 Line Release Types
- 4.26 Line Releases
- 4.27 Surface Release Types
- 4.28 Surface Releases
- 4.29 Connection of Two Members
- 4.30 Joints
- 4.31 Nodal Constraints
6 Loads
- 6.1 Nodal Loads
- 6.2 Member Loads
- 6.3 Line Loads
- 6.4 Surface Loads
- 6.5 Solid Loads
- 6.6 Free Concentrated Loads
- 6.7 Free Line Loads
- 6.8 Free Rectangular Loads
- 6.9 Free Circular Loads
- 6.10 Free Polygon Loads
- 6.11 Free Variable Loads
- 6.12 Imposed Nodal Deformations
- 6.13 Imposed Line Displacements
- 6.14 Imperfections
- 6.15 Generated Loads
8 Results
- 8.1 Nodes - Support Forces
- 8.2 Nodes - Deformations
- 8.3 Lines - Support Forces
- 8.4 Members - Local Deformations
- 8.5 Members - Global Deformations
- 8.6 Members - Internal Forces
- 8.7 Members - Contact Forces
- 8.8 Members - Strains
- 8.9 Members - Coefficients for Buckling
- 8.10 Member Slendernesses
- 8.11 Sets of Members - Internal Forces
- 8.12 Cross-Sections - Internal Forces
- 8.13 Surfaces - Local Deformations
- 8.14 Surfaces - Global Deformations
- 8.15 Surfaces - Basic Internal Forces
- 8.16 Surfaces - Principal Internal Forces
- 8.17 Surfaces - Design Internal Forces
- 8.18 Surfaces - Basic Stresses
- 8.19 Surfaces - Principal Stresses
- 8.20 Surfaces - Other Stresses
- 8.21 Surfaces - Contact Stresses
- 8.22 Surfaces - Equivalent Stresses - von Mises
- 8.23 Surfaces - Equivalent Stresses - Tresca
- 8.24 Surfaces - Equivalent Stresses - Rankine
- 8.25 Surfaces - Equivalent Stresses - Bach
- 8.26 Surfaces - Basic Strains
- 8.27 Surfaces - Principal Strains
- 8.28 Surfaces - Maximum Strains
- 8.29 Surfaces - Strains - von Mises
- 8.30 Surfaces - Strains - Tresca
- 8.31 Surfaces - Strains - Rankine
- 8.32 Surfaces - Strains - Bach
- 8.33 Solids - Deformations
- 8.34 Solids - Stresses
- 8.35 Solids - Strains
- 8.36 Solids - Gas Pressure
10 Printout
-
10.1 Printout Report
- 10.1.1 Creating or Opening Printout Reports
- 10.1.2 Working in the Printout Report
- 10.1.4 Adjusting Printout Report Headers
- 10.1.5 Inserting RFEM Graphics
- 10.1.6 Inserting Graphics and Texts
- 10.1.7 Printout Report Template
- 10.1.8 Adjusting Layouts
- 10.1.9 Creating Cover Sheets
- 10.1.10 Printing a Printout Report
- 10.1.11 Exporting a Printout Report
- 10.1.12 Language Settings
11 Program Functions
-
11.4 Editing Objects
- 11.4.1 Move and Copy
- 11.4.2 Rotate
- 11.4.3 Mirror
- 11.4.4 Project
- 11.4.5 Scale
- 11.4.6 Shear
- 11.4.7 Dividing Lines and Members
- 11.4.8 Connecting Lines and Members
- 11.4.9 Merging Lines and Members
- 11.4.10 Extending Lines and Members
- 11.4.11 Joining Members
- 11.4.12 Inserting Nodes
- 11.4.13 Inserting Members
- 11.4.14 Assigning Member Properties Graphically
- 11.4.15 Rounding Corners
- 11.4.16 Splitting Surfaces
- 11.4.17 Applying Tangents to Circles
- 11.4.18 Changing the Numbering
13 Literature
上级章节