TY - CHAP
A1 - Ubysz, Andrzej
A1 - Maj, Marek
A1 - Stachon, T.
A1 - Rogoza, Agnieszka
ED - Gürlebeck, Klaus
ED - Könke, Carsten
T1 - NUMERICAL ANALYSIS OF STRESS DISTRIBUTION IN THE REINFORCED CONCRETE SUPPORT BEAM BRACKET EXPOSED TO DAMAGE
N2 - The article presents analysis of stress distribution in the reinforced concrete support beam bracket which is a component of prefabricated reinforced concrete building. The building structure is spatial frame where dilatations were applied. The proper stiffness of its structure is provided by frames with stiff joints, monolithic lift shifts and staircases. The prefabricated slab floors are supported by beam shelves which are shaped as inverted letter ‘T’. Beams are supported by the column brackets. In order to lower the storey height and fulfill the architectural demands at the same time, the designer lowered the height of beam at the support zone. The analyzed case refers to the bracket zone where the slant crack. on the support beam bracket was observed. It could appear as a result of overcrossing of allowable tension stresses in reinforced concrete, in the bracket zone. It should be noted that the construction solution applied, i.e. concurrent support of the “undercut” beam on the column bracket causes local concentration of stresses in the undercut zone where the strongest transverse forces and tangent stresses occur concurrently. Some additional rectangular stresses being a result of placing the slab floors on the lower part of beam shelves sum up with those described above.
KW - Angewandte Informatik
KW - Angewandte Mathematik
KW - Architektur
KW - Computerunterstütztes Verfahren
KW - Computer Science Models in Engineering; Multiscale and Multiphysical Models; Scientific Computing
Y1 - 2010
U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20170314-28693
UR - http://euklid.bauing.uni-weimar.de/ikm2009/paper.html
SN - 1611-4086
ER -
TY - CHAP
A1 - Kamiñski, Mieczysław
A1 - Maj, Marek
A1 - Schmidt, Egon
T1 - Berechnungsmodell der Polystyrol-Massiv-Rippendecken
N2 - Neue Konstruktionsentwicklungen erwarten von Bauingenieuren auch neue Berechnungs- und Analysenmethoden. Zu solchen Konstruktionen gehören Polystyrol-Massiv-Rippendecken. Die Decken, die eine wichtige Rolle im Neubau sowie in der Sanierung und Rekonstruktion von Altbauten spielen, haben eine umfangreiche Technologiebeschreibung, jedoch relativ kleine Berechnungsbase zur statischen Analyse der Ausnutzugs- und Statischfestigkeitsparametern. In den Vortrag wurde eine Methode zu Analyse solche Decken dargestellt. Das interessante Problem befindet sich in der sogennaten zweiten Phase, wenn der Decke keine elastische Platte ist. Eine wichtige Rolle bei Berechnung spielen die veränderte Steifigkeit und Rheology.
KW - Stahlbeton
KW - Polystyrol
KW - Rippendecke
Y1 - 2003
U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20111215-3185
ER -
TY - CHAP
A1 - Woszczyna, Anna
A1 - Kaminski, Mieczysław
A1 - Maj, Marek
A1 - Ubysz, Andrzej
ED - Gürlebeck, Klaus
ED - Könke, Carsten
T1 - ANALYSING THE INFLUENCE OF THE REINFORCED CONCRETE CHIMNEY GEOMETRY CHANGES ON THE STRESSES IN THE CHIMNEY SHAFT
N2 - Analysis of the reinforced concrete chimney geometry changes and their influence on the stresses in the chimney mantle was made. All the changes were introduced to a model chimney and compared. Relations between the stresses in the mantle of the chimney and the deformations determined by the change of the chimney's vertical axis geometry were investigated. The vertical axis of chimney was described by linear function (corresponding to the real rotation of the chimney together with the foundation), and by parabolic function (corresponding to the real dislocation of the chimney under the influence of the horizontal forces - wind). The positive stress pattern in the concrete as well as the negative stress pattern in the reinforcing steel have been presented. The two cases were compared. Analysis of the stress changes in the chimney mantle depending on the modification in the thickness of the mantle (the thickness of the chimney mantle was altered in the linear or the abrupt way) was carried out. The relation between the stresses and the chimney's diameter change from the bottom to the top of the chimney was investigated. All the analyses were conducted by means of a specially developed computer program created in Mathematica environment. The program makes it also possible to control calculations and to visualize the results of the calculations at every stage of the calculation process.
KW - Architektur
KW - CAD
KW - Computerunterstütztes Verfahren
Y1 - 2006
U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:gbv:wim2-20170327-30388
UR - http://euklid.bauing.uni-weimar.de/ikm2006/index.php_lang=de&what=papers.html
ER -