Influence of Column-Base Fixity On Lateral Drift of Gable Frames

In a typical light metal building, the structural members are designed for the forces and moments obtained from the wind drift analysis, which assumes pinned connections at the base. The pinned connections provide no moment at the base and have zero rotational stiffness. However, in reality every co...

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Main Author: Verma, Amber
Other Authors: Civil Engineering
Format: Others
Published: Virginia Tech 2014
Subjects:
Online Access:http://hdl.handle.net/10919/42686
http://scholar.lib.vt.edu/theses/available/etd-05162012-025825/
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-426862020-09-29T05:44:13Z Influence of Column-Base Fixity On Lateral Drift of Gable Frames Verma, Amber Civil Engineering Charney, Finley A. Eatherton, Matthew R. Roberts-Wollmann, Carin L. Metal Buildings Column-Base Connection Rotational Stiffness Maximum Bearing Pressure In a typical light metal building, the structural members are designed for the forces and moments obtained from the wind drift analysis, which assumes pinned connections at the base. The pinned connections provide no moment at the base and have zero rotational stiffness. However, in reality every connection provides some restraint and has some rotational stiffness. Hence, by considering a modeling assumption of pinned condition, the actual behavior of the connection is not captured and this results in overestimation of lateral drifts and appearance of larger moments at the knee of the gable frames. Since the structural components are designed on the basis of these highly conservative results, the cost of the project increases. This thesis investigates the real behavior of the column base connection and tries to reduce the above stated conservatism by developing a computer program or â wizardâ to calculate the initial rotational stiffness of any column base connection. To observe the actual behavior of a column base connection under different load cases, a number of finite element models were created in SAP2000. Each finite element model of the column base connection contained base plate, column stub, anchor bolts and in some cases grout as its components. The model was mainly subjected to three load cases, namely gravity, wind and gravity plus wind. After performing many analyses, the influence of flexibility of each component on the flexibility of the connection was observed and a list of parameters was created. These parameters are the properties of above mentioned components which characterizes any column base connection. These parameters were then used as inputs to model any configuration of the column base connection in the developed wizard. The wizard uses OpenSees and SAP2000 to analyze the modeled configuration of the connection and provides values of the initial rotational stiffness and maximum bearing pressure for the provided loads. These values can be further used in any structural analysis which is done to calculate the lateral drift of a frame under lateral loads. This will also help in getting results which are less conservative than the results which one gets on assuming pinned condition at the base. Master of Science 2014-03-14T21:36:15Z 2014-03-14T21:36:15Z 2012-05-01 2012-05-16 2012-05-29 2012-05-29 Thesis etd-05162012-025825 http://hdl.handle.net/10919/42686 http://scholar.lib.vt.edu/theses/available/etd-05162012-025825/ Verma_A_T_2012.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ application/pdf Virginia Tech
collection NDLTD
format Others
sources NDLTD
topic Metal Buildings
Column-Base Connection
Rotational Stiffness
Maximum Bearing Pressure
spellingShingle Metal Buildings
Column-Base Connection
Rotational Stiffness
Maximum Bearing Pressure
Verma, Amber
Influence of Column-Base Fixity On Lateral Drift of Gable Frames
description In a typical light metal building, the structural members are designed for the forces and moments obtained from the wind drift analysis, which assumes pinned connections at the base. The pinned connections provide no moment at the base and have zero rotational stiffness. However, in reality every connection provides some restraint and has some rotational stiffness. Hence, by considering a modeling assumption of pinned condition, the actual behavior of the connection is not captured and this results in overestimation of lateral drifts and appearance of larger moments at the knee of the gable frames. Since the structural components are designed on the basis of these highly conservative results, the cost of the project increases. This thesis investigates the real behavior of the column base connection and tries to reduce the above stated conservatism by developing a computer program or â wizardâ to calculate the initial rotational stiffness of any column base connection. To observe the actual behavior of a column base connection under different load cases, a number of finite element models were created in SAP2000. Each finite element model of the column base connection contained base plate, column stub, anchor bolts and in some cases grout as its components. The model was mainly subjected to three load cases, namely gravity, wind and gravity plus wind. After performing many analyses, the influence of flexibility of each component on the flexibility of the connection was observed and a list of parameters was created. These parameters are the properties of above mentioned components which characterizes any column base connection. These parameters were then used as inputs to model any configuration of the column base connection in the developed wizard. The wizard uses OpenSees and SAP2000 to analyze the modeled configuration of the connection and provides values of the initial rotational stiffness and maximum bearing pressure for the provided loads. These values can be further used in any structural analysis which is done to calculate the lateral drift of a frame under lateral loads. This will also help in getting results which are less conservative than the results which one gets on assuming pinned condition at the base. === Master of Science
author2 Civil Engineering
author_facet Civil Engineering
Verma, Amber
author Verma, Amber
author_sort Verma, Amber
title Influence of Column-Base Fixity On Lateral Drift of Gable Frames
title_short Influence of Column-Base Fixity On Lateral Drift of Gable Frames
title_full Influence of Column-Base Fixity On Lateral Drift of Gable Frames
title_fullStr Influence of Column-Base Fixity On Lateral Drift of Gable Frames
title_full_unstemmed Influence of Column-Base Fixity On Lateral Drift of Gable Frames
title_sort influence of column-base fixity on lateral drift of gable frames
publisher Virginia Tech
publishDate 2014
url http://hdl.handle.net/10919/42686
http://scholar.lib.vt.edu/theses/available/etd-05162012-025825/
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