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Sushil Khatiwada
Sushil Khatiwada
PhD Candidate, University of Auckland
Verified email at aucklanduni.ac.nz
Title
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Cited by
Year
A generic structural pounding model using numerically exact displacement proportional damping
S Khatiwada, N Chouw, JW Butterworth
Engineering Structures 62, 33-41, 2014
482014
Limitations in simulation of building pounding in earthquakes
S Khatiwada, N Chouw
International journal of protective structures 5 (2), 123-150, 2014
212014
Evaluation of numerical pounding models with experimental validation
S Khatiwada, N Chouw, JW Butterworth
BULLETIN OF THE NEW ZEALAND SOCIETY FOR EARTHQUAKE ENGINEERING 46 (3), 2013
192013
Influence of mass and contact surface on pounding response of RC structures
S Khatiwada, T Larkin, N Chouw
Earthquakes and Structures 7 (3), 385-400, 2014
92014
Simulation of structural pounding with the sears impact model
S Khatiwada, N Chouw, T Larkin
4th ECCOMAS Thematic Conference on Computational Methods in Structural …, 2013
82013
A shake table investigation on interaction between buildings in a row
S Khatiwada, N Chouw
Coupled Systems Mechanics 2 (2), 175-190, 2013
82013
Development of pounding model for adjacent structures in earthquakes
S Khatiwada, N Chouw, JW Butterworth
Proceedings of the ninth pacific conference on earthquake engineering 1, 1-8, 2011
82011
An experimental investigation on contact behaviour during structural pounding
S Khatiwada, N Chouw, T Larkin
Proceedings of New Zealand Society for Earthquake Engineering Annual …, 2014
42014
An experimental study on pounding force between reinforced concrete slabs
S Khatiwada, N Chouw, T Larkin
Proceedings of Australian Earthquake Engineering Society Conference, 15-17, 2013
42013
Discussion on ‘relaxation method for pounding action between adjacent buildings at expansion joint’by H. Takabatake, M. Yasui, Y. Nakagawa and A. Kishida
S Khatiwada, N Chouw, T Larkin
Earthquake Engineering & Structural Dynamics 44 (1), 159-162, 2015
32015
A distributed mass model with end-compliance effects for simulation of building pounding
S Khatiwada
University of Auckland, New Zealand, 2014
12014
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