李利莎, 杜建国, 刘洪丽, et al. Numerical Simulation of Dynamic Responses of Painted Sculptures of Dunhuang Mogao Grottoes under Rare Earthquakes[J]. 2017, 37(2): 201-207.
李利莎, 杜建国, 刘洪丽, et al. Numerical Simulation of Dynamic Responses of Painted Sculptures of Dunhuang Mogao Grottoes under Rare Earthquakes[J]. 2017, 37(2): 201-207. DOI: 10.13409/j.cnki.jdpme.2017.02.004.
Numerical Simulation of Dynamic Responses of Painted Sculptures of Dunhuang Mogao Grottoes under Rare Earthquakes
Painted sculptures of Dunhuang Mogao Grottoes are important constituents of Dunhuang’s cultural art.To study the safety of painted sculptures under rare earthquakes
the finite element models were built according to internal structure of painted sculptures
which are made of wooden frame
reed-padded layer
coarse clay layer and fine clay layer from internal to external.By comparing sweep frequency experiment results with modal analysis results
it is proved that the finite element models can reflect the dynamic performance of painted sculptures.On the basis of this
the response of painted sculptures under rare earthquakes was calculated
the results of model’s stress
displacement and acceleration were analyzed
and the earthquake-resistant performance of painted sculptures was evaluated.The results show under rare earthquakes the standing posture model’s maximum stress is within permitted range
but it is close to failure value.The positions in which standing posture model appear damage are below model’s leg region
around neck and joint of arm and upper half body;the maximum stress appears in the joint of sitting posture model’s back and base.The value exceeds tensile strength
tensile failure occurs.The maximum response spots are tops of models.The response of sitting posture is less than standing posture.It is considered that there is a risk of damage to painted sculptures under rare earthquake.
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