In the scope of this work a numerical model for violins
is presented. Amongst musical instruments the violin for
sure is one of the most complex. They are references for
high acoustic quality. The long history of violin making
and design goes along with a long history of studies
on violin acoustics and mechanics. To obtain and understand
construction rules for these instruments with
the help of engineering methods, it is necessary to describe
the acoustic quality with physical parameters and
to combine the experience of violin-makers and engineering
skills. The physical parameters and their sensitivity
to changes in geometry and material properties are
achieved with the help of suitable numerical models.
«
In the scope of this work a numerical model for violins
is presented. Amongst musical instruments the violin for
sure is one of the most complex. They are references for
high acoustic quality. The long history of violin making
and design goes along with a long history of studies
on violin acoustics and mechanics. To obtain and understand
construction rules for these instruments with
the help of engineering methods, it is necessary to describe
the acoustic quality with physical parameters...
»