Loading conditions, material properties, geometry and several other parameters often show considerable variability, since they are stochastic quantities in nature. The rational treatment of uncertainties in computational mechanics, based on statistical and probabilistic methods, is object of increasing attention, particularly in recent years. Modern design codes often directly account, with approximate procedures, for parameter and model uncertainties and stress out the importance of assessing such uncertainties to ensure satisfactory designs. Thus, in addition to accurate deterministic models, a methodology is necessary to propagate uncertainties from the parameters defining the finite element models of structures in terms of geometry and ...