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Moment of inertia of a circle composite
Moment of inertia of a circle composite





moment of inertia of a circle composite
  1. #Moment of inertia of a circle composite cracked#
  2. #Moment of inertia of a circle composite software#

I g, I cr moment of inertia of gross and fully cracked transformed cross section, respectively A sensitivity analysis has been performed, which indicates substantial dependence of effective moment of inertia on the selected input parameters.Ĭoncrete cracking deflection finite element analysis moment of inertia neural network reinforced concrete tension stiffeningĪ st, A sb,area of top and bottom reinforcement, respectivelyĮ c, E s modulus of elasticity of concrete and steel, respectively The explicit expression has been validated for a number of simply supported and continuous beams and it is shown that the predicted deflections have reasonable accuracy for practical purpose.

#Moment of inertia of a circle composite software#

The training data sets for neural network are generated using finite element software ABAQUS. These three parameters are chosen as inputs to train neural network. Three significant structural parameters have been identified that govern the change in effective moment of inertia and therefore deflection. The explicit expression has been obtained from the trained neural network considering concrete cracking, tension stiffening and entire practical range of reinforcement. The proposed explicit expression can be used for rapid prediction of short-term deflection at service load. This paper provides an explicit expression for effective moment of inertia considering cracking, for uniformly distributed loaded reinforced concrete (RC) beams.

moment of inertia of a circle composite moment of inertia of a circle composite

Deflection is an important design parameter for structures subjected to service load.







Moment of inertia of a circle composite