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The plastic rotation demand is calculated with the yield rotation calculated using the displaced axis rotation and the moment-curvature analysis when performing the linear performance analysis.

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Tip
  • The element is automatically calculated according to the plastic rotation demand θ p Equation (15A.2) .

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ICONS

E = Concrete modulus of elasticity
h = Section height
I = Moment of inertia
L p = Plastic hinge length
l c = Element net opening
M y = Effective yield moment
M yi = Effective yield momentat i end
M yj = Effective yield moment at j end
Δ = Element translation between nodes
ϕ y = Flow curvature
ϕ t = Total curvature
θ p =Plastic rotation demand
θ i = i joint rotation
θ j = j node rotation
θ y = flow rotation
θ yi = flow rotation at end i
θ yj = flow rotation at end j
θ k = displaced axis rotation
θ ki = displaced axis rotation at end i

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Evaluation and Design According to Strain of existing buildings as seen (ŞGDT) in determining the approach to seismic performance and linear calculation method used plastic rotation demand θ p , the value is calculated by the approximate expression obtained in a linear method. In this case, when the nonlinear seismic analysis methods applied plastic made by plastic hinge rotation θ p θ obtained by the linear method with p value to show affinity to a specific order but it will be the same.

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