For a 2.0 m wide and 0.40 m thick beam on elastic founda- tion, determine the coefficient of subgrade reaction k using Eqs. (10.45) and (10.46), assuming the following param- eters: E, = 30 MN/m², Ep = 30,000 MN/m², µ, = 0.25. %3D
For a 2.0 m wide and 0.40 m thick beam on elastic founda- tion, determine the coefficient of subgrade reaction k using Eqs. (10.45) and (10.46), assuming the following param- eters: E, = 30 MN/m², Ep = 30,000 MN/m², µ, = 0.25. %3D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![where
E,
= modulus of elasticity of soil
B = foundation width
Ep = modulus of elasticity of foundation material
Ip = moment of inertia of the cross section of the foundation
Ms
Poisson's ratio of soil
For most practical purposes, Eq. (10.45) can be approximated as
E,
k
B(1 – µ)
(10.46)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8a62954a-e5df-440c-8ab7-9004b7f37a0b%2Fca2aaf90-e7ea-41cb-8667-92b27566348e%2Fpfb6lqs_processed.png&w=3840&q=75)
Transcribed Image Text:where
E,
= modulus of elasticity of soil
B = foundation width
Ep = modulus of elasticity of foundation material
Ip = moment of inertia of the cross section of the foundation
Ms
Poisson's ratio of soil
For most practical purposes, Eq. (10.45) can be approximated as
E,
k
B(1 – µ)
(10.46)
![For a 2.0 m wide and 0.40 m thick beam on elastic founda-
tion, determine the coefficient of subgrade reaction k using
Eqs. (10.45) and (10.46), assuming the following param-
eters: E, = 30 MN/m², Ep = 30,000 MN/m², µ, = 0.25.
%3D](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8a62954a-e5df-440c-8ab7-9004b7f37a0b%2Fca2aaf90-e7ea-41cb-8667-92b27566348e%2Fhzckuf.png&w=3840&q=75)
Transcribed Image Text:For a 2.0 m wide and 0.40 m thick beam on elastic founda-
tion, determine the coefficient of subgrade reaction k using
Eqs. (10.45) and (10.46), assuming the following param-
eters: E, = 30 MN/m², Ep = 30,000 MN/m², µ, = 0.25.
%3D
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