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Structural health monitoring of civil engineering structures is a fundamental issue for structural safety and integrity, due to the fact that they will deteriorate after they are built and put into services.
The reliability of civil engineering structures is time-dependent.
Of particular concern in engineering structures is the prevention of sudden, complete failure, as in the fracture of a brittle material.
Similarity to real engineering structures is maintained in the fabrication of the test frame.
Increasing the lifetime of engineering structures is dependent on the unsteady forces exerted by vortex shedding.
Due to the analogy, it becomes obvious that inelastic response of engineering structures is essentially a dynamical problem.
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In this work different fibre optic sensors for the structural health monitoring of civil engineering structures are reported.
Secondly, fatigue properties and failure causes of medium strength – low carbon structural steels that are usually used in civil engineering structures were investigated.
Engineering structures are erected in all kinds of terrain and climate, and structural deformation and vibration may appear in anytime, such as deflection, shrinkage-expansion and vibration response.
Many engineering structures are subjected to random loading.
Rock engineering structures are quite susceptible to cyclic tensile loading.
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