Basic principles as well as practical design and implementational issues associated with the application of base isolation systems and passive and active control devices to civil engineering structures are carefully addressed.
Examples of structural applications are presented and extensively discussed. See All Customer Reviews.
Passive and Active Structural Vibration Control in Civil Engineering
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Overview Base isolation, passive energy dissipation and active control represent three innovative technologies for protection of structures under environmental loads. Product Details. Average Review. Write a Review.
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Related Searches. Bronchial Hyperresponsiveness. Bronchial hyperresponsiveness has been known nearly as long as asthma bronchia Ie itself. Unpublished Doctoral thesis, City University London.
This thesis is in the area of active vibration control of Civil Engineering structures subject to earthquake loading. Existing structural control methods and technologies including passive, active, semi-active and hybrid control are first introduced. An extensive analysis of a frame-pendulum model is developed and analysed to investigate under what conditions effective energy dissipation is achieved in Tuned Mass Damper systems and the limitation of these devices under stiffness degradation when the structure enters the inelastic region.
Linear Quadratic Gaussian and H-infinity active control schemes are designed, simulated and assessed for buildings, modelled as lumped parameter systems, including base and actuator dynamics. Various aspects of the designs are extensively evaluated using multiple criteria and loading conditions and validated in large-scale benchmark problems under practical limitations and implementation constraints. Repository Staff Only: item control page.
Passive vibration control of framed structures by base isolation method using lead rubber bearing. NIT Rourkela. Powered by.
Passive and Active Structural Vibration Control in Civil Engineering Information
Login Create Account. Passive vibration control of framed structures by base isolation method using lead rubber bearing Jena, Kisan Passive vibration control of framed structures by base isolation method using lead rubber bearing. Passive vibration control, Time history analysis, interstorey drift, yielded stiffness, Design basis earthquake.
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