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#1 212 Ketter Hall, North Campus, Buffalo, NY 14260 www.civil.buffalo.edu Fax: 716 645 3733 Tel: 716 645 2114 x 2400 Control of Structural Vibrations Lecture.

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Presentation on theme: "#1 212 Ketter Hall, North Campus, Buffalo, NY 14260 www.civil.buffalo.edu Fax: 716 645 3733 Tel: 716 645 2114 x 2400 Control of Structural Vibrations Lecture."— Presentation transcript:

1 #1 212 Ketter Hall, North Campus, Buffalo, NY 14260 www.civil.buffalo.edu Fax: 716 645 3733 Tel: 716 645 2114 x 2400 Control of Structural Vibrations Lecture #4 MDOF Structures Analysis Instructor: Andrei M. Reinhorn P.Eng. D.Sc. Professor of Structural Engineering

2 #2 Multi Degree Of Freedom - MDOF T1T1 T2T2 T3T3 Modal Analysis

3 #3 Review Review of MDOF response using ortho-normalized modes

4 #4 MDOF Response

5 #5 Modal Quantities

6 #6

7 #7 Modal Analysis Modal Response Calculations: _______________________________________________________ Spectral Displacement: Spectral Acceleration: _______________________________________________________ Modal Floor Displacement (u or  ) Modal (Floor) Inertia Force Modal Reaction- BASE SHEAR _______________________________________________________

8 #8 Modal Superposition Total Response can be obtained from all modes by superposition: SRSS n (x i ) = ( SUM n (x i 2 )) 1/2 V BASE = srss k (V i ) F floor J = srss k (F iJ ) Approximations in highly damped structures: 1. Use of undamped mode shapes 2. Use of proportional damping

9 #9 Capacity (Curve) of Structure Capacity is a function, not a single value, indicating the strength of the system at a deformed position of the structure

10 #10 Nonlinear Static Procedure  The static procedure is an equivalent instantaneous approximation of MDOF response to determine internal stresses and other …..

11 #11 Analysis of Yielding Storied Frame Nonlinear Static Analysis (Procedure) Perform static analysis with increasing lateral forces, F i, (applied at each floor) incrementally, proportional to the distribution of inertia forces which appear in the dynamic analysis

12 #12 Analysis of Yielding Storied Frame VBVB

13 #13 Analysis of Yielding Storied Frame

14 #14 Case Study Structure

15 #15 Case Study Structure

16 #16 Typical Capacity Curve

17 #17 Typical Capacity Curve

18 #18 Step-by-step DC Procedure [DC = Demand Capacity]

19 #19 Step-by-step DC Procedure [DC = Demand Capacity]

20 #20 “Spectral” Capacity INCLUDING A NUMBER OF MODAL SHAPES:

21 #21 Spectral Evaluation of Response

22 #22 Equivalent Properties of Linearized System

23 #23 Spectral Evaluation - Linearized Procedure Linearized procedures uses equivalent period and damping to evaluate response

24 #24

25 #25 Spectral Evaluation - Inelastic Spectrum Procedure Inelastic Spectrum Procedure uses no approximations but require inelastic spectrum to evaluate response

26 #26 Response with Fluid Dampers

27 #27 Response with Friction Dampers

28 #28 Response with Wall Dampers

29 #29 Analysis and Experiments with Fluid Dampers

30 #30 Analysis and Experiments with Friction Dampers

31 #31 Analysis and Experiments with Wall Dampers

32 #32 Damped Inelastic Spectra Note that it is necessary to adjust the inelastic spectra fro the increased damping:


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