PROBLEM 4- Figure (A) shows a water storage tank with a cross-braced, four-leg tower. Neglect the weight of the steel frame. Assume • Frame to be identical to N-S/E-W elevations. • Full height columns (no splice) • Pinned ends at diagonals, struts, and columns. • Elastic design • Use El-Centro Response Spectrum for your analysis. Required A. find critical axial loads and columns due to the seismic overturning moment. B. find maximum axial forces in upper and lower struts and diagonals. (assume compression diagonals are not acting). 24 12' 12' W = 40 k W = 40 k Tank Ground Elevation Fig. 4 (a) Plan-Elevation View 4' 12' 12' RESPONSE SPECTRUM IMPERIAL VALLEY EARTHQUAKE MAY 18, 1940 - 2037 PST IIIA001 40.001.0 EL CENTRO SITE IMPERIAL VALLEY IRRIGATION DISTRICT COMP SOOE DAMPING VALUES ARE O. 2. 5. 10 AND 20 PERCENT OF CRITICAL 400 200 F80 Acceleration, g 80 60 40 8884 100 20 20 086 4 VELOCITY (in./sec) .8 201 02 800 006 004 002 الله 2 86 Displacement, in. -20 400 008- 600 400 200 60 200 100 80 60 -800 40 20 20 006 004+ 10 986 F2000 4 2 0013 8000 0006 0004 .8 .6 2 4 6810 PERIOD (secs) .1 .04 .06.08.1 .2 4 .6.81 20 4 2 20 20
PROBLEM 4- Figure (A) shows a water storage tank with a cross-braced, four-leg tower. Neglect the weight of the steel frame. Assume • Frame to be identical to N-S/E-W elevations. • Full height columns (no splice) • Pinned ends at diagonals, struts, and columns. • Elastic design • Use El-Centro Response Spectrum for your analysis. Required A. find critical axial loads and columns due to the seismic overturning moment. B. find maximum axial forces in upper and lower struts and diagonals. (assume compression diagonals are not acting). 24 12' 12' W = 40 k W = 40 k Tank Ground Elevation Fig. 4 (a) Plan-Elevation View 4' 12' 12' RESPONSE SPECTRUM IMPERIAL VALLEY EARTHQUAKE MAY 18, 1940 - 2037 PST IIIA001 40.001.0 EL CENTRO SITE IMPERIAL VALLEY IRRIGATION DISTRICT COMP SOOE DAMPING VALUES ARE O. 2. 5. 10 AND 20 PERCENT OF CRITICAL 400 200 F80 Acceleration, g 80 60 40 8884 100 20 20 086 4 VELOCITY (in./sec) .8 201 02 800 006 004 002 الله 2 86 Displacement, in. -20 400 008- 600 400 200 60 200 100 80 60 -800 40 20 20 006 004+ 10 986 F2000 4 2 0013 8000 0006 0004 .8 .6 2 4 6810 PERIOD (secs) .1 .04 .06.08.1 .2 4 .6.81 20 4 2 20 20
Steel Design (Activate Learning with these NEW titles from Engineering!)
6th Edition
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Chapter9: Composite Construction
Section: Chapter Questions
Problem 9.2.1P: A W1422 acts compositely with a 4-inch-thick floor slab whose effective width b is 90 inches. The...
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Transcribed Image Text:PROBLEM 4-
Figure (A) shows a water storage tank with a cross-braced, four-leg tower. Neglect the weight of the
steel frame.
Assume
• Frame to be identical to N-S/E-W elevations.
•
Full height columns (no splice)
•
Pinned ends at diagonals, struts, and columns.
•
Elastic design
•
Use El-Centro Response Spectrum for your analysis.
Required
A. find critical axial loads and columns due to the seismic overturning moment.
B. find maximum axial forces in upper and lower struts and diagonals. (assume compression
diagonals are not acting).
24
12'
12'
W = 40 k
W = 40 k
Tank
Ground
Elevation
Fig. 4 (a) Plan-Elevation View
4'
12'
12'

Transcribed Image Text:RESPONSE SPECTRUM
IMPERIAL VALLEY EARTHQUAKE
MAY 18, 1940 - 2037 PST
IIIA001 40.001.0 EL CENTRO SITE IMPERIAL VALLEY IRRIGATION DISTRICT COMP SOOE
DAMPING VALUES ARE O. 2. 5. 10 AND 20 PERCENT OF CRITICAL
400
200
F80
Acceleration, g
80
60
40
8884
100
20
20
086
4
VELOCITY (in./sec)
.8
201
02
800
006
004
002
الله
2
86
Displacement, in.
-20
400
008-
600
400
200
60
200
100
80
60
-800
40
20
20
006
004+
10
986
F2000
4
2
0013
8000
0006
0004
.8
.6
2
4
6810
PERIOD (secs)
.1
.04 .06.08.1
.2
4 .6.81
20
4
2
20
20
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