V EI 60 m hfa V EI 20 m HB Hc hfs A hfe V Elev 0 D = 0.10 m e = 200 m f = 0.015 D = 0.08 m e = 200 m f = 0.020 D = 0.08 m e = 400 m f = 0.020 From the figure, we can derive the following equations: Qa = QB + Qc HB = hfa + hfg = 40m---- Hc = hfa + hfc = 60m-

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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Determine the QA, QB, and QC by completing the solution to the illustrated three-reservoir problem.

Each of the equations may be expanded by substituting the known formulas...
AVA = ABVB + AcVc
0.0826A + 0.0826-
40m
DB
0.0826 LOA
DA
SLQ.?
+ 0.0826
Dc
60m
..and then the actual quantities.
The solution from here is algebraic.
Transcribed Image Text:Each of the equations may be expanded by substituting the known formulas... AVA = ABVB + AcVc 0.0826A + 0.0826- 40m DB 0.0826 LOA DA SLQ.? + 0.0826 Dc 60m ..and then the actual quantities. The solution from here is algebraic.
V EI 60 m
hfa
HB
Hc
hfs
V E1 20 m
A
hfe
V Elev 0
D = 0.10 m
e = 200 m
f = 0.015
QA
D = 0.08 m
e = 200 m
f = 0.020
D = 0.08 m
e = 400 m
f = 0.020
From the figure, we can derive the following equations:
Qa = QB + Qc
HB = hfa + hfg = 40m----
Hc = hfa + hfc
= 60m-
Transcribed Image Text:V EI 60 m hfa HB Hc hfs V E1 20 m A hfe V Elev 0 D = 0.10 m e = 200 m f = 0.015 QA D = 0.08 m e = 200 m f = 0.020 D = 0.08 m e = 400 m f = 0.020 From the figure, we can derive the following equations: Qa = QB + Qc HB = hfa + hfg = 40m---- Hc = hfa + hfc = 60m-
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