Provided below is the cross-sectional area, verticals, depths, and velocities of a lake. Assuming that the discharge in the end sections of the lake to be zero, determine the a. Discharge of the lake b. Average velocity of the lake 2.5, 3.7,3.7 3.7,3.7 3.7 3.7 ,3.7,3.7 2.7, d, = 1.10m Vg = 0.53m/s dg = 1.20m V 0.80m/s d, 1.05m d, 1.15m Vi = 0.45m/s V = 0.67m/s d, 1.58m V, = 1.05m/s d, = 1.60m V, = 1.10m/s d, = 1.30m v, = 0.75m/s d. = 1.45m d, = 1.55m v, = 0.98m/s VA= 0.92m/s

Structural Analysis
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Provided below is the cross-sectional area, verticals, depth5, and velocities of a lake.
Assuming that the discharge in the end sections of the lake to be zero, determine the
a. Discharge of the lake
b. Average velocity of the lake
2.5 3.7,3.7 3.7,3.7 3.7 3.7 ,3.7.3.7 2.7,
d = 1.05m
d, 1.10m
Vg 0.53m/s
dg 1.20m
V 0.80m/s
d, 1.15m Vi = 0.45m/s
V 0.67m/s
d. = 1.30m
v, = 0.75m/s
d, = 1.58m
v, = 1.05m/s
d, = 1.60m
V 1.10m/s
d. = 1.45m
VA 0.92m/s
d, = 1.55m
V, = 0.98m/s
Transcribed Image Text:Provided below is the cross-sectional area, verticals, depth5, and velocities of a lake. Assuming that the discharge in the end sections of the lake to be zero, determine the a. Discharge of the lake b. Average velocity of the lake 2.5 3.7,3.7 3.7,3.7 3.7 3.7 ,3.7.3.7 2.7, d = 1.05m d, 1.10m Vg 0.53m/s dg 1.20m V 0.80m/s d, 1.15m Vi = 0.45m/s V 0.67m/s d. = 1.30m v, = 0.75m/s d, = 1.58m v, = 1.05m/s d, = 1.60m V 1.10m/s d. = 1.45m VA 0.92m/s d, = 1.55m V, = 0.98m/s
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