Fluid Mechanics and Hydraulic Machines
Fluid Pressure and Measurement
Marks 1
Hydrostatic Forces
Marks 2
Fluid Dynamics
Marks 1
Boundary Layer Theory
Marks 2
Drag and Lift
Marks 1
Dimensional Analysis
Marks 1Marks 2
Flow Through Pipes
Marks 1
Open Channel Flow
Marks 1Marks 2
Hydraulic Machines
Marks 2
Properties of Fluids
Marks 1Marks 2
Fluid Statics
Marks 1Marks 2
1
GATE CE 2023 Set 2
MCQ (Single Correct Answer)
+2
-0.67

The critical flow condition in a channel is given by _______.

[Note: 𝛼 – kinetic energy correction factor; 𝑄 – discharge; Ac – cross-sectional area of flow at critical flow condition; Tc – top width of flow at critical flow condition; 𝑔 – acceleration due to gravity]

A
$\rm\frac{\alpha Q^2}{g}=\frac{A_c^3}{T_c}$
B
$\rm\frac{\alpha Q}{g}=\frac{A_c^3}{T_c^2}$
C
$\rm\frac{\alpha Q^2}{g}=\frac{A_c^3}{T_c^2}$
D
$\rm\frac{\alpha Q}{g}=\frac{A_c^3}{T_c}$
2
GATE CE 2023 Set 2
Numerical
+2
-0

The cross-section of a small river is sub-divided into seven segments of width 1.5 m each. The average depth, and velocity at different depths were measured during a field campaign at the middle of each segment width. The discharge computed by the velocity area method for the given data is _____ m3/s (round off to one decimal place).

Segment Average depth (D) (m) Velocity (m/s) at 0.2D Velocity (m/s) at 0.6D Velocity (m/s) at 0.8D
1 0.40 -- 0.40 --
2 0.70 0.76 -- 0.70
3 1.20 1.19 -- 1.13
4 1.40 1.25 -- 1.10
5 1.10 1.13 -- 1.09
6 0.80 0.69 -- 0.65
7 0.45 -- 0.42 --
Your input ____
3
GATE CE 2023 Set 1
MCQ (Single Correct Answer)
+2
-0.66

A very wide rectangular channel carries a discharge (Q) of 70 m3/s per meter width. Its bed slope changes from 0.0001 to 0.0009 at a point P, as shown in the figure (not to scale). The Manning’s roughness coefficient of the channel is 0.01. What water surface profile(s) exist(s) near the point P?

GATE CE 2023 Set 1 Fluid Mechanics and Hydraulic Machines - Open Channel Flow Question 10 English
A
M2 and S2 
B
M2 only
C
S2 only
D
S2 and hydraulic jump
4
GATE CE 2023 Set 1
Numerical
+2
-0
A hydraulic jump occurs in a 1.0 m wide horizontal, frictionless, rectangular channel, with a pre-jump depth of 0.2 m and a post-jump depth of 1.0 m. The value of g may be taken as 10 m/s2. The values of the specific force at the pre-jump and post-jump sections are same and are equal to (in m3, rounded off to two decimal places) _____________ .
Your input ____
GATE CE Subjects
Engineering Mechanics
Strength of Materials Or Solid Mechanics
Structural Analysis
Construction Material and Management
Reinforced Cement Concrete
Steel Structures
Geotechnical Engineering
Fluid Mechanics and Hydraulic Machines
Hydrology
Irrigation
Geomatics Engineering Or Surveying
Environmental Engineering
Transportation Engineering
Engineering Mathematics
General Aptitude