Fluid Mechanics
Fluid Properties
Marks 1Marks 2
Boundary Layer
Marks 1Marks 2Marks 5
Turbulent Flow
Marks 1Marks 2Marks 5
Fluid Kinematics
Marks 1Marks 2
1
GATE ME 2023
Numerical
+2
-0

An explosion at time t = 0 releases energy 𝐸 at the origin in a space filled with a gas of density ρ. Subsequently, a hemispherical blast wave propagates radially outwards as shown in the figure.

Let R denote the radius of the front of the hemispherical blast wave. The radius R follows the relationship 𝑅 = 𝑘 𝑡𝑎 𝐸 𝑏 𝜌𝑐, where k is a dimensionless constant. The value of exponent a is ___________.

(Rounded off to one decimal place)

GATE ME 2023 Fluid Mechanics - Fluid Dynamics Question 5 English

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2
GATE ME 2022 Set 2
MCQ (Single Correct Answer)
+2
-0.66

A tube of uniform diameter D is immersed in a steady flowing inviscid liquid stream of velocity V, as shown in the figure. Gravitational acceleration is represented by g. The volume flow rate through the tube is ______.

GATE ME 2022 Set 2 Fluid Mechanics - Fluid Dynamics Question 10 English
A
$\frac{\pi}{4}D^2V$
B
$\frac{\pi}{4}D^2\sqrt{2gh_2}$
C
$\frac{\pi}{4}D^2\sqrt{2g(h_1+h_2)}$
D
$\frac{\pi}{4}D^2\sqrt{V^2-2gh_2}$
3
GATE ME 2022 Set 2
MCQ (Single Correct Answer)
+2
-0.66
The steady velocity field in an inviscid fluid of density 1.5 is given to be $\vec{V}=(y^2-x^2)\hat{i}+(2xy)\hat{j} $. Neglecting body forces, the pressure gradient at (x =1, y = 1) is ______.
A
10 ĵ
B
20 î
C
-6î - 6ĵ
D
-4î - 4ĵ
4
GATE ME 2022 Set 1
MCQ (Single Correct Answer)
+2
-0.66
A solid spherical bead of lead (uniform density = 11000 kg/m3) of diameter d = 0.1 mm sinks with a constant velocity V in a large stagnant pool of a liquid (dynamic viscosity = 1.1 × 10-3 kg∙m-1∙s-1). The coefficient of drag is given by $\rm C_D = \frac{24}{Re} $, where the Reynolds number (Re) is defined on the basis of the diameter of the bead. The drag force acting on the bead is expressed as $\rm D = (C_D) (0.5 \rho V^2) \left( \frac{\pi d^2}{4} \right), $ where ρ is the density of the liquid. Neglect the buoyancy force. Using g = 10 m/s2, the velocity V is __________ m/s.
A
$\frac{1}{24}$
B
$\frac{1}{6}$
C
$\frac{1}{18}$
D
$\frac{1}{12}$
GATE ME Subjects
Engineering Mechanics
Machine Design
Strength of Materials
Heat Transfer
Production Engineering
Industrial Engineering
Turbo Machinery
Theory of Machines
Engineering Mathematics
Fluid Mechanics
Thermodynamics
General Aptitude