To slow down large prime movers like locomotives, a process termed dynamic electric braking is used to switch the traction motor to a generator mode in which mechanical power from the drive wheels is absorbed and used to generate electrical current. As shown in the schematic, the electric power is passed through a resistor grid (a), which consists of an array of metallic blades electrically connected in series (b). The blade material is a high-temperature, high electrical resistivity alloy, and the electrical power is dissipaled as heat by internal volumetric generation. To cool the blades, a motor-fan moves high-velocity air through the grid. (a) Treating the space between the blades as a rectangular channel of 22 0 − mm × 4 − mm cross section and 7 0 − mm length. estimate the heat removal rate per blade if the airstream has an inlet temperature and velocity of 25 ° C and 5 0 m / s . respectively. while the blade has an operating temperature of 6 00 ° C . (b) On a locomotive pulling a 10-car train, there may be 2000 of these blades. Based on your result from part (a), how long will it take to slow a train whose total mass is 1 0 6 kg from a speed of 12 0 km / h to 5 0 km / h using dynamic electric braking?
To slow down large prime movers like locomotives, a process termed dynamic electric braking is used to switch the traction motor to a generator mode in which mechanical power from the drive wheels is absorbed and used to generate electrical current. As shown in the schematic, the electric power is passed through a resistor grid (a), which consists of an array of metallic blades electrically connected in series (b). The blade material is a high-temperature, high electrical resistivity alloy, and the electrical power is dissipaled as heat by internal volumetric generation. To cool the blades, a motor-fan moves high-velocity air through the grid. (a) Treating the space between the blades as a rectangular channel of 22 0 − mm × 4 − mm cross section and 7 0 − mm length. estimate the heat removal rate per blade if the airstream has an inlet temperature and velocity of 25 ° C and 5 0 m / s . respectively. while the blade has an operating temperature of 6 00 ° C . (b) On a locomotive pulling a 10-car train, there may be 2000 of these blades. Based on your result from part (a), how long will it take to slow a train whose total mass is 1 0 6 kg from a speed of 12 0 km / h to 5 0 km / h using dynamic electric braking?
Solution Summary: The author calculates the cross-sectional area of a channel as follows: Dimension of the channel, Inlet temperature, Velocity, Specific Heat, Thermal Conductivity, and Prandtl number.
To slow down large prime movers like locomotives, a process termed dynamic electric braking is used to switch the traction motor to a generator mode in which mechanical power from the drive wheels is absorbed and used to generate electrical current. As shown in the schematic, the electric power is passed through a resistor grid (a), which consists of an array of metallic blades electrically connected in series (b). The blade material is a high-temperature, high electrical resistivity alloy, and the electrical power is dissipaled as heat by internal volumetric generation. To cool the blades, a motor-fan moves high-velocity air through the grid.
(a) Treating the space between the blades as a rectangular channel of
22
0
−
mm
×
4
−
mm
cross section and
7
0
−
mm
length. estimate the heat removal rate per blade if the airstream has an inlet temperature and velocity of
25
°
C
and
5
0
m
/
s
. respectively. while the blade has an operating temperature of
6
00
°
C
.
(b) On a locomotive pulling a 10-car train, there may be 2000 of these blades. Based on your result from part (a), how long will it take to slow a train whose total mass is
1
0
6 kg
from a speed of
12
0
km
/
h
to
5
0
km
/
h
using dynamic electric braking?
Branch of science that deals with the stationary and moving bodies under the influence of forces.
Q1/ Find L[t et sin t]
Q2/ Find The Laplace Transform
f(t) = [sint
[sint 0
b) The 50 mm diameter rod is placed in a hole, lubricated walls. There is no clearance
between the rod and the sides of the hole. Determine the change in length of the rod if
an 8 kN load is applied. Take E(brass) = 80 GPa; v = 0.55
[10]
50 mmm
300 rat
3
The Mach number NM for flow of a perfect gas in a pipe depends upon the specific-heat ratio k (dimensionless), the pressure p, the density ρ, and the velocity V. Obtain by dimensional reasoning the form of the Mach number expression. (Buckingham pi)Answer: NM = f(V/sqrt(p/ρ), k)
Vector Mechanics for Engineers: Statics and Dynamics
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.