REFRIGERATION CYCLES 729
dharm
\M-therm\Th14-2.pm5
(ii)Mass of air in circulation :
Refrigerating effect per kg of air
= cp (T 3 – T 2 ) = 1.003 (289 – 196.25) = 93.03 kJ/kg.
Refrigerating effect produced by the refrigerating machine
= 6 × 14000 = 84000 kJ/h.
Hence mass of air in circulation
=
84000
93 03 60.×
= 15.05 kg/min. (Ans.)
(iii), (iv) Piston displacement of compressor
= Volume corresponding to point 3 i.e., V 3
∴ V 3 =
mRT
p
3
2
= ×××
×
15.05 0.287 1000 289
1.0 10^5
= 12.48 m^3 /min. (Ans.)
∴ Swept volume per stroke
= 12 48
2240
.
×
= 0.026 m^3
If, dc = Dia. of compressor cylinder, and
l = Length of stroke,
then
π
4
d^2
c× l = 0.026
or
π
4
200
1000
d^2
c ×
F
HG
I
KJ = 0.026
∴ dc = 0 026 1000 4
200
12
.
/
××
×
F
HG
I
π KJ
= 0.407 m or 407 mm
i.e., Diameter or bore of the compressor cylinder = 407 mm. (Ans.)
Piston displacement of expander
= Volume corresponding to point 2 i.e., V 2
∴ V 2 =
mRT
p
2
2
= ×××
×
15.05 0.287 1000 196.25
1105
= 8.476 m^3 /min. (Ans.)
∴ Swept volume per stroke
=^8476
2240
.
×
= 0.0176 m^3.
If de = dia. of the expander, and
l = length of stroke,
then
π
4
d^2
e × l = 0.0176
or
π
4
200
1000
d^2
e ×
F
HG
I
KJ = 0.0176
∴ de = 0 0176 1000 4
200
12
.
/
××
×
F
HG
I
π KJ
= 0.335 m or 335 mm
i.e., Diameter or bore of the expander cylinder = 335 mm. (Ans.)