CHAPTER 5 1. A two-stag two-stagee cascade refrige refrigerati ration on system system uses ammonia ammonia as the working working substanc substance. e. The evaporator is at –35 C and the high-pressure condenser is at 1514.2 kPa. The cascade cascade condenser condenser is a direct direct contact type. type. The refriger refrigeratio ation n load is 90 tons. Determine (a) the mass flow rate in the lower pressure loop, (b) the mass flow rate in the high-p h igh-pressur ressuree loop, (c) the power required, required, (d) the COP, and (e) the quantity of the fluid entering the evaporator. Solution:
a = mass flow rate in the lower pressure loop. (a) m a m
Q A
=
h1 − h4
=
( 90)( 3.516) 1415.2 − 183.6
=
0.257 kg s
b = mass flow rate in the high pressure loop. (b) m b ( h5 m
−
h8 )
=
a ( h2 m
b (1457.8 − 385) m a m
=
=
h3 )
=
0.257(1610 − 183.6 )
=
a ( h2 − h1 ) + mb ( h6 m
0.342 kg s
(c) W T W T
−
=
1 + W 2 W
−
h5 )
0.257(1610 − 1415.2 ) + 0.342(1670 − 1457.8)
Q A (d) COP = W T
=
( 90)( 3.516 ) 122.6
=
=
122.6 kW
2.58
(e) at 4, p = 93.5 kPa , h = 183.6 kJ kg t = −35 C h f = 41.2 kJ kg , h fg = 1374.0 kJ kg h − h f 183.6 − 41.2 (100% ) = 10.36% x = = h fg 1374.0 2. A two-stage cascade refrigeration system uses ammonia as the refrigerant. The mass flow rate in the high-pressure loop is 0.10 kg/s. The condenser saturated
CHAPTER 5 temperature is 38 C and the evaporator temperature is – 40 C. The cascade condenser is a direct contact type. Determine (a) the refrigerating effect in tons, (b) the power required, and (c) the COP. Solution: At 38 C, p = 1472.4 kPa At – 40 C, p = 72.0 kPa Therefore, cascade condenser pressure = t sat = −7.25 C
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