A stream of 0.3 kg/s of water enters an insulated nozzle at
250C, 500 kPa with negligible velocity. The water exits at 275
kPa with a velocity of 800 m/s. Find the required diameter of the
exit area of the nozzle. Construct all phases that are not given in a
diagram. Label the lines with their values.
An compressor takes in normal nitrogen at 200 kPa, 27C and
sends it at 1000 K and 2 MPa into a heat exchanger. It exits the
heat exchanger at 300 K. Find the specific work done by the
compressor and the specific heat removal in the heat exchanger.
Make an appropriate approximation for the type of process in the
compressor and another one for the one in the heat exchanger. Both
assumptions are mentioned in the list of thermo devices. Assume
that nitrogen is an ideal gas.
A stream of 2 kg/s of refrigerant R-134a enters a condenser at
600 kPa an 30C. It exits as saturated liquid at 20C. What
is the cooling capacity in kW of the condenser? Construct all phases that are not given in a
diagram. Label the lines with their values.
Compressed liquid water at 10 MPa and 40C enters a constant
pressure steam generator through a 20 mm diameter pipe at the rate
of 5 L/s. The water exits the generator at 350C through a pipe
of the same diameter. Show in the diagram that the final phase
of the water is indeed steam and find the rate of heat transfer to
the water. Show a diagram of the process.