Question

Calculate the amount of water that must be fed into an heat exchanger that cools 100...

Calculate the amount of water that must be fed into an heat exchanger that cools 100 kg/h of tomato sauce from 90 to 20°C. The tomato sauce contains 40% solids. The temperature of the water leaving the heat exchanger must not exceed the entering water temperature by 10°C.

mw = 531.82 kg/h

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Speci fic heTomato uice 0 Curata = 4,18 kJ/kfk

Add a comment
Know the answer?
Add Answer to:
Calculate the amount of water that must be fed into an heat exchanger that cools 100...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A heat exchanger is used to heat cold water at 8C entering at a rate of...

    A heat exchanger is used to heat cold water at 8C entering at a rate of 1.2 kg/s by hot air at 90 C entering at rate of 2.5 kg/s. The heat exchanger is not insulated, and is loosing heat at a rate of 28 kJ/s. If the exit temperature of hot air is 20 C, the exit temperature of cold water is

  • An adiabatic heat exchanger is one for which no heat is exchanged with the surroundings. All...

    An adiabatic heat exchanger is one for which no heat is exchanged with the surroundings. All of the heat lost by the hot stream is transferred to the cold stream in this adiabatic process. In a proposed process, propane gas enters a continuous adiabatic heat exchanger at 45 °C and 265 kPa and exits at 255 °C. Superheated steam at 300 °C and 7.0 bar enters the exchanger flowing countercurrently to the propane and exits as a saturated liquid at...

  • d. Answer is not among the choices 24. *A heat exchanger is used to heat cold...

    d. Answer is not among the choices 24. *A heat exchanger is used to heat cold water at 15°C entering at a rate of 2 kg/s by a hot air at 100°C entering at a rate of 3 kg/s. The heat exchanger is losing heat at a heat rate of 40 kJ/s. If the exit temperature of hot air is 20°C, the exit temperature of the cold water is °C. Neglect changes in potential and kinetic energies. 39 49 b....

  • 04: An Ocean Thermal Energy Converter (OTEC) pumps 200 m/s through a heat exchanger in which the temperature (expre...

    04: An Ocean Thermal Energy Converter (OTEC) pumps 200 m/s through a heat exchanger in which the temperature (expressed in Kelvins) drops by 1 %. All the heat extracted is delivered to the ammonia boiler. The ammonia temperature, THT, at the turbine inlet is equal to the mea temperature of the water in the warm water heat exchanger minus 1 K. The temperature, Tcr, of the ammonia leaving the turbine is kept at 10°C by the cooling effect of 250...

  • D Question 1 1 pts An adiabatic heat exchanger is used to heat cold water at...

    D Question 1 1 pts An adiabatic heat exchanger is used to heat cold water at 12 °C entering at a rate of 4 kg/s by hot water entering at 95°C at rate of 2.5 kg/s. The specific heat of water is C_w 4.18 kJ/kg- C. If the exit temperature of hot water is 50 °C, the exit temperature of cold water is O 50 °C 90 °C 95 °C 57 °C 40 °C

  • 4. A Cross-Flow Air-to-Water Heat Exchanger with an effectiveness of 0.58 is used to heat water, ...

    4. A Cross-Flow Air-to-Water Heat Exchanger with an effectiveness of 0.58 is used to heat water, entering at 20°C at a rate of 4 kg/s, using hot air, entering at 127oC at a rate of 10 kg/s. The Overall Heat Transfer Coefficient for the Heat exchanger is 275 W/m'K. Assuming both fluids are unmixed, determine; (i) The Heat Capacity rates for both the air and the water (ii) The heat transfer surface area. ii) The exit temperature of the water...

  • Question 1 Calculate the heat exchange surface area required in a heat exchanger comprised of tubes...

    Question 1 Calculate the heat exchange surface area required in a heat exchanger comprised of tubes with an external diameter of 25 mm in order to cool a solution of ethyl alcohol (mass flow rate kg/h, heat capacity: 3.8 kJ/kg K) from 65 C to 40 °C using a water flow (mass flow rate: 22,680 kg/h, 24,948 , heat capacity: 4.18 kJ/kg K) entering at 5 °C. The overall heat transfer coefficient related to the outside tube surface is 566...

  • A cross-flow heat exchanger used in a cardiopulmonary bypass procedure cools blood flowing at 4 L/min...

    A cross-flow heat exchanger used in a cardiopulmonary bypass procedure cools blood flowing at 4 L/min from a body temperature of 37°C to 25°C in order to induce body hypothermia, which reduces metabolic and oxygen requirements. The coolant is ice water at 0°C, and its flow rate is adjusted to provide an outlet temperature of 13°C. The heat exchanger operates with the blood flow unmixed and the water flow mixed, and the overall heat transfer coefficient is 750 W/m2.K. The...

  • Steam Generator air (inlet) - 320°C P. = 100 kPa th =0.5 kg/s heat exchanger -...

    Steam Generator air (inlet) - 320°C P. = 100 kPa th =0.5 kg/s heat exchanger - water (inlet) T = 20°C Pw = 100 kPa m = 0.025 kg/s Problem sketch Solve with EES. Document all necessary balances The problem sketch illustrates a heat exchanger in which hot air is used to generate steam. Air enters the heat exchanger at 1a, in = 320C, Pa = 100 kPa, and ma -0.5 kg/s. Model air as an ideal gas with constant...

  • Could someone help with the following problem??? Helium enters a constant flow heat exchanger at 100...

    Could someone help with the following problem??? Helium enters a constant flow heat exchanger at 100 kPa, 100 C, and 90 m / s, and receives heat in the amount of 120 kJ / kg as it flows through it. Helium leaves the heat exchanger at 80 kPa with a speed of 150 0 m / s. Determine the pressure and temperature of nitrogen stagnation in the input and output states. Helium enters a constant flow heat exchanger at 100...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT