Question

The exchanged heat in a heat exchanger was defined by measuring the mass flow from hot side and temperatures before and after
0 0
Add a comment Improve this question Transcribed image text
Answer #1

کی) Given C qm 2.0 t ou fals In: 85.6 10.5 Tout = 43.2 80.5 c AT: Tout - Tin Tin (antos 419.3.! Music 63.2.40.5) ? mwi SAMO P

Add a comment
Know the answer?
Add Answer to:
The exchanged heat in a heat exchanger was defined by measuring the mass flow from hot...
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 counter-flow heat exchanger is stated to have an overall heat transfer coefficient of 284 W/m2.K...

    A counter-flow heat exchanger is stated to have an overall heat transfer coefficient of 284 W/m2.K when operating at design and clean conditions. Hot fluid enters the tube side at 101°C and exits at 71°C, while cold fluid enters the shell side at 27°C and exits at 42°C. After a period of use, built-up scale in the heat exchanger gives a fouling factor of 0.0004 m2 K/W. The surface area is 93 m². Assume both hot and cold fluids have...

  • In an isolated body tube heat exchanger 4.5 kg / h mass flow rate inside the...

    In an isolated body tube heat exchanger 4.5 kg / h mass flow rate inside the pipes (Cp = 4.18 kJ / kgoC) to heat from 20oC to 70oC It is used. Heat, 10 kg / h by body hot oil entering at mass flow rate and 170oC (Cp = 2.30 kJ / kgoC). By accepting the heat exchanger adiabatically, a) the outlet temperature of the oil, and b) Calculate the entropy production rate in the heat exchanger.

  • 2) Hot air enters a heat exchanger at 350°C and exits at 153°C. The heat extracted...

    2) Hot air enters a heat exchanger at 350°C and exits at 153°C. The heat extracted is used to boil 0.277 kg/s of 100°C water (from saturated liquid to saturated steam). The heat exchanger is a single-shell shell-and-tube heat exchanger with two tube passes. The overall heat transfer coefficient for the hot side is 240 W/(m2). Assume a constant specific heat for air of cp = 1.005 kJ/(kg°C). The pressure of the hot air and the boiling water is P...

  • 2) Hot air enters a heat exchanger at 350°C and exits at 155°C. The heat extracted...

    2) Hot air enters a heat exchanger at 350°C and exits at 155°C. The heat extracted is used to boil 0.283 kg/s of 100°C water (from saturated liquid to saturated steam). The heat exchanger is a single-shell shell-and-tube heat exchanger with two tube passes. The overall heat transfer coefficient for the hot side is 240 W/(m²°C). Assume a constant specific heat for air of Cp = 1.005 kJ/(kg °C). The pressure of the hot air and the boiling water is...

  • Hot water flows thorough a parallel flow heat exchanger at a rate of 10 kg/min and...

    Hot water flows thorough a parallel flow heat exchanger at a rate of 10 kg/min and is cooled by a cold water stream of flow rate 25 kg/min. The inlet temperatures of hot and cold water streams are 70 oC and 25 oC, respectively. The outlet temperature of the hot water is expected to be 50 oC. The individual convective heat transfer coefficient on both sides of the heat transfer area is 600 W/m2 .K. Take the specific heat for...

  • Question 5 The following data is given for counter flow in concentric tube heat exchanger, mean...

    Question 5 The following data is given for counter flow in concentric tube heat exchanger, mean heat transfer area = 0.02 m2 Test No Flow rate hot Flow rate Tin hotTout hot|Tin cold Tout cold (L/min) cold (L/min) (THI) (TH2) (TCI) (TC2) 13 1 60 56 30 42 a) Calculate the heat transfer rate in kW. b) The overall heat transfer coefficient U. c) The mean temperature efficiency of the two circuits (ń).

  • [10] Design Problem As shown in the figure below, a double-pipe parallel-flow heat exchanger is used...

    [10] Design Problem As shown in the figure below, a double-pipe parallel-flow heat exchanger is used to heat cold fluid which is water (Cp = 4180 J/(kg.K), p = 1000 kg/m) from 20°C to 80°C at a rate of 0.15 kg/s. The heating is to be accomplished by hot fluid, which is geothermal water (Cp = 4310 J/(kg.K), p = 1050 kg/m²) available at 130°C at a mass flow rate of 0.25 kg/s. The inner tube has an inner diameter...

  • Hot air enters a heat exchanger at 350°C and exits at (149°C. The heat extracted is...

    Hot air enters a heat exchanger at 350°C and exits at (149°C. The heat extracted is used to boil (0.263) kg/s of 100°C water (from saturated liquid to saturated steam). The heat exchanger is a single-shell shell-and-tube heat exchanger with two tube passes. The overall heat transfer coefficient for the hot side is 240 W/(m2°C). Assume a constant specific heat for air of Cp = 1.005 kJ/(kgC). The pressure of the hot air and the boiling water is P =...

  • The wall of a heat exchanger separates hot water at Tin 90 C with h." 80 w/m2.K from cold water a...

    The wall of a heat exchanger separates hot water at Tin 90 C with h." 80 w/m2.K from cold water at Tout 10 C with h,ut 60 W/m2.K. The thermal conductivity of the heat exchanger is 180 W/m.K To extend the heat transfer area, two-dimensional ridges are machined on the cold side of the wall. This geometry causes non-uniform thermal stresses, which may become critical for crack initiation along the lines between two ridges. To predict thermal stresses, the temperature...

  • 10-58) An air preheater for a power plant consists of a cross-flow heat exchanger with hot...

    10-58) An air preheater for a power plant consists of a cross-flow heat exchanger with hot exhaust gases used to heat incoming air at I atm and 300 K. The gases enter at 375°C with a flow rate of 5 kg/s. The airflow rate is 5.0 kg/s, and the heat exchanger has A = 110 m2 and U = 50 W/m2 oC. Calculate the heat-transfer rate and exit temperatures for two cases, both fluids unmixed and one fluid mixed. Assume...

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