Steam enters a converging nozzle at 5.0 MPa and 400°C with a negligible velocity, and it exits at 3.0 MPa. For a nozzle exit area of 75 cm2, determine the exit velocity, mass flow rate, and exit Mach number if the nozzle (a) is isentropic and (b) has an efficiency of 94 percent.
a)
The exit velocity, mass flow rate, and exit Mach number if the nozzle is isentropic.
Answer to Problem 110P
The exit velocity of the stream is
The mass flow rate is
The Mach number at the exit of nozzle is
Explanation of Solution
For isentropic,
The flow of steam through the nozzle is steady and isentropic.
Write the expression of energy balance equation for the converging-diverging nozzle.
Inlet velocity is equal to zero
Here, enthalpy at exit is
Write the expression to calculate the exit area of the nozzle.
Here, mass flow rate of steam is
Write the expression to calculate the velocity of sound through the steam at the exit of nozzle.
Here, pressure drop in the nozzle is
Write the expression to calculate the Mach number for the steam at the exit of nozzle.
Here, Mach number of the steam at the exit is
Conclusion:
Refer Table A-6, “Superheated water”, obtain the values of
Here, stagnation enthalpy at the inlet is
Refer Table A-6, “Superheated water”, obtain the values of
The stagnation enthalpy of steam at the inlet is equal to the actual enthalpy
at the inlet
Substitute
Thus, the exit velocity of the stream is
Refer Table A-6, “Superheated water”, obtain the value of
Substitute
Therefore, the mass flow rate is
Refer Table A-6, “Superheated water”, obtain the value of specific volume of steam at the entropy of
Substitute
Substitute
Hence, the Mach number at the exit of nozzle is
b)
The exit velocity, mass flow rate, and exit Mach number if the has an efficiency of 94 percent.
Answer to Problem 110P
The exit velocity of the stream is
The mass flow rate is
The Mach number at the exit of nozzle is
Explanation of Solution
Nozzle has an efficiency of 94 percent:
Write the expression for the efficiency of nozzle.
Here, efficiency of nozzle is
Write the expression of energy balance equation for the converging-diverging nozzle.
Inlet velocity is equal to zero
Here, velocity of steam at the inlet of nozzle is
Write the expression to calculate the exit area of the nozzle.
Here, mass flow rate of steam is
Write the expression to calculate the velocity of sound through the steam at the exit of nozzle.
Here, pressure drop in the nozzle is
Write the expression to calculate the Mach number for the steam at the exit of nozzle.
Here, Mach number of the steam at the exit is
Conclusion:
Refer Table A-6, “Superheated water”, obtain the values of
Here, at superheated condition the entropy of saturated steam is
Refer Table A-6, “Superheated water”, obtain the values of
Substitute
The stagnation enthalpy of steam at the inlet is equal to the actual enthalpy
at the inlet
Substitute
Thus, the exit velocity of the stream is
Refer Table A-6, “Superheated water”, obtain the value of
Substitute
Thus, the mass flow rate is
Refer Table A-6, “Superheated water”, obtain the value of specific volume of steam
Substitute
Substitute
Thus, the Mach number at the exit of nozzle is
Want to see more full solutions like this?
Chapter 17 Solutions
Thermodynamics: An Engineering Approach
- Note: Please provide a clear, step-by-step simplified handwritten working out (no explanations!), ensuring it is done without any AI involvement. I require an expert-level answer, and I will assess and rate based on the quality and accuracy of your work and refer to the provided image for more clarity. Make sure to double-check everything for correctness before submitting thanks!. Question: The rectangular gate shown below is 3 m wide. Compute the force P needed to hold the gate in the position shown.arrow_forwardNote: Please provide a clear, step-by-step simplified handwritten working out (no explanations!), ensuring it is done without any AI involvement. I require an expert-level answer, and I will assess and rate based on the quality and accuracy of your work and refer to the provided image for more clarity. Make sure to double-check everything for correctness before submitting thanks!. Question1: If the following container is 0.6m high, 1.2m wide and half full with water, determine the pressure acting at points A, B, and C if ax=2.6ms^-2.arrow_forwardPlease read the imagearrow_forward
- Chapter 12 - Lecture Notes.pptx: (MAE 272-01) (SP25) DY... Scoresarrow_forwardConsider a large 6-cm-thick stainless steel plate (k = 15.1 W/m-K) in which heat is generated uniformly at a rate of 5 × 105 W/m³. Both sides of the plate are exposed to an environment at 30°C with a heat transfer coefficient of 60 W/m²K. Determine the value of the highest and lowest temperature. The highest temperature is The lowest temperature is °C. °C.arrow_forwardSketch and explain a PV Diagram and a Temperature Entropy Diagram for a 4 stroke diesel engine please, please explain into detail the difference bewteen the two and referance the a diagram. Please include a sketch or an image of each diagramarrow_forwardDraw left view of the first orthographic projectionarrow_forwardSketch and Describe a timing diagram for a 2 stroke diesel engine emphasis on the 2 stroke as my last answer explained 4 stroke please include a diagram or sketch.arrow_forwardA 4 ft 200 Ib 1000 Ib.ft C 2 ft 350 Ib - за в 2.5 ft 150 Ib 250 Ib 375 300 Ib Replace the force system acting on the frame. shown in the figure by a resultant force (magnitude and direction), and specify where its line of action intersects member (AB), measured from point (A).arrow_forwardA continuous flow calorimeter was used to obtain the calorific value of a sample of fuel and the following data collected: Mass of fuel: 2.25 kgInlet water temperature: 11 ° COutlet water temperature 60 ° CQuantity of water: 360 Liters Calorimeter efficiency: 85%Calculate the calorific value of the sample ( kJ / kg ). ive submitted this question twice and have gotten two way different answers. looking for some help thanksarrow_forward15 kg of steel ball bearings at 100 ° C is immersed in 25 kg of water at 20 ° C . Assuming no loss of heat to or from the container, calculate the final temperature of the water after equilibrium has been attained.Specific heat of steel: 0.4857 kJ / kg / ° KSpecific heat of water: 4.187 kJ / kg / ° Karrow_forwardSketch and explain a PV Diagram and a Temperature Entropy Diagram for a 4 stroke diesel enginearrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_ios
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY