Concept explainers
Reconsider Prob. 15–82. The combustion products are expanded in an isentropic turbine to 140 kPa. Calculate the work produced by this turbine in kJ/kg fuel.

The work produced by an isentropic turbine.
Answer to Problem 83P
The work produced by an isentropic turbine is
Explanation of Solution
Express the balanced equation.
Here, carbon is
Express the change in entropy of the mixture during the mixture when there is no entropy change during an isentropic process.
Here, final entropy is
Express the change in entropy of the mixture at temperature of
Express the change in entropy of the mixture at temperature of
Express the work produced during the isentropic expansion of combustion gases.
Here, initial and final enthalpy is
Express molar mass of the product gases.
Here, molar mass of carbon dioxide, water, sulfur dioxide, nitrogen and oxygen is
Express the work produced per kg of the fuel.
Conclusion:
Refer Equation (I), and write the number of moles.
Refer Table A-1, “molar mass, gas constant and critical point properties”, and write the molecular masses.
Refer Table A-1, “molar mass, gas constant and critical point properties”, and write the universal gas constant of air.
Substitute
Refer Table A-18, A-19, A-20, A-21, A-22, and A-23, and write the initial and final entropy at temperature of
Components |
|
|
307.992 | 269.215 | |
263.542 | 232.597 | |
251.424 | 228.057 | |
267.891 | 243.471 |
Substitute
Refer Table A-18, A-19, A-20, A-21, A-22, and A-23, and write the initial and final entropy at temperature of
Components |
|
|
307.992 | 297.307 | |
263.542 | 240.333 | |
251.242 | 234.115 | |
267.891 | 249.906 |
Substitute
Perform the interpolation method to obtain the final temperature.
Write the formula of interpolation method of two variables.
Here, the variables denote by x and y is entropy change and final temperature respectively.
Show the final temperature corresponding to entropy change as in Table (3).
Entropy change |
Final temperature |
1000 | |
1200 |
Substitute
Thus, the final temperature is,
Refer Table A-18, A-19, A-20, A-21, A-22, and A-23, and write the initial and final enthalpy during the isentropic expansion of combustion gases from
Components |
|
|
98,160 | 50,189 | |
80,352 | 42,037 | |
63,236 | 34,961 | |
66,223 | 36,527 |
Substitute
Substitute
Substitute
Hence, the work produced by an isentropic turbine is
Want to see more full solutions like this?
Chapter 15 Solutions
THERMODYNAMICS-SI ED. EBOOK >I<
- [Q2]: The cost information supplied by the cost accountant is as follows:Sales 20,00 units, $ 10 per unitCalculate the (a/ newsale guantity and (b) new selling price to earn the sameVariable cost $ 6 per unit, Fixed Cost $ 30,000, Profit $ 50,000profit ifi) Variable cost increases by $ 2 per unitil) Fixed cost increase by $ 10,000Ili) Variable cost increase by $ 1 per unit and fixed cost reduces by $ 10,000arrow_forwardcan you please help me perform Visual Inspection and Fractography of the attatched image: Preliminary examination to identify the fracture origin, suspected fatigue striation, and corrosion evidences.arrow_forwardcan you please help[ me conduct Causal Analysis (FTA) on the scenario attatched: FTA diagram which is a fault tree analysis diagram will be used to gain an overview of the entire path of failure from root cause to the top event (i.e., the swing’s detachment) and to identify interactions between misuse, material decay and inspection errors.arrow_forward
- hi can you please help me in finding the stress intensity factor using a k-calcluator for the scenario attathced in the images.arrow_forwardHi, can you please help me .Identify and justify suitable analytical techniques of the scenario below, bearing in mind the kinds of information being handled to reach a conclusion (methodology). A child swing set was discovered to have failed at the fixing at the top of the chains connecting the seat to the top of the swing set. A 12 mm threaded steel bolt, connecting the shackle to the top beam, failed at the start of the threaded region on the linkage closest to the outside side of the swing set . The linkage and bolts were made of electro galvanised mild steel . The rigid bar chain alternatives and fixings were of the same material and appeared to be fitted in accordance with guidelines. The yield strength of the steel used is 260 MPa and the UTS is 380 MPa. The bolt that failed was threaded using a standard thread with a pitch (distance between threads) of 1.75 mm and a depth of approximately 1.1 mm. The swing set in question had been assigned to ‘toddlers’ with the application of…arrow_forwardHi, can you please define and calculate the failure mode of the linkage that failed on the swing (images added) : A child swing set was discovered to have failed at the fixing at the top of the chains connecting the seat to the top of the swing set. A 12 mm threaded steel bolt, connecting the shackle to the top beam, failed at the start of the threaded region on the linkage closest to the outside side of the swing set . The linkage and bolts were made of electro galvanised mild steel . The rigid bar chain alternatives and fixings were of the same material and appeared to be fitted in accordance with guidelines. The yield strength of the steel used is 260 MPa and the UTS is 380 MPa. The bolt that failed was threaded using a standard thread with a pitch (distance between threads) of 1.75 mm and a depth of approximately 1.1 mm. The swing set in question had been assigned to ‘toddlers’ with the application of a caged-type seat. However, the location was within the play area not…arrow_forward
- Page 11-68. The rectangular plate shown is subjected to a uniaxial stress of 2000 psi. Compute the shear stress and the tensile developed on a plane forming an angle of 30° with the longitud axis of the member. (Hint: Assume a cross-sectional area of unity) 2000 psi 2000 psi hparrow_forward11-70. A shear stress (pure shear) of 5000 psi exists on an element. (a) Determine the maximum tensile and compressive stresses caused in the element due to this shear. (b) Sketch the element showing the planes on which the maximum tensile and compressive stresses act.arrow_forward11-20. An aluminum specimen of circular cross section, 0.50 in. in diameter, ruptured under a tensile load of 12,000 lb. The plane of failure was found to be at 48° with a plane perpendicular to the longitudinal axis of the specimen. (a) Compute the shear stress on the failure plane. (b) Compute the maximum tensile stress. (c) Compute the tensile stress on the failure plane. hparrow_forward
- A long flat steel bar 13 mm thick and 120 mm wide has semicircular grooves as shown and carries a tensile load of 50 kN Determine the maximum stress if plate r= 8mm r=21mm r=38mmarrow_forwardProblem 13: F₁ = A =250 N 30% Determine the moment of each of the three forces about point B. F₂ = 300 N 60° 2 m -3 m B 4 m F3=500 Narrow_forward3 kN 3 kN 1.8 kN/m 80 mm B 300 mm D an 1.5 m-1.5 m--1.5 m- PROBLEM 5.47 Using the method of Sec. 5.2, solve Prob. 5.16 PROBLEM 5.16 For the beam and loading shown, determine the maximum normal stress due to bending on a transverse section at C.arrow_forward
- 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





