The price of coal that will enable the IGCC plant to recover their cost difference from fuel saving in 5 year.
Answer to Problem 27P
The price of coal that will enable the IGCC plant to recover their cost difference from fuel saving in 5 year is
Explanation of Solution
Determine the construction costs of coal.
Determine the construction costs of IGCC.
Determine the construction costs difference of coal and IGCC.
Determine the amount of electricity produced by either plant in 5 years.
Here, the power generation capacity of power plant is
Determine the amount of fuel needed to generate a specified amount of power.
Here, the efficiency of plant is
Determine the mass difference between plants.
Here, the mass of the coal in coal plant is
Determine the unit cost of coal per ton used in the power plant.
Here, the construction cost difference is
Conclusion:
Substitute
Substitute
Substitute
Substitute
For coal plant,
Substitute
For IGCC plant,
Substitute
Substitute
Substitute
Thus, the price of coal that will enable the IGCC plant to recover their cost difference from fuel saving in 5 year is
Want to see more full solutions like this?
Chapter 6 Solutions
THERMODYNAMICS (LL)-W/ACCESS >CUSTOM<
- The gas turbine in the power generation building is a vital element of the performance and financial viability of the whole plant. Investigate the principles of operation of the gas turbine and relate your findings to the design, running and maintenance of such a system.arrow_forwardAsnwer all the five questions.arrow_forwardBiomass is used as fuel to power the following cogeneration plant on a school. The turbine drives an electric generator to produce electricity, and part of the steam is extracted to provide heating to campus buildings. The boiler provides 106 kg/h of steam at 6 MPa, 520 °C, of which 4x105 kg/h is extracted between the first and second turbine stages at 1 MPa and diverted to the building heating load. Condensate returns from the building heating load at 0.95 MPa, 115 °C, and it is mixed with liquid exiting the lower pressure pump at 0.95 MPa. The entire flow is then pumped to the boiler pressure. Saturated liquid at 6 kPa leaves the condenser. The turbine stages and the pumps operate with isentropic efficiencies of 89 and 85%, respectively. The efficiency of the electric generator is 93% for converting turbine mechanical power into electricity. Calculate the heating load in kJ/h. Calculate the electric power generated in MWe.arrow_forward
- As a power plant engineer working in power generation construction company, you are required to conduct a preliminary study and analysis of a vapor power plant as requested by a client. On this note you have come out with regenerative power cycle operating under ideal condition. Within the system, steam enters the turbine at 16 MPa and 620°C and is condensed in the condenser at a pressure of 20 kPa. Some steam leaves the turbine at a pressure of 1.5 MPa and enters the open feedwater heater. a) State the assumptions in conducting the analysis. Draw the schematic (label the state) and T-S diagram of the power plant cycle. b)Determine the fraction of steam extracted from the turbine and the thermal efficiency of the cycle. Suggest further improvements that can be made to increase the efficiency of the power plantarrow_forwardi need the answer quicklyarrow_forwardIn a fuel fired steam-electric power plant, the output required is 250MW over a 10 hour period. Given the following efficiencies, Generator-90%, Turbine – 50%, Boiler – 85%; give the output power (in units as required) for each stage of the plant:i)Turbine (BTU) ii)Boiler (BTU)arrow_forward
- Q1) Consider a cogeneration power plant modified with regeneration. Steam enters the turbine at 6 MPa and 450 °C at a rate of 60 kg/s and expands to a pressure of 0.4 MPa. At this pressure, 20% of the steam is extracted from the turbine, and the remainder expands to a pressure of 10 kPa. Part of the extracted steam is used to heat feedwater in an open feedwater heater. The rest of the extracted steam is used for process heating and leaves the process heater as a saturated liquid at 0.4 MPa. It is subsequently mixed with the feedwater leaving the feedwater heater, and the mixture is pumped to the boiler pressure. The steam in the condenser is cooled and condensed by the cooling water from a nearby river, which enters the adiabatic condenser at a rate of 600 kg/s. The enthalpies of all respective points of the system are given below. Turbine h = 191.81 hz = 192.20 h3 = h4 = h, = 604.66 hs = 610.73 hg = 3302.9 h, = hg = h10 = 2665.6 Boiler 11 10 Process heater Condenser| hu = 2128.8 4 PI…arrow_forwardQuestion 1 Consider a cogeneration power plant modified with regeneration. Steam enters the turbine at 8 MPa and 500°C at a rate of 20 kg/s and expands to a pressure of 0.4 MPa. At this pressure, 55% of the steam is extracted from the turbine, and the remainder expands to a pressure of 15 kPa. Part of the extracted steam is used to heat feedwater in an open feedwater heater. The rest of the extracted steam is used for process heating and leaves the process heater as a saturated liquid at 0.4 MPa. It is subsequently mixed with the feedwater leaving the feedwater heater, and the mixture is pumped to the boiler pressure. The steam in the condenser is cooled and condensed by the cooling water from a nearby river, which enters the adiabatic condenser at a rate of 450 kg/s. Determine: 1. The total power output of the turbine 2. The temperature rise of the cooling water from the river in the condenser 3. The mass flow rate of steam through the process heater 4. The rate of heat transfer to…arrow_forwardYou are an operating engineer in a steam power plant which is working on a regenerative Rankine cycle and you are requested to find the thermal efficiency of this cycle. You read the following data from the measuring devices used in the power plant: The pressure and temperature of the steam at the inlet of the turbine are 7000kPa and 550°C, respectively. The pressure at the inlet of the condenser is 22 kPa. The extracted steam from the turbine is at 500 kPa and it is used to heat the feed water in an open feed water heater. - The pumps and turbine efficiencies are 80% and 85%, respectively. Don't forget to show the cvele on a T-s diagram.arrow_forward
- How much does it cost to start and run a Gas Turbine Power Plant running on Diesel Fuel?arrow_forwardWhat components can be added to a simple open cycle gas turbine power plant in order to increase its efficiency? Given the gas turbine is powered with auto-diesel fuel.arrow_forwardA steam cycle to be installed between a geothermal at 255 ° C and a lake at 15 ° C will have 90MW heat transfer to the boiler of the power plant and 30MW to the stream. What should be the thermal efficiency of the steam power plant so that the electric power produced by this power plant is maximum? A-0.38B-0.45C-0.56D-0.64E-0.78 (Note: This question is Turkish) orginal question: 255 ºC de bir jeotermal ile 15 ºC’deki bir göl arasına kurulacak bir buhar çevrimi ile çalışacak güç santralinin kazanına 90MW ısı geçişi ve akarsuya ısı kaybı 30MW olmaktadır. Bu güç santralinin ürettiği elektrik gücünün maksimum olması için buhar santralinin ısıl verimi ne olmalıdır?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