Aggie Power Generation supplies electrical power to residential customers for many U.S. cities. Its main power generation plants are located in Los Angeles, Tulsa, and Seattle. The following table shows Aggie Power Generation's major residential markets, the annual demand in each market (in megawatts or MW), and the cost to supply electricity to each market from each power generation plant (in $/MW). Distribution Costs ($/MW) Tulsa City Seattle Portland San Francisco Boise Reno Bozeman Laramie 1 2 3 4 5 6 7 8 Los Angeles 356.25 356.25 9 178.13 356.25 237.50 415.63 356.25 356.25 593.75 178.13 593.75 475.00 475.00 475.00 415.63 415.63 356.25 475.00 Seattle 296.88 59.38 178.13 296.88 296.88 356.25 296.88 356.25 475.00 593.75 Demand (MW) 593.75 Park City Flagstaff Durango 356.25 1,543.75 (a) If there are no restrictions on the amount of power that can be supplied by any of the power plants, what is the optimal solution to this problem? (Enter your optimal solution as a comma-separated list for the amount of power each power plant supplies to each city in the format shown below. Report electrical power in MW.) (L1, T1, 51), (L2, T2, 52}. . {L10, T10, S10} = 950.00 831.25 2.375.00 593.75 950.00 593.75 1,187.50 712.50 1.187.50 (b) If at most 4,000 MW of power can be supplied by any one of the power plants, what is the optimal solution? (Enter your optimal solution as a comma-separated list for the amount of power each power plant supplies to each city in the format shown below. Report electrical power in MW. Round your answers to two decimal places.) (L1, T1, 51}, {L2, T2, 52},{(L10, T10, S10} = What is the annual increase in power distribution cost that results from adding these constraints to the original formulation? (Round your answer to the nearest whole dollar.)
Aggie Power Generation supplies electrical power to residential customers for many U.S. cities. Its main power generation plants are located in Los Angeles, Tulsa, and Seattle. The following table shows Aggie Power Generation's major residential markets, the annual demand in each market (in megawatts or MW), and the cost to supply electricity to each market from each power generation plant (in $/MW). Distribution Costs ($/MW) Tulsa City Seattle Portland San Francisco Boise Reno Bozeman Laramie 1 2 3 4 5 6 7 8 Los Angeles 356.25 356.25 9 178.13 356.25 237.50 415.63 356.25 356.25 593.75 178.13 593.75 475.00 475.00 475.00 415.63 415.63 356.25 475.00 Seattle 296.88 59.38 178.13 296.88 296.88 356.25 296.88 356.25 475.00 593.75 Demand (MW) 593.75 Park City Flagstaff Durango 356.25 1,543.75 (a) If there are no restrictions on the amount of power that can be supplied by any of the power plants, what is the optimal solution to this problem? (Enter your optimal solution as a comma-separated list for the amount of power each power plant supplies to each city in the format shown below. Report electrical power in MW.) (L1, T1, 51), (L2, T2, 52}. . {L10, T10, S10} = 950.00 831.25 2.375.00 593.75 950.00 593.75 1,187.50 712.50 1.187.50 (b) If at most 4,000 MW of power can be supplied by any one of the power plants, what is the optimal solution? (Enter your optimal solution as a comma-separated list for the amount of power each power plant supplies to each city in the format shown below. Report electrical power in MW. Round your answers to two decimal places.) (L1, T1, 51}, {L2, T2, 52},{(L10, T10, S10} = What is the annual increase in power distribution cost that results from adding these constraints to the original formulation? (Round your answer to the nearest whole dollar.)
Purchasing and Supply Chain Management
6th Edition
ISBN:9781285869681
Author:Robert M. Monczka, Robert B. Handfield, Larry C. Giunipero, James L. Patterson
Publisher:Robert M. Monczka, Robert B. Handfield, Larry C. Giunipero, James L. Patterson
ChapterC: Cases
Section: Chapter Questions
Problem 5.1SC: Scenario 3 Ben Gibson, the purchasing manager at Coastal Products, was reviewing purchasing...
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