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Combined Heat and Power System
Ryan Christie Nathan Duray Cory Donavon Joseph Mudd Jason Dikes Ronald Stepanek Supreme Manufacturing
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Background Supreme Manufacturing
Patriot Piston- produce displacement pistons for today’s modern oil fields High-Temperature Ovens for molding pistons 2/22/2019
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Electricity Heating Hot Water Combined Heat and Power cogeneration
High, overall efficiency Low emissions Quiet Steady-state and/ or transient operation Economically viable Electricity Heating Hot Water 2/22/2019
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Needs Identification Reliability Independence from Power Companies
Return on Investment Efficiency 2/22/2019
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Goal Statement Our goal is to create a highly efficient combined heat and power system for small scale industrial use. Small Scale Industrial Commercial 2/22/2019
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Objectives Objective Basis for Measurement Meet Energy Needs 100%
Efficiency 95% Rate of Return 1 Year Lower Carbon Footprint 50% Tax Return 30% Energy Efficiency Rebate Reliability Integration low installation cost 2/22/2019
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constraints Minimum of 30% savings on energy costs
Return on investment within 2 years Continuous, reliable output 2/22/2019
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Criteria Tree 2/22/2019
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Test Environment NAU 98C Tools CNC machine Grinders Drill press Lathe
Mill Ryan Christie’s house Mig welder Ample space Proximity Joseph Mudd’s house Scrap metal/wood Mig and arc welders Cutting torch Grinder Sheet metal 2/22/2019
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Functional Diagram Electricity Heat Hot Water Fuel Source CHP System
Waste Heat CHP System Electricity Heat Hot Water 2/22/2019
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Quality Function Deployment
Engineering Requirements Benchmarks Power Output Life Expectancy Occupied Volume of the System Warm-up time Noise Cost to Manufacture Installation Cost Running Cost Yanmar Baxi DACHS Customer Requirements Reliability X O O Independence from Power Company Economic Viability Energy Capacity Alternative Fuel O Simplicity Emissions Rebates Units kW h m^3 min dB $ Engineering Targets 2/22/2019
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Timeline 2/22/2019
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Questions ?
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