Analysis of a Turbocharged Diesel Engine

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Analysis of a Turbocharged Diesel Engine. Progress Report 2 11/5/09 Jenelle Pope. Background. Project Steps. Installation Check Out Compressor – air flow rate Radiator – sizing of heat exchanger Intercooler – sizing Selection of components Next Steps Instrumentation Locations - PowerPoint PPT Presentation

Transcript of Analysis of a Turbocharged Diesel Engine

Analysis of a Turbocharged Diesel Engine

Progress Report 211/5/09

Jenelle Pope

Background

Project Steps• Installation Check Out• Compressor – air flow rate• Radiator – sizing of heat exchanger• Intercooler – sizing• Selection of components• Next Steps

– Instrumentation Locations– Power Increase – based on airflow– Heat Exchanger Area

Turbocharger installed in engine

• Turbocharger fits where the old one did

• Brackets and oil lines fit• Turbocharger runs with engine

Turbo Compressor• Airflow out of the compressor, mass flow• CFM = airflow rate• CID = cubic inch displacement = 395• RPM = revolutions per minute = 2000• VE = volumetric efficiency = 80%

• Correcting for a boost pressure of 18psi:

9.1823456

**

VERPMCIDCFM

CFM8.406

Radiator Calculations• Owner define

– Cost– Size (dimensions)

• Surface Area, U• Overall heat transfer, U

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1351221

Intercooler Calculations• Same as radiator• Different flow rates and temps

Heat Exchanger Selections• Unknown value for U• Unknown value for A• Discussion with manufacturer• Feasibility:

– Cost– Size (dimensions)

Intercooler Radiator

Next Steps• Instrumentation Locations

– Inlets/outlets of heat exchangers• Increased Engine Power

– Based on airflow• Validate Heat Exchanger Selections

– Includes estimate on fin area based on actual measurements

– Fit checks– Tube routing