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Dive into the research topics where Quazi Ehtesham Hussain is active.

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Featured researches published by Quazi Ehtesham Hussain.


Volume 4: 12th International Conference on Advanced Vehicle and Tire Technologies; 4th International Conference on Micro- and Nanosystems | 2010

Organic Rankine Cycle for Waste Heat Recovery in a Hybrid Vehicle

Quazi Ehtesham Hussain; David Richens Brigham

The Rankine cycle is used commercially to generate power in stationary power plants using water as the working fluid. For waste heat recovery applications, where the temperature is lower, water is typically replaced by a carefully selected organic fluid. This work is based on using the waste heat in an automobile to generate electricity using the Organic Rankine cycle (ORC) with R245fa (1, 1, 1, 3, 3 penta-fluoropropane) as the working fluid. The electricity thus generated can be used to drive the accessory load or charge the battery which in any case helps improve the fuel economy. A simple transient numerical model has been developed that is capable of capturing the main effects of this cycle. Results show that exhaust heat alone can generate enough electricity that is capable of bringing about an improvement to the fuel economy under transient drive cycle conditions. Power output during EPA Highway drive cycle is much higher than EPA City due to higher exhaust mass flow rate and temperature. Time needed to reach operating conditions or in other words, the warm-up time plays an important role in the overall drive cycle output. Performance is found to improve significantly when coolant waste heat is used in conjunction with the residual exhaust heat to pre-heat the liquid. A sizing study is also performed to keep the cost, weight, and packaging requirement down without sacrificing too much power. With careful selection of heat exchanger design parameters, it has been demonstrated that the backpressure on the engine can be actually lowered by cooling off the exhaust gas. This lower backpressure will further boost the fuel economy gained by the electricity produced by the Rankine bottoming cycle.Copyright


SAE International journal of engines | 2009

Thermoelectric Exhaust Heat Recovery for Hybrid Vehicles

Quazi Ehtesham Hussain; David Richens Brigham; Clay Wesley Maranville


Archive | 2013

Methods and systems for hybrid vehicle waste heat recovery

Quazi Ehtesham Hussain; David Richens Brigham; Mark Jennings


Archive | 2015

METHODS AND SYSTEMS FOR UTILIZING WASTE HEAT FOR A HYBRID VEHICLE

Quazi Ehtesham Hussain; William Samuel Schwartz; David Richens Brigham; Mark Jennings; Furqan Zafar Shaikh; Michael Levin; Donald Masch; Danrich Henry Demitroff; James Patrick O'Neill


Archive | 2015

Controller for Exhaust Heat Conversion to Heat and Electricity

Quazi Ehtesham Hussain; William Samuel Schwartz; Chad Baker; David Richens Brigham; Mark Jennings


Archive | 2017

SYSTEM AND METHOD FOR IN-CYLINDER THERMAL ENERGY RECOVERY AND CONTROLLING CYLINDER TEMPERATURE

Quazi Ehtesham Hussain


Archive | 2016

Steuergerät zum umwandeln von abgaswärme in wärme und elektrizität Control unit to convert from exhaust heat into heat and electricity

William Samuel Schwartz; Mark Jennings; Quazi Ehtesham Hussain; Chad Baker; David Richens Brigham


Archive | 2016

Isolierte Fahrzeugwandstrukturen Isolated vehicle wall structures

Quazi Ehtesham Hussain; William Samuel Schwartz; Mark Jennings


Archive | 2016

Automotive insulated wall structures

Quazi Ehtesham Hussain; William Samuel Schwartz; Mark Jennings


Archive | 2016

Control unit to convert from exhaust heat into heat and electricity

William Samuel Schwartz; Mark Jennings; Quazi Ehtesham Hussain; Chad Baker; David Richens Brigham

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