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Dive into the research topics where Tayfun Özgür is active.

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Featured researches published by Tayfun Özgür.


International Journal of Green Energy | 2015

Investigation of Nanoparticle Additives to Biodiesel for Improvement of the Performance and Exhaust Emissions in a Compression Ignition Engine

Tayfun Özgür; Mustafa Ozcanli; Kadir Aydin

Worldwide energy demand has been growing steadily during the past five decades and most experts believe that this trend will continue to rise. The amount of emitted harmful emission gases increases in parallel with increasing energy consumption. This increase has forced many countries to take various precautions, and various restrictions on emitted emissions have been carried. In this study, effects of addition of oxygen containing nanoparticle additives to biodiesel on fuel properties and effects on diesel engine performance and exhaust emissions were investigated. Two different nanoparticle additives, namely MgO and SiO2, were added to biodiesel at the addition dosage of 25 and 50 ppm. Fuel properties, engine performance, and exhaust emission characteristics of obtained modified fuels were examined. As a result of this study, engine emission values NOx and CO were decreased and engine performance values slightly increased with the addition of nanoparticle additives.


MATTER: International Journal of Science and Technology | 2017

PERFORMANCE, EMISSION AND EFFICIENCY ANALYSIS OF A DIESEL ENGINE OPERATED WITH DIESEL AND DIESEL-ETHANOL (E20) BLEND

Tayfun Özgür; Erdi Tosun; Ceyla Ozgur; Gökhan Tüccar; Kadir Aydin

Conventional fossil fuel sources face with scarcity risk. Therefore, researchers are trying to find new renewable alternative energy sources which have potential to replace conventional sources. MATTER: International Journal of Science and Technology ISSN 2454-5880 Available Online at: http://grdspublishing.org/ 52 Alcohol and biodiesel are prominent sources among others. In this study, performance and emission characteristics of a diesel fuel and ethanol added (20% vol.) diesel fuel (E20) operated compression ignition engine was studied in between 1000 2600 engine speed. Torque, power, specific fuel consumption curves as performance and carbon monoxide (CO), nitrogen oxides (NOx) curves as emission parameters with respect to engine speed were obtained. Energy and exergy efficiency curves versus engine speed in order to assess the system thermodynamically were also obtained. Results showed that, while torque, power, CO emission were decreased, specific fuel consumption, NOx emission were increased with use of diesel-ethanol blends. On the other hand, both energy and exergy efficiency values were decreased when alcohol was added to diesel fuel.


Applied Mechanics and Materials | 2015

Determination of the Impacts of Nanoparticule Additives into Diesel Fuel on NOx Emmision Characteristics of a Heavy Duty Diesel Engine

Ceyla Ozgur; Tayfun Özgür; Mustafa Ozcanli; Kadir Aydin

Transport is crucial for economic and social development of a society as it serves a key role for transportation of goods and people. But it is not free of negative externalities. Operation of transport vehicles require energy use and this energy is mostly generated with fossil fuel combustion. Unfortunately, the fossil fuel combustion comes with both global emissions (CO2, N2O, CH4), which cause climate change, and local emissions (PM, NOx, HC, CO, O3), which cause adverse health effects and damage natural environment. In this paper the level of NOx emission by adding fuel additive metal oxide based nanoparticles in heavy duty engines were investigated. Three different nanoparticle additives namely Titanium Oxide (TiO2), Silicon Oxide (SiO2) and Zinc Oxide (ZnO), were added to diesel fuel at the dosages of 15, 20 and 25 ppm. Eventually, the most proper additive and addition dosages were indicated.


Applied Mechanics and Materials | 2015

Analysis of Engine Performance Parameters of Electrically Assisted Turbocharged Diesel Engine

Tayfun Özgür; Kadir Aydin

Charging system is used to increase the charge density. Supercharging system suffers from fuel consumption penalty because of compressor powered by engine output. Turbocharging system uses wasted exhaust energy that means compressor powered by exhaust turbine but has a turbo lag problem. The electrically assisted turbocharger which can eliminate turbo lag problem and fuel consumption penalty is the topic of this paper. The purpose of this paper is to analyze the effect of electrically assisted turbocharger on diesel engine performance parameters. The AVL Boost software program was used to simulate the electrically assisted turbocharged diesel engine. Simulations results showed that electrically assisted turbocharger increases low end torque and improves fuel economy.


Fuel | 2014

Effect of diesel–microalgae biodiesel–butanol blends on performance and emissions of diesel engine

Gökhan Tuccar; Tayfun Özgür; Kadir Aydin


Fuel | 2014

Diesel engine emissions and performance from blends of citrus sinensis biodiesel and diesel fuel

Gökhan Tuccar; Erdi Tosun; Tayfun Özgür; Kadir Aydin


International Journal of Global Warming | 2015

Effect of nanoparticle additives on NOx emissions of diesel fuelled compression ignition engine

Tayfun Özgür; Gökhan Tuccar; Erinç Uludamar; Ali Can Yilmaz; Ceyla Güngör; Mustafa Ozcanli; Hasan Serin; Kadir Aydin


European Mechanical Science | 2017

Comparative analysis of various modelling techniques for emission prediction of diesel engine fueled by diesel fuel with nanoparticle additives

Erdi Tosun; Tayfun Özgür; Ceyla Ozgur; Mustafa Ozcanli; Hasan Serin; Kadir Aydin


Advanced Materials Research | 2014

Investigation of Effects Ofinlet Boundary Conditions on the Flow Behaviour in a Diesel Injector

Gökhan Tuccar; Tayfun Özgür; Erdi Tosun; Ceyla Ozgur; Kadi̇r Aydin


Advanced Materials Research | 2014

Numerical Studies of Engine Performance, Emission and Combustion Characteristics of a Diesel Engine Fuelled with Hydrogen Blends

Tayfun Özgür; Erdi Tosun; Ceyla Ozgur; Gökhan Tuccar; Kadir Aydin

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Gökhan Tüccar

Adana Science and Technology University

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