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8篇 您的检索式:作者名="VarolA"
    题名 作者 年代 出处 被引量
1Increasing the efficiencyof wind turbines 显示文摘VAROLA A ILKILIC C VAROL Y 2001Journal of Wind Engineering and Indus- trial Aerodynamics2001,,89:1
2Increasing the efficiency of wind turbines 显示文摘VAROLA A ILKILIC C VAROL Y 2001Journal of Wind Engineering and Industrial Aerodynamics2001,89,9:1
3Investigation of co-combustion characteristics of low quality lignite coals and biomass with thermogravimetric analysis 显示文摘Varola M Atimtaya A T Bayb B 2010Thermochimica Acta2010,510,1:1
4A comparative numerical study on natural convection in inclined wavy and flat-plate solar collectors显示文摘Varola Y Oztop H F 2008Building Environment2008,43,9:1
5Investigation of co-combustion characteristics of low quality lignite coals and biomass with thermogravimetric analysis显示文摘Varola M Atimtaya A T Bayb B 2010Thermochimica Acta2010,510,:1
6Alternative bone expansion technique for immediate placementof implants in the edentulousp- osteriormandibular ridge: a clinical re- port显示文摘Basa S VarolA Turker N 2004IntJ OralMaxillofac Implants2004,19,4:1
7Increasing the Effi- ciency of Windturbines 显示文摘VAROLA A ILKILICC VAROLY 2001Journal of Wind Engineering and Industrial Aerodynamics2001,89,:1
8Experimental investigation on combustion and emission characteristics of reactivity controlled compression ignition engine powered with iso-propanol/biodiesel blends显示文摘Recently, reactivity controlled compression ignition (RCCI) has been proposed inorder to achieve a higher thermal efficiency with lower emissions than conventional combustion. In RCCI mode, as the fuel types and their combinations affects the reactivity stratificationinside cylinder, thus combustion control, in present study, iso-propanol was evaluated as lowreactivity fuel (LRF) when petroleum diesel, commercial biodiesel and their blends were highreactivity fuels. It is of great importance that iso-propanol and biodiesel be used together inRCCI mode, as they significantly affect the in-cylinder stratification due to their high octane/cetane number. Therefore, the reactivity controlled compression ignition (RCCI) combustioncharacteristics was investigated in a diesel research engine using iso-propanol, petroleumdiesel, biodiesel and their blends as fuels. Tests were conducted on varying loadings (from20% to 60% of max torque) and premixed ratios of LRF (Rp Z 0, 0.15, 0.30, 0.45, and0.60) at a constant engine speed of 2400 rpm. Results, which were compared with conventionaldiesel combustion (CDC), showed that, as the premixed ratio (Rp) of low-reactivity fuel (isopropanol) increased, ignition delay (ID) period prolonged while combustion duration (CD) and rate of pressure rise (RoPR) reduced assisted to reduce NO emissions and smoke opacity in theexhaust. NO and smoke opacity reduced simultaneously for biodiesel-propanol combinationsup to 40% under 20% load and 0.60 premixed ratio of LRF compared to CDC. Propanol premixed ratio of 0.30 at 60% load was found to be optimum concerning lowest emissions. In conventional mode, HC emissions reduced by up to 52% when biodiesel and its blends with dieselfuel are used, whereas they increased significantly in RCCI mode. According to overall results,it is concluded that RCCI performed better than CDC at entire load.Müjdat Fırat S¸ehmus Altun Mutlu Okcu Yasin Varola 2022Propulsion and Power Research2022,11,2:0
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