Internal Combustion Engine Analysis of Energy Ecological Parameters by Neutrosophic MULTIMOORA and SWARA Methods
暂无分享,去创建一个
Romualdas Bausys | Edmundas Kazimieras Zavadskas | Jonas Matijošius | Alfredas Rimkus | Audrius Čereška | E. Zavadskas | Alfredas Rimkus | J. Matijošius | A. Cereska | R. Baušys
[1] John B. Heywood,et al. Internal combustion engine fundamentals , 1988 .
[2] Bengt Johansson,et al. Partially Premixed Combustion at High Load using Gasoline and Ethanol, a Comparison with Diesel , 2009 .
[3] Edmundas Kazimieras Zavadskas,et al. Selection of rational dispute resolution method by applying new step‐wise weight assessment ratio analysis (Swara) , 2010 .
[4] E. Zavadskas,et al. Project management by multimoora as an instrument for transition economies , 2010 .
[5] Avinash Kumar Agarwal,et al. Particulate emissions from biodiesel vs diesel fuelled compression ignition engine , 2011 .
[6] Hiroyuki Yamada,et al. Detailed analysis of diesel vehicle exhaust emissions: Nitrogen oxides, hydrocarbons and particulate size distributions , 2011 .
[7] Edmundas Kazimieras Zavadskas,et al. Multimoora Optimization Used to Decide on a Bank Loan to Buy Property , 2011 .
[8] Jonas Matijošius,et al. Comparative investigations into energetic and ecological parameters of camelina-based biofuel used in the 1Z diesel engine , 2012 .
[9] Edmundas Kazimieras Zavadskas,et al. Selecting the optimal renewable energy using multi criteria decision making , 2013 .
[10] S. Inomata,et al. Characterization of nitromethane emission from automotive exhaust , 2013 .
[11] Tomas Baležentis,et al. A Survey on Development and Applications of the Multi‐criteria Decision Making Method MULTIMOORA , 2014 .
[12] S. Zolfani,et al. Investment prioritizing in high tech industries based on SWARA-COPRAS approach , 2014 .
[13] C. S. Kulkarni,et al. Glow-plug-assisted combustion of nitromethane sprays in a constant volume chamber , 2015 .
[14] Ashkan Hafezalkotob,et al. Comprehensive MULTIMOORA method with target-based attributes and integrated significant coefficients for materials selection in biomedical applications , 2015 .
[15] Dragisa Stanujkic,et al. Selection of candidates in the mining industry based on the application of the SWARA and the MULTIMOORA methods , 2015 .
[16] Mortaza Aghbashlo,et al. Improving exergetic and sustainability parameters of a DI diesel engine using polymer waste dissolved in biodiesel as a novel diesel additive , 2015 .
[17] Dragisa Stanujkic,et al. Ranking of companies according to the indicators of corporate social responsibility based on SWARA and ARAS methods , 2016 .
[18] Dragisa Stanujkic,et al. The Framework for the Selection of Personnel Based on the SWARA and ARAS Methods Under Uncertainties , 2016, Informatica.
[19] Mahdi Bitarafan,et al. Model for rapid assessment of vulnerability of office buildings to blast using SWARA and SMART methods (a case study of swiss re tower) , 2016 .
[20] Morteza Yazdani,et al. An integrated fuzzy ANP–QFD approach for green building assessment , 2016 .
[21] K. Bashirnezhad,et al. Experimental analysis of the influence of urea injection upon NOx emissions in internal combustion engines fueled with biodiesels , 2016 .
[22] Valentinas Podvezko,et al. Sustainable Assessment of Aerosol Pollution Decrease Applying Multiple Attribute Decision-Making Methods , 2016 .
[23] Edmundas Kazimieras Zavadskas,et al. Using fuzzy multiple criteria decision making approaches for evaluating energy saving technologies and solutions in five star hotels: a new hierarchical framework , 2016 .
[24] Javier Monsalve-Serrano,et al. An assessment of the dual-mode reactivity controlled compression ignition/conventional diesel combustion capabilities in a EURO VI medium-duty diesel engine fueled with an intermediate ethanol-gasoline blend and biodiesel , 2016 .
[25] Sang Van Doan,et al. Multifunctional Signal Generator for Calibration System of Jet Engine Exhaust Gas Temperature Measurement , 2017 .
[26] Anjali Awasthi,et al. A hybrid approach based on BOCR and fuzzy MULTIMOORA for logistics service provider selection , 2017 .
[27] Karoly Beneda,et al. Linear Mathematical Model for State-Space Representation of Small Scale Turbojet Engine with Variable Exhaust Nozzle , 2017 .
[28] M. Goh,et al. Sustainable third-party reverse logistic provider selection with fuzzy SWARA and fuzzy MOORA in plastic industry , 2017 .
[29] Keith Glover,et al. Internal combustion engine exhaust gas analysis , 2017 .
[30] M. K. Sreelekh,et al. Performance, combustion and emission characteristics of diesel engine fuelled with waste cooking oil bio-diesel/diesel blends with additives , 2017 .
[31] J. Rezaei,et al. Selection of biomass thermochemical conversion technology in the Netherlands: A best worst method approach , 2017 .
[32] Mingrui Wei,et al. Combustion performance and pollutant emissions analysis using diesel/gasoline/iso-butanol blends in a diesel engine , 2017 .
[33] Romualdas Bausys,et al. Model for residential house element and material selection by neutrosophic MULTIMOORA method , 2017, Engineering applications of artificial intelligence.
[34] Carlo Beatrice,et al. Effects on performances, emissions and particle size distributions of a dual fuel (methane-diesel) light-duty engine varying the compression ratio , 2017 .
[35] Jai Gopal Gupta,et al. Potential and challenges for large-scale application of biodiesel in automotive sector. , 2017 .
[36] Mingrui Wei,et al. Effects of injection timing on combustion and emissions in a diesel engine fueled with 2,5-dimethylfuran-diesel blends , 2017 .
[37] S. Szwaja,et al. Bio-oil blended butanol as a fuel to the spark ignition internal combustion reciprocating engine , 2017 .
[38] Hüseyin Aydın,et al. Combustion, performance and emissions of a diesel power generator fueled with biodiesel-kerosene and biodiesel-kerosene-diesel blends , 2017 .
[39] Xavier Tauzia,et al. Semi-physical models to assess the influence of CI engine calibration parameters on NOx and soot emissions , 2017 .
[40] B. A. Bandowe,et al. Nitrated polycyclic aromatic hydrocarbons (nitro-PAHs) in the environment - A review. , 2017, The Science of the total environment.
[41] C. Bae,et al. Intake air strategy for low HC and CO emissions in dual-fuel (CNG-diesel) premixed charge compression ignition engine , 2018, Applied Energy.
[42] A. Sarkar,et al. Role of global fuel-air equivalence ratio and preheating on the behaviour of a biogas driven dual fuel diesel engine , 2018, Fuel.
[43] Edmundas Kazimieras Zavadskas,et al. A Novel Multicriteria Approach – Rough Step-Wise Weight Assessment Ratio Analysis Method (R-SWARA) and Its Application in Logistics , 2018 .
[44] Carlo Beatrice,et al. Parametric study and optimization of the main engine calibration parameters and compression ratio of a methane-diesel dual fuel engine , 2018, Fuel.
[45] M. Aghbashlo,et al. Exergoeconomic analysis of a DI diesel engine fueled with diesel/biodiesel (B5) emulsions containing aqueous nano cerium oxide , 2018 .
[46] Reza Tavakkoli-Moghaddam,et al. Pharmacological therapy selection of type 2 diabetes based on the SWARA and modified MULTIMOORA methods under a fuzzy environment , 2018, Artif. Intell. Medicine.
[47] Martin Tuner,et al. Effect of the engine calibration parameters on gasoline partially premixed combustion performance and emissions compared to conventional diesel combustion in a light-duty Euro 6 engine , 2018, Applied Energy.
[48] Alfredas Rimkus,et al. Intensification of the combustion process in a gasoline engine by adding a hydrogen-containing gas , 2018, International Journal of Hydrogen Energy.
[49] Jonas Matijošius,et al. An investigation of the efficiency of using O2 and H2 (hydrooxile gas -HHO) gas additives in a ci engine operating on diesel fuel and biodiesel , 2018, Energy.
[50] Hakan Turan,et al. Assessment factors affecting e-learning using fuzzy analytic hierarchy process and SWARA , 2018 .
[51] J. Álvarez‐García,et al. The influence of motivations and barriers in the benefits. An empirical study of EMAS certified business in Spain , 2018, Journal of Cleaner Production.
[52] A. Ambekar,et al. Droplet combustion studies of nitromethane and its blends , 2018 .
[53] Andrew David Mendes Guedes,et al. Performance and combustion characteristics of a compression ignition engine running on diesel-biodiesel-ethanol (DBE) blends – Part 2: Optimization of injection timing , 2018, Fuel.
[54] Tansel Koyun. Exergy Analysis of Different Blends of Hydrogen and Octane for Combustion Conditions of Internal Combustion Engine , 2018, Journal of Nanoelectronics and Optoelectronics.
[55] K. Annamalai,et al. Experimental investigation of unmodified diesel engine performance, combustion and emission with multipurpose additive along with water-in-diesel emulsion fuel , 2018, Energy Conversion and Management.
[56] M. Pyrc,et al. Study on co-combustion of diesel fuel with oxygenated alcohols in a compression ignition dual-fuel engine , 2018, Fuel.
[57] Nadir Yilmaz,et al. A comparative analysis of n-butanol/diesel and 1-pentanol/diesel blends in a compression ignition engine , 2018, Fuel.
[58] Prasenjit Chatterjee,et al. A novel integrated decision-making approach for the evaluation and selection of renewable energy technologies , 2018, Clean Technologies and Environmental Policy.
[59] Ricardo Novella,et al. Computational optimization of the combustion system of a heavy duty direct injection diesel engine operating with dimethyl-ether , 2018 .
[60] György Szabados,et al. Experimental investigation of physicochemical properties of diesel, biodiesel and TBK-biodiesel fuels and combustion and emission analysis in CI internal combustion engine , 2018, Renewable Energy.
[61] E Jiaqiang,et al. Effects of injection timing and injection pressure on performance and exhaust emissions of a common rail diesel engine fueled by various concentrations of fish-oil biodiesel blends , 2018 .
[62] Ting Zhang,et al. Evaluation of renewable power sources using a fuzzy MCDM based on cumulative prospect theory: A case in China , 2018 .
[63] Gökhan Tüccar,et al. Emission and engine performance analysis of a diesel engine using hydrogen enriched pomegranate seed oil biodiesel , 2017, International Journal of Hydrogen Energy.
[64] Hua Zhao,et al. High efficiency ethanol-diesel dual-fuel combustion: A comparison against conventional diesel combustion from low to full engine load , 2018, Fuel.
[65] M. A. Sadek,et al. Biodiesel production from castor oil in Egypt: Process optimisation, kinetic study, diesel engine performance and exhaust emissions analysis , 2018, Energy.
[66] H. G. How,et al. Influence of injection timing and split injection strategies on performance, emissions, and combustion characteristics of diesel engine fueled with biodiesel blended fuels , 2018 .
[67] Hadi Ghaderi,et al. Sustainable third-party reverse logistics provider evaluation and selection using fuzzy SWARA and developed fuzzy COPRAS in the presence of risk criteria , 2018, Appl. Soft Comput..
[68] Mohammad A. Khalilzadeh,et al. Risk evaluation using a novel hybrid method based on FMEA, extended MULTIMOORA, and AHP methods under fuzzy environment , 2018, Safety Science.
[69] S. Prabu,et al. Performance, combustion and emission characteristics of diesel engine fuelled with papaya and watermelon seed oil bio-diesel/diesel blends , 2018 .
[70] C. Srinidhi,et al. Effect of NiO nanoparticles on performance and emission characteristics at various injection timings using biodiesel-diesel blends , 2019, Fuel.
[71] Deep P. Patel,et al. Study on isobutanol and Calophyllum inophyllum biodiesel as a partial replacement in CI engine applications , 2019 .
[72] T. Butler,et al. CO2-equivalent emissions from European passenger vehicles in the years 1995–2015 based on real-world use: Assessing the climate benefit of the European “diesel boom” , 2019, Atmospheric Environment.
[73] Francisco Herrera,et al. An overview of MULTIMOORA for multi-criteria decision-making: Theory, developments, applications, and challenges , 2019, Inf. Fusion.
[74] Xiaohui Chen,et al. Improvement of engine performance and emissions by biomass oil filter in diesel engine , 2019, Fuel.
[75] Y. Çelebi,et al. An overview on the light alcohol fuels in diesel engines , 2019, Fuel.
[76] S. Manigandan,et al. Emission and injection characteristics of corn biodiesel blends in diesel engine , 2019, Fuel.
[77] P.L./ /Ozimov. Engine , 2020, Trudy NAMI.