1 |
Prediction of NOx emissions for high speed DI Diesel engines using a semi-empirical, two-zone model Provataris SA, Savva NS, Chountalas TD, Hountalas DT Energy Conversion and Management, 153, 659, 2017 |
2 |
Application of a multi-zone combustion model to investigate the NOx reduction potential of two-stroke marine diesel engines using EGR Raptotasios SI, Sakellaridis NF, Papagiannakis RG, Hountalas DT Applied Energy, 157, 814, 2015 |
3 |
Development and validation of a new turbocharger simulation methodology for marine two stroke diesel engine modelling and diagnostic applications Sakellaridis NF, Raptotasios SI, Antonopoulos AK, Mavropoulos GC, Hountalas DT Energy, 91, 952, 2015 |
4 |
Comparative evaluation of various methodologies to account for the effect of load variation during cylinder pressure measurement of large scale two-stroke diesel engines Hountalas DT, Papagiannakis RG, Zovanos G, Antonopoulos A Applied Energy, 113, 1027, 2014 |
5 |
Evolution and application of a pseudo-multi-zone model for the prediction of NOx emissions from large-scale diesel engines at various operating conditions Savva NS, Hountalas DT Energy Conversion and Management, 85, 373, 2014 |
6 |
Implications of Exhaust Gas, CO2, and N-2 Recirculation on Heavy-Duty Diesel Engine Performance, Soot, and NO Emissions: A Comparative Study Hountalas DT, Raptotasios SI, Zannis TC Energy & Fuels, 27(8), 4910, 2013 |
7 |
Simulation of a heavy-duty diesel engine with electrical turbocompounding system using operating charts for turbocharger components and power turbine Katsanos CO, Hountalas DT, Zannis TC Energy Conversion and Management, 76, 712, 2013 |
8 |
Improvement of bottoming cycle efficiency and heat rejection for HD truck applications by utilization of EGR and CAC heat Hountalas DT, Mavropoulos GC, Katsanos C, Knecht W Energy Conversion and Management, 53(1), 19, 2012 |
9 |
Thermodynamic analysis of a Rankine cycle applied on a diesel truck engine using steam and organic medium Katsanos CO, Hountalas DT, Pariotis EG Energy Conversion and Management, 60, 68, 2012 |
10 |
Effect of instantaneous rotational speed on the analysis of measured diesel engine cylinder pressure data Antonopoulos AK, Hountalas DT Energy Conversion and Management, 60, 87, 2012 |