TY - BOOK A1 - Esch, Thomas T1 - Verbrennungsmotoren Y1 - 2015 PB - Fachhochschule Aachen, Lehr- und Forschungsgebiet Thermodynamik und Verbrennungstechnik CY - Aachen ET - 11. Aufl., [Umdruck] ER - TY - BOOK A1 - Esch, Thomas T1 - Verbrennungsmotoren Y1 - 2013 PB - Fachhochschule Aachen, Lehr- und Forschungsgebiet Thermodynamik und Verbrennungstechnik CY - Aachen ET - 10. Aufl., [Umdruck] ER - TY - BOOK A1 - Esch, Thomas T1 - Experimentelle Untersuchungen an Antriebssystemen von Kraft-, Luft- und Raumfahrzeugen : Vorlesungsumdruck. 3. Aufl. Bd. 1 Y1 - 2015 PB - Fachhochschule Aachen, Lehr- und Forschungsgebiet Thermodynamik und Verbrennungstechnik CY - Aachen ET - 3. Aufl. ER - TY - JOUR A1 - Esch, Thomas T1 - Trends in commercial vehicle powertrains JF - ATZautotechnology N2 - Low emission zones and truck bans, the rising price of diesel and increases in road tolls: all of these factors are putting serious pressure on the transport industry. Commercial vehicle manufacturers and their suppliers are in the process of identifying new solutions to these challenges as part of their efforts to meet the EEV (enhanced environmentally friendly vehicle) limits, which are currently the most robust European exhaust and emissions standards for trucks and buses. KW - European Transient Cycle KW - Common Rail Injection System KW - Commercial Vehicle KW - Selective Catalytic Reduction KW - Diesel Engine Y1 - 2010 U6 - http://dx.doi.org/10.1007/BF03247185 SN - 2192-886X VL - 2010 IS - 10 SP - 26 EP - 31 PB - Vieweg & Sohn CY - Wiesbaden ER - TY - BOOK A1 - Esch, Thomas A1 - Appel, Wolfgang A1 - Höpke, Friedrich T1 - Nutzfahrzeugtechnik : Grundlagen, Systeme, Komponenten ; mit 35 Tabellen / Appel, Wolfgang ; Höpke, Friedrich ... Esch, Thomas [u.a.] 5., vollst. überarb. Aufl. Y1 - 2008 SN - 978-3-8348-0374-0 PB - Vieweg + Teubner CY - Wiesbaden ER - TY - RPRT A1 - Esch, Thomas A1 - Damm, Marc André A1 - Kalbhenn, Hartmut T1 - Auslegung und Simulation eines Hybridantriebs für den teilelektrischen Betrieb eines Luftfahrzeuges der allgemeinen Luftfahrt : Schlussbericht für das Forschungsvorhaben ; Förderperiode 01.07.2009 - 31.05.2012 T1 - HyFly ; Design and simulation of a partially electrified operatin of an aircraft of the general aviation Y1 - 2013 U6 - http://dx.doi.org/10.2314/GBV:780055411 N1 - Report-Nr.: 1709X08 CY - Aachen ; Hannover ER - TY - RPRT A1 - Esch, Thomas A1 - Eickmann, Matthias A1 - Coussement, Axel A1 - Kalbhenn, Hartmut T1 - Wasserstoffspezifische Abstimmung der Ladungswechselvorgänge eines Verbrennungsmotors mit Direkteinblasung : Schlussbericht für das Forschungsvorhaben ; Kurztitel: HydI - Hydrogen direct injection ; Förderperiode 01.07.2008 - 31.12.2011 / FH Aachen, Thermodynamik und Verbrennungstechnik KW - Wasserstoff KW - Direkteinblasung KW - vollvariabler Ventilbetrieb KW - Verbrennungsmotor KW - Ladungswechsel Y1 - 2013 CY - Aachen ER - TY - JOUR A1 - Esch, Thomas A1 - Funke, Harald A1 - Roosen, Peter A1 - Jarolimek, Ulrich T1 - Biogene Automobilkraftstoffe in der allgemeinen Luftfahrt JF - Motortechnische Zeitschrift (MTZ). Y1 - 2011 SN - 0024-8525 U6 - http://dx.doi.org/10.1365/s35146-011-0013-7 VL - 72 IS - 1 SP - 54 EP - 59 PB - Springer Nature CY - Basel ER - TY - JOUR A1 - Esch, Thomas A1 - Funke, Harald A1 - Roosen, Peter A1 - Jarolimek, Ulrich T1 - Biogenic Vehicle Fuels in General Aviation Aircrafts JF - MTZ worldwide. 72 (2011), H. 1 Y1 - 2011 N1 - recherchierbar für Angehörige der FH Aachen SP - 38 EP - 43 PB - Springer Automotive Media CY - Wiesbaden ER - TY - RPRT A1 - Esch, Thomas A1 - Funke, Harald A1 - Roosen, Petra T1 - SIoBiA – Safety Implications of Biofuels in Aviation N2 - Biofuels potentially interesting also for aviation purposes are predominantly liquid fuels produced from biomass. The most common biofuels today are biodiesel and bioethanol. Since diesel engines are rather rare in aviation this survey is focusing on ethanol admixed to gasoline products. The Directive 2003/30/EC of the European Parliament and the Council of May 8th 2003 on the promotion of the use of biofuels or other renewable fuels for transport encourage a growing admixture of biogenic fuel components to fossil automotive gasoline. Some aircraft models equipped with spark ignited piston engines are approved for operation with automotive gasoline, frequently called “MOGAS” (motor gasoline). The majority of those approvals is limited to MOGAS compositions that do not contain methanol or ethanol beyond negligible amounts. In the past years (bio-)MTBE or (bio-)ETBE have been widely used as blending component of automotive gasoline whilst the usage of low-molecular alcohols like methanol or ethanol has been avoided due to the handling problems especially with regard to the strong affinity for water. With rising mandatory bio-admixtures the conversion of the basic biogenic ethanol to ETBE, causing a reduction of energetic payoff, becomes more and more unattractive. Therefore the direct ethanol admixture is accordingly favoured. Due to the national enforcements of the directive 2003/30/EC more oxygenates produced from organic materials like bioethanol have started to appear in automotive gasolines already. The current fuel specification EN 228 already allows up to 3 % volume per volume (v/v) (bio-)methanol or up to 5 % v/v (bio-)ethanol as fuel components. This is also roughly the amount of biogenic components to comply with the legal requirements to avoid monetary penalties for producers and distributors of fuels. Since automotive fuel is cheaper than the common aviation gasoline (AVGAS), creates less problems with lead deposits in the engine, and in general produces less pollutants it is strongly favoured by pilots. But being designed for a different set of usage scenarios the use of automotive fuel with low molecular alcohols for aircraft operation may have adverse effects in aviation operation. Increasing amounts of ethanol admixtures impose various changes in the gasoline’s chemical and physical properties, some of them rather unexpected and not within the range of flight experiences even of long-term pilots. Y1 - 2010 N1 - Analysis of the safety implications of the use of biofuels (ethanol admixture) for piston engines and general aviation aircraft and assessment of potential environmental benefits. PB - EASA CY - Köln ER - TY - JOUR A1 - Esch, Thomas A1 - Göbel, T. T1 - Gemischbildung bei drosselfreier Laststeuerung von Ottomotoren JF - Motortechnische Zeitschrift. 54 (1993), H. 12 Y1 - 1993 SN - 0024-8525 SP - 616 EP - 618 ER - TY - JOUR A1 - Esch, Thomas A1 - Göbel, T. A1 - Pischinger, M. T1 - Variable Ventilsteuerung - Luft- und Kraftstoffzumessung bei Ottomotoren mit variabler Ventilsteuerung JF - Forschungsberichte Verbrennungskraftmaschinen. 578 (1995) Y1 - 1995 N1 - Report SP - 1 EP - 42 ER - TY - JOUR A1 - Esch, Thomas A1 - Pischinger, M. A1 - Göbel, T. T1 - Luft- und Kraftstoffzumessung bei Ottomotoren mit variabler Ventilsteuerung JF - Motortechnische Zeitschrift. 57 (1996), H. 2 Y1 - 1996 SN - 0024-8525 SP - 106 EP - 115 ER - TY - JOUR A1 - Esch, Thomas A1 - Pischinger, M. A1 - Hagen, J. A1 - Salber, W. T1 - Möglichkeiten der ottomotorischen Prozeßführung bei Verwendung des elektromechanischen Ventiltriebs Y1 - 1998 N1 - Konferenz-Einzelbericht : 7. Aachener Kolloquium Fahrzeug- u. Motorentechnik 05.-07. Okt. 1998, Bd. 2 SP - 987 EP - 1015 ER - TY - JOUR A1 - Esch, Thomas A1 - Salber, W. A1 - Kemper, Hans A1 - Staay, F. van der T1 - Der elektromechanische Ventiltrieb - Systembaustein für zukünftige Antriebskonzepte, Teil 2. JF - Motortechnische Zeitschrift (MTZ). Y1 - 2001 U6 - http://dx.doi.org/10.1007/bf03227081 SN - 0024-8525 VL - 62 IS - 1 SP - 44 EP - 55 PB - Springer Nature CY - Basel ER - TY - JOUR A1 - Esch, Thomas A1 - Salber, W. A1 - Kemper, Hans A1 - Staay, F. van der T1 - Der elektromechanische Ventiltrieb - Systembaustein für zukünftige Antriebskonzepte, Teil 1. JF - Motortechnische Zeitschrift (MTZ). Y1 - 2000 U6 - http://dx.doi.org/10.1007/bf03227081 SN - 0024-8525 VL - 61 IS - 12 SP - 826 EP - 836 PB - Springer Nature CY - Basel ER - TY - JOUR A1 - Esch, Thomas A1 - Salber, Wolfgang A1 - Wolters, Peter A1 - Geiger, José A1 - Dilthey, Jochen T1 - Synergies of variable valve actuation and direct injection JF - Direct injection SI engine technology 2002 : [SAE 2002 world congress, Detroit, Michigan, USA, March 4 - 7, 2002]. Y1 - 2002 SN - 0-7680-0961-8 N1 - Konferenz-Einzelbericht SP - 45 EP - 53 PB - Society of Automotive Engineers CY - Warrendale, Pa ER - TY - JOUR A1 - Esch, Thomas A1 - Saupe, T. A1 - Fahl, E. A1 - Koch, F. T1 - Verbrauchseinsparung durch bedarfsgerechten Antrieb der Nebenaggregate JF - Motortechnische Zeitschrift. 55 (1994), H. 7/8 Y1 - 1994 SN - 0024-8525 SP - 416 EP - 431 ER - TY - JOUR A1 - Esch, Thomas A1 - Wolters, P. A1 - Salber, W. A1 - Geiger, J. T1 - Variable Ventilsteuerung und Direkteinspritzung - vom Wettbewerb zur Synergie JF - Motor und Umwelt 2001, Internal Combustion Engine Versus Fuel Cell - Potential and Limitations as Automotive Power Sources, Verbrennungsmotor versus Brennstoffzelle - Potenziale und Grenzen für den Automobilantrieb, Proc., Graz, AT, 6.-7. Sep, 2001 Y1 - 2001 N1 - Konferenz-Einzelbericht SP - 183 EP - 206 ER - TY - JOUR A1 - Fayyazi, Mojgan A1 - Sardar, Paramjotsingh A1 - Thomas, Sumit Infent A1 - Daghigh, Roonak A1 - Jamali, Ali A1 - Esch, Thomas A1 - Kemper, Hans A1 - Langari, Reza A1 - Khayyam, Hamid T1 - Artificial intelligence/machine learning in energy management systems, control, and optimization of hydrogen fuel cell vehicles N2 - Environmental emissions, global warming, and energy-related concerns have accelerated the advancements in conventional vehicles that primarily use internal combustion engines. Among the existing technologies, hydrogen fuel cell electric vehicles and fuel cell hybrid electric vehicles may have minimal contributions to greenhouse gas emissions and thus are the prime choices for environmental concerns. However, energy management in fuel cell electric vehicles and fuel cell hybrid electric vehicles is a major challenge. Appropriate control strategies should be used for effective energy management in these vehicles. On the other hand, there has been significant progress in artificial intelligence, machine learning, and designing data-driven intelligent controllers. These techniques have found much attention within the community, and state-of-the-art energy management technologies have been developed based on them. This manuscript reviews the application of machine learning and intelligent controllers for prediction, control, energy management, and vehicle to everything (V2X) in hydrogen fuel cell vehicles. The effectiveness of data-driven control and optimization systems are investigated to evolve, classify, and compare, and future trends and directions for sustainability are discussed. KW - optimization system KW - intelligent control KW - fuel cell vehicle KW - machine learning KW - artificial intelligence KW - intelligent energy management Y1 - 2023 U6 - http://dx.doi.org/10.3390/su15065249 N1 - This article belongs to the Special Issue "Circular Economy and Artificial Intelligence" VL - 15 IS - 6 SP - 38 PB - MDPI CY - Basel ER -