
PRIMAFRIO SL
PRIMAFRIO SL
3 Projects, page 1 of 1
Open Access Mandate for Publications and Research data assignment_turned_in Project2020 - 2023Partners:University of L'Aquila, Graz University of Technology, Uniresearch, TOTALENERGIES, IRIZAR +26 partnersUniversity of L'Aquila,Graz University of Technology,Uniresearch,TOTALENERGIES,IRIZAR,SIEMENS PLM,AVL MTCAB,Chalmers University of Technology,Avesta,PRIMAFRIO SL,TEOT,CNH Industrial (Czechia),VDL ENABLING TRANSPORT SOLUTIONS BV,DAF Trucks NV,FIAT POWERTRAINTECHNOLOGIES INDUSTRIAL,Institut de France,FEV EUROPE GMBH,RWTH,Neste Oil (Finland),VOLVO TECHNOLOGY AB,TU/e,GARRETT MOTION CZECH REPUBLIC SRO,TECNALIA,VUB,SHELL GLOBAL SOLUTIONS (DEUTSCHLAND) GMBH,IDIADA,AVL,JRC,FORD OTOMOTIV SANAYI ANONIM SIRKETI,EATON,UMICOREFunder: European Commission Project Code: 874972Overall Budget: 32,807,400 EURFunder Contribution: 24,986,700 EURIn the long haul transport sector, the reduction of real driving emissions and fuel consumption is the main societal challenge. The LONGRUN project will contribute to lower the impacts by developing different engines, drivelines and demonstrator vehicles with 10% energy saving (TtW) and related CO2, 30% lower emission exhaust (NOx, CO and others), and 50% Peak Thermal Efficiency. A second achievement will be the multiscale simulation framework to support the design and development of efficient powertrains, including hybrids for both trucks and coaches. With the proposed initiatives a leading position in hybrid powertrain technology and Internal Combustion Engine operating on renewable fuels in Europe will be guaranteed. A single solution is not enough to achieve these targets. The LONGRUN project brings together leading OEMs of trucks and coaches and their suppliers and research partners, to develop a set of innovations and applications, and to publish major roadmaps for technology and fuels in time for the revision of the CO2 emission standards for heavy duty vehicles in 2022 to support decision making with most recent and validated results and to make recommendations for future policies. The OEMs will develop 8 demonstrators (3 engines, 1 hybrid drivelines, 2 coaches and 3 trucks); within them technical sub-systems and components will be demonstrated, including electro-hybrid drives, optimised ICEs and aftertreatment systems for alternative and renewable fuels, electric motors, smart auxiliaries, on-board energy recuperation and storage devices and power electronics. This includes concepts for connected and digitalised fleet management, predictive maintenance and operation in relation to electrification where appropriate to maximise the emissions reduction potential. The 30 partners will accelerate the transition from fossil-based fuels to alternative and renewable fuels and to a strong reduction of fossil-based CO2 and air pollutant emissions in Europe
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2023 - 2026Partners:Renault Trucks, ABB, ZF CV SYSTEMS HANNOVER GMBH, PTV Group (Germany), DPD (NEDERLAND) B.V. +26 partnersRenault Trucks,ABB,ZF CV SYSTEMS HANNOVER GMBH,PTV Group (Germany),DPD (NEDERLAND) B.V.,KASSBOHRER FAHRZEUGWERKE GMBH,TNO,UIC,RICARDO PRAGUE S.R.O.,ALICE,PO Wels,FORD OTOMOTIV SANAYI ANONIM SIRKETI,WEISS,Procter & Gamble Services Company NV,FHG,MICHELIN,CARBUROS,PRIMAFRIO SL,PRIMAFRIO,VOLVO TECHNOLOGY AB,GRUBER LOGISTICS,IDIADA,Colruytgroup,VUB,HYUNDAI MOTOR EUROPE TECHNICAL CENTER GMBH,HAN,AVL,VAN ECK TRAILERS BV,Uniresearch,HITACHI ENERGY POLAND SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA,Scania (Sweden)Funder: European Commission Project Code: 101095856Overall Budget: 35,400,100 EURFunder Contribution: 23,195,100 EURLong-haul BEVs and FCEVs need to become more affordable and reliable, more energy efficient, with a longer range per single charge, and a reduced charging time to meet the user’s needs. Next to those, there is a real need to take zero-emission long-haul goods transport in Europe to the next level by executing real-world demonstrations of BEVs and FCEVs spread all over Europe; this also requires that technology soon can deliver on promised benefits (easy handling, similar driving hours & charging/fueling, and high speeds, and ability to operate in complex transport supply chains); flexible and abundant charging points for the rising number of vehicles must be implemented fast and to support this, novel charging concepts are needed. In addition, as multiple needs in the logistics chain exist, require novel tools for fleet managers providing them with better information on ZEV in logistic operation, providing a twin of the real use thereby giving valuable information regarding predictive maintenance, eco-driving etc., providing information on better logistics planning, the (available) charging and refuelling along the route, access to roads and traffic information. ZEFES major outcomes: Executing of real-world demonstrations of long-haul BEVs and FCEVs across Europe to take zero-emission long-haul goods transport in Europe to the next level. Pathway for long-haul BEVs and FCEVs to become more affordable and reliable, more energy efficient, with a longer range per single charge and reduced charging times able to meet the user’s needs. Technologies which can deliver promised benefits (easy handling, similar driving hours & charging/fueling, high speeds and ability to operate in complex transport supply chains). Mapping of flexible and abundant charging/fueling points and novel charging concepts. Novel tools for fleet management to support the rising number of long-haul BEVs and FCEVs vehicles in the logistics supply chains.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2023 - 2026Partners:AI4SEC OU, DHL SUPPLY CHAIN TURKEY, BSA INNO & TECH GMBH, OY M RAUANHEIMO AB, KEMPOWER OY +29 partnersAI4SEC OU,DHL SUPPLY CHAIN TURKEY,BSA INNO & TECH GMBH,OY M RAUANHEIMO AB,KEMPOWER OY,LETI,Aristotle University of Thessaloniki,INEGI,DIN DEUTSCHES INSTITUT FUER NORMUNG E.V.,BMC OTOMOTIV SANAYI VE TICARET ANONIM SIRKETI,ORTEM ELEKTRIK ELEKTRONIK MEKANIK SANAYI VE TICARET LIMITED SIRKETI,FEV EUROPE GMBH,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,Dantherm Power (Denmark),FORD OTOMOTIV SANAYI ANONIM SIRKETI,ENGIE COFELY,Polis,KULJETUS JA MUUTTO O. JYLHA OY,OY SISU AUTO AB,PRIMAFRIO SL,FEV TR AUTOMOTIVE AND ENERGY RESEARCH AND ENGINEERING LTD,RWTH,TEKFEN ENGINEERING,TÜBİTAK,HYDROGEN EUROPE,PRIMAFRIO,RELIABILITY AND SAFETY TECHNICAL CENTER,ERGTECH SP.Z O.O.,BRING VZW,MERCEDES-BENZ TURK AS,VIF,DLR,PBX GMBH,IONCORFunder: European Commission Project Code: 101096598Overall Budget: 22,401,500 EURFunder Contribution: 16,594,400 EURHeavy-duty vehicles account for about 25% of EU road transport CO2 emissions and about 6% of total EU emissions. In line with the Paris Agreement and Green Deal targets, Regulation (EU) 2019/1242 setting CO2 emission standards for HDVs (from August 14, 2019) forces the transition to a seamless integration of zero-emission vehicles into fleets. In line with the European 2050 goals ESCALATE aims to demonstrate high-efficiency zHDV powertrains (up to 10% increase) for long-haul applications that will provide a range of 800 km without refueling/recharging and cover at least 500 km average daily operation (6+ months) in real conditions. ESCALATE will achieve this by following modularity and scalability approach starting from the β-level of hardware and software innovations and aiming to reach the γ-level in the first sprint and eventually the δ-level at the project end through its 2 sprint-V-cycle. ESCALATE is built on the novel concepts around 3 main innovation areas, which are: i) Standardized well-designed, cost effective modular and scalable multi-powertrain components; ii) Fast Fueling & Grid-friendly charging solutions; and iii) Digital Twin (DT) & AI-based management tools considering capacity, availability, speed, and nature of the charging infrastructures as well as the fleet structures. Throughout the project lifetime, 5 pilots, 5 DTs and 5 case studies on TCO (with the target of 10% reduction), together with their environmental performance via TranSensusLCA will be performed. The ultimate goal is to develop well-designed modular building blocks with a TRL7/8 based on business model innovations used for 3 types of zHDVs {b-HDV,f-HDV,r-HDV}. Furthermore, 3 white papers will be produced, one of which will contribute defining the pathway for reducing well-to-wheel GHG emissions from HDVs based on results and policy assessments.
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