The page lists 13 deliverables related to the research project "Giantleap".
title and desprition | type | last update |
---|---|---|
Diagnostic methods for automotive fuel-cell systemsBased on the degradation phenomena identified in the project for fuel cells and BoP components, FESB and UFC will devise diagnostic methods to estimate the current state of fuel-cell systems. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
White paper on standards for hydrogen range extenders for city busesVDL will define a public standard for battery city buses and hydrogen range extenders, focusing in particular on their interfaces (power, heat, communications, mechanical, etc.). Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
First project workshopUFC will organise a workshop, focusing on more fundamental research in degradation and prognostics. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Other | 2020-03-09 |
Laboratories equipped with single cells and short stacksEK will design single cells and short stacks for laboratory experiments at partner sites, especially FESB. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Demonstrators, pilots, prototypes | 2020-03-09 |
Degradation mechanisms in automotive fuel-cell systemsFESB will select, rank and quantify the most relevant degradation mechanisms in fuel cells for automotive systems. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
Full-size stacks delivered for integration into fuel-cell systemsEK will design full-size stacks for VDL\'s range extender. EK will manufacture three such 30kW stacks, which will be delivered to BEG for integration in the fuel-cell system. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Demonstrators, pilots, prototypes | 2020-03-09 |
Model-based prognostic algorithm for PEM fuel cell systemsUFC will develop model-based prognostic algorithms for the selected BoP components (air supply unit, pressure reducer and humidifier) and for the PEM fuel cell stack. This model will be tuned based on existing experimental data provided by BEG and EK. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
First annual data reportingThe project data will be collected according to one or more specific template(s) (depending on the technology, TRL, etc.) to be made available by the FCH2 JU in a dedicated platform/tool accessible on-line and password-protected (TEMONAS). Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
Protocols for experiments and validation activitiesBased on early results in degradation mechanisms from FESB and BEG, SINTEF will develop common protocols for both accelerated and long-term testing of stacks and BoP components, with the additional support of EK for stacks and VDL for typical city bus load profiles. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
Project Web siteSINTEF will set up and maintain a server for the project Web site, and make it available to UFC for editing. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Websites, patent fillings, videos etc. | 2020-03-09 |
Third annual data reportingThe project data will be collected according to one or more specific template(s) (depending on the technology, TRL, etc.) to be made available by the FCH2 JU in a dedicated platform/tool accessible on-line and password-protected (TEMONAS). Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
Second annual data reportingThe project data will be collected according to one or more specific template(s) (depending on the technology, TRL, etc.) to be made available by the FCH2 JU in a dedicated platform/tool accessible on-line and password-protected (TEMONAS). Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |
Rejuvenation techniques for automotive fuel cellsFESB will develop methods to reverse degradation phenomena in fuel cells for all relevant mechanisms that allow rejuvenation. These methods will be specified in written procedures, which will be validated by laboratory tests. Programme: H2020-EU.3.4.6.1. - Topic(s): FCH-01.2-2015 |
Documents, reports | 2020-03-09 |