{"id":5749,"date":"2020-09-04T14:07:00","date_gmt":"2020-09-04T14:07:00","guid":{"rendered":"https:\/\/prod.zbt.compositas.io\/news\/fc-cold-start-kaltstartsimulation-von-pem-brennstoffzellensystemen\/"},"modified":"2025-02-07T14:09:34","modified_gmt":"2025-02-07T14:09:34","slug":"fc-cold-start-simulation-of-pem-fuel-cell-systems","status":"publish","type":"news","link":"https:\/\/zbt.de\/en\/news\/fc-cold-start-simulation-of-pem-fuel-cell-systems\/","title":{"rendered":"FC Cold Start: Simulation of PEM Fuel cell systems"},"content":{"rendered":"<section class=\"text-teaser text-teaser--white\">\n  <h2 class=\"text-teaser__heading\">FC Cold Start: Simulation of PEM Fuel cell systems<\/h2>\n  <div class=\"text-teaser__text\"><div class=\"teaser-text\">\n<div class=\"teaser-text\">\n<p class=\"bodytext\">In cooperation with the Institute for Combustion Engines (vka) at RWTH Aachen University, a modular, real-time-capable simulation model of PEM fuel cell systems for cold-start investigations is being developed as part of an FVV funded project.<\/p>\n<\/div>\n<div class=\"news-img-wrap\">\n<div class=\"outer\">\n<div class=\"mediaelement mediaelement-image\"><\/div>\n<\/div>\n<\/div>\n<\/div>\n<div class=\"news-img-wrap\">\n<div class=\"outer\">\n<div class=\"mediaelement mediaelement-image\">\n<div class=\"news-text-wrap\">\n<div class=\"news-text-wrap\">\n<p class=\"bodytext\">Cold start processes are of high importance for the investigation and development of PEM fuel cell systems in dynamic operation. In particular, the formation of liquid water and condensate at low operating temperatures influences the performance and ageing process of fuel cells. Therefore, an existing fuel cell model with a 2D-1D resolution from the previous project (Fuel Cell System Simulation &#8211; Membrane Humidification Management, FVV project number 6012982) is extended at the ZBT by the consideration of liquid water and the differentiation of diffusion effects in the channel and web area. In order to ensure real-time capability, a predictive method for determining the starting conditions of the deterministic, numerical solver will be developed using the machine learning approach. At the Institute for Combustion Engines (vka) of the RWTH Aachen University, the resulting fuel cell model is integrated into a complete system simulation and supplemented by detailed multi-dimensional CFD simulations.These CFD simulations focus on the investigation of the water distribution within the cell layers, which is of particular interest for cold starts due to phase change phenomena as well as condensation and evaporation. The simulation results are afterwards validated at ZBT by means of experimental measurements on segmented cells in the cold start test rig. Furthermore, the fuel cell system is being developed at vka with special attention to the membrane humidifier, which is the critical peripheral component with regard to cold start.<\/p>\n<p class=\"bodytext\">In this project a model is developed which is able to investigate the cold start behaviour of PEM fuel cells in a system environment. This model thus enables a faster and more cost-effective development process of fuel cell vehicles.<\/p>\n<ul>\n<li>Division fuel cell systems<\/li>\n<li>Technology info fc modells<\/li>\n<li>FVV- Forschungsvereinigung Verbrennungskraft\u00admaschinen e.V.<\/li>\n<\/ul>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<\/section>\n\n\n<section class=\"latest-news latest-news--white\">\n            <h2 class=\"latest-news__heading\">More News<\/h2>\n                <div class=\"latest-news__grid\">\n                                            <div class=\"latest-news__item\">\n                    <a href=\"https:\/\/zbt.de\/en\/news\/more-stable-mno%e2%82%82-anodes-for-pem-water-electrolysis\/\" class=\"news-card\" title=\"New ZBT publication: More stable MnO\u2082 anodes for PEM water electrolysis\">\n    <div class=\"news-card__header\">\n        <figure class=\"news-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"681\" src=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/chanda_SEM-1024x681.png\" class=\"news-card__image wp-post-image\" alt=\"\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/chanda_SEM-1024x681.png 1024w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/chanda_SEM-300x200.png 300w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/chanda_SEM-768x511.png 768w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/chanda_SEM-1320x878.png 1320w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/chanda_SEM.png 1536w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"news-card__body\">\n        <time class=\"topic-card__published\" datetime=\"2026-08-20T11:00:00+00:00\">\n            20. August, 2026\n        <\/time>\n        <h4 class=\"topic-card__title\">New ZBT publication: More stable MnO\u2082 anodes for PEM water electrolysis<\/h4>\n        <p class=\"topic-card__text\">New ZBT research shows how Nb\/F co-doping can make MnO\u2082 anodes for PEM water electrolysis more stable and efficient.<\/p>\n    <\/div>\n    <div class=\"news-card__footer\">\n        <div class=\"news-card__action\">\n            <span class=\"news-card__more\">Read more<\/span>\n            <i class=\"news-card__arrow\"> <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" fill=\"currentColor\" viewBox=\"0 0 448 512\"><path d=\"M435.3 267.3L446.6 256l-11.3-11.3-168-168L256 65.4 233.4 88l11.3 11.3L385.4 240 16 240 0 240l0 32 16 0 369.4 0L244.7 412.7 233.4 424 256 446.6l11.3-11.3 168-168z\"\/><\/svg><\/i>\n        <\/div>\n    <\/div>\n<\/a>\n                <\/div>\n                                            <div class=\"latest-news__item\">\n                    <a href=\"https:\/\/zbt.de\/en\/news\/international-conferences-zbt-researcher-presents-progress-on-conductive-polymer-compounds\/\" class=\"news-card\" title=\"Hydrogen in Focus: From Research to Application\">\n    <div class=\"news-card__header\">\n        <figure class=\"news-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"768\" src=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT-1024x768.png\" class=\"news-card__image wp-post-image\" alt=\"\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT-1024x768.png 1024w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT-300x225.png 300w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT-768x576.png 768w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT-1536x1152.png 1536w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT-1320x990.png 1320w, https:\/\/zbt.de\/app\/uploads\/2026\/08\/Spitta_Schredelseker_ZBT.png 1600w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"news-card__body\">\n        <time class=\"topic-card__published\" datetime=\"2026-08-20T10:00:00+00:00\">\n            20. August, 2026\n        <\/time>\n        <h4 class=\"topic-card__title\">Hydrogen in Focus: From Research to Application<\/h4>\n        <p class=\"topic-card__text\">How do hydrogen technologies make the transition from research to industrial application? Two interviews from the H2Raum blog series provide insights into the work of the ZBT, ranging from hydrogen infrastructure, quality assurance and refuelling to science communication, networking and knowledge transfer. <\/p>\n    <\/div>\n    <div class=\"news-card__footer\">\n        <div class=\"news-card__action\">\n            <span class=\"news-card__more\">Read more<\/span>\n            <i class=\"news-card__arrow\"> <svg xmlns=\"http:\/\/www.w3.org\/2000\/svg\" fill=\"currentColor\" viewBox=\"0 0 448 512\"><path d=\"M435.3 267.3L446.6 256l-11.3-11.3-168-168L256 65.4 233.4 88l11.3 11.3L385.4 240 16 240 0 240l0 32 16 0 369.4 0L244.7 412.7 233.4 424 256 446.6l11.3-11.3 168-168z\"\/><\/svg><\/i>\n        <\/div>\n    <\/div>\n<\/a>\n                <\/div>\n                                            <div class=\"latest-news__item\">\n                    <a href=\"https:\/\/zbt.de\/en\/news\/type-iv-hydrogen-storage-new-data-on-thermal-behaviour-during-discharge\/\" class=\"news-card\" title=\"Type IV hydrogen storage: New data on thermal behaviour during discharge\">\n    <div class=\"news-card__header\">\n        <figure class=\"news-card__figure\">\n            <img loading=\"lazy\" decoding=\"async\" width=\"1024\" height=\"683\" src=\"https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail-1024x683.jpg\" class=\"news-card__image wp-post-image\" alt=\"Hydrogen tanks and fittings\" srcset=\"https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail-1024x683.jpg 1024w, https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail-300x200.jpg 300w, https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail-768x512.jpg 768w, https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail-1536x1025.jpg 1536w, https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail-1320x880.jpg 1320w, https:\/\/zbt.de\/app\/uploads\/2024\/08\/zbt-wasserstoff-testfeld-tankstelle-speicher-detail.jpg 2000w\" sizes=\"auto, (max-width: 1024px) 100vw, 1024px\" \/>\n        <\/figure>\n    <\/div>\n    <div class=\"news-card__body\">\n        <time class=\"topic-card__published\" datetime=\"2026-08-11T07:46:00+00:00\">\n            11. 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