{"id":239342,"date":"2024-10-19T15:39:14","date_gmt":"2024-10-19T15:39:14","guid":{"rendered":"https:\/\/pdfstandards.shop\/product\/uncategorized\/bs-en-62282-4-1022017\/"},"modified":"2024-10-25T10:21:21","modified_gmt":"2024-10-25T10:21:21","slug":"bs-en-62282-4-1022017","status":"publish","type":"product","link":"https:\/\/pdfstandards.shop\/product\/publishers\/bsi\/bs-en-62282-4-1022017\/","title":{"rendered":"BS EN 62282-4-102:2017"},"content":{"rendered":"
IEC 62282-4-102:2017 covers performance test methods of fuel cell power systems intended to be used for electrically powered industrial trucks. The scope of this document is limited to electrically powered industrial trucks. This document applies to gaseous hydrogen-fuelled fuel cell power systems and direct methanol fuel cell power systems for electrically powered industrial trucks. This document covers fuel cell power systems whose fuel source container is permanently attached to either the industrial truck or the fuel cell power system. This document applies to DC type fuel cell power systems, with a rated output voltage not exceeding 150 V DC for indoor and outdoor use. <\/p>\n
PDF Pages<\/th>\n | PDF Title<\/th>\n<\/tr>\n | ||||||
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2<\/td>\n | National foreword <\/td>\n<\/tr>\n | ||||||
7<\/td>\n | English CONTENTS <\/td>\n<\/tr>\n | ||||||
10<\/td>\n | FOREWORD <\/td>\n<\/tr>\n | ||||||
12<\/td>\n | INTRODUCTION <\/td>\n<\/tr>\n | ||||||
13<\/td>\n | 1 Scope 2 Normative references <\/td>\n<\/tr>\n | ||||||
14<\/td>\n | 3 Terms and definitions <\/td>\n<\/tr>\n | ||||||
15<\/td>\n | Figures Figure 1 \u2013 Fuel cell power systems for industrial electric trucks <\/td>\n<\/tr>\n | ||||||
16<\/td>\n | 4 Symbols <\/td>\n<\/tr>\n | ||||||
17<\/td>\n | Tables Table 1 \u2013 Symbols and their meanings for electric\/thermal performance <\/td>\n<\/tr>\n | ||||||
18<\/td>\n | 5 Reference conditions 6 Heating value base Table 2 \u2013 Symbols and their meanings for environmental performance <\/td>\n<\/tr>\n | ||||||
19<\/td>\n | 7 Test preparation 7.1 General 7.2 Data acquisition plan 8 Test setup <\/td>\n<\/tr>\n | ||||||
20<\/td>\n | Figure 2 \u2013 Example of a test setup for hydrogen fuel <\/td>\n<\/tr>\n | ||||||
21<\/td>\n | 9 Instruments and measurement methods 9.1 General 9.2 Measurement instruments Figure 3 \u2013 Example of a test setup for methanol fuel <\/td>\n<\/tr>\n | ||||||
22<\/td>\n | 9.3 Measurement points <\/td>\n<\/tr>\n | ||||||
23<\/td>\n | 9.4 Minimum required measurement systematic uncertainty 10 Test conditions 10.1 Laboratory conditions 10.2 Installation and operating conditions of the system 10.3 Indication of battery condition 10.4 Quality of test fuel 10.4.1 Hydrogen <\/td>\n<\/tr>\n | ||||||
24<\/td>\n | 10.4.2 Methanol solution 11 Fuel consumption test 11.1 Hydrogen fuel consumption test 11.1.1 General 11.1.2 Test method 11.1.3 Calculation of results <\/td>\n<\/tr>\n | ||||||
26<\/td>\n | 11.2 Methanol fuel consumption test 11.2.1 General 11.2.2 Test method 11.2.3 Calculation of average methanol fuel power input <\/td>\n<\/tr>\n | ||||||
27<\/td>\n | 12 Electrical power output test 12.1 General 12.2 Test method 12.3 Calculation of average electrical power output <\/td>\n<\/tr>\n | ||||||
28<\/td>\n | 12.4 Computation of electrical efficiency 13 Type tests on operational performance 13.1 Cold start maximum power output test 13.1.1 General 13.1.2 Test method 13.1.3 Processing of data 13.2 Power cycling electrical load test 13.2.1 General 13.2.2 Test method <\/td>\n<\/tr>\n | ||||||
29<\/td>\n | 13.2.3 Processing of data 13.3 Accessory load voltage spike test 13.3.1 General 13.3.2 Test method 13.3.3 Data processing 14 Power stability under the operation 14.1 General 14.2 Power delivered <\/td>\n<\/tr>\n | ||||||
30<\/td>\n | 14.3 Power absorbed 15 Type tests on environmental performance 15.1 General 15.2 Noise test 15.2.1 General Table 3 \u2013 Power delivered measurements Table 4 \u2013 Power absorbed measurements <\/td>\n<\/tr>\n | ||||||
31<\/td>\n | 15.2.2 Test conditions Figure 4 \u2013 Noise measurement points for fuel cell power systems <\/td>\n<\/tr>\n | ||||||
32<\/td>\n | 15.2.3 Test method 15.2.4 Processing of data 15.3 Exhaust gas test 15.3.1 General 15.3.2 Components to be measured Table 5 \u2013 Compensation of readings against the effect of background noise <\/td>\n<\/tr>\n | ||||||
33<\/td>\n | 15.3.3 Test method 15.3.4 Processing of data <\/td>\n<\/tr>\n | ||||||
35<\/td>\n | 15.4 Discharge water test 15.4.1 General 15.4.2 Test method 16 Test reports 16.1 General <\/td>\n<\/tr>\n | ||||||
36<\/td>\n | 16.2 Title page 16.3 Table of contents 16.4 Summary report <\/td>\n<\/tr>\n | ||||||
37<\/td>\n | Annex\u00a0A (informative)Heating values for hydrogen and methanol at reference conditions Table A.1 \u2013 Heating values for hydrogen and methanol at reference conditions <\/td>\n<\/tr>\n | ||||||
38<\/td>\n | Annex\u00a0B (informative)Guidelines for the contents of detailed and full reports B.1 General B.2 Detailed report B.3 Full report <\/td>\n<\/tr>\n | ||||||
39<\/td>\n | Bibliography <\/td>\n<\/tr>\n | ||||||
41<\/td>\n | Fran\u00e7ais SOMMAIRE <\/td>\n<\/tr>\n | ||||||
44<\/td>\n | AVANT-PROPOS <\/td>\n<\/tr>\n | ||||||
46<\/td>\n | INTRODUCTION <\/td>\n<\/tr>\n | ||||||
47<\/td>\n | 1 Domaine d\u2019application 2 R\u00e9f\u00e9rences normatives <\/td>\n<\/tr>\n | ||||||
48<\/td>\n | 3 Termes et d\u00e9finitions <\/td>\n<\/tr>\n | ||||||
50<\/td>\n | Figures Figure 1 \u2013 Syst\u00e8mes \u00e0 piles \u00e0 combustible pour chariots de manutention \u00e9lectriques <\/td>\n<\/tr>\n | ||||||
51<\/td>\n | 4 Symboles <\/td>\n<\/tr>\n | ||||||
52<\/td>\n | Tableaux Tableau 1 \u2013 Symboles et signification correspondantepour les performances \u00e9lectriques\/thermiques <\/td>\n<\/tr>\n | ||||||
53<\/td>\n | 5 Conditions de r\u00e9f\u00e9rence 6 Base du pouvoir calorifique Tableau 2 \u2013 Symboles et signification correspondantepour les performances environnementales <\/td>\n<\/tr>\n | ||||||
54<\/td>\n | 7 Pr\u00e9paration aux essais 7.1 G\u00e9n\u00e9ralit\u00e9s 7.2 Plan d’acquisition des donn\u00e9es 8 Montage d\u2019essai <\/td>\n<\/tr>\n | ||||||
55<\/td>\n | Figure 2 \u2013 Exemple de montage d\u2019essai pour combustible hydrog\u00e8ne <\/td>\n<\/tr>\n | ||||||
56<\/td>\n | 9 Appareils de mesure et m\u00e9thodes de mesure 9.1 G\u00e9n\u00e9ralit\u00e9s 9.2 Appareils de mesure Figure 3 \u2013 Exemple de montage d\u2019essai pour combustible m\u00e9thanol <\/td>\n<\/tr>\n | ||||||
57<\/td>\n | 9.3 Points de mesure <\/td>\n<\/tr>\n | ||||||
58<\/td>\n | 9.4 Incertitudes de mesure syst\u00e9matiques minimales exig\u00e9es 10 Conditions d\u2019essai 10.1 Conditions de laboratoire 10.2 Conditions d\u2019installation et de fonctionnement du syst\u00e8me 10.3 Indication de l\u2019\u00e9tat des batteries <\/td>\n<\/tr>\n | ||||||
59<\/td>\n | 10.4 Qualit\u00e9 du combustible d\u2019essai 10.4.1 Hydrog\u00e8ne 10.4.2 Solution de m\u00e9thanol 11 Essai de consommation de combustible 11.1 Essai de consommation du combustible hydrog\u00e8ne 11.1.1 G\u00e9n\u00e9ralit\u00e9s 11.1.2 M\u00e9thode d\u2019essai 11.1.3 Calcul des r\u00e9sultats <\/td>\n<\/tr>\n | ||||||
61<\/td>\n | 11.2 Essai de consommation du combustible m\u00e9thanol 11.2.1 G\u00e9n\u00e9ralit\u00e9s 11.2.2 M\u00e9thode d\u2019essai <\/td>\n<\/tr>\n | ||||||
62<\/td>\n | 11.2.3 Calcul de la puissance moyenne du combustible m\u00e9thanol en entr\u00e9e 12 Essai de puissance \u00e9lectrique de sortie 12.1 G\u00e9n\u00e9ralit\u00e9s <\/td>\n<\/tr>\n | ||||||
63<\/td>\n | 12.2 M\u00e9thode d\u2019essai 12.3 Calcul de la puissance \u00e9lectrique moyenne de sortie 12.4 Calcul du rendement \u00e9lectrique 13 Essais de type sur les performances op\u00e9rationnelles 13.1 Essai de puissance de sortie maximale au d\u00e9marrage \u00e0 froid 13.1.1 G\u00e9n\u00e9ralit\u00e9s <\/td>\n<\/tr>\n | ||||||
64<\/td>\n | 13.1.2 M\u00e9thode d\u2019essai 13.1.3 Traitement des donn\u00e9es 13.2 Essai de cycle de charge \u00e9lectrique d\u2019alimentation 13.2.1 G\u00e9n\u00e9ralit\u00e9s 13.2.2 M\u00e9thode d\u2019essai 13.2.3 Traitement des donn\u00e9es 13.3 Essai de pointe de tension des charges accessoires 13.3.1 G\u00e9n\u00e9ralit\u00e9s 13.3.2 M\u00e9thode d\u2019essai <\/td>\n<\/tr>\n | ||||||
65<\/td>\n | 13.3.3 Traitement des donn\u00e9es 14 Stabilit\u00e9 de puissance pendant le fonctionnement 14.1 G\u00e9n\u00e9ralit\u00e9s 14.2 Puissance d\u00e9livr\u00e9e Tableau 3 \u2013 Mesurages de la puissance d\u00e9livr\u00e9e <\/td>\n<\/tr>\n | ||||||
66<\/td>\n | 14.3 Puissance absorb\u00e9e 15 Essais de type sur les performances environnementales 15.1 G\u00e9n\u00e9ralit\u00e9s 15.2 Essai de bruit 15.2.1 G\u00e9n\u00e9ralit\u00e9s 15.2.2 Conditions d\u2019essai Tableau 4 \u2013 Mesurages de la puissance absorb\u00e9e <\/td>\n<\/tr>\n | ||||||
67<\/td>\n | 15.2.3 M\u00e9thode d\u2019essai Figure 4 \u2013 Points de mesure du bruit pour syst\u00e8mes \u00e0 piles \u00e0 combustible Tableau 5 \u2013 Correction des valeurs lues par rapport \u00e0 l\u2019effet du bruit de fond <\/td>\n<\/tr>\n | ||||||
68<\/td>\n | 15.2.4 Traitement des donn\u00e9es 15.3 Essai de gaz d\u2019\u00e9chappement 15.3.1 G\u00e9n\u00e9ralit\u00e9s 15.3.2 Composants \u00e0 mesurer 15.3.3 M\u00e9thode d\u2019essai <\/td>\n<\/tr>\n | ||||||
69<\/td>\n | 15.3.4 Traitement des donn\u00e9es <\/td>\n<\/tr>\n | ||||||
71<\/td>\n | 15.4 Essai d\u2019eau d\u2019\u00e9coulement 15.4.1 G\u00e9n\u00e9ralit\u00e9s 15.4.2 M\u00e9thode d\u2019essai <\/td>\n<\/tr>\n | ||||||
72<\/td>\n | 16 Rapports d\u2019essai 16.1 G\u00e9n\u00e9ralit\u00e9s 16.2 Page de titre 16.3 Sommaire 16.4 Rapport r\u00e9sum\u00e9 <\/td>\n<\/tr>\n | ||||||
73<\/td>\n | Annexe\u00a0A (informative)Pouvoirs calorifiques de l’hydrog\u00e8ne etdu m\u00e9thanol aux conditions de r\u00e9f\u00e9rence Tableau A.1 \u2013 Pouvoirs calorifiques de l\u2019hydrog\u00e8neet du m\u00e9thanol aux conditions de r\u00e9f\u00e9rence <\/td>\n<\/tr>\n | ||||||
74<\/td>\n | Annexe\u00a0B (informative)Lignes directrices sur le contenu des rapports d\u00e9taill\u00e9 et complet B.1 G\u00e9n\u00e9ralit\u00e9s B.2 Rapport d\u00e9taill\u00e9 B.3 Rapport complet <\/td>\n<\/tr>\n | ||||||
75<\/td>\n | Bibliographie <\/td>\n<\/tr>\n<\/table>\n","protected":false},"excerpt":{"rendered":" Fuel cell technologies – Fuel cell power systems for industrial electric trucks. Performance test methods<\/b><\/p>\n |