BS EN IEC 62282-4-600:2022
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Fuel cell technologies – Fuel cell power systems for propulsion other than road vehicles and auxiliary power units (APU). Fuel cell/battery hybrid systems performance test methods for excavators
Published By | Publication Date | Number of Pages |
BSI | 2022 | 46 |
IEC 62282-4-600:2022 covers the requirements for the performance test methods of fuel cell/battery hybrid systems intended to be used for electrically powered applications for excavators. For this purpose, this document covers electrical performance and vibration tests for the fuel cell/battery hybrid system. This document also covers performance test methods which focus on vibration and other characteristics for balance of plant (BOP) installed in heavy-duty applications with fuel cell/battery hybrid system. This document applies to both gaseous hydrogen-fuelled fuel cell power, liquid hydrogen-fuelled fuel cell power, direct methanol fuel cell power and battery hybrid power pack systems.
PDF Catalog
PDF Pages | PDF Title |
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2 | undefined |
5 | Annex ZA (normative)Normative references to international publicationswith their corresponding European publications |
6 | English CONTENTS |
9 | FOREWORD |
11 | 1 Scope |
12 | 2 Normative references 3 Terms, definitions and abbreviated terms 3.1 Terms and definitions Figures Figure 1 ā Fuel cell/ battery hybrid systems block diagram |
14 | 3.2 Abbreviated terms 4 Symbols Tables Table 1 ā Symbols and their meanings for electric/thermal performance |
16 | 5 Configuration of fuel cell and battery hybrid power system 5.1 General 5.1.1 Overview 5.1.2 Hybrid system Figure 2 ā Fuel cell/battery hybrid system configuration Figure 3 ā Power hybridization of fuel cell and battery power system |
17 | 6 Reference conditions 7 Test preparation 7.1 General 7.2 Measurement system analysis 7.3 Data acquisition plan 8 Test set-up |
18 | Figure 4 ā Test set-up for fuel cell/battery hybrid system fedwith hydrogen fuel which supplies only electricity |
19 | 9 Instruments and measurement methods 9.1 General 9.2 Measurement instruments Figure 5 ā Test set-up for fuel cell power system fedwith methanol fuel which supplies only electricity |
20 | 9.3 Measurement points |
21 | 9.4 Minimum required measurement systematic uncertainty |
22 | 10 Test conditions 10.1 Laboratory conditions 10.2 Installation and operating conditions of the system 10.3 Power source conditions 10.4 Quality of test fuel 10.4.1 Hydrogen 10.4.2 Methanol solution 11 Operating process |
23 | 12 Test plan Figure 6 ā Chronological series of changes in the operating state |
24 | 13 Type tests on electric performance 13.1 General 13.2 Fuel consumption test 13.2.1 Gaseous and liquid hydrogen fuel consumption test |
27 | 13.2.2 Methanol fuel consumption test |
28 | 13.3 Electric power output test 13.3.1 General 13.3.2 Test method 13.3.3 Calculation of average electric power output |
29 | 13.3.4 Determination of state of charge of the battery 13.3.5 Computation of electrical efficiency 13.4 Type test on operational performance 13.4.1 Cold start maximum power output test |
30 | 13.4.2 Power cycling electrical load test 13.4.3 Electric demand-following test |
31 | 14 Power stability during operation 14.1 General 14.2 Delivered power 14.3 Regenerated power Figure 7 ā Energy flow for regenerated power and delivered power Table 2 ā Delivered power measurements |
32 | 15 Type tests on environmental performance 15.1 General 15.2 Noise test 15.2.1 General 15.2.2 Test conditions Table 3 ā Regenerated power measurements |
33 | Figure 8 ā Noise measurement points for hybrid fuel cell power systems Table 4 ā Compensation of readings against the effect of background noise |
34 | 15.3 Exhaust gas test 15.3.1 General 15.3.2 Components to be measured 15.3.3 Test method |
35 | 15.3.4 Processing of data |
38 | 15.4 Discharge water test 15.4.1 General 15.4.2 Test method 15.5 Vibration test 15.5.1 General |
39 | 15.5.2 Vertical axis test 15.5.3 Longitudinal and lateral axes tests 15.5.4 Random vibration test Figure 9 ā Random vibration ASD |
40 | 16 Test mode of fuel cell/battery hybrid system on an excavator 17 Test reports 17.1 General 17.2 Title page 17.3 Table of contents 17.4 Summary report |
41 | Annex A (informative)Example of a test operation schedule Table A.1 ā Example of a test operation schedule |
42 | Annex B (informative)Example of test mode for fuel cell/battery hybrid system B.1 Test modes for excavator B.1.1 General B.1.2 Traveling mode B.1.3 Lifting mode B.1.4 Excavating mode B.1.5 Levelling mode B.1.6 Breaking mode Figure B.1 ā Operation modes for excavator installed fuel cell/battery hybrid system |
43 | B.2 Test condition Table B.1 ā Example of test mode for fuel cell/battery hybrid system with excavator |
44 | Annex C (informative)Guidelines for the contents of detailed and full reports C.1 General C.2 Detailed report C.3 Full report |
45 | Bibliography |