BS EN IEC 62282-8-201:2020
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Fuel cell technologies – Energy storage systems using fuel cell modules in reverse mode. Test procedures for the performance of power-to-power systems
Published By | Publication Date | Number of Pages |
BSI | 2020 | 38 |
IEC 62282-8-201:2020 defines the evaluation methods of typical performances for electric energy storage systems using hydrogen. This is applicable to the systems that use electrochemical reaction devices for both power charge and discharge. This document applies to systems that are designed and used for service and operation in stationary locations (indoor and outdoor). The conceptual configurations of the electric energy storage systems using hydrogen are shown in Figure 1 and Figure 2. Figure 1 shows the system independently equipped with an electrolyser module and a fuel cell module. Figure 2 shows the system equipped with a reversible cell module. There are an electrolyser, a hydrogen storage and a fuel cell, or a reversible cell, a hydrogen storage and an overall management system (which may include a pressure management) as indispensable components. There may be a battery, an oxygen storage, a heat management system (which may include a heat storage) and a water management system (which may include a water storage) as optional components. The performance measurement is executed in the area surrounded by the outside thick solid line square (system boundary).
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 |
7 | English CONTENTS |
9 | FOREWORD |
11 | INTRODUCTION |
12 | 1 Scope Figures Figure 1 – System configuration of electric energy storage system using hydrogen– Type with electrolyser and fuel cell |
13 | 2 Normative references Figure 2 – System configuration of electric energy storage system using hydrogen– Type with reversible cell |
14 | 3 Terms, definitions and symbols 3.1 Terms and definitions |
18 | 3.2 Symbols |
19 | 4 Measurement instruments and measurement methods 4.1 General Tables Table 1 – Symbols |
20 | 4.2 Instrument uncertainty 4.3 Measurement plan |
21 | 4.4 Environmental conditions Figure 3 – Typical sequence of phases during the system operation Table 2 – Required steps before executing the measurement |
22 | 4.5 Maximum permissible variation in test operating conditions 5 System parameters 5.1 General 5.2 Electric energy storage capacity |
23 | 5.3 Rated electric power input 5.4 Rated net electric power output 5.5 Roundtrip electrical efficiency 5.6 System response (step response time and ramp rate) 5.6.1 Step response time |
24 | 5.6.2 Ramp rate Figure 4 – Step response time and ramp rate of EES system |
25 | 5.7 Minimum switchover time 5.8 Quiescent state loss rate 5.9 Heat input rate 5.10 Recovered heat output rate 5.11 Acoustic noise level 5.12 Total harmonic distortion |
26 | 5.13 Discharge water quality 6 Test methods and procedures 6.1 General 6.2 Electric energy storage capacity test |
27 | 6.3 Rated electric power input test 6.4 Rated net electric power output test |
28 | 6.5 Roundtrip electrical efficiency test 6.6 Other system performance test 6.6.1 System response test, step response time and ramp rate Table 3 – Example of document format of roundtrip electrical efficiency |
29 | Figure 5 – Step response test |
30 | 6.6.2 Minimum switchover time test 6.6.3 Quiescent state loss rate test Figure 6 – Minimum switch over time test |
31 | 6.6.4 Heat input rate test 6.6.5 Recovered heat output rate test 6.6.6 Acoustic noise level test |
32 | 6.6.7 Total harmonic distortion test 6.6.8 Discharge water quality test 6.7 Component performance test 6.7.1 Electrolyser performance test Table 4 – Additional parameters measured on the electrolyseror the reversible cell module in electrolysis mode |
33 | 6.7.2 Hydrogen storage performance test 6.7.3 Fuel cell performance test Table 5 – Additional parameters measured on the hydrogen storage component Table 6 – Additional parameters measured on the fuel cellor the reversible cell module in fuel cell mode |
34 | 6.7.4 Water management system performance test 6.7.5 Battery performance test 6.7.6 Oxygen storage performance test 7 Test reports 7.1 General 7.2 Report items |
35 | 7.3 Tested system data description 7.4 Test condition description 7.5 Test data description 7.6 Uncertainty evaluation |
36 | Bibliography |