CIESC Journal ›› 2020, Vol. 71 ›› Issue (7): 3247-3257.DOI: 10.11949/0438-1157.20191126
• Energy and environmental engineering • Previous Articles Next Articles
Ru WANG1(),Yongchao SHEN2,Dong WEI2(),Qian GUO2
Received:
2019-11-20
Revised:
2020-02-27
Online:
2020-07-05
Published:
2020-07-05
Contact:
Dong WEI
通讯作者:
卫东
作者简介:
王茹(1969—),女,本科,工程师,基金资助:
CLC Number:
Ru WANG, Yongchao SHEN, Dong WEI, Qian GUO. Analysis of PEMFC water management status based on DC internal resistance and AC impedance characteristics[J]. CIESC Journal, 2020, 71(7): 3247-3257.
王茹, 沈永超, 卫东, 郭倩. 基于直流内阻和交流阻抗特性的PEMFC水管理状态分析[J]. 化工学报, 2020, 71(7): 3247-3257.
Add to citation manager EndNote|Ris|BibTeX
参数 | 数值 | 参数 | 数值 | 参数 | 数值 |
---|---|---|---|---|---|
Va | 0~30 L/min | δ | 80 μm | α | 0.05 |
Vc | 0~150 L/min | A | 180 cm2 | tm | 0.051 mm |
0.1~0.3 MPa | N | 16 | Cg | 4 mol/L | |
pair | 0.15~0.45 MPa | RH | 35%~95% | T | 308~368 K |
0.1~0.4 g/s | Mair | 0.36~0.8 g/s | t* | 5~60 s |
Table 1 Model simulation parameter table
参数 | 数值 | 参数 | 数值 | 参数 | 数值 |
---|---|---|---|---|---|
Va | 0~30 L/min | δ | 80 μm | α | 0.05 |
Vc | 0~150 L/min | A | 180 cm2 | tm | 0.051 mm |
0.1~0.3 MPa | N | 16 | Cg | 4 mol/L | |
pair | 0.15~0.45 MPa | RH | 35%~95% | T | 308~368 K |
0.1~0.4 g/s | Mair | 0.36~0.8 g/s | t* | 5~60 s |
参数 | 优化 | 正常1 | 正常2 | 膜干 | 水淹 | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
i/(A/cm2) | 0~0.06 | 0.06~0.7 | 0.7~0.9 | 0~0.09 | 0.09~0.75 | 0.75~0.9 | 0~0.09 | 0.09~0.75 | 0.75~0.9 | 0~0.03 | 0.03~0.7 | 0.4~0.8 |
U/V | 13.2~15.4 | 10.7~13.1 | 8.65~10.7 | 12.13~15.4 | 5.8~15.4 | 3.25~5.8 | 11.8~15.4 | 4.1~11.8 | 1.44~4.3 | 12.0~15.5 | 1.14~12.0 | 0.5~11.5 |
Tstack/K | 306~309 | 306~335 | 335~343 | 309~312 | 310~338 | 338~345 | 303~306 | 306~330 | 330~343 | 293~303 | 303~333 | 320~333 |
RHstack | 40%~50% | 50%~70% | 70%~80% | 40%~45% | 45%~55% | 55%~70% | 40%~50% | 60%~75% | 75%~85% | 30%~35% | 35%~40% | 65%~95% |
Rf/(Ω·cm2) | 33.7~73.7 | 3.1~33.7 | 1.66~3.1 | 22.58~90.1 | 2.2~22.6 | 1.38~2.2 | 23.8~76.5 | 3.1~23.8 | 1.68~2.11 | 88.2~161.4 | 5.4~100.4 | 2.05~11.5 |
Rm/(Ω·cm2) | 4.43~5.3 | 3.28~4.4 | 1.52~3.3 | 10.1~11.0 | 6.82~10.1 | 7.12~8.8 | 12.4~13.1 | 6.02~12.4 | 5.97~8.0 | 16.66~18.5 | 15.65~18.3 | 2.04~4.40 |
Rd/(Ω·cm2) | 0.02~0.03 | 0.03~1.12 | 1.12~4.34 | 0.02~0.03 | 0.03~1.17 | 1.17~5.01 | 0.02~0.03 | 0.03~2.45 | 2.45~7.90 | 0.02~0.03 | 0.03~0.54 | 1.91~27.6 |
Rstack/(Ω·cm2) | 38.2~78.3 | 6.8~38.3 | 6.7~8.53 | 32.7~100.3 | 9.02~32.7 | 9.02~13.5 | 36.3~89.0 | 9.15~40.1 | 7.37~15.6 | 83.4~176.8 | 20.4~78.3 | 9.85~30.5 |
Table 2 Calculation results of Rf, Rm, Rd and Rstack resistance under different operating conditions
参数 | 优化 | 正常1 | 正常2 | 膜干 | 水淹 | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
i/(A/cm2) | 0~0.06 | 0.06~0.7 | 0.7~0.9 | 0~0.09 | 0.09~0.75 | 0.75~0.9 | 0~0.09 | 0.09~0.75 | 0.75~0.9 | 0~0.03 | 0.03~0.7 | 0.4~0.8 |
U/V | 13.2~15.4 | 10.7~13.1 | 8.65~10.7 | 12.13~15.4 | 5.8~15.4 | 3.25~5.8 | 11.8~15.4 | 4.1~11.8 | 1.44~4.3 | 12.0~15.5 | 1.14~12.0 | 0.5~11.5 |
Tstack/K | 306~309 | 306~335 | 335~343 | 309~312 | 310~338 | 338~345 | 303~306 | 306~330 | 330~343 | 293~303 | 303~333 | 320~333 |
RHstack | 40%~50% | 50%~70% | 70%~80% | 40%~45% | 45%~55% | 55%~70% | 40%~50% | 60%~75% | 75%~85% | 30%~35% | 35%~40% | 65%~95% |
Rf/(Ω·cm2) | 33.7~73.7 | 3.1~33.7 | 1.66~3.1 | 22.58~90.1 | 2.2~22.6 | 1.38~2.2 | 23.8~76.5 | 3.1~23.8 | 1.68~2.11 | 88.2~161.4 | 5.4~100.4 | 2.05~11.5 |
Rm/(Ω·cm2) | 4.43~5.3 | 3.28~4.4 | 1.52~3.3 | 10.1~11.0 | 6.82~10.1 | 7.12~8.8 | 12.4~13.1 | 6.02~12.4 | 5.97~8.0 | 16.66~18.5 | 15.65~18.3 | 2.04~4.40 |
Rd/(Ω·cm2) | 0.02~0.03 | 0.03~1.12 | 1.12~4.34 | 0.02~0.03 | 0.03~1.17 | 1.17~5.01 | 0.02~0.03 | 0.03~2.45 | 2.45~7.90 | 0.02~0.03 | 0.03~0.54 | 1.91~27.6 |
Rstack/(Ω·cm2) | 38.2~78.3 | 6.8~38.3 | 6.7~8.53 | 32.7~100.3 | 9.02~32.7 | 9.02~13.5 | 36.3~89.0 | 9.15~40.1 | 7.37~15.6 | 83.4~176.8 | 20.4~78.3 | 9.85~30.5 |
电堆参数 | 数值 | 电堆参数 | 数值 |
---|---|---|---|
额定功率 | 1.5 kW | 输出电流范围 | 0~160 A |
额定电压 | 10.5 V | 输出电压范围 | 7.2~16 V |
额定电流 | 143 A | 氢气/空气压力 | 0.1~0.15 MPa |
Table 3 PEMFC stack performance parameters
电堆参数 | 数值 | 电堆参数 | 数值 |
---|---|---|---|
额定功率 | 1.5 kW | 输出电流范围 | 0~160 A |
额定电压 | 10.5 V | 输出电压范围 | 7.2~16 V |
额定电流 | 143 A | 氢气/空气压力 | 0.1~0.15 MPa |
电流密度/ (A/cm2) | 阻抗 | 不同状态下误差/% | ||||
---|---|---|---|---|---|---|
优化 | 正常1 | 正常2 | 膜干1 | 膜干2 | ||
0.1 | Rm | 1.13 | 2.01 | 2.48 | 2.45 | 2.80 |
Rstack | -1.93 | -3.36 | -3.07 | -5.13 | -5.53 | |
0.4 | Rm | 1.40 | 1.02 | 2.49 | -1.78 | -2.45 |
Rstack | -1.99 | -2.59 | -2.27 | -3.84 | -4.02 | |
0.8 | Rm | 1.89 | 1.28 | 1.68 | 1.49 | 1.16 |
Rstack | -2.27 | -3.23 | -3.41 | -3.49 | -3.62 |
Table 4 Error analysis table of electrochemical impedance map
电流密度/ (A/cm2) | 阻抗 | 不同状态下误差/% | ||||
---|---|---|---|---|---|---|
优化 | 正常1 | 正常2 | 膜干1 | 膜干2 | ||
0.1 | Rm | 1.13 | 2.01 | 2.48 | 2.45 | 2.80 |
Rstack | -1.93 | -3.36 | -3.07 | -5.13 | -5.53 | |
0.4 | Rm | 1.40 | 1.02 | 2.49 | -1.78 | -2.45 |
Rstack | -1.99 | -2.59 | -2.27 | -3.84 | -4.02 | |
0.8 | Rm | 1.89 | 1.28 | 1.68 | 1.49 | 1.16 |
Rstack | -2.27 | -3.23 | -3.41 | -3.49 | -3.62 |
1 | 李英, 周勤文, 张香平. 质子交换膜燃料电池稳态自增湿性能分析[J]. 化工学报, 2014, 65(5): 1893-1899. |
Li Y, Zhou Q W, Zhang X P. Numerical analysis of steady state self-humidification performance of PEMFC[J]. CIESC Journal, 2014, 65(5): 1893-1899. | |
2 | 陈维荣, 牛茁, 韩喆, 等. 水冷PEMFC 热管理系统流量跟随控制策略[J]. 化工学报, 2017, 68(4): 1490-1498. |
Chen W R, Niu Z, Han Z, et al. Flow following control strategy for thermal management of water-cooled PEMFC[J]. CIESC Journal, 2017, 68(4): 1490-1498. | |
3 | 陈思彤, 李微微, 王学科, 等. 相变材料用于质子交换膜燃料电池的热管理[J]. 化工学报, 2016, 67: 1-6. |
Chen S T, Li W W, Wang X K, et al. Thermal management using phase change materials for proton exchange membrane fuel cells[J]. CIESC Journal, 2016, 67: 1-6. | |
4 | Giner-Sanz J J, Ortega, Pérez-Herranz V. Statistical analysis of the effect of temperature and inlet humidities on the parameters of a semiempirical model of the internal resistance of a polymer electrolyte membrane fuel cell[J]. Journal of Power Sources, 2018, 381(31): 84-93. |
5 | Giner-Sanz J J, Ortega E, Pérez-Herranz V. Mechanistic equivalent circuit modelling of a commercial polymer electrolyte membrane fuel cell[J]. Journal of Power Sources, 2018, 379(1): 328-337. |
6 | Russo L, Sorrentino M, Polverino P, et al. Application of Buckingham π theorem for scaling-up oriented fast modelling of proton exchange membrane fuel cell impedance[J]. Journal of Power Sources, 2017, 353(15): 277-286. |
7 | Pivac I, Barbir F. Inductive phenomena at low frequencies in impedance spectra of proton exchange membrane fuel cells — a review[J]. Journal of Power Sources, 2016, 326(15): 112-119. |
8 | Jahnke T, Futter G, Lazr A, et al. performance and degradation of proton exchange membrane fuel cells: state of the art in modeling from atomistic to system scale[J]. Journal of Power Sources, 2016, 304(1): 207-233. |
9 | Georg A F, Gazdzicki P, Friedrich K A, et al. Physical modeling of polymer-electrolyte membrane fuel cells: understanding water management and impedance spectra[J]. Journal of Power Sources, 2018, 391(1): 148-161. |
10 | Laribi S, Mammar K, Sahli Y, et al. Air supply temperature impact on the PEMFC impedance[J]. Journal of Energy Storage, 2018, 17: 327-335. |
11 | Vivona D, Casalegno A, Baricci A. Validation of a pseudo 2D analytical model for high temperature PEM fuel cell impedance valid at typical operative conditions [J]. Electrochimica Acta, 2019, 310(7): 122-135. |
12 | Kim J, Luo G, Wang C Y. Modeling liquid water re-distributions in bi-porous layer flow-fields of proton exchange membrane fuel cells[J]. Journal of Power Sources, 2018, 400(1): 284-295. |
13 | Dai W, Wang H J, Yuan X Z, et al. A review on water balance in the membrane electrode assembly of proton exchange membrane fuel cells[J]. International Journal of Hydrogen Energy, 2009, 34(23): 9461- 9478. |
14 | Wang Z Q, Zeng Y C, Sun S C, et al. Improvement of PEMFC water management by employing water transport plate as bipolar plate[J]. International Journal of Hydrogen Energy, 2017, 42(34): 21922-21929. |
15 | 何晓波, 詹志刚, 张洪凯, 等. 基于水平衡的PEM燃料电池大电流运行优化控制[J]. 工程热物理学报, 2017, 38(9): 1994-2000. |
He X B, Zhan Z G, Zhang H K, et al. The optimal control of PEM fuel cell operating at large current density based on water balance [J]. Journal of Engineering Thermophysics, 2017, 38(9): 1994-2000. | |
16 | Salahuddin M, Uddin M N, Hwang G, et al. Superhydrophobic PAN nanofibers for gas diffusionlayers of proton exchange membrane fuel cells for cathodic water management[J]. International Journal of Hydrogen Energy, 2018, 43(25): 11530-11538. |
17 | Moçotéguy P, Ludwig B, Steiner N Y. Application of current steps and design of experiments methodology to the detection of water management faults in a proton exchange membrane fuel cell stack[J]. Journal of Power Sources, 2016, 303(30): 126-136. |
18 | Pei P, Li Y, Xu H, et al. A review on water fault diagnosis of PEMFC associated with the pressure drop[J]. Applied Energy, 2016, 173(1): 366-385. |
19 | Nandjou F, Poirot-Crouvezier J P, Chandesris M, et al. Impact of heat and water management on proton exchange membrane fuel cells degradation in automotive application[J]. Journal of Power Sources, 2016, 326(15): 182-192. |
20 | Georg A F, Latz A, Jahnke T. Physical modeling of chemical membrane degradation in polymer electrolyte membrane fuel cells: influence of pressure, relative humidity and cell voltage[J]. Journal of Power Sources, 2019, 410(15): 78-90. |
21 | Zhao J, Jian Q F, Huang Z P, et al. Experimental study on water management improvement of proton exchange membrane fuel cells with dead-ended anode by periodically supplying fuel from anode outlet[J]. Journal of Power Sources, 2019, 435(30): 226-275. |
22 | 陶泽炎. 基于内阻检测的PEMFC温湿度特性及控制规则研究[D]. 杭州: 中国计量大学, 2016. |
Tao Z Y. Research on PEMFC temperature and humidity performances and control rules based on internal resistance detection[D]. Hangzhou: China Jiliang University, 2016. | |
23 | 高志, 蔡慧, 卫东, 等. 水冷型PEMFC输出特性建模与仿真分析[J]. 太阳能学报, 2019, 40(5): 1472-1480. |
Gao Z, Cai H, Wei D, et al. Water-cooling PEMFC output characteristic modeling and simulation analysis[J]. Acta Energiae Solaris Sinica, 2019, 40(5): 1472-1480. | |
24 | 王振, 卫东, 叶洪吉. 基于频率正割角计算的燃料电池堆水热管理状态诊断方法[J]. 化工学报, 2018, 69(10): 4371-4377 |
Wang Z, Wei D, Ye H J. Method for diagnosing state of hydrothermal management of fuel cell stack based on frequency secant angle[J]. CIESC Journal, 2018, 69(10): 4371-4377. | |
25 | Ijaoaola O S, El-Hassan Z, Ogungbemi E, et al. Energy efficiency improvements by investigating the water flooding management on proton exchange membrane fuel cell (PEMFC) [J]. Energy, 2019, 179(15): 246-267. |
26 | Shang D H, Ma B, Zhang G S, et al. Impedance analysis of proton exchange membrane fuel cells under different discharge conditions[J]. Journal of Xi'an Jiaotong University, 2008, 42(8): 622-625. |
27 | Subin K, Jithesh P K. Experimental study on self-humidified operation in PEM fuel cells[J]. Sustainable Energy Technologies and Assessments, 2018, 27: 17-22. |
28 | Lu H X, Chen J, Yan C Z. On-line fault diagnosis for proton exchange membrane fuel cells based on a fast electrochemical impedance spectroscopy measurement[J]. Journal of Power Sources, 2019, 430(1): 233-243. |
29 | Miassa T A, Olivier B, Emmanuel G. Identification of a PEMFC fractional order model[J]. International Journal of Hydrogen Energy, 2017, 42(2): 1499-1509. |
30 | Dao D V, Adilblish G, Lee I, et al. Enhanced electrocatalytic property of Pt/C electrode with double catalyst layers for PEMFC[J]. International Journal of Hydrogen Energy, 2019, 44(45): 24580-24590. |
[1] | Lin WEI, Jian GUO, Zihao LIAO, Dafalla Ahmed Mohmed, Fangming JIANG. Influence of air flow rate on the performance of air cooled hydrogen fuel cell stack [J]. CIESC Journal, 2022, 73(7): 3222-3231. |
[2] | Xue LI, Ming DONG, Huang ZHANG, Jun XIE. Kinetic characteristics of micro-particle impact on a flat surface under humidity conditions [J]. CIESC Journal, 2022, 73(5): 1940-1946. |
[3] | TANG Heli, ZHANG Bing, HUANG Dongmei, SHEN Yu, GAO Xu, SHI Wenxin. Advances in membrane fouling analysis based on XDLVO theory [J]. CIESC Journal, 2021, 72(3): 1230-1241. |
[4] | Yanpeng WU, Wei ZHAO, Fengjun CHEN. Experimental study on air filtration performance of nanofiber membrane with hydrophilic and hydrophobic function at different relative humidity [J]. CIESC Journal, 2020, 71(S1): 471-478. |
[5] | Ning WANG, Xuejun ZHANG, Yang ZHAO, Zhihua GAN, Chunwei ZHANG, Meng YU. Design and experimental study on constant humidity relic showcase using Stirling cryocooler [J]. CIESC Journal, 2020, 71(S1): 179-186. |
[6] | Xueqiong HE, Huibo ZHANG, Guojun YU, Chengnan SHI. Heat and humidity coupling non-steady state transfer model of multi-layer wall with additional air layer and its verification [J]. CIESC Journal, 2020, 71(S1): 114-119. |
[7] | LI Yi, ZHANG Xiaosong. Influencing factors of direct oxygen enrichment device based on electro-osmosis [J]. CIESC Journal, 2018, 69(S2): 388-393. |
[8] | CUI Yanqi. Research on development of composite phase change humidity-control material in buildings [J]. CIESC Journal, 2018, 69(S1): 1-7. |
[9] | LI Tingliang, HUANG Wenbo, CAO Wenjiong, JIANG Fangming. Inverse modeling of EGS heat reservoir based on micro-seismic data and analysis of its heat recovery performance [J]. CIESC Journal, 2018, 69(12): 5001-5010. |
[10] | TU Yaodong, GE Tianshu, WANG Ruzhu. Weak coupled heat and mass transfer on adsorptive heat exchanger [J]. CIESC Journal, 2016, 67(S1): 97-102. |
[11] | MA Zhiwen, ZENG Yida, LI Lun. Modeling and experimental verification of air supply system in large power PEMFC [J]. CIESC Journal, 2016, 67(5): 2109-2116. |
[12] | GAO Jin, QIAN Haiyan, SUN Xiaohua, GUO Weimin, LI Xiaogang. Effect of seawater pressure on protection properties of epoxy coatingused in deep sea [J]. CIESC Journal, 2015, 66(11): 4572-4577. |
[13] | JIANG Yu, HUANG Yi, GE Tianshu, WANG Ruzhu. Novel temperature and humidity independent control system [J]. CIESC Journal, 2014, 65(z2): 188-194. |
[14] | ZHANG Xuejun, ZHENG Youming, WANG Hengxu, SUN Daming, LI Xun. Research and applications of control technology of temperature and humidity in relic environment [J]. CIESC Journal, 2014, 65(z2): 1-8. |
[15] | PEI Houchang, TU Zhengkai, LIU Zhichun, SHEN Jun, QIU Zizhao, LIU Fan, LIU Wei. Low gas velocity of PEMFC aided by gravity water drainage [J]. CIESC Journal, 2014, 65(S1): 415-420. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||