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Performance prediction of PEM fuel cell with wavy serpentine flow channel by using artificial neural network
Authors:Mehmet Seyhan  Yahya Erkan Akansu  Miraç Murat  Yusuf Korkmaz  Selahaddin Orhan Akansu
Affiliation:1. Mechanical Engineering Department, Karadeniz Technical University, 61080, Trabzon, Turkey;2. Mechanical Engineering Department, Ömer Halisdemir University, 51240, Ni?de, Turkey;3. Industrial Engineering Department, Karadeniz Technical University, 61080, Trabzon, Turkey;4. Mechanical Engineering Department, Erciyes University, 38039, Kayseri, Turkey
Abstract:Effects of serpentine flow channel having sinusoidal wave at the rib surface on performance of PEMFC having 25 cm2 active area are investigated at different flow rates, three different amplitudes changing from 0.25 mm to 0.75 mm and three different cell operation temperatures. A proton exchange membrane fuel cell (PEMFC) is modeled for the prediction of the output current by using artificial neural network (ANN) that is utilized the aforementioned experimental parameters. Effect of hydrogen and air flow rate, the fuel cell temperature, amplitude of channel is tested. The results indicated that model C1 having lowest amplitude is enhanced maximum power output up to 20.15% as compared to indicated conventional serpentine channel (model C4) for 0.7 SLPM H2 and 1.5 SLPM air and also model C1 has better performance than C2, C3 and C4 models. The maximum power output is augmented with increasing the cell temperature due to raising the fuel and oxidant diffusion ratio. Cell temperature, amplitude, H2 and air flow rate and input voltage is used as input variables in train and test of the developing ANN model. MAPE of training and testing is determined as 2.89 and 2.059, respectively. Prediction results of developed ANN model including two hidden layer shows similar trend with experimental results. Developed ANN model can be used to both decrease the number of required experiments and find the optimum operation condition within the range of input parameters.
Keywords:PEM fuel cell  Wavy shaped serpentine  Artificial neural network
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