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Two negative porous electrodes (60 μm thick)
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Two positive porous electrodes (60 μm thick)
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One negative current collector (14 μm thick)
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One positive current collector (20 μm thick)
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Two separator regions (30 μm thick)
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Click Add.
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Click Study.
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In the Select Study tree, select Preset Studies for Selected Physics Interfaces>Time Dependent with Initialization.
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Click Done.
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Browse to the model’s Application Libraries folder and double-click the file li_battery_spiral_2d_parameters.txt.
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Locate the Units section. In the table, enter the following settings:
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Click in the Graphics window and then press Ctrl+A to select all objects.
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In the Add dialog box, in the Selections to add list, choose Positive current collector, Negative current collector, Positive porous electrode, Negative porous electrode, and Electrolyte.
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Click OK.
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In the Add dialog box, in the Selections to add list, choose Positive porous electrode, Negative porous electrode, Electrolyte, and Electrolyte outside.
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Click OK.
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In the tree, select Built-in>Aluminum.
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In the tree, select Built-in>Copper.
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In the tree, select Battery>Electrolytes>LiPF6 in 1:2 EC:DMC and p(VdF-HFP) (Polymer, Li-ion Battery).
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In the Model Builder window, under Component 1 (comp1)>Materials click LiPF6 in 1:2 EC:DMC and p(VdF-HFP) (Polymer, Li-ion Battery) (mat3).
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In the Model Builder window, under Component 1 (comp1) right-click Lithium-Ion Battery (liion) and choose Porous Electrode.
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Locate the Electrode Properties section. From the Electrode material list, choose Graphite, LixC6 MCMB (Negative, Li-ion Battery) (mat4).
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Locate the Electrode Properties section. From the Electrode material list, choose LMO, LiMn2O4 Spinel (Positive, Li-ion Battery) (mat5).
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In the Settings window for Electrode Current Density, type Electrode Current Density - 1C Discharge in the Label text field.
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In the Settings window for Electrode Current Density, type Electrode Current Density - 10C Discharge in the Label text field.
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In the Relative placement of vertices along edge text field, type 0 5e-5 10^range(-4,0.25,-2) range(2e-2,1e-2,0.98) (1-10^range(-2,-0.25,-4)) 0.99995 1.
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In the Settings window for Boundary Probe, type Cell Voltage Probe - Study 1 in the Label text field.
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Click Replace Expression in the upper-right corner of the Expression section. From the menu, choose Component 1 (comp1)>Lithium-Ion Battery>phis - Electric potential - V.
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Locate the Physics and Variables Selection section. Select the Modify model configuration for study step check box.
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In the tree, select Component 1 (Comp1)>Lithium-Ion Battery (Liion)>Electrode Current Density - 10C Discharge.
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Right-click and choose Disable.
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In the Settings window for 2D Plot Group, type Relative Li Concentration at Surface of Negative Electrode Particles in the Label text field.
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Locate the Data section. From the Dataset list, choose Study 1 - 1 C Discharge/Solution 1 (4) (sol1).
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Right-click Relative Li Concentration at Surface of Negative Electrode Particles and choose Surface.
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In the Settings window for Surface, click Replace Expression in the upper-right corner of the Expression section. From the menu, choose Component 1 (comp1)>Lithium-Ion Battery>Particle intercalation>liion.socloc_surface - Local electrode material state-of-charge, particle surface.
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In the Settings window for 2D Plot Group, type Relative Li Concentration at Surface of Positive Electrode Particles in the Label text field.
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Locate the Data section. From the Dataset list, choose Study 1 - 1 C Discharge/Solution 1 (5) (sol1).
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Right-click Relative Li Concentration at Surface of Positive Electrode Particles and choose Surface.
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In the Settings window for Surface, click Replace Expression in the upper-right corner of the Expression section. From the menu, choose Component 1 (comp1)>Lithium-Ion Battery>Particle intercalation>liion.socloc_surface - Local electrode material state-of-charge, particle surface.
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In the Model Builder window, under Component 1 (comp1)>Definitions click Cell Voltage Probe - Study 1 (bnd1).
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Right-click Component 1 (comp1)>Definitions>Cell Voltage Probe - Study 1 (bnd1) and choose Duplicate.
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In the Settings window for Boundary Probe, type Cell Voltage Probe - Study 2 in the Label text field.
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Find the Studies subsection. In the Select Study tree, select Preset Studies for Selected Physics Interfaces>Time Dependent with Initialization.
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Locate the Physics and Variables Selection section. Select the Modify model configuration for study step check box.
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In the tree, select Component 1 (Comp1)>Lithium-Ion Battery (Liion)>Electrode Current Density - 1C Discharge.
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Right-click and choose Disable.
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In the Model Builder window, under Results>Datasets click Study 1 - 1 C Discharge/Solution 1 (4) (sol1).
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In the Model Builder window, under Results>Datasets click Study 1 - 1 C Discharge/Solution 1 (5) (sol1).
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In the Model Builder window, under Results click Relative Li Concentration at Surface of Negative Electrode Particles.
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In the Model Builder window, click Relative Li Concentration at Surface of Positive Electrode Particles.
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In the Model Builder window, under Component 1 (comp1)>Definitions right-click Cell Voltage Probe - Study 2 (bnd2) and choose Duplicate.
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In the Settings window for Boundary Probe, type Cell Voltage Probe - Study 3 in the Label text field.
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Locate the Physics and Variables Selection section. Select the Modify model configuration for study step check box.
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In the tree, select Component 1 (Comp1)>Lithium-Ion Battery (Liion)>Electrode Current Density - 1C Discharge.
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Right-click and choose Disable.
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In the tree, select Component 1 (Comp1)>Lithium-Ion Battery (Liion)>Electrode Current Density - 10C Discharge.
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Right-click and choose Disable.
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Click to expand the Values of Dependent Variables section. Find the Initial values of variables solved for subsection. From the Settings list, choose User controlled.
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In the Settings window for Study, type Study 3 - Relaxation after 1C Discharge in the Label text field.
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In the Model Builder window, under Results>Datasets click Study 2 - 10 C Discharge/Solution 3 (4) (sol3).
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In the Model Builder window, under Results>Datasets click Study 2 - 10 C Discharge/Solution 3 (5) (sol3).
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Click Plot.
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In the Model Builder window, click Relative Li Concentration at Surface of Negative Electrode Particles.
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Click Plot.
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In the Model Builder window, click Relative Li Concentration at Surface of Positive Electrode Particles.
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