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Correction

Correction: Paccha-Herrera et al. Thermal Modeling Approaches for a LiCoO2 Lithium-ion Battery—A Comparative Study with Experimental Validation. Batteries 2020, 6, 40

by
Edwin Paccha-Herrera
1,*,
Williams R. Calderón-Muñoz
1,2,
Marcos Orchard
2,3,
Francisco Jaramillo
3 and
Kamal Medjaher
4
1
Department of Mechanical Engineering, Faculty of Physical and Mathematical Sciences, Universidad de Chile, Beauchef 851, Santiago 8370456, Chile
2
Energy Center, Universidad de Chile, Tupper 2007, Santiago 8370456, Chile
3
Department of Electrical Engineering, Faculty of Physical and Mathematical Sciences, Universidad de Chile, Tupper 2007, Santiago 8370456, Chile
4
École Nationale d’Ingénieurs de Tarbes, LGP, 47 Avenue d’Azereix, 65016 Tarbes, France
*
Author to whom correspondence should be addressed.
Submission received: 11 June 2021 / Accepted: 21 June 2021 / Published: 25 June 2021
The authors wish to make the following corrections to their paper [1]:

1. Error in Table

In the original article, there was a mistake in Table 9 as published. Inner thermal resistance (KW−1) value should be 1.8. The corrected Table 9 appears below. The authors apologize for any inconvenience caused and state that the scientific conclusions are unaffected. The original article has been updated.

2. Text Correction

There was an error in the original article. The formula for specific heat cp is badly written. It should be cp = m−1Cp.
A correction has been made to Materials and methods, Heat Capacity and Internal Thermal Resistance, Paragraph two:
Following a similar procedure proposed by Bryden et al. [1], the next stage was to estimate Cp and Rin from Equation (3) by fitting the initial section of the measured cell temperature (see Figure 10a), where the temperature gradient is greater. This region was taken for the first 2700 s. Parameters obtained from this section are given in Table 8. Then, specific heat is obtained by cp = m−1Cp = 1197 Jkg−1 K−1. The aforementioned authors reported values of Rin = 1.4 KW−1 and cp = 1169 Jkg−1 K−1 for a 26,650 LFP battery.
The authors apologize for any inconvenience caused and state that the scientific conclusions are unaffected. The original article has been updated.

Reference

  1. Paccha-Herrera, E.; Calderón-Muñoz, W.R.; Orchard, M.; Jaramillo, F.; Medjaher, K. Thermal Modeling Approaches for a LiCoO2 Lithium-ion Battery—A Comparative Study with Experimental Validation. Batteries 2020, 6, 40. [Google Scholar] [CrossRef]
Table 9. Properties of materials for lumped and 3D-CFD models.
Table 9. Properties of materials for lumped and 3D-CFD models.
Property.ValueLumped3D-CFD
Density (kgm−3)2550 a
Specific heat (Jkg−1 K−1)1197 b
Thermal conductivity: radial, tangential, axial (Wm−1 K−1)0.8, 27, 27 [38]
Inner thermal resistance (KW−1)1.8 b
a Computed. b Parameter estimation.
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MDPI and ACS Style

Paccha-Herrera, E.; Calderón-Muñoz, W.R.; Orchard, M.; Jaramillo, F.; Medjaher, K. Correction: Paccha-Herrera et al. Thermal Modeling Approaches for a LiCoO2 Lithium-ion Battery—A Comparative Study with Experimental Validation. Batteries 2020, 6, 40. Batteries 2021, 7, 43. https://0-doi-org.brum.beds.ac.uk/10.3390/batteries7030043

AMA Style

Paccha-Herrera E, Calderón-Muñoz WR, Orchard M, Jaramillo F, Medjaher K. Correction: Paccha-Herrera et al. Thermal Modeling Approaches for a LiCoO2 Lithium-ion Battery—A Comparative Study with Experimental Validation. Batteries 2020, 6, 40. Batteries. 2021; 7(3):43. https://0-doi-org.brum.beds.ac.uk/10.3390/batteries7030043

Chicago/Turabian Style

Paccha-Herrera, Edwin, Williams R. Calderón-Muñoz, Marcos Orchard, Francisco Jaramillo, and Kamal Medjaher. 2021. "Correction: Paccha-Herrera et al. Thermal Modeling Approaches for a LiCoO2 Lithium-ion Battery—A Comparative Study with Experimental Validation. Batteries 2020, 6, 40" Batteries 7, no. 3: 43. https://0-doi-org.brum.beds.ac.uk/10.3390/batteries7030043

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