multiphysics (mp) software (COMSOL Inc)
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Multiphysics (Mp) Software, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/mp+software/multiphysics++mp++software/pmc10253684-229-11-14
Average 90 stars, based on 1 article reviews
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Software:Article Title: Modeling the effect of temperature on solid-phase microextraction of volatile organic compounds from air by polydimethylsiloxane coating using finite element analysis. Article Snippet: A development of analytical methods based on solid-phase microextraction (SPME) is a very timeand labor-consuming task.. The finite element methods have found a wide application in SPME modeling for faster and more accurate optimization of analytical methods.. In this work, a computational model for predicting the effect of temperature on extraction of VOCs from air onto SPME coating based on polydimethylsiloxane (PDMS) has been developed using COMSOL Multiphysics® (CMP) software. Article Title: A novel methodology to estimate the state-of-health and remaining-useful-life of a Li-ion battery using discrete Fourier transformation Article Snippet: In this work, a multiphysics-based modeling approach is followed, which helps to diagnose the state-of-health (SoH) of the battery by using the discrete Fourier transform (DFT) analysis.. The experimentally validated electrochemical model is considered based on the pseudo-2-Dimensional (P2D) porous electrode model. A constant current with a small perturbation (sinusoidal) on it is applied to the cell for testing purposes.. The cell testing pulses of different frequencies are applied to the cell, and output responses are measured for the same. Article Title: MINN: Learning the Dynamics of Differential-algebraic Equations and Application to Battery Modeling Article Snippet: Available: http://www.cchem.berkeley. edu/jsngrp/fortran.html [47] L. Cai and Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries. Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Machine learning assisted multiscale modeling of composite phase change materials for Li-ion batteries’ thermal management Article Snippet: White , Mathematical modeling of a lithium ion battery with ther- Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Survey and sensitivity analysis of critical parameters in lithium-ion battery thermo-electrochemical modeling Article Snippet: To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradation phenomena and internal heat generation on Li-ion cells must be considered.. Pseudo-2-Dimensional (P2D) thermo-electrochemical models can be used to investigate heat generation at electrode and cell level.. However, even for common materials, in the literature there is a significant dispersion of thermal properties which, in some cases, go beyond physical limits. Battery:Article Title: Modeling the effect of temperature on solid-phase microextraction of volatile organic compounds from air by polydimethylsiloxane coating using finite element analysis. Article Snippet: A development of analytical methods based on solid-phase microextraction (SPME) is a very timeand labor-consuming task.. The finite element methods have found a wide application in SPME modeling for faster and more accurate optimization of analytical methods.. In this work, a computational model for predicting the effect of temperature on extraction of VOCs from air onto SPME coating based on polydimethylsiloxane (PDMS) has been developed using COMSOL Multiphysics® (CMP) software. Article Title: A novel methodology to estimate the state-of-health and remaining-useful-life of a Li-ion battery using discrete Fourier transformation Article Snippet: In this work, a multiphysics-based modeling approach is followed, which helps to diagnose the state-of-health (SoH) of the battery by using the discrete Fourier transform (DFT) analysis.. The experimentally validated electrochemical model is considered based on the pseudo-2-Dimensional (P2D) porous electrode model. A constant current with a small perturbation (sinusoidal) on it is applied to the cell for testing purposes.. The cell testing pulses of different frequencies are applied to the cell, and output responses are measured for the same. Article Title: MINN: Learning the Dynamics of Differential-algebraic Equations and Application to Battery Modeling Article Snippet: Available: http://www.cchem.berkeley. edu/jsngrp/fortran.html [47] L. Cai and Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries. Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Machine learning assisted multiscale modeling of composite phase change materials for Li-ion batteries’ thermal management Article Snippet: White , Mathematical modeling of a lithium ion battery with ther- Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Survey and sensitivity analysis of critical parameters in lithium-ion battery thermo-electrochemical modeling Article Snippet: To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradation phenomena and internal heat generation on Li-ion cells must be considered.. Pseudo-2-Dimensional (P2D) thermo-electrochemical models can be used to investigate heat generation at electrode and cell level.. However, even for common materials, in the literature there is a significant dispersion of thermal properties which, in some cases, go beyond physical limits. Extraction:Article Title: Modeling the effect of temperature on solid-phase microextraction of volatile organic compounds from air by polydimethylsiloxane coating using finite element analysis. Article Snippet: A development of analytical methods based on solid-phase microextraction (SPME) is a very timeand labor-consuming task.. The finite element methods have found a wide application in SPME modeling for faster and more accurate optimization of analytical methods.. In this work, a computational model for predicting the effect of temperature on extraction of VOCs from air onto SPME coating based on polydimethylsiloxane (PDMS) has been developed using COMSOL Multiphysics® (CMP) software. Article Title: A novel methodology to estimate the state-of-health and remaining-useful-life of a Li-ion battery using discrete Fourier transformation Article Snippet: In this work, a multiphysics-based modeling approach is followed, which helps to diagnose the state-of-health (SoH) of the battery by using the discrete Fourier transform (DFT) analysis.. The experimentally validated electrochemical model is considered based on the pseudo-2-Dimensional (P2D) porous electrode model. A constant current with a small perturbation (sinusoidal) on it is applied to the cell for testing purposes.. The cell testing pulses of different frequencies are applied to the cell, and output responses are measured for the same. Article Title: MINN: Learning the Dynamics of Differential-algebraic Equations and Application to Battery Modeling Article Snippet: Available: http://www.cchem.berkeley. edu/jsngrp/fortran.html [47] L. Cai and Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries. Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Machine learning assisted multiscale modeling of composite phase change materials for Li-ion batteries’ thermal management Article Snippet: White , Mathematical modeling of a lithium ion battery with ther- Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Survey and sensitivity analysis of critical parameters in lithium-ion battery thermo-electrochemical modeling Article Snippet: To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradation phenomena and internal heat generation on Li-ion cells must be considered.. Pseudo-2-Dimensional (P2D) thermo-electrochemical models can be used to investigate heat generation at electrode and cell level.. However, even for common materials, in the literature there is a significant dispersion of thermal properties which, in some cases, go beyond physical limits. Solid-phase Microextraction:Article Title: Modeling the effect of temperature on solid-phase microextraction of volatile organic compounds from air by polydimethylsiloxane coating using finite element analysis. Article Snippet: A development of analytical methods based on solid-phase microextraction (SPME) is a very timeand labor-consuming task.. The finite element methods have found a wide application in SPME modeling for faster and more accurate optimization of analytical methods.. In this work, a computational model for predicting the effect of temperature on extraction of VOCs from air onto SPME coating based on polydimethylsiloxane (PDMS) has been developed using COMSOL Multiphysics® (CMP) software. Article Title: A novel methodology to estimate the state-of-health and remaining-useful-life of a Li-ion battery using discrete Fourier transformation Article Snippet: In this work, a multiphysics-based modeling approach is followed, which helps to diagnose the state-of-health (SoH) of the battery by using the discrete Fourier transform (DFT) analysis.. The experimentally validated electrochemical model is considered based on the pseudo-2-Dimensional (P2D) porous electrode model. A constant current with a small perturbation (sinusoidal) on it is applied to the cell for testing purposes.. The cell testing pulses of different frequencies are applied to the cell, and output responses are measured for the same. Article Title: MINN: Learning the Dynamics of Differential-algebraic Equations and Application to Battery Modeling Article Snippet: Available: http://www.cchem.berkeley. edu/jsngrp/fortran.html [47] L. Cai and Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries. Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Machine learning assisted multiscale modeling of composite phase change materials for Li-ion batteries’ thermal management Article Snippet: White , Mathematical modeling of a lithium ion battery with ther- Article Title: Investigating the Coating Effect on Charge Transfer Mechanisms in Composite Electrodes for Lithium-Ion Batteries Article Snippet: The physics-based model of the LFP cell was developed in the Article Title: Survey and sensitivity analysis of critical parameters in lithium-ion battery thermo-electrochemical modeling Article Snippet: To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradation phenomena and internal heat generation on Li-ion cells must be considered.. Pseudo-2-Dimensional (P2D) thermo-electrochemical models can be used to investigate heat generation at electrode and cell level.. However, even for common materials, in the literature there is a significant dispersion of thermal properties which, in some cases, go beyond physical limits. |
