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multi-physics software package comsol multi-physics  (COMSOL Inc)

 
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    COMSOL Inc multi-physics software package comsol multi-physics
    Multi Physics Software Package Comsol Multi Physics, 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/comsol-multi+physics+package+software/comsol+multi+physics+software/pmc07215380-79-27-30
    Average 90 stars, based on 1 article reviews
    multi-physics software package comsol multi-physics - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Diffusion-based Assay:

    Article Title: All-cellulose triboelectric textile with complete biodegradability for eco-friendly smart wearable electronics
    Article Snippet: To further elucidate the effect of the chemical modification on the output performance of RC TENG-T, the potential distribution of three RC-based TENG-T samples was simulated by using COMSOL multi-physics software, as presented in Figs. 2(g)–2(i)).

    Article Title: The ZnO-SiO 2 Composite Phase with Dual Regulation Function Enables Uniform Zn 2+ Flux and Fast Zinc Deposition Kinetics Toward Zinc Metal Batteries.
    Article Snippet: As an important candidate for rechargeable energy storage devices, the large-scale development of aqueous zinc ion batteries has been hindered by hydrogen evolution and uncontrollable dendrites of metal anodes.. A novel ZnO-SiO2 composite interface phase (Zn@ZSCP) with a double protective effect based on in situ synthesis by hydrothermal method is used to improve these difficulties.. The hydrophilic SiO2 layer is beneficial to the dissolution of hydrated zinc ions and reduces the nucleation barrier during zinc deposition, while the stable ZnO layer helps to adjust the electric field distribution on the surface of the metal anode to further induce uniform zinc nucleation.

    Article Title: Efficient Methanol Oxidation Kinetics Enabled by an Ordered Heterocatalyst with Dual Electric Fields.
    Article Snippet: Induced by a sharp-tip-enhanced electric field, periodical nanoassemblies can regulate the reactant flux on the electrode surface, efficiently optimizing the mass transfer kinetics in electrocatalysis.. However, when the nanoscale building blocks in homoassemblies are arranged densely, it results in the overlap and reduction of the local electric field.. Herein, we present a comprehensive kinetic heteromodel that simultaneously couples the sharp-tip-enhanced electric field and charge transfer electric field between different building blocks with any arrangement densities.

    Article Title: 3D Simulation-Based Comparison of Bulk Acoustic Wave FBAR and SMR Technology
    Article Snippet: Solidly Mounted Resonators (SMRs) and Film Bulk Acoustic Resonators (FBARs) are essential components in RF and microwave applications, each having distinct features that are well-suited to various circumstances.. SMRs have a piezoelectric layer sandwiched between two electrodes above a substrate, which ensures a strong construction.. In contrast, FBARs use thin piezoelectric sheets on a substrate, resulting in a far thinner design.

    Article Title: Electrode structural effects on the mechanism of high-voltage pulse rock breaking
    Article Snippet: In the oil drilling process, drilling costs account for more than 50% of total E&P costs.. High-voltage electric pulse rock breaking is an economical and effective rock-breaking method that has received widespread attention.. At present, there is not much research on the influence of the shape of the electrode tip on high-voltage pulse rock breaking.

    Article Title: Numerical simulation of stability of diffusion depth of deterrents into cylindrical nitrocellulose composite under different conditions.
    Article Snippet: Several works have been done on diffusion phenomena with COMSOL Multi-physics software, but so far, simulation of deterrents diffusion into nitrocellulose propellant has not been done with it.

    Article Title: ACTIVE COOLING HEAT TRANSFER COEFFICIENT ENHANCEMENTS IN POROUS COMPACT HEAT EXCHANGER
    Article Snippet: Due to the poor thermal properties of the air and the resistance of the boundary layer, enhancing the heat transfer coefficient HTC is a challenging problem.. In this study, the hydro-thermal characteristics of V-shape copper porous media attached to a vertical heat source were studied by using the active cooling forced convection technique.. The performance of hydraulic is expressed by pressure drop through the porous insert material while the thermal performance is expressed by the overall HTC and Nusselt number.

    Article Title: Open-atmosphere spinning of carbon nanotube fibers sans hydrogen flow by floating catalyst chemical vapor deposition: an insight into the mechanism
    Article Snippet: CFD analysis was performed using COMSOL Multi-Physics software.

    Software:

    Article Title: All-cellulose triboelectric textile with complete biodegradability for eco-friendly smart wearable electronics
    Article Snippet: To further elucidate the effect of the chemical modification on the output performance of RC TENG-T, the potential distribution of three RC-based TENG-T samples was simulated by using COMSOL multi-physics software, as presented in Figs. 2(g)–2(i)).

    Article Title: The ZnO-SiO 2 Composite Phase with Dual Regulation Function Enables Uniform Zn 2+ Flux and Fast Zinc Deposition Kinetics Toward Zinc Metal Batteries.
    Article Snippet: As an important candidate for rechargeable energy storage devices, the large-scale development of aqueous zinc ion batteries has been hindered by hydrogen evolution and uncontrollable dendrites of metal anodes.. A novel ZnO-SiO2 composite interface phase (Zn@ZSCP) with a double protective effect based on in situ synthesis by hydrothermal method is used to improve these difficulties.. The hydrophilic SiO2 layer is beneficial to the dissolution of hydrated zinc ions and reduces the nucleation barrier during zinc deposition, while the stable ZnO layer helps to adjust the electric field distribution on the surface of the metal anode to further induce uniform zinc nucleation.

    Article Title: Efficient Methanol Oxidation Kinetics Enabled by an Ordered Heterocatalyst with Dual Electric Fields.
    Article Snippet: Induced by a sharp-tip-enhanced electric field, periodical nanoassemblies can regulate the reactant flux on the electrode surface, efficiently optimizing the mass transfer kinetics in electrocatalysis.. However, when the nanoscale building blocks in homoassemblies are arranged densely, it results in the overlap and reduction of the local electric field.. Herein, we present a comprehensive kinetic heteromodel that simultaneously couples the sharp-tip-enhanced electric field and charge transfer electric field between different building blocks with any arrangement densities.

    Article Title: 3D Simulation-Based Comparison of Bulk Acoustic Wave FBAR and SMR Technology
    Article Snippet: Solidly Mounted Resonators (SMRs) and Film Bulk Acoustic Resonators (FBARs) are essential components in RF and microwave applications, each having distinct features that are well-suited to various circumstances.. SMRs have a piezoelectric layer sandwiched between two electrodes above a substrate, which ensures a strong construction.. In contrast, FBARs use thin piezoelectric sheets on a substrate, resulting in a far thinner design.

    Article Title: Electrode structural effects on the mechanism of high-voltage pulse rock breaking
    Article Snippet: In the oil drilling process, drilling costs account for more than 50% of total E&P costs.. High-voltage electric pulse rock breaking is an economical and effective rock-breaking method that has received widespread attention.. At present, there is not much research on the influence of the shape of the electrode tip on high-voltage pulse rock breaking.

    Article Title: Numerical simulation of stability of diffusion depth of deterrents into cylindrical nitrocellulose composite under different conditions.
    Article Snippet: Several works have been done on diffusion phenomena with COMSOL Multi-physics software, but so far, simulation of deterrents diffusion into nitrocellulose propellant has not been done with it.

    Article Title: ACTIVE COOLING HEAT TRANSFER COEFFICIENT ENHANCEMENTS IN POROUS COMPACT HEAT EXCHANGER
    Article Snippet: Due to the poor thermal properties of the air and the resistance of the boundary layer, enhancing the heat transfer coefficient HTC is a challenging problem.. In this study, the hydro-thermal characteristics of V-shape copper porous media attached to a vertical heat source were studied by using the active cooling forced convection technique.. The performance of hydraulic is expressed by pressure drop through the porous insert material while the thermal performance is expressed by the overall HTC and Nusselt number.

    Article Title: Open-atmosphere spinning of carbon nanotube fibers sans hydrogen flow by floating catalyst chemical vapor deposition: an insight into the mechanism
    Article Snippet: CFD analysis was performed using COMSOL Multi-Physics software.

    Modification:

    Article Title: All-cellulose triboelectric textile with complete biodegradability for eco-friendly smart wearable electronics
    Article Snippet: To further elucidate the effect of the chemical modification on the output performance of RC TENG-T, the potential distribution of three RC-based TENG-T samples was simulated by using COMSOL multi-physics software, as presented in Figs. 2(g)–2(i)).

    Article Title: The ZnO-SiO 2 Composite Phase with Dual Regulation Function Enables Uniform Zn 2+ Flux and Fast Zinc Deposition Kinetics Toward Zinc Metal Batteries.
    Article Snippet: As an important candidate for rechargeable energy storage devices, the large-scale development of aqueous zinc ion batteries has been hindered by hydrogen evolution and uncontrollable dendrites of metal anodes.. A novel ZnO-SiO2 composite interface phase (Zn@ZSCP) with a double protective effect based on in situ synthesis by hydrothermal method is used to improve these difficulties.. The hydrophilic SiO2 layer is beneficial to the dissolution of hydrated zinc ions and reduces the nucleation barrier during zinc deposition, while the stable ZnO layer helps to adjust the electric field distribution on the surface of the metal anode to further induce uniform zinc nucleation.

    Article Title: Efficient Methanol Oxidation Kinetics Enabled by an Ordered Heterocatalyst with Dual Electric Fields.
    Article Snippet: Induced by a sharp-tip-enhanced electric field, periodical nanoassemblies can regulate the reactant flux on the electrode surface, efficiently optimizing the mass transfer kinetics in electrocatalysis.. However, when the nanoscale building blocks in homoassemblies are arranged densely, it results in the overlap and reduction of the local electric field.. Herein, we present a comprehensive kinetic heteromodel that simultaneously couples the sharp-tip-enhanced electric field and charge transfer electric field between different building blocks with any arrangement densities.

    Article Title: 3D Simulation-Based Comparison of Bulk Acoustic Wave FBAR and SMR Technology
    Article Snippet: Solidly Mounted Resonators (SMRs) and Film Bulk Acoustic Resonators (FBARs) are essential components in RF and microwave applications, each having distinct features that are well-suited to various circumstances.. SMRs have a piezoelectric layer sandwiched between two electrodes above a substrate, which ensures a strong construction.. In contrast, FBARs use thin piezoelectric sheets on a substrate, resulting in a far thinner design.

    Article Title: Electrode structural effects on the mechanism of high-voltage pulse rock breaking
    Article Snippet: In the oil drilling process, drilling costs account for more than 50% of total E&P costs.. High-voltage electric pulse rock breaking is an economical and effective rock-breaking method that has received widespread attention.. At present, there is not much research on the influence of the shape of the electrode tip on high-voltage pulse rock breaking.

    Article Title: Numerical simulation of stability of diffusion depth of deterrents into cylindrical nitrocellulose composite under different conditions.
    Article Snippet: Several works have been done on diffusion phenomena with COMSOL Multi-physics software, but so far, simulation of deterrents diffusion into nitrocellulose propellant has not been done with it.

    Article Title: ACTIVE COOLING HEAT TRANSFER COEFFICIENT ENHANCEMENTS IN POROUS COMPACT HEAT EXCHANGER
    Article Snippet: Due to the poor thermal properties of the air and the resistance of the boundary layer, enhancing the heat transfer coefficient HTC is a challenging problem.. In this study, the hydro-thermal characteristics of V-shape copper porous media attached to a vertical heat source were studied by using the active cooling forced convection technique.. The performance of hydraulic is expressed by pressure drop through the porous insert material while the thermal performance is expressed by the overall HTC and Nusselt number.

    Article Title: Open-atmosphere spinning of carbon nanotube fibers sans hydrogen flow by floating catalyst chemical vapor deposition: an insight into the mechanism
    Article Snippet: CFD analysis was performed using COMSOL Multi-Physics software.



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    Image Search Results


    Lateral heat transfer configuration for printed thin-film thermoelectric generators (TEGs).

    Journal: Sensors (Basel, Switzerland)

    Article Title: Printing and Folding: A Solution for High-Throughput Processing of Organic Thin-Film Thermoelectric Devices

    doi: 10.3390/s18040989

    Figure Lengend Snippet: Lateral heat transfer configuration for printed thin-film thermoelectric generators (TEGs).

    Article Snippet: The multi-physics simulation in this work is carried out through the thermoelectric section of the COMSOL software package, version 5.3 (supported by COMSOL A/S, Lyngby, Denmark).

    Techniques: