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multiphysics-based numerical simulation model  (COMSOL Inc)

 
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    Structured Review

    COMSOL Inc multiphysics-based numerical simulation model
    Multiphysics Based Numerical Simulation Model, 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/numerical+simulation+model/multiphysics+software/pm40257813-49-8-5
    Average 90 stars, based on 1 article reviews
    multiphysics-based numerical simulation model - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Software:

    Article Title: Rapid Motion of Janus Mg-based Micromotors in Urine Environment by Ultrasonic Actuation
    Article Snippet: • A rapid Mg-based micromotor was developed in artificial urine using

    Article Title: Comprehensive analysis of current leakage at individual screw and mixed threading dislocations in freestanding GaN substrates
    Article Snippet: .. The COMSOL Multiphysics software package was used to calculate the electric field distributions. ..

    Article Title: Study on the gas outflow pattern and outflow prediction model of the return mining face under complex geological conditions.
    Article Snippet: .. In view of the aforementioned research, the main tool used in this study to create a two-dimensional geological model of the Longfeng coal mine is COMSOL Multiphysics numerical simulation software. ..

    Northern Blot:

    Article Title: A shallow mantle source for the Chang’e 5 lavas reveals how top-down heating prolonged lunar magmatism
    Article Snippet: .. A series of two-dimensional thermal evolution models for a simplified east-west cross section of the local region of the Moon in northern Oceanus Procellarum where the CE5 basalts were collected were constructed using the COMSOL Multiphysics finite element physical modeling program. ..

    Construct:

    Article Title: A shallow mantle source for the Chang’e 5 lavas reveals how top-down heating prolonged lunar magmatism
    Article Snippet: .. A series of two-dimensional thermal evolution models for a simplified east-west cross section of the local region of the Moon in northern Oceanus Procellarum where the CE5 basalts were collected were constructed using the COMSOL Multiphysics finite element physical modeling program. ..

    other:

    Article Title: Understanding and designing photothermal responses in complex layered systems
    Article Snippet: These figures were created using COMSOL Multiphysics version 6.0 (https://www.comsol.com/release/6.0) and Origin 2018 (https://www.originlab.com/2018).

    Article Title: Substrate engineering-enhanced low-temperature NO x and CO removal by Co 1 Mn 2 O x @CuO/copper mesh monolithic catalyst.
    Article Snippet: • A highly efficient Co1Mn2Ox@CuO/CM monolithic catalyst with higher oxygen vacancies was developed.. • The catalyst showed excellent lowtemperature NOx (>98.0%) and CO (>96.6%) removal, along with strong resistance to H2O/SO2.. • The enhanced water resistance and the mechanisms of NH3-SCR and CO oxidation reactions were investigated using

    Article Title: Bionic Sensors for Biometric Acquisition and Monitoring: Challenges and Opportunities.
    Article Snippet: The bionic channel, through the optimization of capillary force (F) and hydrodynamics expressed as F = γcosθP/A, was verified for its transmission efficiency advantage in COMSOL Multiphysics (Version 6.0) simulations, with the liquid passing time reduced by 40%.

    Article Title: Magnetic field-regulated glow discharge sputtering for enhanced depth-profiling and antibacterial analysis of Ag-doped TiN coating
    Article Snippet: Finite element calculations using COMSOL Multiphysics Software 5.4.0 were conducted to investigate the magnetic field distribution generated by the designed magnetic field-regulated configurations.



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    Image Search Results


    Schematic diagram of the ultrasound modulated electroencephalography (USMEEG) principle. EEG, electroencephalography; tFUS, transcranial focused ultrasound; Chan., channel.

    Journal: Cyborg and Bionic Systems

    Article Title: Noninvasive Intracranial Source Signal Localization and Decoding with High Spatiotemporal Resolution

    doi: 10.34133/cbsystems.0206

    Figure Lengend Snippet: Schematic diagram of the ultrasound modulated electroencephalography (USMEEG) principle. EEG, electroencephalography; tFUS, transcranial focused ultrasound; Chan., channel.

    Article Snippet: The 3D transcranial single-source dipole numerical simulation model was constructed based on the above skull model and COMSOL 6.0 as shown in Fig. B1, and the ultrasound raster scanning area is shown in Fig. B2, with the yellow star shape as the neuron setting position and the red dots as the ultrasound irradiation point positions.

    Techniques:

    Schematic of the flow of the decoding and localization algorithm for acoustoelectric signals, 3D transcranial single-source dipole localization simulation model, and schematic diagram of the ultrasound irradiation strategy and electrocorticography (ECoG) signal compared to the fitted signal. (A1) Flowchart of the envelope decoding and localization algorithm . (A2) Flowchart of the pulse repetition frequency (PRF) sideband localization algorithm. (B1) Numerical simulation model. (B2) Schematic diagram of the ultrasound irradiation strategy. (C1) S1 analog source signal. (C2) S2 analog source signal. (C3) S3 analog source signal. (C4) S4 analog source signal. AE, acoustoelectric effect.

    Journal: Cyborg and Bionic Systems

    Article Title: Noninvasive Intracranial Source Signal Localization and Decoding with High Spatiotemporal Resolution

    doi: 10.34133/cbsystems.0206

    Figure Lengend Snippet: Schematic of the flow of the decoding and localization algorithm for acoustoelectric signals, 3D transcranial single-source dipole localization simulation model, and schematic diagram of the ultrasound irradiation strategy and electrocorticography (ECoG) signal compared to the fitted signal. (A1) Flowchart of the envelope decoding and localization algorithm . (A2) Flowchart of the pulse repetition frequency (PRF) sideband localization algorithm. (B1) Numerical simulation model. (B2) Schematic diagram of the ultrasound irradiation strategy. (C1) S1 analog source signal. (C2) S2 analog source signal. (C3) S3 analog source signal. (C4) S4 analog source signal. AE, acoustoelectric effect.

    Article Snippet: The 3D transcranial single-source dipole numerical simulation model was constructed based on the above skull model and COMSOL 6.0 as shown in Fig. B1, and the ultrasound raster scanning area is shown in Fig. B2, with the yellow star shape as the neuron setting position and the red dots as the ultrasound irradiation point positions.

    Techniques: Irradiation

    (A) Schematic of the delay distribution of the array elements (the darker the color, the higher the delay). (B) Acoustic pressure field before and after transcranial modulation. (C) Comparison results of the focal acoustic pressure and mechanical index (MI). (D) Distribution of transcranial TR-modulated onset temperature field.

    Journal: Cyborg and Bionic Systems

    Article Title: Noninvasive Intracranial Source Signal Localization and Decoding with High Spatiotemporal Resolution

    doi: 10.34133/cbsystems.0206

    Figure Lengend Snippet: (A) Schematic of the delay distribution of the array elements (the darker the color, the higher the delay). (B) Acoustic pressure field before and after transcranial modulation. (C) Comparison results of the focal acoustic pressure and mechanical index (MI). (D) Distribution of transcranial TR-modulated onset temperature field.

    Article Snippet: The 3D transcranial single-source dipole numerical simulation model was constructed based on the above skull model and COMSOL 6.0 as shown in Fig. B1, and the ultrasound raster scanning area is shown in Fig. B2, with the yellow star shape as the neuron setting position and the red dots as the ultrasound irradiation point positions.

    Techniques: Comparison

    Focal acoustic pressure and MI for each modulation method

    Journal: Cyborg and Bionic Systems

    Article Title: Noninvasive Intracranial Source Signal Localization and Decoding with High Spatiotemporal Resolution

    doi: 10.34133/cbsystems.0206

    Figure Lengend Snippet: Focal acoustic pressure and MI for each modulation method

    Article Snippet: The 3D transcranial single-source dipole numerical simulation model was constructed based on the above skull model and COMSOL 6.0 as shown in Fig. B1, and the ultrasound raster scanning area is shown in Fig. B2, with the yellow star shape as the neuron setting position and the red dots as the ultrasound irradiation point positions.

    Techniques: