software comsol multiphysics (COMSOL Inc)
90
Structured Review
COMSOL Inc
software comsol multiphysics
Software Comsol Multiphysics, 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%C2%AE+multiphysics+software/comsol+multiphysics/pm40490343-184-7-10
Average 90 stars, based on 1 article reviews
Software Comsol Multiphysics, 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%C2%AE+multiphysics+software/comsol+multiphysics/pm40490343-184-7-10
Average 90 stars, based on 1 article reviews
software comsol multiphysics - by Bioz Stars,
2026-09
90/100 stars
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Generated:Article Title: Systems and methods for ultrasound induced thrombolysis with magnetic microbubbles, optional nanodroplets, and a rotational magnetic field Article Snippet: The Simulation of the Rotational Magnetic Field To better understand the physics of the rotational magnetic field, the magnetic field generated by the Helmholtz coil was simulated in the Article Title: Monitoring internal heat fluxes on Pulsating Heat Pipes using Kalman filter – Numerical and experimental results Article Snippet: The estimation procedure begins with the KF technique by considering synthetic data generated by a model built under the Article Title: Topology optimization of stationary fluid–structure interaction problems considering a natural frequency constraint for vortex-induced vibrations attenuation Article Snippet: Topology optimization applied to fluid–structure interaction problems is challenging because the physical phenomenon in real engineering applications is usually transient and strongly coupled.. This leads to costly solutions for the forward and adjoint problems, the computational bottleneck of the topology optimization method.. Thus, this paper proposes a topology optimization problem formulated in the steady state with post-processing and verification in the transient state. Article Title: Enhanced piezoresponse and surface electric potential of hybrid biodegradable polyhydroxybutyrate scaffolds functionalized with reduced graphene oxide for tissue engineering Article Snippet: Piezoelectricity is considered to be one of the key functionalities in biomaterials to boost bone tissue regeneration, however, integrating biocompatibility, biodegradability and 3D structure with pronounced piezoresponse remains a material challenge.. Herein, novel hybrid biocompatible 3D scaffolds based on biodegradable poly(3hydroxybutyrate) (PHB) and reduced graphene oxide (rGO) flakes have been developed.. Nanoscale insights revealed a more homogenous distribution and superior surface potential values of PHB fibers (33 ± 29 mV) with increasing rGO content up to 1.0 wt% (314 ± 31 mV). Article Title: Evaluating the thermal performance of a balloon-based renal sympathetic denervation system with array electrodes: a finite element study. Article Snippet: Renal denervation transmits radiofrequency (RF) energy through an electrode to treat resistant hypertension (RH), applying ablation in the renal artery.. Several experimental studies have shown that this treatment has been used effectively to treat RH.. The aim of this paper is to investigate the effect of ablation parameters (i.e., electrode length, applied voltage, ablation time, and blood flow) on the temperature distribution using a balloon-based array electrodes system. Article Title: Numerical analysis on the effects of microfluidic-based bioprinting parameters on the microfiber geometrical outcomes Article Snippet: Therefore, based on the following equations the Article Title: Tuning the electro-optical properties of nanowire networks. Article Snippet: Conductive and transparent metallic nanowire networks are regarded as promising alternatives to Indium–Tin–Oxides (ITOs) in emerging flexible next-generation technologies due to their prominent optoelectronic properties and low-cost fabrication.. The performance of such systems closely relies on many geometrical, physical, and intrinsic properties of the nanowire materials as well as the devicelayout.. A comprehensive computational study is essential to model and quantify the device’s optical and electrical responses prior to fabrication. Article Title: Ultrasonic nodal point, a new configuration for ultrasonic moulding technology. Article Snippet: Ultrasonic moulding is a new technology that uses high power ultrasound to melt and mould thermoplastic polymers to produce samples with mini and micro features.. The main feature of this technology is the use of ultrasonic energy as the heating source instead of a conventional injection screw.. Even if ultrasonic moulding overcomes some of the drawbacks of conventional mini and micro-injection moulding, it still presents two main limitations that are hindering its widespread applicability: the lack of stability of the process and the difficulty to obtain samples with good mechanical properties for some materials. Software:Article Title: Systems and methods for ultrasound induced thrombolysis with magnetic microbubbles, optional nanodroplets, and a rotational magnetic field Article Snippet: The Simulation of the Rotational Magnetic Field To better understand the physics of the rotational magnetic field, the magnetic field generated by the Helmholtz coil was simulated in the Article Title: Monitoring internal heat fluxes on Pulsating Heat Pipes using Kalman filter – Numerical and experimental results Article Snippet: The estimation procedure begins with the KF technique by considering synthetic data generated by a model built under the Article Title: Topology optimization of stationary fluid–structure interaction problems considering a natural frequency constraint for vortex-induced vibrations attenuation Article Snippet: Topology optimization applied to fluid–structure interaction problems is challenging because the physical phenomenon in real engineering applications is usually transient and strongly coupled.. This leads to costly solutions for the forward and adjoint problems, the computational bottleneck of the topology optimization method.. Thus, this paper proposes a topology optimization problem formulated in the steady state with post-processing and verification in the transient state. Article Title: Enhanced piezoresponse and surface electric potential of hybrid biodegradable polyhydroxybutyrate scaffolds functionalized with reduced graphene oxide for tissue engineering Article Snippet: Piezoelectricity is considered to be one of the key functionalities in biomaterials to boost bone tissue regeneration, however, integrating biocompatibility, biodegradability and 3D structure with pronounced piezoresponse remains a material challenge.. Herein, novel hybrid biocompatible 3D scaffolds based on biodegradable poly(3hydroxybutyrate) (PHB) and reduced graphene oxide (rGO) flakes have been developed.. Nanoscale insights revealed a more homogenous distribution and superior surface potential values of PHB fibers (33 ± 29 mV) with increasing rGO content up to 1.0 wt% (314 ± 31 mV). Article Title: Evaluating the thermal performance of a balloon-based renal sympathetic denervation system with array electrodes: a finite element study. Article Snippet: Renal denervation transmits radiofrequency (RF) energy through an electrode to treat resistant hypertension (RH), applying ablation in the renal artery.. Several experimental studies have shown that this treatment has been used effectively to treat RH.. The aim of this paper is to investigate the effect of ablation parameters (i.e., electrode length, applied voltage, ablation time, and blood flow) on the temperature distribution using a balloon-based array electrodes system. Article Title: Numerical analysis on the effects of microfluidic-based bioprinting parameters on the microfiber geometrical outcomes Article Snippet: Therefore, based on the following equations the Article Title: Tuning the electro-optical properties of nanowire networks. Article Snippet: Conductive and transparent metallic nanowire networks are regarded as promising alternatives to Indium–Tin–Oxides (ITOs) in emerging flexible next-generation technologies due to their prominent optoelectronic properties and low-cost fabrication.. The performance of such systems closely relies on many geometrical, physical, and intrinsic properties of the nanowire materials as well as the devicelayout.. A comprehensive computational study is essential to model and quantify the device’s optical and electrical responses prior to fabrication. Article Title: Ultrasonic nodal point, a new configuration for ultrasonic moulding technology. Article Snippet: Ultrasonic moulding is a new technology that uses high power ultrasound to melt and mould thermoplastic polymers to produce samples with mini and micro features.. The main feature of this technology is the use of ultrasonic energy as the heating source instead of a conventional injection screw.. Even if ultrasonic moulding overcomes some of the drawbacks of conventional mini and micro-injection moulding, it still presents two main limitations that are hindering its widespread applicability: the lack of stability of the process and the difficulty to obtain samples with good mechanical properties for some materials. |