fluid-structure interaction (fsi) interface (COMSOL Inc)
90
Structured Review
COMSOL Inc
fluid-structure interaction (fsi) interface
Fluid Structure Interaction (Fsi) Interface, 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/fsi+interface/fluid+structure+interaction++fsi++module/pm32174554-75-0-5
Average 90 stars, based on 1 article reviews
Fluid Structure Interaction (Fsi) Interface, 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/fsi+interface/fluid+structure+interaction++fsi++module/pm32174554-75-0-5
Average 90 stars, based on 1 article reviews
fluid-structure interaction (fsi) interface - by Bioz Stars,
2026-09
90/100 stars
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Software:Article Title: A Highly Sensitive Deep-Sea Hydrodynamic Pressure Sensor Inspired by Fish Lateral Line Article Snippet: To gain more insight into the piezopotential distribution on the interdigital electrodes, FEM simulations were conducted using the coupled Article Title: A Rolling-Bead Triboelectric Nanogenerator for Harvesting Omnidirectional Wind-Induced Energy toward Shelter Forests Monitoring. Article Snippet: Shelter forests (or shelter-belts), while crucial for climate regulation, lack monitoring systems, e.g., Internet of Things (IoT) devices, but their abundant wind energy can potentially power these devices using the trees as mounting points.. To harness wind energy, an omnidirectional fluid-induced vibration triboelectric nanogenerator (OFIV-TENG) has been developed.. The device is installed on shelter forest trees to harvest wind energy from all directions, employing a fluid-induced vibration (FIV) mechanism (fluid-responding structure) that can capture and use wind energy, ranging from low wind speeds (vortex vibration) to high wind speeds (galloping). Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability Article Snippet: As shown in Figure 2 a , without considering the influence of the whisker shape, the fluid‐structure coupling simulation of the whisker sensor was carried out in Article Title: Dynamics of nanoparticles in a 3D breathing lung-on-a-chip. Article Snippet: A time-dependent 3D finite element model is crafted using the “Fluid–Structure Interaction” and “Particle Tracing for Fluid Flow” interfaces in Article Title: Novel miniature valve-based piezoelectric liquid pump Article Snippet: Article Title: Lateral filter array microfluidic device Article Snippet: Hydrodynamic force analysis for captured cells by the filters were simulated using a Article Title: Analysis of Robot–Environment Interaction Modes in Anguilliform Locomotion of a New Soft Eel Robot Article Snippet: The system was modeled employing the Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability. Article Snippet: As shown in Figure 2a, without considering the influence of the whisker shape, the fluid-structure coupling simulation of the whisker sensor was carried out in Modification:Article Title: A Highly Sensitive Deep-Sea Hydrodynamic Pressure Sensor Inspired by Fish Lateral Line Article Snippet: To gain more insight into the piezopotential distribution on the interdigital electrodes, FEM simulations were conducted using the coupled Article Title: A Rolling-Bead Triboelectric Nanogenerator for Harvesting Omnidirectional Wind-Induced Energy toward Shelter Forests Monitoring. Article Snippet: Shelter forests (or shelter-belts), while crucial for climate regulation, lack monitoring systems, e.g., Internet of Things (IoT) devices, but their abundant wind energy can potentially power these devices using the trees as mounting points.. To harness wind energy, an omnidirectional fluid-induced vibration triboelectric nanogenerator (OFIV-TENG) has been developed.. The device is installed on shelter forest trees to harvest wind energy from all directions, employing a fluid-induced vibration (FIV) mechanism (fluid-responding structure) that can capture and use wind energy, ranging from low wind speeds (vortex vibration) to high wind speeds (galloping). Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability Article Snippet: As shown in Figure 2 a , without considering the influence of the whisker shape, the fluid‐structure coupling simulation of the whisker sensor was carried out in Article Title: Dynamics of nanoparticles in a 3D breathing lung-on-a-chip. Article Snippet: A time-dependent 3D finite element model is crafted using the “Fluid–Structure Interaction” and “Particle Tracing for Fluid Flow” interfaces in Article Title: Novel miniature valve-based piezoelectric liquid pump Article Snippet: Article Title: Lateral filter array microfluidic device Article Snippet: Hydrodynamic force analysis for captured cells by the filters were simulated using a Article Title: Analysis of Robot–Environment Interaction Modes in Anguilliform Locomotion of a New Soft Eel Robot Article Snippet: The system was modeled employing the Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability. Article Snippet: As shown in Figure 2a, without considering the influence of the whisker shape, the fluid-structure coupling simulation of the whisker sensor was carried out in Membrane:Article Title: A Highly Sensitive Deep-Sea Hydrodynamic Pressure Sensor Inspired by Fish Lateral Line Article Snippet: To gain more insight into the piezopotential distribution on the interdigital electrodes, FEM simulations were conducted using the coupled Article Title: A Rolling-Bead Triboelectric Nanogenerator for Harvesting Omnidirectional Wind-Induced Energy toward Shelter Forests Monitoring. Article Snippet: Shelter forests (or shelter-belts), while crucial for climate regulation, lack monitoring systems, e.g., Internet of Things (IoT) devices, but their abundant wind energy can potentially power these devices using the trees as mounting points.. To harness wind energy, an omnidirectional fluid-induced vibration triboelectric nanogenerator (OFIV-TENG) has been developed.. The device is installed on shelter forest trees to harvest wind energy from all directions, employing a fluid-induced vibration (FIV) mechanism (fluid-responding structure) that can capture and use wind energy, ranging from low wind speeds (vortex vibration) to high wind speeds (galloping). Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability Article Snippet: As shown in Figure 2 a , without considering the influence of the whisker shape, the fluid‐structure coupling simulation of the whisker sensor was carried out in Article Title: Dynamics of nanoparticles in a 3D breathing lung-on-a-chip. Article Snippet: A time-dependent 3D finite element model is crafted using the “Fluid–Structure Interaction” and “Particle Tracing for Fluid Flow” interfaces in Article Title: Novel miniature valve-based piezoelectric liquid pump Article Snippet: Article Title: Lateral filter array microfluidic device Article Snippet: Hydrodynamic force analysis for captured cells by the filters were simulated using a Article Title: Analysis of Robot–Environment Interaction Modes in Anguilliform Locomotion of a New Soft Eel Robot Article Snippet: The system was modeled employing the Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability. Article Snippet: As shown in Figure 2a, without considering the influence of the whisker shape, the fluid-structure coupling simulation of the whisker sensor was carried out in Plasmid Preparation:Article Title: A Highly Sensitive Deep-Sea Hydrodynamic Pressure Sensor Inspired by Fish Lateral Line Article Snippet: To gain more insight into the piezopotential distribution on the interdigital electrodes, FEM simulations were conducted using the coupled Article Title: A Rolling-Bead Triboelectric Nanogenerator for Harvesting Omnidirectional Wind-Induced Energy toward Shelter Forests Monitoring. Article Snippet: Shelter forests (or shelter-belts), while crucial for climate regulation, lack monitoring systems, e.g., Internet of Things (IoT) devices, but their abundant wind energy can potentially power these devices using the trees as mounting points.. To harness wind energy, an omnidirectional fluid-induced vibration triboelectric nanogenerator (OFIV-TENG) has been developed.. The device is installed on shelter forest trees to harvest wind energy from all directions, employing a fluid-induced vibration (FIV) mechanism (fluid-responding structure) that can capture and use wind energy, ranging from low wind speeds (vortex vibration) to high wind speeds (galloping). Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability Article Snippet: As shown in Figure 2 a , without considering the influence of the whisker shape, the fluid‐structure coupling simulation of the whisker sensor was carried out in Article Title: Dynamics of nanoparticles in a 3D breathing lung-on-a-chip. Article Snippet: A time-dependent 3D finite element model is crafted using the “Fluid–Structure Interaction” and “Particle Tracing for Fluid Flow” interfaces in Article Title: Novel miniature valve-based piezoelectric liquid pump Article Snippet: Article Title: Lateral filter array microfluidic device Article Snippet: Hydrodynamic force analysis for captured cells by the filters were simulated using a Article Title: Analysis of Robot–Environment Interaction Modes in Anguilliform Locomotion of a New Soft Eel Robot Article Snippet: The system was modeled employing the Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability. Article Snippet: As shown in Figure 2a, without considering the influence of the whisker shape, the fluid-structure coupling simulation of the whisker sensor was carried out in Viscosity:Article Title: A Highly Sensitive Deep-Sea Hydrodynamic Pressure Sensor Inspired by Fish Lateral Line Article Snippet: To gain more insight into the piezopotential distribution on the interdigital electrodes, FEM simulations were conducted using the coupled Article Title: A Rolling-Bead Triboelectric Nanogenerator for Harvesting Omnidirectional Wind-Induced Energy toward Shelter Forests Monitoring. Article Snippet: Shelter forests (or shelter-belts), while crucial for climate regulation, lack monitoring systems, e.g., Internet of Things (IoT) devices, but their abundant wind energy can potentially power these devices using the trees as mounting points.. To harness wind energy, an omnidirectional fluid-induced vibration triboelectric nanogenerator (OFIV-TENG) has been developed.. The device is installed on shelter forest trees to harvest wind energy from all directions, employing a fluid-induced vibration (FIV) mechanism (fluid-responding structure) that can capture and use wind energy, ranging from low wind speeds (vortex vibration) to high wind speeds (galloping). Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability Article Snippet: As shown in Figure 2 a , without considering the influence of the whisker shape, the fluid‐structure coupling simulation of the whisker sensor was carried out in Article Title: Dynamics of nanoparticles in a 3D breathing lung-on-a-chip. Article Snippet: A time-dependent 3D finite element model is crafted using the “Fluid–Structure Interaction” and “Particle Tracing for Fluid Flow” interfaces in Article Title: Novel miniature valve-based piezoelectric liquid pump Article Snippet: Article Title: Lateral filter array microfluidic device Article Snippet: Hydrodynamic force analysis for captured cells by the filters were simulated using a Article Title: Analysis of Robot–Environment Interaction Modes in Anguilliform Locomotion of a New Soft Eel Robot Article Snippet: The system was modeled employing the Article Title: Biomimetic Hydrodynamic Sensor with Whisker Array Architecture and Multidirectional Perception Ability. Article Snippet: As shown in Figure 2a, without considering the influence of the whisker shape, the fluid-structure coupling simulation of the whisker sensor was carried out in |