Close Menu
    Facebook LinkedIn YouTube WhatsApp X (Twitter) Pinterest
    Trending
    • Lizard bony plates evolved multiple times, study shows
    • Amsterdam’s Klearly raises €12 million to satiate its appetite for building Europe’s best restaurant payments system
    • Dozens of ICE Vehicles in Minnesota Lack ‘Necessary’ Lights and Sirens
    • Kalshi granted temporary restraining order against Tennessee Sports Wagering Council after cease and desist
    • Samsung’s Smart Fridge May Be a Little Too Nosy for My Liking
    • Tech Life – What to expect from tech in 2026
    • Samsung Achieves Another Industry-First Virtualized RAN Milestone, Accelerating AI-Native, 6G-Ready Networks
    • Smart Assistants, Smarter Carts and the Future of Retail
    Facebook LinkedIn WhatsApp
    Times FeaturedTimes Featured
    Tuesday, January 13
    • Home
    • Founders
    • Startups
    • Technology
    • Profiles
    • Entrepreneurs
    • Leaders
    • Students
    • VC Funds
    • More
      • AI
      • Robotics
      • Industries
      • Global
    Times FeaturedTimes Featured
    Home»Tech Analysis»Advancing Magnetized Target Fusion by Solving an Inverse Problem with COMSOL Multiphysics
    Tech Analysis

    Advancing Magnetized Target Fusion by Solving an Inverse Problem with COMSOL Multiphysics

    Editor Times FeaturedBy Editor Times FeaturedOctober 29, 2025No Comments2 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn Tumblr WhatsApp Email
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email WhatsApp Copy Link

    Common Fusion’s Magnetized Goal Fusion method entails compressing a spherical tokamak plasma to realize fusion circumstances. This presentation will element how the COMSOL Multiphysics® software program was used within the LM26 fusion demonstration, which has been in operation since February 2025. Initially, COMSOL® was used to mannequin the magnetomechanical compression of small-scale lithium rings and cylinders. These 2D axisymmetric fashions, which coupled the nonlinear strong mechanics, magnetic area, and warmth switch modules, have been validated in opposition to high-speed imagery and laser diagnostics from these experiments. The validated fashions have been then instrumental in defining the LM26 compressor design and working circumstances.

    A central problem is that plasma equilibrium traits and lithium liner mannequin parameters must be adjusted throughout a compression shot. Whereas some materials testing was performed on lithium samples in stress and compression, the investigated vary was inadequate to cowl all of the experimental circumstances of LM26. To beat this, a Bayesian inference reconstruction course of was used to resolve an inverse downside. This course of started by recreating the lithium liner’s compression sequence utilizing a parametric sweep of COMSOL Multiphysics fashions, which have been constrained by experimental structured mild reconstruction (SLR) and photon doppler velocimetry (PDV) measurements in LM26. This methodology enabled Common Fusion to supply exact magnetic flux boundary circumstances to inside Grad–Shafranov magnetohydrodynamic (MHD) solvers. The MHD solvers, in flip, have been used to reconstruct the plasma equilibrium and decide the plasma density profiles wanted to calculate its temperature. This work is crucial, as Common Fusion goals to have LM26 attain a plasma temperature of 1 keV, with a future objective of 10 keV.

    *Please see www.comsol.com/privacy for COMSOL’s Privateness Coverage. Contact COMSOL at www.comsol.com/contact for extra data.



    Source link

    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
    Editor Times Featured
    • Website

    Related Posts

    Tech Life – What to expect from tech in 2026

    January 13, 2026

    Apple turns to Google to power AI upgrade for Siri

    January 13, 2026

    Wireless Power Beamed From Moving Aircraft

    January 13, 2026

    Is this the year domestic robots come in our homes?

    January 13, 2026

    Why more CEOs are sharing the top job

    January 13, 2026

    UK to bring into force law to tackle Grok AI deepfakes this week

    January 12, 2026

    Comments are closed.

    Editors Picks

    Lizard bony plates evolved multiple times, study shows

    January 13, 2026

    Amsterdam’s Klearly raises €12 million to satiate its appetite for building Europe’s best restaurant payments system

    January 13, 2026

    Dozens of ICE Vehicles in Minnesota Lack ‘Necessary’ Lights and Sirens

    January 13, 2026

    Kalshi granted temporary restraining order against Tennessee Sports Wagering Council after cease and desist

    January 13, 2026
    Categories
    • Founders
    • Startups
    • Technology
    • Profiles
    • Entrepreneurs
    • Leaders
    • Students
    • VC Funds
    About Us
    About Us

    Welcome to Times Featured, an AI-driven entrepreneurship growth engine that is transforming the future of work, bridging the digital divide and encouraging younger community inclusion in the 4th Industrial Revolution, and nurturing new market leaders.

    Empowering the growth of profiles, leaders, entrepreneurs businesses, and startups on international landscape.

    Asia-Middle East-Europe-North America-Australia-Africa

    Facebook LinkedIn WhatsApp
    Featured Picks

    E-moto upstart Bonnell reveals 2 electric dirt bikes with tech on tap

    April 6, 2025

    Lego’s 3,600-Piece Star Trek Enterprise Is the Holiday Gift to Buy This Year

    November 7, 2025

    Gear News of the Week: Matter 1.5 Adds Smart Home Camera Support, and Gemini Comes to Android Auto

    November 22, 2025
    Categories
    • Founders
    • Startups
    • Technology
    • Profiles
    • Entrepreneurs
    • Leaders
    • Students
    • VC Funds
    Copyright © 2024 Timesfeatured.com IP Limited. All Rights.
    • Privacy Policy
    • Disclaimer
    • Terms and Conditions
    • About us
    • Contact us

    Type above and press Enter to search. Press Esc to cancel.