核聚变托卡马克模拟器 FUSION CIRCUS beta

1作者: nlysses6 天前
Fusion Circus 测试版 链接:https://fusion-circus-ultimate.vercel.app/ 测试阶段!(需要反馈!) Fusion Circus 是一款核聚变托卡马克模拟器,我用它来学习等离子体物理。它最初是一个电子游戏。故事是这样的: 小时候,我被洛克人的超级爆破枪迷住了——一种产生纯能量的武器。莱特博士的所有工作都围绕着能量的产生。机器人由无限的清洁能源驱动。一个电力不再是问题的未来。小时候,我以为这只是科幻小说。后来我长大了,发现了人工智能和神经网络。机器可以学习、适应和优化的想法。但能量产生的部分在哪里呢?这激发了我的兴趣。能量产生 + 智能系统?如果这并非幻想呢?如果有人真的在建造莱特博士的梦想呢?是的,他们是真的,法国的 ITER,英国的 JET,韩国的 KSTAR。全球有数十个设施正在追逐核聚变。与为太阳提供能量相同的能量。1.5 亿度。比恒星还热的等离子体。被磁场约束。这是真的。就在现在。我必须理解它。我的背景是工业设备。我曾是一名重型机械现场服务技术员。我了解机器。我了解系统。我知道保持复杂设备运行需要什么。但等离子体物理学?那是一个新的领域。所以我为自己构建了一个虚拟的游乐场来学习。那个游乐场变成了 Fusion Circus。一个真实的模拟(测试版),我可以在其中测试实际的物理学——Bosch-Hale 聚变反应性、IPB98 约束标度、在毫秒内崩溃等离子体的不稳定性。我想感受聚变操作员的感受。然后我意识到我建造了什么。我学得越多,就越了解阻碍聚变的瓶颈。劳森判据。维持等离子体保持足够热和密度的临界状态,以便聚变产生净能量增益,同时保持设备/机器的完整性。这需要很多。这就是挑战。这就是每个人都在努力的。所以我继续前进——最近,自从继续上大学并上了一些数学课以来,一切都变得更加深入。我开始将材料不仅仅看作是物理物质,而是定义其属性的方程束。施加强热?只需插入正确的热应力、导电率变化或相变的公式,行为就会从数学中产生。这种观点将模拟器从学习工具转变为更直观、更强大的东西。 Fusion Circus 现在让我们亲身体验劳森困境: * 将等离子体加热到 1 亿度以上 * 努力维持约束,防止能量逸出 * 平衡加热功率与辐射损失 * 在不稳定因素崩溃一切之前对其进行管理 * 跨越 L-H 转变进入高约束模式 * 在 ELM 摧毁你的偏滤器之前抑制它们 * 保持在格林沃尔德密度极限以下 * 保持贝塔值低于特罗扬极限或触发中断 * 保护组件免受热通量和中子损伤 * 塑造电流分布以稳定撕裂模 这是聚变操作员每天所做的事情。 物理学已通过真实实验验证: * JET DTE1 → Q ≈ 0.67(与已发布数据匹配) * ITER 基线 → Q ≈ 8-12(与设计目标匹配) * 51 点径向等离子体分布 * 双流体输运(离子 ≠ 电子) * KSTAR 风格的 AI 中断预测 Fusion Circus 现已进入公开测试版。28 个物理模块。16 个真实托卡马克。人工智能指导。从首次等离子体到燃烧等离子体的教程。所有都在您的浏览器中。试试吧:https://fusion-circus-ultimate.vercel.app/ \#核聚变 \#等离子体物理学 \#洛克人 \#莱特博士 \#清洁能源 \#ITER \#聚变能 \#独立游戏 \#科学教育 \#公开构建
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Fusion Circus beta<p>Link: https:&#x2F;&#x2F;fusion-circus-ultimate.vercel.app&#x2F;<p>BETA PHASE!(NEED FEEDBACK!)<p>Fusion Circus is a nuclear fusion tokamak simulator I built to teach myself plasma physics. It started with a video game. Here’s the story Growing up, I was fascinated with Megaman and his Mega Buster — a weapon that creates pure energy. All of Dr. Light’s work revolved around energy creation. Robots powered by limitless clean energy. A future where power wasn’t a problem. As a kid, I thought it was just sci-fi. Then I got older and discovered AI and neural networks. The idea that machines could learn, adapt, optimize. But where’s the energy creation part? That sparked something. Energy creation + intelligent systems? What if that wasn’t fantasy? What if someone was actually building Dr. Light’s dream? Yupp they’re real ITER in France. JET in the UK. KSTAR in South Korea. Dozens of facilities worldwide are chasing nuclear fusion. The same energy that powers the sun. 150 million degrees. Plasma hotter than stars. Contained by magnetic fields. This is real. Right now. I had to understand it. My background is industrial equipment. I worked as a heavy machinery field service technician. I know machines. I know systems. I know what it takes to keep complex equipment running. But plasma physics? That was a new domain. So I built myself a virtual playground to learn. That playground became Fusion Circus. A real simulation(beta) where I could test actual physics — Bosch-Hale fusion reactivity, IPB98 confinement scaling, instabilities that crash plasmas in milliseconds. I wanted to feel what fusion operators feel. And then I realized what I’d built. The more I learned, the more I understood the bottlenecks holding fusion back. The Lawson criterion. Maintaining that critical state where plasma stays hot and dense long enough for fusion to generate Net Energy gain while maintaining device&#x2F;machine integrity.. It’s a lot. That’s THE challenge. That’s what everyone’s fighting. So I kept going — and recently, since continuing college and taking some math classes, everything clicked even deeper. I started to see materials not just as physical stuff, but as bundles of equations defining their properties. Applying intense heat? Just plug in the right formula for thermal stress, conductivity shifts, or phase changes, and the behavior emerges from the math. That perspective turned the simulator from a learning tool into something even more intuitive and powerful. Fusion Circus now lets us experience the Lawson struggle firsthand: Heat plasma to 100+ million degrees Fight to maintain confinement as energy escapes Balance heating power against radiation losses Manage instabilities before they crash everything Cross the L-H transition into high confinement mode Suppress ELMs before they destroy your divertor Stay below Greenwald density limit Keep beta under Troyon limit or trigger disruption Protect components from heat flux and neutron damage Shape current profiles to stabilize tearing modes This is what fusion operators do daily. The physics is validated against real experiments: JET DTE1 → Q ≈ 0.67 (matches published data) ITER baseline → Q ≈ 8-12 (matches design target) 51-point radial plasma profiles Two-fluid transport (ions ≠ electrons) KSTAR-style AI disruption prediction Fusion Circus is now in public beta. 28 physics modules. 16 real tokamaks. AI coaching. Tutorials from first plasma to burning plasma. All in your browser. Try it: https:&#x2F;&#x2F;fusion-circus-ultimate.vercel.app&#x2F; #NuclearFusion #PlasmaPhysics #Megaman #DrLight #CleanEnergy #ITER #FusionEnergy #IndieGame #ScienceEducation #BuildInPublic