PROMPT RECORD图像记录
创建一张汽车工程信息图,分析超级跑车与一级方程式(F1)的流体动力学和空气动力学演变历程。视觉风格:光泽碳纤维纹理、计算流体动力学(CFD)热力图、烟雾风洞流动可视化、金属漆面反射以及风洞遥测...
中文说明
创建一张汽车工程信息图,分析超级跑车与一级方程式(F1)的流体动力学和空气动力学演变历程。视觉风格:光泽碳纤维纹理、计算流体动力学(CFD)热力图、烟雾风洞流动可视化、金属漆面反射以及风洞遥测数据。分析组件:添加遥测面板,主题为"为何通过底部文丘里地面效应产生的下压力能比顶部翼产生更好的升阻比?文丘里通道中的伯努利原理分析。"绘制F1赛车底部与扩散器上方的压力分布图。加入技术注解:"2022年F1规则变更:如何通过管理'脏空气'与外洗效应改变尾流湍流",并附涡流生成示意图。创建补充分析:散点图对比不同速度下轮胎的机械抓地力与空气动力学抓地力。加入物理极限分析:"海豚跳与气动弹性效应:当下压力过大导致底盘变形、压缩到触底时,气动密封被破坏。"渲染"主动空气动力学与可变形态车身"的发光风洞烟雾投影曲线。汽车设计工作...
原始 Prompt
Create an automotive engineering infographic analyzing the fluid dynamics and aerodynamic evolution of hypercars and Formula 1. Visual style: glossy carbon fiber textures, Computational Fluid Dynamics (CFD) heat maps, smoke-tunnel flow visualizations, metallic paint reflections, and wind-tunnel telemetry data. ANALYTICAL COMPONENT: Add telemetry panels examining "Why does generating downforce via underfloor ground-effects yield a better Lift-to-Drag ratio than top-mounted wings? Analyzing Bernoulli’s principle in venturi tunnels." Draw pressure distribution maps over an F1 car's floor and diffuser. Include tech callouts: "2022 F1 Regulation changes: How managing 'dirty air' and outwash changed wake turbulence" with vortex generation sketches. Create supplementary analysis: scatter plots comparing mechanical grip (tires) vs. aerodynamic grip at varying speeds. Add physical limits: "Porpoising and aero-elasticity: when the chassis flexes and breaks the aerodynamic seal." Render projection curves for "Active aerodynamics and morphing bodywork" in glowing wind-tunnel smoke trails. Automotive design studio, Unreal Engine 5, photorealistic.