Skill-Details

web3d-integration-patterns

Relevant only for specialized 3D web experiences.

ÜbereinstimmungMöglichGeprüft für webdesign
Quellefreshtechbro/claudedesignskillsExterne Quelle
Gemeldete Installationen1,910Nur Popularitätssignal

Vor Nutzung prüfen

Die automatische Prüfung bewertet Relevanz, nicht Sicherheit oder Empfehlung. Lies vor der Nutzung die Quellanweisungen.

Gespeicherte Quellvorschau

SKILL.md

Dieser Auszug wurde bei der Prüfung gespeichert. Die externe Quelle enthält die vollständige und aktuelle Version.

---
name: web3d-integration-patterns
description: Meta-skill for combining Three.js, GSAP ScrollTrigger, React Three Fiber, Motion, and React Spring for complex 3D web experiences. Use when building applications that integrate multiple 3D and animation libraries, requiring architecture patterns, state management, and performance optimization across the stack. Triggers on tasks involving library integration, multi-library architectures, scroll-driven 3D experiences, physics-based 3D animations, or complex interactive 3D applications.
---

# Web 3D Integration Patterns

## Overview

This meta-skill provides architectural patterns, best practices, and integration strategies for combining multiple 3D and animation libraries in web applications. It synthesizes knowledge from the threejs-webgl, gsap-scrolltrigger, react-three-fiber, motion-framer, and react-spring-physics skills into cohesive patterns for building complex, performant 3D web experiences.

**When to use this skill:**
- Building complex 3D applications that combine multiple libraries
- Creating scroll-driven 3D experiences with animation orchestration
- Implementing physics-based interactions with 3D scenes
- Managing state across 3D rendering and UI animations
- Optimizing performance in multi-library architectures
- Designing reusable component architectures for 3D applications
- Migrating between or combining animation approaches

**Core Integration Combinations:**
1. **Three.js + GSAP** - Scroll-driven 3D animations, timeline orchestration
2. **React Three Fiber + Motion** - State-based 3D with declarative animations
3. **React Three Fiber + GSAP** - Complex 3D sequences in React
4. **React Three Fiber + React Spring** - Physics-based 3D interactions
5. **Three.js + GSAP + React** - Hybrid imperative/declarative 3D

## Architecture Patterns

### Pattern 1: Layered Separation (Three.js + GSAP + React UI)

**Use case:** 3D scene with overlaid UI, scroll-driven animations

**Architecture:**
```
├── 3D Layer (Three.js)
│   ├── Scene management
│   ├── Camera controls
│   └── Render loop
├── Animation Layer (GSAP)
│   ├── ScrollTrigger for 3D properties
│   ├── Timelines for sequences
│   └── UI transitions
└── UI Layer (React + Motion)
    ├── HTML overlays
    ├── State management
    └── User interactions
```

**Implementation:**

```javascript
// App.jsx - React root
import { useEffect, useRef } from 'react'
import { initThreeScene } from './three/scene'
import { initScrollAnimations } from './animations/scroll'
import { motion } from 'framer-motion'

function App() {
  const canvasRef = useRef()
  const sceneRef = useRef()

  useEffect(() => {
    // Initialize Three.js scene
    sceneRef.current = initThreeScene(canvasRef.current)

    // Initialize GSAP ScrollTrigger animations
    initScrollAnimations(sceneRef.current)

    // Cleanup
    return () => {
      sceneRef.current.dispose()
    }
  }, [])

  return (
    <div className="app">
      <canvas ref={canvasRef} />

      <motion.div
        className="overlay"
        initial={{ opacity: 0 }}
        animate={{ opacity: 1 }}
      >
        <section className="hero">
          <h1>3D Experience</h1>
        </section>
        <section className="content">
          {/* Scrollable content */}
        </section>
      </motion.div>
    </div>
  )
}
```

```javascript
// three/scene.js - Three.js setup
import * as THREE from 'three'
import { OrbitControls } from 'three/addons/controls/OrbitControls.js'

export function initThreeScene(canvas) {
  const scene = new THREE.Scene()
  const camera = new THREE.PerspectiveCamera(75, window.innerWidth / window.innerHeight, 0.1, 1000)
  const renderer = new THREE.WebGLRenderer({ canvas, antialias: true, alpha: true })

  renderer.setSize(window.innerWidth, window.innerHeight)
  renderer.setPixelRatio(Math.min(window.devicePixelRatio, 2))

  const controls = new OrbitControls(camera, canvas)
  controls.enableDamping = true

  // Setup scene objects
  const geometry = ne
Vollständige Quelle auf GitHub lesen (öffnet externe Seite)
Kontext

Verwandte Arbeit