229 lines
11 KiB
Markdown
229 lines
11 KiB
Markdown
# 机理示意图模板
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本文件用于生成「学术机理示意图 / 因果链路 / 转化路径 / 演化机制图」:
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- 论文正文里的机制 / 机理分析图
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- 反应 / 转化 / 退化路径图
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- 因果链路 / 多阶段演化图
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- 答辩 PPT 的机制说明页
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特征:
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- 中心对象 + 多阶段转化路径 + 结果区域
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- 阶段化标注(干燥 → 热解 → 燃烧 → 氧化 → 排放,或类似的因果序列)
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- 白底 + 工程化低饱和配色(深蓝 / 灰蓝 / 黑灰为主,可加 ≤1 种低饱和暖色作为高温/风险强调)
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- 学术克制风格,**绝对不是营销插画或科普海报**
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## 适用范围
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- 燃烧 / 化学反应 / 催化 / 退化 / 老化 / 腐蚀 / 衰减 等机制示意
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- 生物 / 医药 / 药物作用 / 分子互作 等通路图(学术风,非科普插画)
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- 材料相变 / 损伤演化 / 失效路径
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- 因果链分析图 / 演化路径图
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## 何时使用
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- 用户提到「机理 / 机制 / 反应路径 / 转化 / 演化 / 因果 / 通路 / 失效路径」
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- 用户希望视觉「论文里的机制图,不是科普插画也不是营销图」
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- 用户已能给出阶段顺序或转化关系
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不要使用:
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- 用户要的是「方法 pipeline / 系统总览」 → 用 `academic-figures/method-pipeline-overview.md`
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- 用户要的是「实验装置 / 测试系统」 → 用 `academic-figures/scientific-schematic.md`
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- 用户要的是「业务流程 / 决策图」 → 用 `technical-diagrams/flowchart-decision.md`
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- 用户要的是「教学步骤、温暖插画感」 → 用 `infographics/step-by-step-infographic.md`
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## 缺失信息优先提问顺序
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1. 机制 / 现象总名称(写在标题或图注里)
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2. 中心研究对象是什么(颗粒 / 分子 / 器件 / 组织 / 反应体系)
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3. 阶段顺序(建议 3-6 个阶段;超过 6 个考虑分组)
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4. 每个阶段:阶段名 + 主导过程的极简描述(短语化)
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5. 是否有分支 / 平行路径 / 反馈环
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6. 是否需要标注高温区 / 风险区 / 关键反应区等局部强调
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7. 标签语言(中文 / 英文 / 双语;论文图通常英文)
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8. 比例(默认横向 16:9;机制图也常见 4:3)
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## 主模板:中心对象 + 多阶段转化 + 结果区
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📖 描述
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中心是研究对象的简化示意(颗粒 / 分子结构 / 器件 / 反应体系),周围以"阶段化转化路径"展开:从初始态经过若干中间机制阶段到达最终结果区。所有连接以学术克制风格的箭头表达,禁止戏剧化效果(无火焰、无浓烟、无炫光)。
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📝 提示词
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```json
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{
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"type": "学术机理示意图(mechanism / pathway figure)",
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"goal": "生成一张可直接放进工程类或自然科学论文正文的机制示意图,强调因果路径清晰、学术克制、可单色印刷可读",
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"canvas": {
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"aspect_ratio": "{argument name=\"aspect_ratio\" default=\"16:9\"}",
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"background": "pure white #FFFFFF",
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"outer_padding": "60px around the diagram",
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"render_quality": "vector-clean look, anti-aliased edges, sharp text"
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},
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"title_caption": {
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"figure_label": "{argument name=\"figure_label\" default=\"Figure X.\"}",
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"caption": "{argument name=\"caption\" default=\"Schematic of the proposed mechanism.\"}",
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"position": "bottom-center, italic serif or compact sans-serif, smaller font size"
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},
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"central_object": {
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"label": "{argument name=\"object_label\" default=\"Biomass particle\"}",
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"depiction": "{argument name=\"object_depiction\" default=\"a simplified cross-sectional sketch of a porous biomass particle, line-art style, no photo realism\"}",
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"position": "horizontally centered, occupying roughly 25-35% of canvas width",
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"style": "thin line-art / engineering schematic, no 3D, no shading, no hyperreal texture"
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},
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"stages": {
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"count": "{argument name=\"stage_count\" default=\"5\"}",
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"items": [
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{
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"id": "M1",
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"name": "{argument name=\"stage_1_name\" default=\"Drying\"}",
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"summary": "{argument name=\"stage_1_summary\" default=\"moisture evaporation under heating\"}",
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"highlight": "{argument name=\"stage_1_highlight\" default=\"none\"}"
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},
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{
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"id": "M2",
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"name": "{argument name=\"stage_2_name\" default=\"Pyrolysis\"}",
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"summary": "{argument name=\"stage_2_summary\" default=\"thermal decomposition releasing volatiles\"}",
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"highlight": "{argument name=\"stage_2_highlight\" default=\"reaction zone\"}"
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},
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{
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"id": "M3",
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"name": "{argument name=\"stage_3_name\" default=\"Volatile Combustion\"}",
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"summary": "{argument name=\"stage_3_summary\" default=\"gas-phase combustion of released volatiles\"}",
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"highlight": "{argument name=\"stage_3_highlight\" default=\"high-temperature region\"}"
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},
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{
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"id": "M4",
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"name": "{argument name=\"stage_4_name\" default=\"Char Oxidation\"}",
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"summary": "{argument name=\"stage_4_summary\" default=\"surface oxidation of the remaining char\"}",
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"highlight": "{argument name=\"stage_4_highlight\" default=\"none\"}"
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},
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{
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"id": "M5",
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"name": "{argument name=\"stage_5_name\" default=\"Emission Formation\"}",
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"summary": "{argument name=\"stage_5_summary\" default=\"formation of NOx, CO, particulate matter\"}",
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"highlight": "{argument name=\"stage_5_highlight\" default=\"emission risk region\"}"
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}
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]
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},
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"result_region": {
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"enabled": "{argument name=\"result_region_enabled\" default=\"true\"}",
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"label": "{argument name=\"result_region_label\" default=\"Outcome\"}",
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"items": "{argument name=\"result_region_items\" default=\"temperature distribution, combustion efficiency, emission characteristics\"}",
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"position": "rightmost block or bottom-right region, visually separated from stages but stylistically consistent"
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},
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"stage_block_style": {
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"shape": "rounded rectangle (corner radius ~6px) OR stage label + leader line directly attached to the central object",
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"size_per_stage": "consistent across all stages",
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"fill": "very light tint (e.g. #F1F5F9, #ECFEFF) — at most 2 different tints; use a low-saturation warm tint (e.g. #FEF3C7) only for stages whose 'highlight' is non-none",
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"border": "1.2px solid dark gray #334155",
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"title_text": "stage name in bold sans-serif (Helvetica / Inter / Arial / PingFang / Source Han Sans for CJK), 11-12pt",
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"summary_text": "single phrase, 9-10pt regular, no full sentence, no period"
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},
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"connectors": {
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"style": "thin arrows (1.2px) with simple triangle arrowheads, dark gray #334155",
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"rule": "connect stages in causal / temporal order, no crossing, no decorative curves; only label arrows when carrying a named quantity (e.g. 'heat flux', 'O2', 'volatiles')",
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"feedback_loop": {
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"enabled": "{argument name=\"feedback_loop\" default=\"false\"}",
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"rule": "if true, add one curved dashed arrow looping back, labeled e.g. 'self-propagating heat'"
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}
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},
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"highlight_strategy": {
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"rule": "for stages whose 'highlight' is non-none, apply ONLY a subtle low-saturation tint background (e.g. #FEF3C7 for high-temperature; #FEE2E2 for emission risk). NEVER use flames, smoke, glow, lens flare, or 3D heat-map effects",
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"max_highlighted_stages": 2
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},
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"constraints": {
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"must_keep": [
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"central object visually anchors the figure; stages radiate or flow outward in a stable reading order",
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"white background, no gradient, no decorative pattern",
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"color palette ≤ 3 main colors, must remain readable in grayscale print",
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"only sans-serif typography, no script / handwritten / display fonts",
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"stage labels are short phrases, never full sentences",
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"the figure must look like it came from a journal article, not a popular-science illustration",
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"all arrows aligned, no crossings unless the mechanism genuinely requires it"
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],
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"avoid": [
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"exaggerated flames, smoke, sparks, glow, lens flare, motion blur",
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"3D rendering, metallic highlights, glossy fills",
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"cartoon mascots, emoji, decorative icons, hand-drawn wobble",
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"photo-realistic photography of equipment, products, or scenery",
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"marketing poster aesthetics, magazine cover aesthetics",
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"fabricated numbers, equations, or chemical formulas not provided by the user",
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"saturated brand-style colors (no neon, no vivid)",
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"watermarks, copyright stamps, vendor logos"
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]
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}
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}
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```
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### 参数策略
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- **必问**:`object_label` / `object_depiction`、阶段名、阶段顺序
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- **可默认**:`aspect_ratio`(16:9)、`background`(白色)、`figure_label` / `caption`、配色 tint
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- **可随机**:每个 stage 的 `summary` 措辞(用户给了大意可学术化润色)、`highlight` 是否启用(无明确说明时默认 none)
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### 自动补全策略
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- 用户给出现象名 + 阶段数但没说每阶段细节 → 反问,**禁止编造不存在的物理 / 化学过程**
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- 用户给出阶段名但没给摘要 → 用学术化短语补全(保持 ≤6 词)
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- 用户没说有没有反馈环 → 默认 `feedback_loop: false`
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- 用户说"中文论文 / 答辩" → 切换标签为中文 + 字体 PingFang / 思源黑
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## 变体 1:左 → 中 → 右 三段式因果链
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```json
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{
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"type": "三段式因果链机制图",
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"modify": {
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"layout": "左侧 = 初始条件 / 触发因素;中间 = 多阶段转化机制;右侧 = 最终结果 / 表征",
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"rule": "三段之间用粗一些的分隔留白(视觉分组),但保持统一描边和字体;左右两侧文字精炼到 ≤4 项",
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"use_case": "需要清晰区分'起因 → 过程 → 结果'的机制图,例如'生物质燃烧 → 多阶段反应 → 排放与残炭'"
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}
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}
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```
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适用:燃烧 / 反应工程、退化老化、损伤演化、临床因果通路(学术风)。
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## 变体 2:循环 / 自激发机制
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```json
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{
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"type": "循环自激发机制图",
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"modify": {
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"layout": "阶段排成环形,箭头沿环顺时针方向;中央写出循环驱动力或关键中间产物",
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"annotation": "环上选 1-2 个箭头加 dashed 样式标注 'positive feedback' / 'self-propagating'",
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"use_case": "正反馈机制、自催化反应、慢性退化循环"
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}
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}
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```
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适用:自催化、链式反应、热失控、慢性炎症通路。
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## 变体 3:多分支竞争路径
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```json
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{
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"type": "多分支竞争机制图",
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"modify": {
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"layout": "中心对象向外分出 2-3 条平行路径,每条代表一种竞争性机制;末端各自连到不同的结果区",
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"annotation": "每条路径起点处标注控制条件(temperature / O2 partial pressure / pH 等)",
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"use_case": "需要表达'相同前体在不同条件下走不同机制'的对比型机理图"
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}
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}
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```
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适用:路径选择性反应、相分离、不同温度区间下的反应主导机制。
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## 避免事项
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- 用渲染感火焰 / 浓烟 / 爆炸 / 炫光来"装专业" → 立刻沦为营销插画
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- 阶段块大小不一、字号混乱、字体混用衬线 + 无衬线
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- 用 emoji 或卡通图标当阶段图示
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- 用饱和 / 霓虹 / 渐变背景代替克制工程色
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- 把不存在的化学方程、物理常数、温度数值塞进图里(**严格禁止虚构数据**)
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- 把"机制示意图"画成完整设备剖视图(应该用 `scientific-schematic.md`)
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- 把对比 / 多工况结果(应该用 `multi-condition-comparison.md`)混进机制图
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