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<!DOCTYPE html>
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<title>索引 — 0.1.0</title>
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<li class="toctree-l1"><a class="reference internal" href="install/install.html">1. 安装方式</a><ul>
<li class="toctree-l2"><a class="reference internal" href="install/install.html#whl">1.1. 下载 whl 文件后安装</a></li>
<li class="toctree-l2"><a class="reference internal" href="install/install.html#id2">1.2. 以开发者模式使用</a></li>
<li class="toctree-l2"><a class="reference internal" href="install/install.html#id3">1.3. 打包为 whl</a></li>
<li class="toctree-l2"><a class="reference internal" href="install/install.html#id4">1.4. 依赖</a></li>
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<li class="toctree-l1"><a class="reference internal" href="tutorial/tutorial.html">2. 教程</a><ul>
<li class="toctree-l2"><a class="reference internal" href="tutorial/mesh.html">2.1. Mesh 类使用</a><ul>
<li class="toctree-l3"><a class="reference internal" href="tutorial/mesh.html#导入库">2.1.1. 导入库</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/mesh.html#基于meshio从第三方网格文件加载">2.1.2. 基于meshio从第三方网格文件加载</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/mesh.html#直接从符合-nfvm-约定的-hdf5-文件-加载">2.1.3. 直接从符合 nfvm 约定的 hdf5 文件 加载</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/mesh.html#从点和网格构建">2.1.4. 从点和网格构建</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/mesh.html#复联通域下的边界">2.1.5. 复联通域下的边界</a></li>
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<li class="toctree-l2"><a class="reference internal" href="tutorial/scalarField.html">2.2. scalarField 标量场类型使用</a><ul>
<li class="toctree-l3"><a class="reference internal" href="tutorial/scalarField.html#构造一个体积标量场">2.2.1. 构造一个体积标量场</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/scalarField.html#插值得到一个界面标量场">2.2.2. 插值得到一个界面标量场</a></li>
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<li class="toctree-l2"><a class="reference internal" href="tutorial/interpolate.html">2.3. interpolate 算子</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorial/flux.html">2.4. flux 算子</a></li>
<li class="toctree-l2"><a class="reference internal" href="tutorial/matrix.html">2.5. Matrix 类型</a><ul>
<li class="toctree-l3"><a class="reference internal" href="tutorial/matrix.html#matrix-的构造">2.5.1. matrix 的构造</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/matrix.html#matrix-的保存">2.5.2. matrix 的保存</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/matrix.html#matrix-加减运算">2.5.3. matrix 加减运算</a></li>
<li class="toctree-l3"><a class="reference internal" href="tutorial/matrix.html#matrix-求解">2.5.4. matrix 求解</a></li>
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<li class="toctree-l1"><a class="reference internal" href="theory/theory.html">3. 理论</a><ul>
<li class="toctree-l2"><a class="reference internal" href="theory/mesh/mesh.html">3.1. 网格</a><ul>
<li class="toctree-l3"><a class="reference internal" href="theory/mesh/triangleMesh.html">3.1.1. 三角网格 triangleMesh</a></li>
<li class="toctree-l3"><a class="reference internal" href="theory/mesh/boundary.html">3.1.2. 网格边界</a></li>
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<li class="toctree-l2"><a class="reference internal" href="theory/field/field.html">3.2. 场数据</a><ul>
<li class="toctree-l3"><a class="reference internal" href="theory/field/scalarField.html">3.2.1. 标量场scalarField</a></li>
<li class="toctree-l3"><a class="reference internal" href="theory/field/boundary.html">3.2.2. 边界条件的统一处理</a></li>
</ul>
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<li class="toctree-l2"><a class="reference internal" href="theory/fvc/fvc.html">3.3. 显式算子</a><ul>
<li class="toctree-l3"><a class="reference internal" href="theory/fvc/interpolate.html">3.3.1. interpolate</a><ul>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#weightted-scheme">3.3.1.1. weightted scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#linear-scheme">3.3.1.2. linear scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#upwind-and-downwind-scheme">3.3.1.3. upwind and downwind scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#quick-scheme">3.3.1.4. QUICK scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#vanleer-scheme">3.3.1.5. vanLeer scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#minmod-scheme">3.3.1.6. Minmod scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#muscl-scheme">3.3.1.7. MUSCL scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#superbee-scheme">3.3.1.8. SuperBee scheme</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/interpolate.html#cubic-scheme">3.3.1.9. cubic scheme</a></li>
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<li class="toctree-l3"><a class="reference internal" href="theory/fvc/source.html">3.3.2. source</a></li>
<li class="toctree-l3"><a class="reference internal" href="theory/fvc/flux.html">3.3.3. flux</a></li>
<li class="toctree-l3"><a class="reference internal" href="theory/fvc/grad.html">3.3.4. grad</a><ul>
<li class="toctree-l4"><a class="reference internal" href="theory/fvc/grad.html#id1">3.3.4.1. 最小二乘算法</a></li>
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<li class="toctree-l2"><a class="reference internal" href="theory/fvm/fvm.html">3.4. 隐式算子</a><ul>
<li class="toctree-l3"><a class="reference internal" href="theory/fvm/matrix.html">3.4.1. 稀疏矩阵的由来</a><ul>
<li class="toctree-l4"><a class="reference internal" href="theory/fvm/matrix.html#加载网格">3.4.1.1. 加载网格</a></li>
<li class="toctree-l4"><a class="reference internal" href="theory/fvm/matrix.html#基于网格构建方稀疏矩阵">3.4.1.2. 基于网格构建方稀疏矩阵</a></li>
</ul>
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<li class="toctree-l3"><a class="reference internal" href="theory/fvm/laplacian.html">3.4.2. laplacian</a><ul>
<li class="toctree-l4"><a class="reference internal" href="theory/fvm/laplacian.html#id1">3.4.2.1. 案例</a></li>
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<li class="toctree-l3"><a class="reference internal" href="theory/fvm/div.html">3.4.3. div</a></li>
<li class="toctree-l3"><a class="reference internal" href="theory/fvm/ddt.html">3.4.4. ddt</a></li>
</ul>
</li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="examples/examples.html">4. 求解器案例</a><ul>
<li class="toctree-l2"><a class="reference internal" href="examples/laplacian/laplacian.html">4.1. Laplacian 拉普拉斯求解器</a><ul>
<li class="toctree-l3"><a class="reference internal" href="examples/laplacian/tri14.html">4.1.1. 少数三角网格上的算例</a><ul>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/tri14.html#加载点和控制体">4.1.1.1. 加载点和控制体</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/tri14.html#构造一个温度场">4.1.1.2. 构造一个温度场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/tri14.html#使用拉普拉斯算子构造稀疏矩阵">4.1.1.3. 使用拉普拉斯算子构造稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/tri14.html#求解稀疏矩阵">4.1.1.4. 求解稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/tri14.html#可视化">4.1.1.5. 可视化</a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="examples/laplacian/cavity.html">4.1.2. 更多三角网格算例</a><ul>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity.html#加载点和控制体">4.1.2.1. 加载点和控制体</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity.html#构造一个温度场">4.1.2.2. 构造一个温度场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity.html#使用拉普拉斯算子构造稀疏矩阵">4.1.2.3. 使用拉普拉斯算子构造稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity.html#求解稀疏矩阵">4.1.2.4. 求解稀疏矩阵</a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="examples/laplacian/cleveland.html">4.1.3. 俄罗斯方块 Cleveland 几何算例</a><ul>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cleveland.html#加载点和控制体">4.1.3.1. 加载点和控制体</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cleveland.html#构造一个温度场">4.1.3.2. 构造一个温度场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cleveland.html#使用拉普拉斯算子构造稀疏矩阵">4.1.3.3. 使用拉普拉斯算子构造稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cleveland.html#求解稀疏矩阵">4.1.3.4. 求解稀疏矩阵</a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="examples/laplacian/hole.html">4.1.4. 复连通域算例</a><ul>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/hole.html#加载点和控制体">4.1.4.1. 加载点和控制体</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/hole.html#构造一个温度场">4.1.4.2. 构造一个温度场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/hole.html#使用拉普拉斯算子构造稀疏矩阵">4.1.4.3. 使用拉普拉斯算子构造稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/hole.html#求解稀疏矩阵">4.1.4.4. 求解稀疏矩阵</a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="examples/laplacian/cavity_source.html">4.1.5. 源项热平衡问题:显式源项</a><ul>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_source.html#加载点和控制体">4.1.5.1. 加载点和控制体</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_source.html#构造一个温度场">4.1.5.2. 构造一个温度场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_source.html#构造一个源项">4.1.5.3. 构造一个源项</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_source.html#使用拉普拉斯算子构造稀疏矩阵">4.1.5.4. 使用拉普拉斯算子构造稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_source.html#求解稀疏矩阵">4.1.5.5. 求解稀疏矩阵</a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="examples/laplacian/cavity_ddt.html">4.1.6. 热扩散问题:隐式Euler时间项</a><ul>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_ddt.html#定义一个网格场">4.1.6.1. 定义一个网格场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_ddt.html#构造一个温度场">4.1.6.2. 构造一个温度场</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_ddt.html#使用拉普拉斯算子构造稀疏矩阵">4.1.6.3. 使用拉普拉斯算子构造稀疏矩阵</a></li>
<li class="toctree-l4"><a class="reference internal" href="examples/laplacian/cavity_ddt.html#与OpenFoam对比">4.1.6.4. 与OpenFoam对比</a></li>
</ul>
</li>
</ul>
</li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="python_api/python_api.html">5. Python API</a><ul>
<li class="toctree-l2"><a class="reference internal" href="python_api/log.html">5.1. log 模块</a><ul>
<li class="toctree-l3"><a class="reference internal" href="python_api/log.html#log.critical"><code class="docutils literal notranslate"><span class="pre">critical()</span></code></a></li>
<li class="toctree-l3"><a class="reference internal" href="python_api/log.html#log.debug"><code class="docutils literal notranslate"><span class="pre">debug()</span></code></a></li>
<li class="toctree-l3"><a class="reference internal" href="python_api/log.html#log.error"><code class="docutils literal notranslate"><span class="pre">error()</span></code></a></li>
<li class="toctree-l3"><a class="reference internal" href="python_api/log.html#log.info"><code class="docutils literal notranslate"><span class="pre">info()</span></code></a></li>
<li class="toctree-l3"><a class="reference internal" href="python_api/log.html#log.warn"><code class="docutils literal notranslate"><span class="pre">warn()</span></code></a></li>
</ul>
</li>
<li class="toctree-l2"><a class="reference internal" href="python_api/mesh.html">5.2. mesh 子包</a><ul>
<li class="toctree-l3"><a class="reference internal" href="python_api/mesh.html#geometry">5.2.1. 1. geometry 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.Point"><code class="docutils literal notranslate"><span class="pre">Point</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.clockwiseTriangle"><code class="docutils literal notranslate"><span class="pre">clockwiseTriangle()</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.cross_angle"><code class="docutils literal notranslate"><span class="pre">cross_angle()</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.face_normal"><code class="docutils literal notranslate"><span class="pre">face_normal()</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.line_normal"><code class="docutils literal notranslate"><span class="pre">line_normal()</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.point2line"><code class="docutils literal notranslate"><span class="pre">point2line()</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#geometry.point2point"><code class="docutils literal notranslate"><span class="pre">point2point()</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/mesh.html#boundary">5.2.2. 2. boundary 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#boundary.Boundary"><code class="docutils literal notranslate"><span class="pre">Boundary</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/mesh.html#trianglemesh">5.2.3. 3. triangleMesh 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/mesh.html#triangleMesh.TriangleMesh"><code class="docutils literal notranslate"><span class="pre">TriangleMesh</span></code></a></li>
</ul>
</li>
</ul>
</li>
<li class="toctree-l2"><a class="reference internal" href="python_api/field.html">5.3. field 子包</a><ul>
<li class="toctree-l3"><a class="reference internal" href="python_api/field.html#volfield">5.3.1. 1. volField 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/field.html#volField.volScalarField"><code class="docutils literal notranslate"><span class="pre">volScalarField</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/field.html#volField.volVectorField"><code class="docutils literal notranslate"><span class="pre">volVectorField</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/field.html#surfacefield">5.3.2. 2. surfaceField 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/field.html#surfaceField.surfaceScalarField"><code class="docutils literal notranslate"><span class="pre">surfaceScalarField</span></code></a></li>
<li class="toctree-l4"><a class="reference internal" href="python_api/field.html#surfaceField.surfaceVectorField"><code class="docutils literal notranslate"><span class="pre">surfaceVectorField</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/field.html#boundaryfield">5.3.3. 3. boundaryField 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/field.html#boundaryField.boundaryScalarField"><code class="docutils literal notranslate"><span class="pre">boundaryScalarField</span></code></a></li>
</ul>
</li>
</ul>
</li>
<li class="toctree-l2"><a class="reference internal" href="python_api/fvc.html">5.4. fvc 子包</a><ul>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvc.html#scalarinterpolate">5.4.1. scalarInterpolate 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvc.html#scalarInterpolate.scalarInterpolate"><code class="docutils literal notranslate"><span class="pre">scalarInterpolate()</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvc.html#source">5.4.2. source 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvc.html#source.Source"><code class="docutils literal notranslate"><span class="pre">Source()</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvc.html#flux">5.4.3. flux 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvc.html#flux.Flux"><code class="docutils literal notranslate"><span class="pre">Flux()</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvc.html#grad">5.4.4. grad 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvc.html#grad.Grad"><code class="docutils literal notranslate"><span class="pre">Grad()</span></code></a></li>
</ul>
</li>
</ul>
</li>
<li class="toctree-l2"><a class="reference internal" href="python_api/fvm.html">5.5. fvm 子包</a><ul>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvm.html#matrix">5.5.1. matrix 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvm.html#matrix.Matrix"><code class="docutils literal notranslate"><span class="pre">Matrix</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvm.html#laplacian">5.5.2. laplacian 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvm.html#laplacian.Laplacian"><code class="docutils literal notranslate"><span class="pre">Laplacian()</span></code></a></li>
</ul>
</li>
<li class="toctree-l3"><a class="reference internal" href="python_api/fvm.html#ddt">5.5.3. ddt 模块</a><ul>
<li class="toctree-l4"><a class="reference internal" href="python_api/fvm.html#ddt.ddt"><code class="docutils literal notranslate"><span class="pre">ddt()</span></code></a></li>
</ul>
</li>
</ul>
</li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="license.html">6. License</a></li>
</ul>
</div>
</div>
</nav>
<section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"><nav class="wy-nav-top" aria-label="移动版导航菜单" style="background: #343131" >
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<a href="index.html">nfvm</a>
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<ul class="wy-breadcrumbs">
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<li class="breadcrumb-item active">索引</li>
<li class="wy-breadcrumbs-aside">
</li>
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<div role="main" class="document" itemscope="itemscope" itemtype="http://schema.org/Article">
<div itemprop="articleBody">
<h1 id="index">索引</h1>
<div class="genindex-jumpbox">
<a href="#_"><strong>_</strong></a>
| <a href="#B"><strong>B</strong></a>
| <a href="#C"><strong>C</strong></a>
| <a href="#D"><strong>D</strong></a>
| <a href="#E"><strong>E</strong></a>
| <a href="#F"><strong>F</strong></a>
| <a href="#G"><strong>G</strong></a>
| <a href="#I"><strong>I</strong></a>
| <a href="#L"><strong>L</strong></a>
| <a href="#M"><strong>M</strong></a>
| <a href="#N"><strong>N</strong></a>
| <a href="#P"><strong>P</strong></a>
| <a href="#R"><strong>R</strong></a>
| <a href="#S"><strong>S</strong></a>
| <a href="#T"><strong>T</strong></a>
| <a href="#U"><strong>U</strong></a>
| <a href="#V"><strong>V</strong></a>
| <a href="#W"><strong>W</strong></a>
| <a href="#X"><strong>X</strong></a>
| <a href="#Y"><strong>Y</strong></a>
</div>
<h2 id="_">_</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/fvm.html#matrix.Matrix.__add__">__add__() (matrix.Matrix 方法)</a>
</li>
<li><a href="python_api/field.html#volField.volScalarField.__add__">__add__() (volField.volScalarField 方法)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.Point.__eq__">__eq__() (geometry.Point 方法)</a>
</li>
<li><a href="python_api/fvm.html#matrix.Matrix.__eq__">__eq__() (matrix.Matrix 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="B">B</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
boundary
<ul>
<li><a href="python_api/mesh.html#module-boundary">module</a>
</li>
</ul></li>
<li>
boundaryField
<ul>
<li><a href="python_api/field.html#module-boundaryField">module</a>
</li>
</ul></li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/field.html#boundaryField.boundaryScalarField">boundaryScalarField(boundaryField 中的类)</a>
</li>
<li><a href="python_api/mesh.html#boundary.Boundary">Boundary(boundary 中的类)</a>
</li>
</ul></td>
</tr></table>
<h2 id="C">C</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.clockwiseTriangle">clockwiseTriangle()(在 geometry 模块中)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/log.html#log.critical">critical()(在 log 模块中)</a>
</li>
<li><a href="python_api/mesh.html#geometry.cross_angle">cross_angle()(在 geometry 模块中)</a>
</li>
</ul></td>
</tr></table>
<h2 id="D">D</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
ddt
<ul>
<li><a href="python_api/fvm.html#module-ddt">module</a>
</li>
</ul></li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/fvm.html#ddt.ddt">ddt()(在 ddt 模块中)</a>
</li>
<li><a href="python_api/log.html#log.debug">debug()(在 log 模块中)</a>
</li>
<li><a href="python_api/fvm.html#matrix.Matrix.diag">diag() (matrix.Matrix 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="E">E</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/log.html#log.error">error()(在 log 模块中)</a>
</li>
</ul></td>
</tr></table>
<h2 id="F">F</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.face_normal">face_normal()(在 geometry 模块中)</a>
</li>
<li>
flux
<ul>
<li><a href="python_api/fvc.html#module-flux">module</a>
</li>
</ul></li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/fvc.html#flux.Flux">Flux()(在 flux 模块中)</a>
</li>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh.fromMeshIO">fromMeshIO()(triangleMesh.TriangleMesh 类方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="G">G</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
geometry
<ul>
<li><a href="python_api/mesh.html#module-geometry">module</a>
</li>
</ul></li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
grad
<ul>
<li><a href="python_api/fvc.html#module-grad">module</a>
</li>
</ul></li>
<li><a href="python_api/fvc.html#grad.Grad">Grad()(在 grad 模块中)</a>
</li>
</ul></td>
</tr></table>
<h2 id="I">I</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/log.html#log.info">info()(在 log 模块中)</a>
</li>
</ul></td>
</tr></table>
<h2 id="L">L</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
laplacian
<ul>
<li><a href="python_api/fvm.html#module-laplacian">module</a>
</li>
</ul></li>
<li><a href="python_api/fvm.html#laplacian.Laplacian">Laplacian()(在 laplacian 模块中)</a>
</li>
<li><a href="python_api/mesh.html#geometry.line_normal">line_normal()(在 geometry 模块中)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh.load">load()(triangleMesh.TriangleMesh 类方法)</a>
</li>
<li>
log
<ul>
<li><a href="python_api/log.html#module-log">module</a>
</li>
</ul></li>
<li><a href="python_api/fvm.html#matrix.Matrix.lower">lower() (matrix.Matrix 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="M">M</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
matrix
<ul>
<li><a href="python_api/fvm.html#module-matrix">module</a>
</li>
</ul></li>
<li><a href="python_api/fvm.html#matrix.Matrix">Matrix(matrix 中的类)</a>
</li>
<li>
module
<ul>
<li><a href="python_api/mesh.html#module-boundary">boundary</a>
</li>
<li><a href="python_api/field.html#module-boundaryField">boundaryField</a>
</li>
<li><a href="python_api/fvm.html#module-ddt">ddt</a>
</li>
<li><a href="python_api/fvc.html#module-flux">flux</a>
</li>
<li><a href="python_api/mesh.html#module-geometry">geometry</a>
</li>
<li><a href="python_api/fvc.html#module-grad">grad</a>
</li>
<li><a href="python_api/fvm.html#module-laplacian">laplacian</a>
</li>
<li><a href="python_api/log.html#module-log">log</a>
</li>
<li><a href="python_api/fvm.html#module-matrix">matrix</a>
</li>
<li><a href="python_api/fvc.html#module-scalarInterpolate">scalarInterpolate</a>
</li>
<li><a href="python_api/fvc.html#module-source">source</a>
</li>
<li><a href="python_api/field.html#module-surfaceField">surfaceField</a>
</li>
<li><a href="python_api/mesh.html#module-triangleMesh">triangleMesh</a>
</li>
<li><a href="python_api/field.html#module-volField">volField</a>
</li>
</ul></li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#boundary.Boundary.moveStart2Point">moveStart2Point() (boundary.Boundary 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="N">N</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/field.html#surfaceField.surfaceScalarField.ndarray">ndarray() (surfaceField.surfaceScalarField 方法)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/field.html#volField.volScalarField.ndarray">ndarray() (volField.volScalarField 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="P">P</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.point2line">point2line()(在 geometry 模块中)</a>
</li>
<li><a href="python_api/mesh.html#geometry.point2point">point2point()(在 geometry 模块中)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh.points8cells">points8cells()(triangleMesh.TriangleMesh 类方法)</a>
</li>
<li><a href="python_api/mesh.html#geometry.Point">Point(geometry 中的类)</a>
</li>
</ul></td>
</tr></table>
<h2 id="R">R</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#boundary.Boundary.resort">resort() (boundary.Boundary 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="S">S</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh.save">save() (triangleMesh.TriangleMesh 方法)</a>
</li>
<li>
scalarInterpolate
<ul>
<li><a href="python_api/fvc.html#module-scalarInterpolate">module</a>
</li>
</ul></li>
<li><a href="python_api/fvc.html#scalarInterpolate.scalarInterpolate">scalarInterpolate()(在 scalarInterpolate 模块中)</a>
</li>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh.showBoundary">showBoundary() (triangleMesh.TriangleMesh 方法)</a>
</li>
<li><a href="python_api/fvm.html#matrix.Matrix.solve">solve() (matrix.Matrix 方法)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
source
<ul>
<li><a href="python_api/fvc.html#module-source">module</a>
</li>
</ul></li>
<li><a href="python_api/fvc.html#source.Source">Source()(在 source 模块中)</a>
</li>
<li>
surfaceField
<ul>
<li><a href="python_api/field.html#module-surfaceField">module</a>
</li>
</ul></li>
<li><a href="python_api/field.html#surfaceField.surfaceScalarField">surfaceScalarField(surfaceField 中的类)</a>
</li>
<li><a href="python_api/field.html#surfaceField.surfaceVectorField">surfaceVectorField(surfaceField 中的类)</a>
</li>
</ul></td>
</tr></table>
<h2 id="T">T</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
triangleMesh
<ul>
<li><a href="python_api/mesh.html#module-triangleMesh">module</a>
</li>
</ul></li>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh">TriangleMesh(triangleMesh 中的类)</a>
</li>
<li><a href="python_api/field.html#boundaryField.boundaryScalarField.typeName">typeName(boundaryField.boundaryScalarField 属性)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.Point.typeName">typeName(geometry.Point 属性)</a>
</li>
<li><a href="python_api/field.html#surfaceField.surfaceScalarField.typeName">typeName(surfaceField.surfaceScalarField 属性)</a>
</li>
<li><a href="python_api/field.html#surfaceField.surfaceVectorField.typeName">typeName(surfaceField.surfaceVectorField 属性)</a>
</li>
<li><a href="python_api/field.html#volField.volScalarField.typeName">typeName(volField.volScalarField 属性)</a>
</li>
<li><a href="python_api/field.html#volField.volVectorField.typeName">typeName(volField.volVectorField 属性)</a>
</li>
</ul></td>
</tr></table>
<h2 id="U">U</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/field.html#boundaryField.boundaryScalarField.updateBoundary">updateBoundary() (boundaryField.boundaryScalarField 方法)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/fvm.html#matrix.Matrix.upper">upper() (matrix.Matrix 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="V">V</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li>
volField
<ul>
<li><a href="python_api/field.html#module-volField">module</a>
</li>
</ul></li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/field.html#volField.volScalarField">volScalarField(volField 中的类)</a>
</li>
<li><a href="python_api/field.html#volField.volVectorField">volVectorField(volField 中的类)</a>
</li>
</ul></td>
</tr></table>
<h2 id="W">W</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/log.html#log.warn">warn()(在 log 模块中)</a>
</li>
</ul></td>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#triangleMesh.TriangleMesh.writeVTK">writeVTK() (triangleMesh.TriangleMesh 方法)</a>
</li>
<li><a href="python_api/field.html#volField.volScalarField.writeVTK">writeVTK() (volField.volScalarField 方法)</a>
</li>
</ul></td>
</tr></table>
<h2 id="X">X</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.Point.x">x(geometry.Point 属性)</a>
</li>
</ul></td>
</tr></table>
<h2 id="Y">Y</h2>
<table style="width: 100%" class="indextable genindextable"><tr>
<td style="width: 33%; vertical-align: top;"><ul>
<li><a href="python_api/mesh.html#geometry.Point.y">y(geometry.Point 属性)</a>
</li>
</ul></td>
</tr></table>
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