Files
3D_EDFM_SIM-X/post processor/plot_3d_grid_transparent.m
2026-03-13 11:24:41 +08:00

105 lines
2.8 KiB
Matlab

function plot_3d_grid_transparent(nx, ny, nz, dx, dy, dz, data)
% 绘制半透明效果的三维网格
% 输入参数:
% nx, ny, nz - 各方向的网格数
% dx, dy, dz - 各方向的网格尺寸向量
% data - 物理量数据,维度为(nx, ny, nz)
% 计算每个网格的边界坐标
x_edges = zeros(nx+1, 1);
x_edges(1) = 0;
for i = 1:nx
x_edges(i+1) = x_edges(i) + dx(i);
end
y_edges = zeros(ny+1, 1);
y_edges(1) = 0;
for i = 1:ny
y_edges(i+1) = y_edges(i) + dy(i);
end
z_edges = zeros(nz+1, 1);
z_edges(1) = 0;
for i = 1:nz
z_edges(i+1) = z_edges(i) + dz(i);
end
% 创建图形
figure('Position', [100, 100, 1000, 800]);
hold on;
% 设置颜色映射
colormap jet;
caxis([min(data(:)), max(data(:))]);
% 根据物理量值设置透明度
% 值越大越不透明,值越小越透明
data_min = min(data(:));
data_max = max(data(:));
data_range = data_max - data_min;
for i = 1:nx
for j = 1:ny
for k = 1:nz
% 获取当前体素的边界
x_min = x_edges(i);
x_max = x_edges(i+1);
y_min = y_edges(j);
y_max = y_edges(j+1);
z_min = z_edges(k);
z_max = z_edges(k+1);
% 获取当前体素的物理量值
value = data(i, j, k);
% 根据值设置透明度(值越大越不透明)
% alpha_val = 0.3 + 0.6 * (value - data_min) / data_range;
alpha_val = 1;
% 创建体素的8个顶点
vertices = [x_min, y_min, z_min;
x_max, y_min, z_min;
x_max, y_max, z_min;
x_min, y_max, z_min;
x_min, y_min, z_max;
x_max, y_min, z_max;
x_max, y_max, z_max;
x_min, y_max, z_max];
% 创建6个面的顶点索引
faces = [1 2 3 4; % 底面
5 6 7 8; % 顶面
1 2 6 5; % 前面
2 3 7 6; % 右面
3 4 8 7; % 后面
4 1 5 8]; % 左面
% 绘制体素
patch('Vertices', vertices, 'Faces', faces, ...
'FaceColor', 'flat', ...
'FaceVertexCData', value, ...
'CDataMapping', 'scaled', ...
'FaceAlpha', alpha_val, ...
'EdgeColor', 'none');
end
end
end
% 设置图形属性
colorbar;
xlabel('X');
ylabel('Y');
zlabel('Z');
title('三维笛卡尔网格全充满物理量分布(透明度与数值相关)');
axis equal;
view(3);
grid on;
box on;
% 光照设置
lighting gouraud;
light('Position', [1 1 1], 'Style', 'infinite');
light('Position', [-1 -1 -1], 'Style', 'infinite');
hold off;
end