- Accessible Map
- Advanced Mapbox Vector Tiles
- 高级地图定位
- 地图加载 GIF 动图
- ArcGIS REST Feature Service
- Attributions
- 波段对比度调节
- Bing Maps
- Box Selection
- Canvas Tiles
- CartoDB source example
- Change Tile Layer Style
- Cloud Optimized GeoTIFF (COG)
- Cloud Optimized GeoTIFF (COG) from a Blob
- Clustered Features
- Color Manipulation
- Constrained Extent
- Constrained Zoom
- Custom Animation
- Custom Canvas Tiles
- 自定义圆形渲染
- 自定义控件
- 自定义拖拽上传展示数据(KMZ)
- 自定义拖拽上传展示数据 (MVT 预览)
- 自定义触发器渲染
- 自定义交互
- 地图自定义 dom 元素(element)
- 自定义鹰眼
- 自定义面状图形要素样式
- 自定义瓦片 WMS
- 自定义提示信息
- d3 集成
- 数据瓦片
- 设备定位
- 拖拽加载数据
- 拖拽 Image Vector
- 拖拽,旋转和缩放
- 绘制和修改图形要素(Features)
- 绘制和编辑测地线(Geodesic)圆
- 绘制图形要素(Feature)
- 绘制规则图形
- 动态聚合
- 动画展示数据
- 地震位置聚合图
- 地震位置热力图
- 渲染 KML 中的地震数据
- 自定义图形渲染地震数据
- 可编辑的 ArcGIS REST 图形要素服务
- EPSG:4326
- 导出 PDF 示例
- 范围(Extent)交互
- 外部地图
- 使用 WebGL 过滤图形要素
- 航班飞行动画
- Fractal 渲染
- 自由绘制
- 全屏控件
- 带有扩展element的全屏控件
- 全屏拖拽,旋转,缩放
- Geographic Coordinates
- Geographic Editing
- GeoJSON
- 集成 geojson-vt
- 地理位置
- GeoTIFF 瓦片金字塔
- GeoTIFF with Overviews
- GPX 数据
- 高 DPI WMTS
- 点击容许偏差
- Icon 比例
- Icon 颜色
- Icon 位置修改
- Icon 像素操作
- Icon Sprites with WebGL
- Icon 渲染
- IGC 数据
- IGN WMTS
- IIIF 影像 API
- ArcGIS 图像地图服务
- 图片过滤
- 图像载入事件
- 图像重投影
- 即时渲染 (地理)
- 插值
- 集成 JSTS
- KML
- Layer 裁剪
- 图层组
- 图层 最小/最大 分辨率
- 图层透明度
- 图层鼠标透视
- 图层卷帘
- 图层卷帘 (WebGL)
- 图层层级(Z-Index)
- 图层缩放限制
- 懒加载资源
- 限制图层范围
- 线段箭头
- 载入中旋转动画
- 局部的 OpenStreetMap
- 鼠标放大镜效果
- 地图打印(导出)
- 地图经纬网格
- 地图链接地址
- Mapbox 矢量图层
- Mapbox 矢量瓦片
- Mapbox-gl 图层
- MapGuide Untiled
- 地图点图标动画
- 测量
- 使用矢量样式测量
- 修改图形要素(Features)
- 修改图形要素测试
- 显示鼠标位置
- 地图平移(拖拽)结束事件
- 定位控件
- NDVI from a Sentinel 2 COG
- 动态颜色斜率 NDVI
- NDVI+NDWI from two 16-bit COGs
- OGC 地图瓦片
- OGC 地图瓦片 (地理)
- OGC 矢量瓦片
- OpenStreetMap 重投影
- 带有比例尺控件的 OpenStreetMap 重投影
- OSM 矢量瓦片
- OSM XML
- 覆盖物(Overlay)
- 鹰眼地图控件
- 页面滚动
- 拖拽和页面滚动
- Permalink
- Pinch Zoom
- Popup
- Preload Tiles
- 按比例导出地图
- 投影和比例尺
- 栅格重投影
- 栅格资源
- 区域增长
- Regular Shapes
- Render geometries to a canvas
- Rendering 16-bit NumpyTiles
- Reprojection with EPSG.io Search
- Reusable Source
- Rich Text Labels
- Scale and Rotate using Modify Interaction
- Scale Line
- Sea Level
- Sea Level (with WebGL)
- Select Features
- Select Features by Hover
- Select multiple Features
- Semi-Transparent Layer
- Shaded Relief
- Shaded Relief (with WebGL)
- Shared Views
- Simple Map
- Single Image WMS
- Single Image WMS with Proj4js
- Smoothing lines using Chaikins algorithm
- Snap Interaction
- Sphere Mollweide
- Stamen Tiles
- Static Image
- Street Labels
- Style renderer
- Styling feature with CanvasGradient or CanvasPattern
- SVG Layer
- Synthetic Lines
- Synthetic Points
- Teleporting Maps
- Tile Load Events
- Tile Transitions
- Tiled ArcGIS MapServer
- Tiled WMS
- Tiled WMS Wrapping
- TileJSON
- Timezones in KML
- Tissot Indicatrix
- TopoJSON
- topolis integration
- Tracing around a polygon
- Translate Features
- turf.js
- UTFGrid
- Vector Clipping Layer
- Vector Image Layer
- Vector Label Decluttering
- Vector Labels
- Vector Labels - Justify Text
- Vector Layer
- Vector Layer Hit Detection
- Vector Tile Info
- Vector Tile Selection
- Vector tiles created from a Mapbox Style object
- Vector tiles in EPSG:4326
- Vector tiles rendered in an offscreen canvas
- View Animation
- View Min-Zoom
- View Padding
- View Rotation
- WebGL points layer
- WebGL Tile Layer Styles
- WebGL Tiles
- WebGL Vector Layer
- WFS
- WFS - GetFeature
- WFS with geographic coordinates
- Wind Arrows
- WKB
- WKT
- WMS 512x256 Tiles
- WMS Capabilities Parsing
- WMS GetFeatureInfo (Image Layer)
- WMS GetFeatureInfo (Layers)
- WMS GetFeatureInfo (Tile Layer)
- WMS GetLegendGraphic
- WMS 时序渲染
- 无投影 WMS
- WMTS
- WMTS Capabilities 解析
- 从 Capabilities 加载 WMTS
- WMTS 瓦片转换
- XYZ
- XYZ Esri
- XYZ 视网膜瓦片
- 缩放滑块
- Zoomify
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栅格重投影
本示例演示客户端在多种投影坐标系中的重投影。
本示例演示客户端在多种投影坐标系中的重投影
main.js
import 'ol/ol.css';
import Map from 'ol/Map';
import TileGrid from 'ol/tilegrid/TileGrid';
import TileLayer from 'ol/layer/Tile';
import View from 'ol/View';
import WMTS, {optionsFromCapabilities} from 'ol/source/WMTS';
import WMTSCapabilities from 'ol/format/WMTSCapabilities';
import proj4 from 'proj4';
import {OSM, TileImage, TileWMS} from 'ol/source';
import {getCenter, getWidth} from 'ol/extent';
import {get as getProjection, transformExtent} from 'ol/proj';
import {register} from 'ol/proj/proj4';
proj4.defs(
'EPSG:27700',
'+proj=tmerc +lat_0=49 +lon_0=-2 +k=0.9996012717 ' +
'+x_0=400000 +y_0=-100000 +ellps=airy ' +
'+towgs84=446.448,-125.157,542.06,0.15,0.247,0.842,-20.489 ' +
'+units=m +no_defs'
);
proj4.defs(
'EPSG:23032',
'+proj=utm +zone=32 +ellps=intl ' +
'+towgs84=-87,-98,-121,0,0,0,0 +units=m +no_defs'
);
proj4.defs(
'EPSG:5479',
'+proj=lcc +lat_1=-76.66666666666667 +lat_2=' +
'-79.33333333333333 +lat_0=-78 +lon_0=163 +x_0=7000000 +y_0=5000000 ' +
'+ellps=GRS80 +towgs84=0,0,0,0,0,0,0 +units=m +no_defs'
);
proj4.defs(
'EPSG:21781',
'+proj=somerc +lat_0=46.95240555555556 ' +
'+lon_0=7.439583333333333 +k_0=1 +x_0=600000 +y_0=200000 +ellps=bessel ' +
'+towgs84=674.4,15.1,405.3,0,0,0,0 +units=m +no_defs'
);
proj4.defs(
'EPSG:3413',
'+proj=stere +lat_0=90 +lat_ts=70 +lon_0=-45 +k=1 ' +
'+x_0=0 +y_0=0 +datum=WGS84 +units=m +no_defs'
);
proj4.defs(
'EPSG:2163',
'+proj=laea +lat_0=45 +lon_0=-100 +x_0=0 +y_0=0 ' +
'+a=6370997 +b=6370997 +units=m +no_defs'
);
proj4.defs(
'ESRI:54009',
'+proj=moll +lon_0=0 +x_0=0 +y_0=0 +datum=WGS84 ' + '+units=m +no_defs'
);
register(proj4);
const proj27700 = getProjection('EPSG:27700');
proj27700.setExtent([-650000, -150000, 1350000, 1450000]);
const proj23032 = getProjection('EPSG:23032');
proj23032.setExtent([-1206118.71, 4021309.92, 1295389.0, 8051813.28]);
const proj5479 = getProjection('EPSG:5479');
proj5479.setExtent([6825737.53, 4189159.8, 9633741.96, 5782472.71]);
const proj21781 = getProjection('EPSG:21781');
proj21781.setExtent([485071.54, 75346.36, 828515.78, 299941.84]);
const proj3413 = getProjection('EPSG:3413');
proj3413.setExtent([-4194304, -4194304, 4194304, 4194304]);
const proj2163 = getProjection('EPSG:2163');
proj2163.setExtent([-8040784.5135, -2577524.921, 3668901.4484, 4785105.1096]);
const proj54009 = getProjection('ESRI:54009');
proj54009.setExtent([-18e6, -9e6, 18e6, 9e6]);
const layers = {};
layers['osm'] = new TileLayer({
source: new OSM(),
});
layers['wms4326'] = new TileLayer({
source: new TileWMS({
url: 'https://ahocevar.com/geoserver/wms',
crossOrigin: '',
params: {
'LAYERS': 'ne:NE1_HR_LC_SR_W_DR',
'TILED': true,
},
projection: 'EPSG:4326',
}),
});
layers['wms21781'] = new TileLayer({
source: new TileWMS({
attributions:
'© <a href="https://shop.swisstopo.admin.ch/en/products/maps/national/lk1000"' +
'target="_blank">Pixelmap 1:1000000 / geo.admin.ch</a>',
crossOrigin: 'anonymous',
params: {
'LAYERS': 'ch.swisstopo.pixelkarte-farbe-pk1000.noscale',
'FORMAT': 'image/jpeg',
},
url: 'https://wms.geo.admin.ch/',
projection: 'EPSG:21781',
}),
});
const parser = new WMTSCapabilities();
layers['wmts3413'] = new TileLayer();
const urlA =
'https://map1.vis.earthdata.nasa.gov/wmts-arctic/' +
'wmts.cgi?SERVICE=WMTS&request=GetCapabilities';
fetch(urlA)
.then(function (response) {
return response.text();
})
.then(function (text) {
const result = parser.read(text);
const options = optionsFromCapabilities(result, {
layer: 'OSM_Land_Mask',
matrixSet: 'EPSG3413_250m',
});
options.crossOrigin = '';
options.projection = 'EPSG:3413';
options.wrapX = false;
layers['wmts3413'].setSource(new WMTS(options));
});
layers['bng'] = new TileLayer();
const urlB =
'https://tiles.arcgis.com/tiles/qHLhLQrcvEnxjtPr/arcgis/rest/services/OS_Open_Raster/MapServer/WMTS';
fetch(urlB)
.then(function (response) {
return response.text();
})
.then(function (text) {
const result = parser.read(text);
const options = optionsFromCapabilities(result, {
layer: 'OS_Open_Raster',
});
options.attributions =
'Contains OS data © Crown Copyright and database right ' +
new Date().getFullYear();
options.crossOrigin = '';
options.projection = 'EPSG:27700';
options.wrapX = false;
layers['bng'].setSource(new WMTS(options));
});
const startResolution = getWidth(getProjection('EPSG:3857').getExtent()) / 256;
const resolutions = new Array(22);
for (let i = 0, ii = resolutions.length; i < ii; ++i) {
resolutions[i] = startResolution / Math.pow(2, i);
}
layers['states'] = new TileLayer({
source: new TileWMS({
url: 'https://ahocevar.com/geoserver/wms',
crossOrigin: '',
params: {'LAYERS': 'topp:states'},
serverType: 'geoserver',
tileGrid: new TileGrid({
extent: [-13884991, 2870341, -7455066, 6338219],
resolutions: resolutions,
tileSize: [512, 256],
}),
projection: 'EPSG:3857',
}),
});
const map = new Map({
layers: [layers['osm'], layers['bng']],
target: 'map',
view: new View({
projection: 'EPSG:3857',
center: [0, 0],
zoom: 2,
}),
});
const baseLayerSelect = document.getElementById('base-layer');
const overlayLayerSelect = document.getElementById('overlay-layer');
const viewProjSelect = document.getElementById('view-projection');
const renderEdgesCheckbox = document.getElementById('render-edges');
let renderEdges = false;
function updateViewProjection() {
const newProj = getProjection(viewProjSelect.value);
const newProjExtent = newProj.getExtent();
const newView = new View({
projection: newProj,
center: getCenter(newProjExtent || [0, 0, 0, 0]),
zoom: 0,
extent: newProjExtent || undefined,
});
map.setView(newView);
// Example how to prevent double occurrence of map by limiting layer extent
if (newProj.isGlobal()) {
layers['bng'].setExtent(
transformExtent(proj27700.getExtent(), proj27700, newProj, 2)
);
} else {
layers['bng'].setExtent(undefined);
}
}
/**
* Handle change event.
*/
viewProjSelect.onchange = function () {
updateViewProjection();
};
updateViewProjection();
const updateRenderEdgesOnLayer = function (layer) {
if (layer instanceof TileLayer) {
const source = layer.getSource();
if (source instanceof TileImage) {
source.setRenderReprojectionEdges(renderEdges);
}
}
};
/**
* Handle change event.
*/
baseLayerSelect.onchange = function () {
const layer = layers[baseLayerSelect.value];
if (layer) {
layer.setOpacity(1);
updateRenderEdgesOnLayer(layer);
map.getLayers().setAt(0, layer);
}
};
/**
* Handle change event.
*/
overlayLayerSelect.onchange = function () {
const layer = layers[overlayLayerSelect.value];
if (layer) {
layer.setOpacity(0.7);
updateRenderEdgesOnLayer(layer);
map.getLayers().setAt(1, layer);
}
};
/**
* Handle change event.
*/
renderEdgesCheckbox.onchange = function () {
renderEdges = renderEdgesCheckbox.checked;
map.getLayers().forEach(function (layer) {
updateRenderEdgesOnLayer(layer);
});
};
index.html
<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="UTF-8">
<title>Raster Reprojection</title>
<!-- Pointer events polyfill for old browsers, see https://caniuse.com/#feat=pointer -->
<script src="https://unpkg.com/elm-pep"></script>
<!-- The line below is only needed for old environments like Internet Explorer and Android 4.x -->
<script src="https://cdn.polyfill.io/v3/polyfill.min.js?features=fetch,requestAnimationFrame,Element.prototype.classList,URL,TextDecoder,Number.isInteger"></script>
<style>
.map {
width: 100%;
height:400px;
}
</style>
</head>
<body>
<div id="map" class="map"></div>
<form class="form-inline">
<div class="col-md-3">
<label for="base-layer">Base map:</label>
<select id="base-layer">
<option value="osm">OSM (EPSG:3857)</option>
<option value="wms4326">WMS (EPSG:4326)</option>
</select>
</div>
<div class="col-md-4">
<label for="overlay-layer">Overlay map:</label>
<select id="overlay-layer">
<option value="bng">British National Grid (EPSG:27700)</option>
<option value="wms21781">Swisstopo WMS (EPSG:21781)</option>
<option value="wmts3413">NASA Arctic WMTS (EPSG:3413)</option>
<option value="states">United States (EPSG:3857)</option>
</select>
</div>
<div class="col-md-5">
<label for="view-projection">View projection:</label>
<select id="view-projection">
<option value="EPSG:3857">Spherical Mercator (EPSG:3857)</option>
<option value="EPSG:4326">WGS 84 (EPSG:4326)</option>
<option value="ESRI:54009">Mollweide (ESRI:54009)</option>
<option value="EPSG:27700">British National Grid (EPSG:27700)</option>
<option value="EPSG:23032">ED50 / UTM zone 32N (EPSG:23032)</option>
<option value="EPSG:2163">US National Atlas Equal Area (EPSG:2163)</option>
<option value="EPSG:3413">NSIDC Polar Stereographic North (EPSG:3413)</option>
<option value="EPSG:5479">RSRGD2000 / MSLC2000 (EPSG:5479)</option>
</select>
</div>
<label>
Render reprojection edges
<input type="checkbox" id="render-edges">
</label>
</form>
<script src="main.js"></script>
</body>
</html>
package.json
{
"name": "reprojection",
"dependencies": {
"ol": "7.1.0",
"proj4": "^2.7.5"
},
"devDependencies": {
"parcel": "^2.0.0-beta.1"
},
"scripts": {
"start": "parcel index.html",
"build": "parcel build --public-url . index.html"
}
}
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