Duyuru:
15 Nisan 2025'ten önce Earth Engine'i kullanmak için kaydedilen tüm ticari olmayan projelerin Earth Engine erişimini sürdürmek için
ticari olmayan uygunluğu doğrulaması gerekir.
ee.Geometry.LinearRing.dissolve
Koleksiyonlar ile düzeninizi koruyun
İçeriği tercihlerinize göre kaydedin ve kategorilere ayırın.
Geometrinin birleşimini döndürür. Bu işlem, tekli geometrilere dokunmaz ve çoklu geometrileri birleştirir.
Kullanım | İadeler |
---|
LinearRing.dissolve(maxError, proj) | Geometri |
Bağımsız Değişken | Tür | Ayrıntılar |
---|
bu: geometry | Geometri | Birleştirilecek geometri. |
maxError | ErrorMargin, varsayılan: null | Gerekli yeniden projeksiyon işlemleri gerçekleştirilirken tolere edilen maksimum hata miktarı. |
proj | Projeksiyon, varsayılan: null | Belirtilirse birleştirme bu projeksiyonda gerçekleştirilir. Aksi takdirde, küresel koordinat sisteminde gerçekleştirilir. |
Örnekler
Kod Düzenleyici (JavaScript)
// Define a LinearRing object.
var linearRing = ee.Geometry.LinearRing(
[[-122.091, 37.420],
[-122.085, 37.422],
[-122.080, 37.430]]);
// Apply the dissolve method to the LinearRing object.
var linearRingDissolve = linearRing.dissolve({'maxError': 1});
// Print the result to the console.
print('linearRing.dissolve(...) =', linearRingDissolve);
// Display relevant geometries on the map.
Map.setCenter(-122.085, 37.422, 15);
Map.addLayer(linearRing,
{'color': 'black'},
'Geometry [black]: linearRing');
Map.addLayer(linearRingDissolve,
{'color': 'red'},
'Result [red]: linearRing.dissolve');
Python kurulumu
Python API'si ve etkileşimli geliştirme için geemap
kullanımı hakkında bilgi edinmek üzere
Python Ortamı sayfasına bakın.
import ee
import geemap.core as geemap
Colab (Python)
# Define a LinearRing object.
linearring = ee.Geometry.LinearRing(
[[-122.091, 37.420], [-122.085, 37.422], [-122.080, 37.430]]
)
# Apply the dissolve method to the LinearRing object.
linearring_dissolve = linearring.dissolve(maxError=1)
# Print the result.
display('linearring.dissolve(...) =', linearring_dissolve)
# Display relevant geometries on the map.
m = geemap.Map()
m.set_center(-122.085, 37.422, 15)
m.add_layer(linearring, {'color': 'black'}, 'Geometry [black]: linearring')
m.add_layer(
linearring_dissolve, {'color': 'red'}, 'Result [red]: linearring.dissolve'
)
m
Aksi belirtilmediği sürece bu sayfanın içeriği Creative Commons Atıf 4.0 Lisansı altında ve kod örnekleri Apache 2.0 Lisansı altında lisanslanmıştır. Ayrıntılı bilgi için Google Developers Site Politikaları'na göz atın. Java, Oracle ve/veya satış ortaklarının tescilli ticari markasıdır.
Son güncelleme tarihi: 2025-07-26 UTC.
[null,null,["Son güncelleme tarihi: 2025-07-26 UTC."],[[["\u003cp\u003eReturns the union of the geometry, leaving single geometries untouched and uniting multi-geometries.\u003c/p\u003e\n"],["\u003cp\u003eAccepts optional \u003ccode\u003emaxError\u003c/code\u003e and \u003ccode\u003eproj\u003c/code\u003e parameters to control reprojection during the union operation.\u003c/p\u003e\n"],["\u003cp\u003eCan be applied to LinearRing geometries to dissolve them into a single geometry.\u003c/p\u003e\n"]]],["The `dissolve` method unions geometries, leaving single geometries unchanged and handling multi-geometries. It takes an optional `maxError` argument, controlling reprojection error tolerance, and a `proj` argument to specify the output projection, defaulting to spherical. The method is applied to a geometry object (`LinearRing` in the examples). It is shown in both javascript and python examples, with visual output of before and after on a map.\n"],null,["# ee.Geometry.LinearRing.dissolve\n\nReturns the union of the geometry. This leaves single geometries untouched, and unions multi geometries.\n\n\u003cbr /\u003e\n\n| Usage | Returns |\n|------------------------------------------------|----------|\n| LinearRing.dissolve`(`*maxError* `, `*proj*`)` | Geometry |\n\n| Argument | Type | Details |\n|------------------|----------------------------|--------------------------------------------------------------------------------------------------------------------------------|\n| this: `geometry` | Geometry | The geometry to union. |\n| `maxError` | ErrorMargin, default: null | The maximum amount of error tolerated when performing any necessary reprojection. |\n| `proj` | Projection, default: null | If specified, the union will be performed in this projection. Otherwise it will be performed in a spherical coordinate system. |\n\nExamples\n--------\n\n### Code Editor (JavaScript)\n\n```javascript\n// Define a LinearRing object.\nvar linearRing = ee.Geometry.LinearRing(\n [[-122.091, 37.420],\n [-122.085, 37.422],\n [-122.080, 37.430]]);\n\n// Apply the dissolve method to the LinearRing object.\nvar linearRingDissolve = linearRing.dissolve({'maxError': 1});\n\n// Print the result to the console.\nprint('linearRing.dissolve(...) =', linearRingDissolve);\n\n// Display relevant geometries on the map.\nMap.setCenter(-122.085, 37.422, 15);\nMap.addLayer(linearRing,\n {'color': 'black'},\n 'Geometry [black]: linearRing');\nMap.addLayer(linearRingDissolve,\n {'color': 'red'},\n 'Result [red]: linearRing.dissolve');\n```\nPython setup\n\nSee the [Python Environment](/earth-engine/guides/python_install) page for information on the Python API and using\n`geemap` for interactive development. \n\n```python\nimport ee\nimport geemap.core as geemap\n```\n\n### Colab (Python)\n\n```python\n# Define a LinearRing object.\nlinearring = ee.Geometry.LinearRing(\n [[-122.091, 37.420], [-122.085, 37.422], [-122.080, 37.430]]\n)\n\n# Apply the dissolve method to the LinearRing object.\nlinearring_dissolve = linearring.dissolve(maxError=1)\n\n# Print the result.\ndisplay('linearring.dissolve(...) =', linearring_dissolve)\n\n# Display relevant geometries on the map.\nm = geemap.Map()\nm.set_center(-122.085, 37.422, 15)\nm.add_layer(linearring, {'color': 'black'}, 'Geometry [black]: linearring')\nm.add_layer(\n linearring_dissolve, {'color': 'red'}, 'Result [red]: linearring.dissolve'\n)\nm\n```"]]