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Remote datasets: Add load_earth_deflection to load "IGPP Earth east-west and north-south deflection" datasets #3728
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Add Earth deflection dataset
yvonnefroehlich 53ef36d
Remove execusion permission
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Fix '_init_.py'
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Fix index.rst
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COrrect ot 'north-south' | change parameter name from 'direction' to …
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Change parameter name from 'direction' to 'component'
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Change parameter name from 'direction' to 'component'
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Merge branch 'main' into add-remote-earth-defl
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Merge branch 'main' into add-remote-earth-defl
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Merge branch 'main' into add-remote-earth-defl
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Merge remote-tracking branch 'origin/add-remote-earth-defl' into add-…
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Change from "ndefl" to "north"
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| Original file line number | Diff line number | Diff line change |
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| @@ -0,0 +1,117 @@ | ||
| """ | ||
| Function to download the IGPP Earth east-west and north-south deflection datasets from | ||
| the GMT data server, and load as :class:`xarray.DataArray`. | ||
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| The grids are available in various resolutions. | ||
| """ | ||
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| from collections.abc import Sequence | ||
| from typing import Literal | ||
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| import xarray as xr | ||
| from pygmt.datasets.load_remote_dataset import _load_remote_dataset | ||
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| __doctest_skip__ = ["load_earth_deflection"] | ||
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| def load_earth_deflection( | ||
| resolution: Literal[ | ||
| "01d", "30m", "20m", "15m", "10m", "06m", "05m", "04m", "03m", "02m", "01m" | ||
| ] = "01d", | ||
| region: Sequence[float] | str | None = None, | ||
| registration: Literal["gridline", "pixel", None] = None, | ||
| component: Literal["east", "north"] = "east", | ||
| ) -> xr.DataArray: | ||
| r""" | ||
| Load the IGPP Earth east-west and north-south deflection datasets in various | ||
| resolutions. | ||
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| .. list-table:: | ||
| :widths: 50 50 | ||
| :header-rows: 1 | ||
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| * - IGPP Earth east-west deflection | ||
| - IGPP Earth north-south deflection | ||
| * - .. figure:: https://www.generic-mapping-tools.org/remote-datasets/_images/GMT_earth_edefl.jpg | ||
| - .. figure:: https://www.generic-mapping-tools.org/remote-datasets/_images/GMT_earth_ndefl.jpg | ||
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| The grids are downloaded to a user data directory (usually | ||
| ``~/.gmt/server/earth/earth_edefl/`` and ``~/.gmt/server/earth/earth_ndefl/`` the | ||
| first time you invoke this function. Afterwards, it will load the grid from the | ||
| data directory. So you'll need an internet connection the first time around. | ||
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| These grids can also be accessed by passing in the file name | ||
| **@**\ *earth_defl_type*\_\ *res*\[_\ *reg*] to any grid processing function or | ||
| plotting method. *earth_defl_type* is the GMT name for the dataset. The available | ||
| options are **earth_edefl** and **earth_ndefl**. *res* is the grid resolution (see | ||
| below), and *reg* is the grid registration type (**p** for pixel registration or | ||
| **g** for gridline registration). | ||
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| The default color palette table (CPTs) for this dataset is *@earth_defl.cpt*. It's | ||
| implicitly used when passing in the file name of the dataset to any grid plotting | ||
| method if no CPT is explicitly specified. When the dataset is loaded and plotted as | ||
| an :class:`xarray.DataArray` object, the default CPT is ignored, and GMT's default | ||
| CPT (*turbo*) is used. To use the dataset-specific CPT, you need to explicitly set | ||
| ``cmap="@earth_defl.cpt"``. | ||
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||
| Refer to :gmt-datasets:`earth-edefl.html` and :gmt-datasets:`earth-ndefl.html` for | ||
| more details about available datasets, including version information and references. | ||
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||
| Parameters | ||
| ---------- | ||
| resolution | ||
| The grid resolution. The suffix ``d`` and ``m`` stand for arc-degrees and | ||
| arc-minutes. | ||
| region | ||
| The subregion of the grid to load, in the form of a sequence [*xmin*, *xmax*, | ||
| *ymin*, *ymax*] or an ISO country code. Required for grids with resolutions | ||
| higher than 5 arc-minutes (i.e., ``"05m"``). | ||
| registration | ||
| Grid registration type. Either ``"pixel"`` for pixel registration or | ||
| ``"gridline"`` for gridline registration. Default is ``None``, which means | ||
| ``"gridline"`` for all resolutions except ``"01m"`` which is ``"pixel"`` only. | ||
| component | ||
| By default, the east-west deflection (``component="east"``) is returned, | ||
| set ``component="north"`` to return the north-south deflection. | ||
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| Returns | ||
| ------- | ||
| grid | ||
| The Earth east-west or south-north deflection grid. Coordinates are latitude | ||
| and longitude in degrees. Deflection values are in micro-radians. | ||
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| Note | ||
| ---- | ||
| The registration and coordinate system type of the returned | ||
| :class:`xarray.DataArray` grid can be accessed via the GMT accessors (i.e., | ||
| ``grid.gmt.registration`` and ``grid.gmt.gtype`` respectively). However, these | ||
| properties may be lost after specific grid operations (such as slicing) and will | ||
| need to be manually set before passing the grid to any PyGMT data processing or | ||
| plotting functions. Refer to :class:`pygmt.GMTDataArrayAccessor` for detailed | ||
| explanations and workarounds. | ||
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| Examples | ||
| -------- | ||
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| >>> from pygmt.datasets import load_earth_deflection | ||
| >>> # load the default grid for east-west deflection (gridline-registered | ||
| >>> # 1 arc-degree grid) | ||
| >>> grid = load_earth_deflection() | ||
| >>> # load the default grid for north-south deflection | ||
| >>> grid = load_earth_deflection(component="ndefl") | ||
| >>> # load the 30 arc-minutes grid with "gridline" registration | ||
| >>> grid = load_earth_deflection(resolution="30m", registration="gridline") | ||
| >>> # load high-resolution (5 arc-minutes) grid for a specific region | ||
| >>> grid = load_earth_deflection( | ||
| ... resolution="05m", region=[120, 160, 30, 60], registration="gridline" | ||
| ... ) | ||
| """ | ||
| prefix = "earth_ndefl" if component == "north" else "earth_edefl" | ||
| grid = _load_remote_dataset( | ||
| name=prefix, | ||
| prefix=prefix, | ||
| resolution=resolution, | ||
| region=region, | ||
| registration=registration, | ||
| ) | ||
| return grid | ||
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| Original file line number | Diff line number | Diff line change |
|---|---|---|
| @@ -0,0 +1,106 @@ | ||
| """ | ||
| Test basic functionality for loading IGPP Earth east-west and south-north deflection | ||
| datasets. | ||
| """ | ||
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| import numpy as np | ||
| import numpy.testing as npt | ||
| from pygmt.datasets import load_earth_deflection | ||
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| def test_earth_edefl_01d(): | ||
| """ | ||
| Test some properties of the Earth east-west deflection 01d data. | ||
| """ | ||
| data = load_earth_deflection(resolution="01d") | ||
| assert data.name == "z" | ||
| assert data.attrs["long_name"] == "edefl (microradians)" | ||
| assert data.attrs["description"] == "IGPP Earth east-west deflection" | ||
| assert data.attrs["units"] == "micro-radians" | ||
| assert data.attrs["horizontal_datum"] == "WGS84" | ||
| assert data.shape == (181, 361) | ||
| assert data.gmt.registration == 0 | ||
| npt.assert_allclose(data.lat, np.arange(-90, 91, 1)) | ||
| npt.assert_allclose(data.lon, np.arange(-180, 181, 1)) | ||
| npt.assert_allclose(data.min(), -142.64, atol=0.04) | ||
| npt.assert_allclose(data.max(), 178.32, atol=0.04) | ||
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| def test_earth_edefl_01d_with_region(): | ||
| """ | ||
| Test loading low-resolution Earth east-west deflection with "region". | ||
| """ | ||
| data = load_earth_deflection(resolution="01d", region=[-10, 10, -5, 5]) | ||
| assert data.shape == (11, 21) | ||
| assert data.gmt.registration == 0 | ||
| npt.assert_allclose(data.lat, np.arange(-5, 6, 1)) | ||
| npt.assert_allclose(data.lon, np.arange(-10, 11, 1)) | ||
| npt.assert_allclose(data.min(), -28.92, atol=0.04) | ||
| npt.assert_allclose(data.max(), 24.72, atol=0.04) | ||
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| def test_earth_edefl_01m_default_registration(): | ||
| """ | ||
| Test that the grid returned by default for the 1 arc-minute resolution has a "pixel" | ||
| registration. | ||
| """ | ||
| data = load_earth_deflection(resolution="01m", region=[-10, -9, 3, 5]) | ||
| assert data.shape == (120, 60) | ||
| assert data.gmt.registration == 1 | ||
| npt.assert_allclose(data.coords["lat"].data.min(), 3.008333333) | ||
| npt.assert_allclose(data.coords["lat"].data.max(), 4.991666666) | ||
| npt.assert_allclose(data.coords["lon"].data.min(), -9.99166666) | ||
| npt.assert_allclose(data.coords["lon"].data.max(), -9.00833333) | ||
| npt.assert_allclose(data.min(), -62.24, atol=0.04) | ||
| npt.assert_allclose(data.max(), 15.52, atol=0.04) | ||
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| def test_earth_ndefl_01d(): | ||
| """ | ||
| Test some properties of the Earth north-south deflection 01d data. | ||
| """ | ||
| data = load_earth_deflection(resolution="01d", component="north") | ||
| assert data.name == "z" | ||
| assert data.attrs["long_name"] == "ndefl (microradians)" | ||
| assert data.attrs["description"] == "IGPP Earth north-south deflection" | ||
| assert data.attrs["units"] == "micro-radians" | ||
| assert data.attrs["horizontal_datum"] == "WGS84" | ||
| assert data.shape == (181, 361) | ||
| assert data.gmt.registration == 0 | ||
| npt.assert_allclose(data.lat, np.arange(-90, 91, 1)) | ||
| npt.assert_allclose(data.lon, np.arange(-180, 181, 1)) | ||
| npt.assert_allclose(data.min(), -214.8, atol=0.04) | ||
| npt.assert_allclose(data.max(), 163.04, atol=0.04) | ||
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| def test_earth_ndefl_01d_with_region(): | ||
| """ | ||
| Test loading low-resolution Earth north-south deflection with "region". | ||
| """ | ||
| data = load_earth_deflection( | ||
| resolution="01d", region=[-10, 10, -5, 5], component="north" | ||
| ) | ||
| assert data.shape == (11, 21) | ||
| assert data.gmt.registration == 0 | ||
| npt.assert_allclose(data.lat, np.arange(-5, 6, 1)) | ||
| npt.assert_allclose(data.lon, np.arange(-10, 11, 1)) | ||
| npt.assert_allclose(data.min(), -48.08, atol=0.04) | ||
| npt.assert_allclose(data.max(), 18.92, atol=0.04) | ||
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| def test_earth_ndefl_01m_default_registration(): | ||
| """ | ||
| Test that the grid returned by default for the 1 arc-minute resolution has a "pixel" | ||
| registration. | ||
| """ | ||
| data = load_earth_deflection( | ||
| resolution="01m", region=[-10, -9, 3, 5], component="north" | ||
| ) | ||
| assert data.shape == (120, 60) | ||
| assert data.gmt.registration == 1 | ||
| npt.assert_allclose(data.coords["lat"].data.min(), 3.008333333) | ||
| npt.assert_allclose(data.coords["lat"].data.max(), 4.991666666) | ||
| npt.assert_allclose(data.coords["lon"].data.min(), -9.99166666) | ||
| npt.assert_allclose(data.coords["lon"].data.max(), -9.00833333) | ||
| npt.assert_allclose(data.min(), -107.04, atol=0.04) | ||
| npt.assert_allclose(data.max(), 20.28, atol=0.04) |
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