Skip to main content

No project description provided

Project description

Installation with pip

pip install cognite-wells-sdk

Usage

Authenticating and creating a client

With environment variables

NOTE: must be valid for both cdf and geospatial API

export COGNITE_PROJECT=<project-tenant>
export COGNITE_API_KEY=<your-api-key>

You can then initialize the client with

from cognite.well_model import CogniteWellsClient
wells_client = CogniteWellsClient()

Without environment variables

Alternatively, the client can be initialized like this:

import os
from cognite.well_model import CogniteWellsClient
api_key = os.environ["COGNITE_API_KEY"]
wells_client = CogniteWellsClient(project="your-project", api_key=api_key)

Well queries

Get well by asset external id or matching id

well: Well = client.wells.retrieve(asset_external_id="VOLVE:15/9-F-15")

# OR specify matching_id

well: Well = client.wells.retrieve(matching_id="kfe72ik")

Get multiple wells by asset external ids or matching ids

wells = client.wells.retrieve_multiple(
    asset_external_ids=["VOLVE:15/9-F-15"],
    matching_ids=["je93kmf"]
)

Delete well

Warning! Note that if you delete a well, it will cascade to delete all wellbores, measurements, trajectories, NPT events, and NDS events connected to that well asset.

to_delete: List[AssetSource] = [AssetSource(asset_external_id="VOLVE:15/9-F-15", source_name="VOLVE")]
client.wells.delete(to_delete)

List wells

wells = wells_client.wells.list()

Filter wells by wkt polygon

from cognite.well_model.models import PolygonFilter

polygon = 'POLYGON ((0.0 0.0, 0.0 80.0, 80.0 80.0, 80.0 0.0, 0.0 0.0))'
wells = wells_client.wells.filter(polygon=PolygonFilter(geometry=polygon, crs="epsg:4326"))

Filter wells by wkt polygon, name/description and specify desired outputCrs

polygon = 'POLYGON ((0.0 0.0, 0.0 80.0, 80.0 80.0, 80.0 0.0, 0.0 0.0))'
wells = wells_client.wells.filter(
    polygon=PolygonFilter(geometry=polygon, crs="epsg:4326", geometry_type="WKT"),
    string_matching="16/",
    output_crs="EPSG:23031"
)

Get wells that have a trajectory

from cognite.well_model.models import TrajectoryFilter

wells = wells_client.wells.filter(trajectories=TrajectoryFilter(), limit=None)

Get wells that have a trajectory with data between certain depths

wells = wells_client.wells.filter(trajectories=TrajectoryFilter(min_depth=1400.0, max_depth=1500.0), limit=None)

Get wells that has the right set of measurement types

from cognite.well_model.models import MeasurementFilter, MeasurementFilters, MeasurementType

gammarayFilter = MeasurementFilter(measurement_type=MeasurementType.gamma_ray)
densityFilter = MeasurementFilter(measurement_type=MeasurementType.density)

# Get wells with all measurements
measurements_filter = MeasurementFilters(contains_all=[gammarayFilter, densityFilter])
wells = wells_client.wells.filter(measurements=measurements_filter, limit=None)

# Or get wells with any of the measurements
measurements_filter = MeasurementFilters(contains_any=[gammarayFilter, densityFilter])
wells = wells_client.wells.filter(measurements=measurements_filter, limit=None)

Get wells that has right set of npt event criterias

npt = WellNptFilter(
    duration=DoubleRange(min=1.0, max=30.0),
    measuredDepth=LengthRange(min=1800.0, max=3000.0, unit=DistanceUnitEnum.meter),
    nptCodes=ContainsAllOrAny(containsAll=["FJSB", "GSLB"]),
    nptCodeDetails=ContainsAllOrAny(containsAll=["SLSN", "OLSF"]),
)

well_items = client.wells.filter(npt=npt)

Wellbore queries

Get wellbore by asset external id or matching id

wellbore: Wellbore = client.wellbores.retrieve(asset_external_id="VOLVE:15/9-F-15 A")

# OR specify a matching_id

wellbore: Wellbore = client.wellbores.retrieve(matching_id="32bc81ce")

Get multiple wellbores by asset external ids or matching ids

wellbore_items = client.wellbores.retrieve_multiple(
    asset_external_ids=["VOLVE:15/9-F-15 B", "VOLVE:15/9-F-15 C", "VOLVE:15/9-F-4", "VOLVE:13/10-F-11 T2"],
    matching_ids=["2984nfe", "nfy39g", "jkey73g"]
)

Get wellbores from a single well by asset external id or matching id

wellbore_items = client.wellbores.retrieve_multiple_by_well(asset_external_id="VOLVE: WELL-202")

# OR specify matching_id

wellbore_items = client.wellbores.retrieve_multiple_by_well(matching_id="fok8240f")

Trajectory queries

Get trajectories by wellbore asset external id or matching id

trajectory_list = client.trajectories.retrieve_multiple_by_wellbore(
    asset_external_id="VOLVE: WELLBORE-202"
)

# OR specify matching id

trajectory_list = client.trajectories.retrieve_multiple_by_wellbore(
    matching_id="ko73kf"
)

Get trajectories by wellbore asset external ids or matching ids

trajectory_list = client.trajectories.retrieve_multiple_by_wellbores(
    asset_external_ids=["VOLVE: WELLBORE-201", "VOLVE: WELLBORE-202"],
    matching_ids=["kfe7kf", "kie832"]
)

List trajectory data

request = TrajectoryDataRequest(
    sequence_external_id="13/10-F-11 T2 ACTUAL",
    measured_depth_range=DepthRange(min_depth=2, max_depth=5, unit="meter"),
    true_vertical_depth_range=DepthRange(min_depth=0.2, max_depth=0.5, unit="meter"),
)
trajectories = client.trajectories.list_data([request])

Measurement queries

Get multiple measurements from wellbore asset external id or matching id

measurement_list = client.measurements.retrieve_multiple_by_wellbore(asset_external_id="VOLVE:WELLBORE-201")

# OR specify matching_id
measurement_list = client.measurements.retrieve_multiple_by_wellbore(matching_id="9u2jnf")

Get multiple measurements from wellbore asset external ids or matching ids

valid_wellbore_ids = ["VOLVE:WELLBORE-201", "VOLVE:WELLBORE-202"]
measurement_list = client.measurements.retrieve_multiple_by_wellbores(asset_external_ids=valid_wellbore_ids)

Filter measurement data

measurement_data_request = MeasurementDataRequest(
        sequence_external_id="VOLVE:seq1",
        measured_depth_range=DepthRange(min_depth=0.0, max_depth=10_000.0, unit="meter"),
    )

measurement_data_list: MeasurementDataList = client.measurements.list_data([measurement_data_request])

NPT Event queries

Filter NPT events

npt_events = client.npt.list(
    duration=DoubleRange(min=3.0, max=10.5),
    md=LengthRange(min=590.0, max=984.0, unit="meter"),
    npt_codes=["O"],
    npt_code_details=["1KFO"],
    wellbore_asset_external_ids=["VOLVE:15/9-F-15 A", "VOLVE:15/9-F-15 D"],
    wellbore_matching_ids=["KFOEFW"]
)

List all NPT codes

npt_codes: List[str] = client.npt.codes()

List all NPT detail codes

npt_detail_codes: List[str] = client.npt.detail_codes()

NDS Event queries

Filter NDS events

nds_events = client.nds.list(
    hole_start=LengthRange(min=10, max=15, unit="meter"),
    hole_end=LengthRange(min=20, max=35, unit="meter"),
    wellbore_asset_external_ids=["VOLVE:15/9-F-15 A"],
    wellbore_matching_ids=["KOEFKE"],
    probabilities=[3, 5],
    severities=[3, 5]
)

List all NDS risk types

risk_types: List[str] = client.nds.risk_types()

Casing queries

Filter casings

casings = client.casings.list(
    wellbore_asset_external_ids=["VOLVE:15/9-F-15 A"],
    wellbore_matching_ids=["KOEFKE"],
)

Ingestion

Initialise tenant

Before ingesting any wells, the tenant must be initialized to add in the standard assets and labels used in the WDL.

from cognite.well_model import CogniteWellsClient

wells_client = CogniteWellsClient()
log_output = wells_client.ingestion.ingestion_init()
print(log_output)  # If something is wrong with authorization, you should see that in the logs

Add source

Before ingestion from a source can take place, the source must be registered in WDL.

import os
from cognite.well_model import CogniteWellsClient

wells_client = CogniteWellsClient()
created_sources = wells_client.sources.ingest_sources(["Source1, Source2"])

Ingest wells

import os
from datetime import date

from cognite.well_model import CogniteWellsClient
from cognite.well_model.models import DoubleWithUnit, WellDatum, Wellhead, WellIngestion

wells_client = CogniteWellsClient()
source_asset_id = 102948135620745 # Id of the well source asset in cdf

well_to_create = WellIngestion(
    asset_id=source_asset_id,
    well_name="well-name",
    description="Optional description for the well",
    country="Norway",
    quadrant="25",
    block="25/5",
    field="Example",
    operator="Operator1",
    spud_date=date(2021, 3, 17),
    water_depth=0.0,
    water_depth_unit="meters",
    wellhead=Wellhead(
        x = 21.0,
        y = 42.0,
        crs = "EPSG:4236" # Must be a EPSG code
    ),
    datum=WellDatum(
        elevation = DoubleWithUnit(value=1.0, unit="meters"),
        reference = "well-datum-reference",
        name = "well-datum-name"
    ),
    source="Source System Name"
)

wells_client.ingestion.ingest_wells([well_to_create]) # Can add multiple WellIngestion objects at once

Ingest wellbores with optional well and/or trajectory

import os

from cognite.well_model import CogniteWellsClient
from cognite.well_model.models import (
    DoubleArrayWithUnit,
    TrajectoryIngestion,
    WellIngestion,
    WellboreIngestion,
    ParentType,
    MeasurementIngestion,
    MeasurementField,
    MeasurementType
)

wells_client = CogniteWellsClient()
source_asset_id = 102948135620745 # Id of the wellbore source asset in cdf
source_trajectory_ext_id = "some sequence ext id" # Id of the source sequence in cdf

well_to_create = WellIngestion(...)
trajectory_to_create = TrajectoryIngestion(
    source_sequence_ext_id=source_trajectory_ext_id,
    measured_depths = DoubleArrayWithUnit(values=[0.0, 1.0, 2.0], unit="meters"),
    inclinations = DoubleArrayWithUnit(values=[10.0, 1.0, 22.0], unit="degrees"),
    azimuths = DoubleArrayWithUnit(values=[80.0, 81.0, 82.0], unit="degrees")
)
measurements_to_create = [
    MeasurementIngestion(
        sequence_external_id="measurement_sequence_1",
        measurement_fields=[
            MeasurementField(type_name=MeasurementType.gamma_ray),
            MeasurementField(type_name=MeasurementType.density),
        ],
    ),
    MeasurementIngestion(
        sequence_external_id="measurement_sequence_2",
        measurement_fields=[
            MeasurementField(type_name=MeasurementType.geomechanics),
            MeasurementField(type_name=MeasurementType.lot),
        ],
    )
]

wellbore_to_create = WellboreIngestion(
    asset_id = source_asset_id,
    wellbore_name = "wellbore name",
    parent_name = "name of parent well or wellbore",
    parent_type = ParentType.well, # or ParentType.wellbore
    well_name = "name of parent well", # top level well; required in addition to the parent name (even if parent is well)
    source = "Source System Name",
    trajectory_ingestion = trajectory_to_create,
    measurement_ingestions = measurements_to_create,
    well_ingestion = well_to_create # if not ingesting a well, then one must already exist
)

wells_client.ingestion.ingest_wellbores([wellbore_to_create]) # Can add multiple WellboreIngestion objects at once

Ingest casing data

import os

from cognite.well_model import CogniteWellsClient
from cognite.well_model.models import (
    CasingAssembly,
    DoubleWithUnit,
    CasingSchematic,
    SequenceSource,
)

client = CogniteWellsClient()

casing_assemblies = CasingAssembly(
    min_inside_diameter=DoubleWithUnit(value=0.1, unit="meter"),
    min_outside_diameter=DoubleWithUnit(value=0.2, unit="meter"),
    max_outside_diameter=DoubleWithUnit(value=0.3, unit="meter"),
    original_measured_depth_top=DoubleWithUnit(value=100, unit="meter"),
    original_measured_depth_base=DoubleWithUnit(value=101, unit="meter"),
)

casing = CasingSchematic(
    wellbore_asset_external_id="VOLVE:wb-1",
    casing_assemblies=casing_assemblies,
    source=SequenceSource(sequence_external_id="VOLVE:seq1", source_name="VOLVE"),
    phase="PLANNED",
)
client.casings.ingest([casing])

Ingest Measurement data

client = CogniteWellsClient()

seq = SequenceMeasurements(
    wellbore_asset_external_id="VOLVE:wb-1",
    source=SequenceSource(sequence_external_id="VOLVE:seq1", source_name="VOLVE"),
    measured_depth=MeasuredDepthColumn(column_external_id="DEPT", unit=DistanceUnit(unit="foot")),
    columns=[
        SequenceMeasurementColumn(measurement_type=MeasurementType.gamma_ray, column_external_id="GR",unit="gAPI"),
        SequenceMeasurementColumn(measurement_type=MeasurementType.resistivity_deep, column_external_id="RDEEP",unit="ohm.m")
    ])

client.measurements.ingest([seq])

Ingest NPT event data

from cognite.well_model import CogniteWellsClient

start_time = 10000000000
end_time = 20000000000

npt_events_to_ingest = [
    NptIngestionItems(
        wellboreName="Platform WB 12.25 in OH",
        wellName="34/10-8",
        npt_items=[
            NptIngestion(
                npt_code="EGSK",
                npt_code_detail="FSK",
                npt_code_level="1",
                source_event_external_id="m2rmB",
                source="EDM-Npt",
                description="REAM OUT TIGHT HOLE",
                start_time=start_time,
                end_time=end_time,
                location="North sea",
                measured_depth=DoubleWithUnit(value=100.0), unit="foot"),
                root_cause=source_event.metadata["root_cause"],
                duration=(end_time - start_time) / (60 * 60 * 1000.0), # in hours
                subtype="GSK"
            )
        ],
    )
]

npt_events = client.ingestion.ingest_npt_events(body)

Ingest NDS event data

from cognite.well_model import CogniteWellsClient

start_time = 10000000000
end_time = 20000000000

nds_events_to_ingest = [
    NdsIngestionItems(
        wellbore_name="Platform WB 12.25 in OH",
        well_name="34/10-8",
        nds_items=[
            NdsIngestion(
                source_event_external_id="nds-source-event",
                source="EDM-Nds",
                hole_start=DoubleWithUnit(value=12358.0, unit="foot"),
                hole_end=DoubleWithUnit(value=15477.0, unit="foot"),
                severity=1,
                probability=1,
                description="npt description",
                hole_diameter=DoubleWithUnit(value=1.25, unit="inches"),
                risk_type="Mechanical",
                subtype="Excessive Drag",
            )
        ],
    )
]

nds_events = client.ingestion.ingest_nds_events(body)

Project details


Release history Release notifications | RSS feed

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

cognite-wells-sdk-0.6.0b36.tar.gz (36.2 kB view details)

Uploaded Source

Built Distribution

cognite_wells_sdk-0.6.0b36-py3-none-any.whl (49.2 kB view details)

Uploaded Python 3

File details

Details for the file cognite-wells-sdk-0.6.0b36.tar.gz.

File metadata

  • Download URL: cognite-wells-sdk-0.6.0b36.tar.gz
  • Upload date:
  • Size: 36.2 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/3.3.0 pkginfo/1.7.1 requests/2.26.0 setuptools/40.8.0 requests-toolbelt/0.9.1 tqdm/4.62.3 CPython/3.7.2

File hashes

Hashes for cognite-wells-sdk-0.6.0b36.tar.gz
Algorithm Hash digest
SHA256 26103e0f1e0902843d3f8dc2dc5818448f7c70aa1e6a6719d52fe310dfb75876
MD5 0d04ce2abf43b4818de47b7f513f5233
BLAKE2b-256 fe09afcfe58551d4129351767ae359e9cea6f23fac0a137a183a801c0722a958

See more details on using hashes here.

File details

Details for the file cognite_wells_sdk-0.6.0b36-py3-none-any.whl.

File metadata

  • Download URL: cognite_wells_sdk-0.6.0b36-py3-none-any.whl
  • Upload date:
  • Size: 49.2 kB
  • Tags: Python 3
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/3.3.0 pkginfo/1.7.1 requests/2.26.0 setuptools/40.8.0 requests-toolbelt/0.9.1 tqdm/4.62.3 CPython/3.7.2

File hashes

Hashes for cognite_wells_sdk-0.6.0b36-py3-none-any.whl
Algorithm Hash digest
SHA256 ffa5805f7494a319971bd876f08154856084ec8aae2bbfa21d94ad7454568362
MD5 fec35401c1f80fc4307c0c07bc6c7fad
BLAKE2b-256 6fe9750b20caba9d9bf26d270e0f5263b1fe593e35c5da61b26323afb127a3ad

See more details on using hashes here.

Supported by

AWS AWS Cloud computing and Security Sponsor Datadog Datadog Monitoring Fastly Fastly CDN Google Google Download Analytics Microsoft Microsoft PSF Sponsor Pingdom Pingdom Monitoring Sentry Sentry Error logging StatusPage StatusPage Status page