Skip to main content

Subsurface data ingestion + structure layer: surfaces, wells, points, polygons — loading, interpolation, statistics.

Project description

petekIO

The subsurface data layer — a Rust library (with optional PyO3 bindings) that turns raw subsurface files into clean, validated, interpreted data: surfaces, wells (trajectories / tops / logs), points, and polygons, with loading, mnemonic and unit normalisation, validation, petrophysical interpretation, interpolation, and statistics.

The pipeline is the point:

ingest → normalize → validate → interpret → characterise

Documentation

The canonical docs for the whole petek family live on the petekSuite site — petekIO's pages there:

Why build on it

Subsurface data is the unglamorous, error-prone groundwork under every reservoir application: vendor LAS mnemonics, mismatched units, out-of-range samples, cutoffs, gridding that has to honour its control points, uncertainty. petekIO does that work once and behind a stable API, so the application on top stays thin and stays in its own domain:

  • The whole path, not just parsing. Files in; normalized, validated, interpreted domain objects out — no re-implementing LAS aliasing, unit harmonisation, petrophysical cutoffs (net pay included), or surface gridding/resampling further up the stack.
  • Values know what they are. Results come back in canonical units, each carrying an uncertainty distribution and a provenance flag (measured / interpolated / defaulted) — so downstream code propagates uncertainty rather than re-deriving it.
  • A substrate, not a grab-bag. Load a project once into a GeoData and operations broadcast across the whole collection. Immutable, strictly layered, fluent.
  • Rust core, thin Python. Fast and embeddable, with PyO3 bindings that mirror the Rust API.

Install

Rust:

[dependencies]
petekio = "0.3"

Python (PyO3 wheel):

pip install petekio

Quickstart (Python)

Import raw source data once, then read interpreted results — no parsing or interpolation in your own code. Save/load is reserved for compact .pproj projects:

import petekio

project = petekio.Project.import_data(
    "Data",
    settings=petekio.ImportSettings(
        crs="EPSG:32631",
        aliases={"por": ["PHIE", "PORO"]},
    ),
)
project.inventory()
geo = project.geodata
project.rename_surface("Top reservoir", "structure/top agat")
project.surfaces.structure.top_agat
project.save("field.pproj")
project = petekio.Project.load("field.pproj")

# Or build the same substrate manually:
geo = petekio.GeoData(unit="m")

# A surface (IRAP classic) — sample, stats, volumetrics, resample.
top = geo.load_surface("top_res", "surfaces/top_res.irap")
top.stats.mean
top.area_below(2400)

# A multi-bore well: a Petrel export tree (one bore per .wellpath) + logs.
# head/kb are optional — the .wellpath header fills them.
geo.load_well("15/9-A1", files="wells/15_9-A1/")
geo.load_well_tops("WellTops.tops")        # Horizon picks → matching well + bore

w = geo.well("15/9-A1")
w.bores()                                  # e.g. ["", "A", "B", "ST2"]
bore = w.sidetrack("A")
bore.log_stats("PHIE").mean                # whole-bore curve stats

# Per-zone stats, returned in lithostratigraphic order:
bore.zone_stats("PHIE")                    # [(zone, Stats), ...]
bore.zone_stats("PHIE", "Top A").mean      # one zone directly (None if absent)
geo.strat_order                            # the field's lithostratigraphic column

# A tidy per-zone×bore table (pandas; pip install petekio[pandas]):
w.zone_table("PHIE", stats=("mean", "p50"))  # DataFrame, zone in lithostrat order

Lithostratigraphic ordering

Zones come back in true stratigraphic order, not just measured-depth order. load_well_tops reads every well in the tops file and merges their relative orderings into one field-wide column — so a marker that pinches out (zero thickness) in one well is ordered correctly by a well that develops it. Geometry is untouched; only the order zones are presented in follows the column.

Capabilities

Domain What you get
Surfaces IRAP-classic load, sample/resample (bilinear), edge polygons, arithmetic, stats, area_below volumetrics, gridding from scattered points (minimum-curvature)
Wells Positioned .wellpath trajectories (MD preserved; minimum-curvature interpolation), multi-bore (sidetracks), imported logs stored as MD/value pairs with mnemonic aliasing, Petrel well-tops, per-zone stats, field-wide lithostratigraphic ordering
Points / polygons IRAP / GeoJSON / CSV load, strict regular-grid geometry inference, clip, point-to-surface gridding
Project GeoData substrate — import raw data once, broadcast across the collection; views are read-only filtered subsets; compact .pproj load/save

Built in gates

petekIO grows in gated phases against a locked contract: every public signature is specified in API.md (a change needs sign-off), and the design + build roadmap live in SPEC.md.

Status: early development. The public API is locked and the core data path (ingest → normalize → validate → interpret → characterise) is in place; surfaces, multi-bore wells (trajectories / tops / logs), per-zone stats, and lithostratigraphic ordering are landed. Breadth is still filling in — more ingest formats, fluid contacts, richer interpretation.

Documentation

  • API.md — the locked public API contract (Rust, mirrored in Python).
  • SPEC.md — design constitution + architecture.
  • Guides + API reference: the docs/ site (MkDocs Material; published on Read the Docs).

Design at a glance

  • Strictly layered, one-way deps: foundation → algorithms → io → core → analysis → manager → py.
  • A manager substrate (GeoData): load once, operations broadcast across the collection — no per-item loops.
  • Domain objects carry their operations (arithmetic, filters, interpolation, stats) and expose history() for generated objects — fluent and chainable; immutable (ops return new objects).
  • Algorithms are isolated, QC-able kernels grouped by discipline (e.g. the minimum-curvature survey, the cross-well stratigraphic merge) — pure and type-light.
  • Rust core + thin PyO3; the Python API mirrors the Rust API.

Built on

  • petekTools — standalone numerics / geostatistics kernels (gridding, interpolation) that petekIO builds on.

License

Apache-2.0 — see LICENSE and NOTICE.

Project details


Download files

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

Source Distribution

petekio-0.3.11.tar.gz (312.9 kB view details)

Uploaded Source

Built Distributions

If you're not sure about the file name format, learn more about wheel file names.

petekio-0.3.11-cp310-abi3-win_amd64.whl (2.3 MB view details)

Uploaded CPython 3.10+Windows x86-64

petekio-0.3.11-cp310-abi3-manylinux_2_17_x86_64.manylinux2014_x86_64.whl (2.7 MB view details)

Uploaded CPython 3.10+manylinux: glibc 2.17+ x86-64

petekio-0.3.11-cp310-abi3-manylinux_2_17_aarch64.manylinux2014_aarch64.whl (2.7 MB view details)

Uploaded CPython 3.10+manylinux: glibc 2.17+ ARM64

petekio-0.3.11-cp310-abi3-macosx_10_12_x86_64.macosx_11_0_arm64.macosx_10_12_universal2.whl (4.9 MB view details)

Uploaded CPython 3.10+macOS 10.12+ universal2 (ARM64, x86-64)macOS 10.12+ x86-64macOS 11.0+ ARM64

File details

Details for the file petekio-0.3.11.tar.gz.

File metadata

  • Download URL: petekio-0.3.11.tar.gz
  • Upload date:
  • Size: 312.9 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/6.1.0 CPython/3.13.12

File hashes

Hashes for petekio-0.3.11.tar.gz
Algorithm Hash digest
SHA256 fddad114d738afc62680640e7ddffbaf5f63f08dc01032d1b0067a2c03eed04b
MD5 cec5f329a25f494ca794975c1cedb620
BLAKE2b-256 8abfb0053258dd84ea9355cd8465c5dedbc879c6876e19b960df505a6d9da392

See more details on using hashes here.

Provenance

The following attestation bundles were made for petekio-0.3.11.tar.gz:

Publisher: release.yml on kkollsga/petekio

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file petekio-0.3.11-cp310-abi3-win_amd64.whl.

File metadata

  • Download URL: petekio-0.3.11-cp310-abi3-win_amd64.whl
  • Upload date:
  • Size: 2.3 MB
  • Tags: CPython 3.10+, Windows x86-64
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/6.1.0 CPython/3.13.12

File hashes

Hashes for petekio-0.3.11-cp310-abi3-win_amd64.whl
Algorithm Hash digest
SHA256 61f75ccce5d77a5d9ca13a0823457bb9de9dd194bb2e94613901ce5b54cf8ecf
MD5 e260b4b4402a3e202e71f89589403c13
BLAKE2b-256 3b7ca9655a99ef62ed192af734fabcd5eb9e1d9692b2b036f3653b2518015479

See more details on using hashes here.

Provenance

The following attestation bundles were made for petekio-0.3.11-cp310-abi3-win_amd64.whl:

Publisher: release.yml on kkollsga/petekio

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file petekio-0.3.11-cp310-abi3-manylinux_2_17_x86_64.manylinux2014_x86_64.whl.

File metadata

File hashes

Hashes for petekio-0.3.11-cp310-abi3-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Algorithm Hash digest
SHA256 f867f2b3bf34db485c7b425cb22aebe074ecfa80f09ca4ec449587ca9553e795
MD5 7f7ac686e98fc1ec97c816760be96c49
BLAKE2b-256 bb98330f4743525dd1977049b17e3d1b0a29e7aac2bd28f3a8a97a7aee037831

See more details on using hashes here.

Provenance

The following attestation bundles were made for petekio-0.3.11-cp310-abi3-manylinux_2_17_x86_64.manylinux2014_x86_64.whl:

Publisher: release.yml on kkollsga/petekio

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file petekio-0.3.11-cp310-abi3-manylinux_2_17_aarch64.manylinux2014_aarch64.whl.

File metadata

File hashes

Hashes for petekio-0.3.11-cp310-abi3-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Algorithm Hash digest
SHA256 272562b1470cd64959a1d8350c2244a09442ea73ed11081118c9aca5d5552979
MD5 3b0e86fc1618239211d76434760ac33c
BLAKE2b-256 74ebd109903f464aee0db19d2a6fd26169638f634d06e250d0f3e42a40c54937

See more details on using hashes here.

Provenance

The following attestation bundles were made for petekio-0.3.11-cp310-abi3-manylinux_2_17_aarch64.manylinux2014_aarch64.whl:

Publisher: release.yml on kkollsga/petekio

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file petekio-0.3.11-cp310-abi3-macosx_10_12_x86_64.macosx_11_0_arm64.macosx_10_12_universal2.whl.

File metadata

File hashes

Hashes for petekio-0.3.11-cp310-abi3-macosx_10_12_x86_64.macosx_11_0_arm64.macosx_10_12_universal2.whl
Algorithm Hash digest
SHA256 37beb873b401d08ac93e1fbbf06bbff51034f1b886b5a952469b31eefb3d7c34
MD5 c90cc6bc959d119be7f17b2de90871e5
BLAKE2b-256 34b726f79c7ff1427d63a3f7269058addf95e44cbb0d906c2ed5453a09638580

See more details on using hashes here.

Provenance

The following attestation bundles were made for petekio-0.3.11-cp310-abi3-macosx_10_12_x86_64.macosx_11_0_arm64.macosx_10_12_universal2.whl:

Publisher: release.yml on kkollsga/petekio

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

Supported by

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