Skip to main content

CENOS Python package

This is a simple package that allows to interface with the cenos backend via a python API.

Quick-start

To use this package you will need:

  • Python (> 3.10)
  • CENOS simulation software installed.

Once you have those, you can install this package:

pip install cenos-py

How it works

While you use CENOS normally using the GUI, most of your actions are written out to a python_trace_script.py file inside of the case itself (File -> Show case in file explorer). It will look something like this:

import cenos_py

case = cenos_py.CenosCaseIH()

case = CenosCase("INDUCTION")
case.set_pre_processor('geomWizard', load_recent=True)
case.update_template_shape_type(1, 'workpieceTube')
case.update_template_property(1, 'diameter3', 32)
case.update_template_property(1, 'diameter4', 10)
case.update_tab_property('simulation', 'tend', 3)
case.update_tab_property('simulation', 'isAdaptive', True)
case.assign_group_material('workpiece', 'alloy_34Cr4')
case.update_physics_property('physicsThermal', 'boundary', 'workpiece_surface', 'hr', 0.9)
case.entered_meshing_window()
case.set_meshing_global_density('rough')
case.set_meshing_grading_surface(0.29)
case.set_meshing_domain_element_size('workpiece', 2)
case.set_meshing_domain_skin_layer('workpiece', True, 4.6, 10, 1.4)
case.generate_mesh()
case.calculate()

This trace file is also the best reference for the API: if you're not sure which function to call to change something, make that change once in the GUI and check what got added to the trace file.

How to use it

[!IMPORTANT] Before running a trace script, move it out of the case folder. The case keeps writing to that file while it works, so running the script from inside it can cause the script to be modified while it's still running.

Let's look at two ways to run a case with different parameters.

Option 1: Build the whole case from scratch

The most obvious approach is to take the trace file and turn the parameter you care about into a variable, then repeat the whole thing in a loop:

import cenos_py

case = cenos_py.CenosCaseIH()

for i in [20, 30, 40, 50]:
    case.set_pre_processor('geomWizard', load_recent=True)
    case.update_template_shape_type(1, 'workpieceTube')
    case.update_template_property(1, 'diameter3', i)  # <-- parameter goes here
    case.update_template_property(1, 'diameter4', 10)
    case.update_tab_property('simulation', 'tend', 3)
    case.update_tab_property('simulation', 'isAdaptive', True)
    case.assign_group_material('workpiece', 'alloy_34Cr4')
    case.update_physics_property('physicsThermal', 'boundary', 'workpiece_surface', 'hr', 0.9)
    case.entered_meshing_window()
    case.set_meshing_global_density('rough')
    case.set_meshing_grading_surface(0.29)
    case.set_meshing_domain_element_size('workpiece', 2)
    case.set_meshing_domain_skin_layer('workpiece', True, 4.6, 10, 1.4)
    case.generate_mesh()
    case.calculate()

This works, but for a large case the script gets long, and it's easy to end up repeating steps that didn't actually need to change (like generating the mesh multiple times).

Option 2 (recommended): Open an existing case and only change what you need

Instead, you can open a case you've already built in the GUI, and only touch the properties you actually want to vary:

import cenos_py

case = cenos_py.CenosCaseIH()

your_case_path = r"C:\path\to\your_case"

for i in [20, 30, 40, 50]:
    case.open(your_case_path)

    # Create a copy first, so we don't overwrite the original case
    case.save_case_as(f"C:/path/to/your_case_{i}")

    case.update_template_property(1, "workpiece_height", i)
    case.calculate()

[!NOTE]
case.save_case_as(...) is called right after opening the case, before anything is changed. This saves a copy under a new name, so the base case stays untouched and each loop iteration produces its own separate case file.

This is the recommended approach: shorter scripts, and no wasted steps.

It also makes the base case easy to keep up to date. If you want to make a static, non-parametric change — a different material, a physics property, swapped-out geometry — just open your_case_path in the GUI, make the change, save it, and re-run your script. There's no need to touch the Python at all; every run will pick up the new base case automatically.

Result analysis

Actions performed in the CENOS GUI result viewer do not get written to the python trace script. Instead you can access all the results via case.results., for example:

case = cenos_py.CenosCaseIH()

case.open(r"C:\path\to\your_case")

case.results.get_active_power()
case.results.get_average_temperature("Solid1")

Each of the functions will have docstrings and argument and return type annotations, meaning if you start typing case.results.get_dielec then you should see the "parameter hints":

def get_dielectric_losses(
    entity: str = "Total",
    port: int = 1
) -> list[float]
Return the dielectric losses in the entity, in watts (W).

Download files

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

Source Distribution

cenos_py-0.2.10.tar.gz (18.0 kB view details)

Uploaded Source

Built Distribution

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

cenos_py-0.2.10-py3-none-any.whl (22.2 kB view details)

Uploaded Python 3

File details

Details for the file cenos_py-0.2.10.tar.gz.

File metadata

  • Download URL: cenos_py-0.2.10.tar.gz
  • Upload date:
  • Size: 18.0 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/6.1.0 CPython/3.13.14

File hashes

Hashes for cenos_py-0.2.10.tar.gz
Algorithm Hash digest
SHA256 cc77afe3a9ca9e66ef81cdc8f0082b056a25867a52ad22ca3a0a5c8b4bb857f2
MD5 bfc6296e8dc5ca508495862a91cbe959
BLAKE2b-256 946730de434fe9e64cd4092c3051c4839a0637ab6616da684403336d90100afe

See more details on using hashes here.

Provenance

The following attestation bundles were made for cenos_py-0.2.10.tar.gz:

Publisher: release.yaml on CENOS-Platform/cenos-py

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

File details

Details for the file cenos_py-0.2.10-py3-none-any.whl.

File metadata

  • Download URL: cenos_py-0.2.10-py3-none-any.whl
  • Upload date:
  • Size: 22.2 kB
  • Tags: Python 3
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/6.1.0 CPython/3.13.14

File hashes

Hashes for cenos_py-0.2.10-py3-none-any.whl
Algorithm Hash digest
SHA256 19333b43cd98d998a3541715a03823bc11e0424f17acdb22c328decbdb672646
MD5 d8ca86dc6feb153acefcc55db0e3757b
BLAKE2b-256 638b853f2331ada7d5f8bb01a5e892940b97e3e9e6ee348f13185ff209ef803b

See more details on using hashes here.

Provenance

The following attestation bundles were made for cenos_py-0.2.10-py3-none-any.whl:

Publisher: release.yaml on CENOS-Platform/cenos-py

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

Release history Release notifications | RSS feed

This release

0.2.10 This release

2 files

0.2.9

2 files

0.2.8

2 files

0.2.7

2 files

0.2.6

2 files

0.2.5

2 files

0.2.4

2 files

0.2.3

2 files

0.2.2

2 files

0.2.1

2 files

0.2.0

2 files

0.1.1

2 files

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page