ross
ROSS is a library written in Python for rotordynamic analysis.
파일 탐색기
최종 버전 다운로드 (.zip)- publish-to-pypi.yml
- test.yml
- corporate_cla.md
- individual_cla.md
- docsearch-application.md
- analises.d2
- analises.svg
- bearing-element.d2
- bearing-element.svg
- coupling-element.d2
- coupling-element.svg
- disk-element.d2
- disk-element.svg
- gear-element.d2
- gear-element.svg
- material.d2
- material.svg
- multirotor.d2
- multirotor.svg
- point-mass.d2
- point-mass.svg
- resultados.d2
- resultados.svg
- ross-overview.d2
- ross-overview.svg
- rotor.d2
- rotor.svg
- seal-element.d2
- seal-element.svg
- shaft-element.d2
- shaft-element.svg
- IBMPlexMono-Medium-Latin1.woff2
- IBMPlexMono-Regular-Latin1.woff2
- IBMPlexMono-SemiBold-Latin1.woff2
- IBMPlexSans-Bold-Latin1.woff2
- IBMPlexSans-Italic-Latin1.woff2
- IBMPlexSans-Medium-Latin1.woff2
- IBMPlexSans-Regular-Latin1.woff2
- IBMPlexSans-SemiBold-Latin1.woff2
- LICENSE.txt
- api.svg
- contributor.svg
- getting_started.svg
- img_example_ff_theory2.png
- img_example_ff_theory3.png
- img_example_ff_theory4.png
- img_example_ff_theory5.png
- img_examplo_ff_eliptical.png
- img_examplo_ff_theory.png
- img_examplo_ff_wear.png
- img_tutorial4_bt_1000rpm.svg
- img_tutorial4_dte_1000rpm.svg
- img_tutorial4_gearmesh.png
- img_tutorial4_multi_all.png
- img_tutorial4_multi_compared.png
- img_tutorial4_multirotor.png
- img_tutorial4_node2.png
- img_tutorial4_node7.png
- img_tutorial_faults_mis_types.png
- user_guide.svg
- custom.css
- custom.js
- docsearch-ross.css
- plotly-theme-sync.js
- ross-logo-name.svg
- ross-logo.ico
- ross-logo.svg
- ross-tokens.css
- theme-ross.css
- base.rst
- class.rst
- layout.html
- architecture.md
- installation.md
- overview.ipynb
- api.rst
- release_notes.rst
- version-0.1.0.rst
- version-0.2.0.rst
- version-0.3.0.rst
- version-0.4.0.rst
- version-1.0.0.rst
- version-1.1.0.rst
- version-1.2.0.rst
- version-1.3.0.rst
- version-1.4.0.rst
- version-1.5.0.rst
- version-1.6.0.rst
- version-2.0.0.rst
- version-2.1.0.rst
- version-2.2.0.rst
- version-2.3.0.rst
- version-2.4.0.rst
- labyrinth_seal.ipynb
- theory_and_code.md
- bearing_seal_si.xls
- bearing_seal_us.xls
- example_1.ipynb
- example_13.ipynb
- example_14.ipynb
- example_16.ipynb
- example_17.ipynb
- example_18.ipynb
- example_19.ipynb
- example_2.ipynb
- example_20.ipynb
- example_21.ipynb
- example_22.ipynb
- example_23.ipynb
- example_24.ipynb
- example_25.ipynb
- example_26.ipynb
- example_27.ipynb
- example_28.ipynb
- example_29.ipynb
- example_3.ipynb
- example_30.ipynb
- example_31.ipynb
- example_32.ipynb
- example_4.ipynb
- example_5.ipynb
- example_6.ipynb
- example_8.ipynb
- rotor2.toml
- shaft_si.xls
- shaft_us.xls
- tutorial_bearings_part_1.ipynb
- tutorial_bearings_part_2.ipynb
- tutorial_bearings_part_3.ipynb
- tutorial_faults.ipynb
- tutorial_part_1_1.ipynb
- tutorial_part_1_2.ipynb
- tutorial_part_2_1.ipynb
- tutorial_part_2_2.ipynb
- tutorial_part_3.ipynb
- tutorial_part_4.ipynb
- tutorial_seal.ipynb
- user_guide.md
- .buildinfo
- .nojekyll
- citing.rst
- conf.py
- contributing.md
- index.md
- make.bat
- Makefile
- references.bib
- requirements.txt
- run_notebooks.py
- validation.ipynb
- campbell.png
- paper.bib
- paper.md
- rotor_plot.png
- bearings_advanced.md
- building_rotors.md
- campbell_diagram.md
- critical_speed.md
- faults.md
- frequency_response.md
- gotchas.md
- modal_analysis.md
- my_rotor.toml
- SKILL.md
- static_analysis.md
- time_response.md
- ucs_and_level1.md
- unbalance_response.md
- __init__.py
- install.py
- default.css
- plot_with_mode_shape.css
- __init__.py
- _numba_kernels.py
- banded.py
- coefficients.py
- constants.py
- deform.py
- driver.py
- hydrodynamics.py
- mesh.py
- pressure.py
- state.py
- thd.py
- thermal.py
- amb_controllers.py
- amb_models.py
- amb_time_response.py
- amb_utils.py
- __init__.py
- bearing_results.py
- fixed_geometry.py
- fluid_film_bearing.py
- lubricants.py
- plain_journal.py
- squeeze_film_damper.py
- thrust_pad.py
- tilting_pad.py
- run_benchmarks.py
- PAPADOPOULOS.csv
- __init__.py
- crack.py
- misalignment.py
- rubbing.py
- __init__.py
- gear_element.py
- mesh.py
- multi_rotor.py
- results.py
- utils.py
- __init__.py
- gas_model.py
- holepattern_seal.py
- hybrid_seal.py
- labyrinth_seal.py
- solver_tools.py
- __init__.py
- st_bearing_seal_element.py
- st_disk_element.py
- st_materials.py
- st_point_mass.py
- st_results.py
- st_results_elements.py
- st_rotor_assembly.py
- st_shaft_element.py
- fixed_adiabatic.json
- fixed_adiabatic_highpamb.json
- fixed_deform_pad.json
- fixed_deform_pad_thermal.json
- fixed_eccentricity.json
- fixed_full.json
- fixed_full_coarse.json
- fixed_full_highpamb.json
- fixed_full_sump.json
- fixed_full_tempj_insulated.json
- fixed_full_tempj_noflux.json
- fixed_isoviscous.json
- fixed_isoviscous_pdam.json
- fixed_isoviscous_starved.json
- fixed_pdam_bt5.json
- fixed_starved_m1.json
- fixed_starved_m2.json
- tilt_5pad_deform5.json
- tilt_5pad_full.json
- tilt_5pad_isoviscous.json
- tilt_5pad_leg.json
- tilt_5pad_pivot.json
- tilt_5pad_pivot_ball.json
- tilt_5pad_pivot_button.json
- tilt_5pad_pivot_hertz.json
- tilt_5pad_spray.json
- bearing_seal_si.xls
- bearing_seal_us.xls
- compressor_example.json
- compressor_example.toml
- rotor.toml
- seals_golden.json
- shaft_si.xls
- shaft_us.xls
- frf.toml
- test_6dof_model.py
- test_agent_skills.py
- test_bearing_seal_element.py
- test_concatenate_rotors.py
- test_crack.py
- test_disk_element.py
- test_examples.py
- test_fixed_geometry.py
- test_fluid_film_bearing.py
- test_fluid_film_docstrings.py
- test_fluid_film_literature.py
- test_fluid_film_solver.py
- test_gear_element.py
- test_holepattern.py
- test_hybrid_seal.py
- test_labyrinth.py
- test_materials.py
- test_misalignment.py
- test_multi_rotor.py
- test_plain_journal.py
- test_plot_results.py
- test_plotly_theme.py
- test_point_mass.py
- test_probe.py
- test_results.py
- test_rotor_assembly.py
- test_rotor_assembly_amb.py
- test_rubbing.py
- test_seals_golden.py
- test_shaft_element.py
- test_squeeze_film_damper.py
- test_stochastic_elements.py
- test_stochastic_materials.py
- test_stochastic_rotor_assembly.py
- test_thrust_pad.py
- test_tilting_pad.py
- test_transient_newmark.py
- test_units.py
- __init__.py
- available_materials.toml
- bearing_seal_element.py
- conftest.py
- coupling_element.py
- disk_element.py
- element.py
- harmonic_balance.py
- materials.py
- model_reduction.py
- new_units.txt
- plotly_theme.py
- point_mass.py
- probe.py
- results.py
- rotor_assembly.py
- shaft_element.py
- units.py
- utils.py
- c123701
- injection
- rotor_example
- template.html
- index.html
- generate_comparison_plots.py
- .gitattributes
- .gitignore
- .pre-commit-config.yaml
- .readthedocs.yaml
- AGENTS.md
- CITATION.cff
- CLAUDE.md
- CODE_OF_CONDUCT.md
- codecov.yml
- CONTRIBUTING.md
- CONTRIBUTOR_LICENSE_AGREEMENT.md
- LICENSE.md
- MANIFEST.in
- pyproject.toml
- pytest.ini
- README.md
- requirements.txt
- setup.cfg
# 설치 가이드
1. 코드 내려받기
git clone https://github.com/petrobras/ross
깃허브에서 프로젝트 코드 전체를 내 컴퓨터로 내려받습니다.
cd ross
방금 내려받은 프로젝트 폴더 안으로 이동합니다.
2. 공식 설치 스크립트
쉬움 추천사전 준비물
- Python 3 pip 명령어를 쓰려면 Python이 필요합니다.
pip install ross-rotordynamics
PyPI에 배포된 패키지를 바로 설치합니다. 소스 클론이 필요 없습니다.
설치 후 새 터미널을 열고, 프로그램의 버전 확인 명령(예: --version)으로 정상 설치됐는지 확인하세요.
이 레포의 README에 적힌 실제 명령어를 그대로 가져왔습니다.
// repository documentation
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