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347 lines (347 loc) · 13.1 KB
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{
"Analysis": [
{
"name": "Multi-Parameter Analysis",
"path": "src/multi_param_analysis/launch_pyqt6.py",
"type": "python",
"desc": "Run multi-parameter sensitivity analysis with grid evaluation",
"tool_id": "multi_param_analysis",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Biomechanics": [
{
"name": "C3D Motion Capture Viewer",
"path": "src/c3d_viewer/launch_pyqt6.py",
"type": "python",
"desc": "View and analyze C3D motion capture files",
"tool_id": "c3d_viewer",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Lower Body Model",
"path": "src/lower_body_model/launch_pyqt6.py",
"type": "python",
"desc": "Simulate and inspect lower-body MuJoCo kinematics and controls",
"tool_id": "lower_body_model",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Rate of Closure Impact Explorer (PyQt6)",
"path": "src/rate_of_closure/launch_pyqt6.py",
"type": "python",
"desc": "Quantifies how a rotating clubhead's impact-point delivery differs from the tracked reference point (COM or geometric center): path deviation, attack-angle change, face rotation during contact, and the launch-monitor geometric-center question, with an animated 3D clubhead and rate sweeps.",
"tool_id": "rate_of_closure",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Rate of Closure Impact Explorer (Web)",
"path": "src/rate_of_closure/launch_web.py",
"type": "python",
"desc": "Quantifies how a rotating clubhead's impact-point delivery differs from the tracked reference point (COM or geometric center): path deviation, attack-angle change, face rotation during contact, and the launch-monitor geometric-center question, with an animated 3D clubhead and rate sweeps.",
"tool_id": "rate_of_closure",
"surface": "web",
"maturity": "stable"
}
],
"Data Processing": [
{
"name": "Data Explorer",
"path": "src/data_explorer/launch_pyqt6.py",
"type": "python",
"desc": "Interactive workbench for browsing simulation datasets",
"tool_id": "data_explorer",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Data Processor (PyQt6)",
"path": "src/data_processing/data_processor/launch_pyqt6.py",
"type": "python",
"desc": "Signal processing and time-series data analysis tool",
"tool_id": "data_processor",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Data Processor (Web)",
"path": "src/data_processing/data_processor/launch_web.py",
"type": "python",
"desc": "Signal processing and time-series data analysis tool",
"tool_id": "data_processor",
"surface": "web",
"maturity": "stable"
}
],
"Development Tools": [
{
"name": "Folder Packer Pro",
"path": "src/folder_packer_pro/launch_pyqt6.py",
"type": "python",
"desc": "Professional Project Archiving and Distribution Tool",
"tool_id": "folder_packer_pro",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Folder Tool (Utility)",
"path": "src/folder_tool/launch_pyqt6.py",
"type": "python",
"desc": "Directory Management Utility",
"tool_id": "folder_tool",
"surface": "pyqt6",
"maturity": "experimental"
},
{
"name": "PDF Renamer",
"path": "src/document_processing/pdf_renamer/launch_pyqt6.py",
"type": "python",
"desc": "Intelligent PDF File Renaming Tool",
"tool_id": "pdf_renamer",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Engineering Drafting": [
{
"name": "P&ID Generator",
"path": "src/pid_generator/launch_pyqt6.py",
"type": "python",
"desc": "Generate P&ID drawings from YAML specifications (DXF + SVG output)",
"tool_id": "pid_generator",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Industrial": [
{
"name": "P1AM HMI Control System (Web)",
"path": "src/p1am_control_system/launch_web.py",
"type": "python",
"desc": "HMI Control System for P1AM-100 PLC",
"tool_id": "p1am_control_system",
"surface": "web",
"maturity": "stable"
}
],
"Mathematics": [
{
"name": "ODE Solver (PyQt6)",
"path": "src/ode_solver/launch_pyqt6.py",
"type": "python",
"desc": "Solve systems of ordinary differential equations symbolically",
"tool_id": "ode_solver",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "ODE Solver (Web)",
"path": "src/ode_solver/launch_web.py",
"type": "python",
"desc": "Solve systems of ordinary differential equations symbolically",
"tool_id": "ode_solver",
"surface": "web",
"maturity": "stable"
},
{
"name": "Pendulum Simulator",
"path": "src/pendulum_simulator/launch_pyqt6.py",
"type": "python",
"desc": "Multi-link pendulum dynamics with parameter sweeps",
"tool_id": "pendulum_simulator",
"surface": "pyqt6",
"maturity": "experimental"
}
],
"Media Processing": [
{
"name": "Video Processor (Web)",
"path": "src/media_processing/video_processor/launch_web.py",
"type": "python",
"desc": "Video file format conversion, frame extraction, and media analysis",
"tool_id": "video_processor",
"surface": "web",
"maturity": "stable"
}
],
"Motion Capture": [
{
"name": "Video Analyzer",
"path": "src/video_analyzer/launch_pyqt6.py",
"type": "python",
"desc": "Video-based motion analysis with pose tracking",
"tool_id": "video_analyzer",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Optimization": [
{
"name": "Movement Optimizer",
"path": "src/movement_optimizer/launch_pyqt6.py",
"type": "python",
"desc": "Optimize barbell biomechanics trajectories with Lagrangian dynamics, swingset, and chain models",
"tool_id": "movement_optimizer",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Process Simulation": [
{
"name": "Financial Calculator (PyQt6)",
"path": "src/financial_calculator/launch_pyqt6.py",
"type": "python",
"desc": "Comprehensive financial modeling for plant operations",
"tool_id": "financial_calculator",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Financial Calculator (Web)",
"path": "src/financial_calculator/launch_web.py",
"type": "python",
"desc": "Comprehensive financial modeling for plant operations",
"tool_id": "financial_calculator",
"surface": "web",
"maturity": "stable"
},
{
"name": "Pressure Drop Calculator (PyQt6)",
"path": "src/pressure_drop_calculator/launch_pyqt6.py",
"type": "python",
"desc": "Pipe flow pressure drop analysis with multiple friction methods",
"tool_id": "pressure_drop_calculator",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Pressure Drop Calculator (Web)",
"path": "src/pressure_drop_calculator/launch_web.py",
"type": "python",
"desc": "Pipe flow pressure drop analysis with multiple friction methods",
"tool_id": "pressure_drop_calculator",
"surface": "web",
"maturity": "stable"
},
{
"name": "Vessel Drafter",
"path": "src/vessel_drafter/launch_pyqt6.py",
"type": "python",
"desc": "Refractory vessel design with STEP, STL, BREP, and GLTF export",
"tool_id": "vessel_drafter",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Robotics": [
{
"name": "Humanoid Character Builder",
"path": "src/humanoid_builder_gui/launch_pyqt6.py",
"type": "python",
"desc": "Build parametric humanoid characters with anthropometric calculations",
"tool_id": "humanoid_builder_gui",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Inertia Calculator",
"path": "src/inertia_calculator/launch_pyqt6.py",
"type": "python",
"desc": "Calculate and validate inertia tensors for rigid bodies",
"tool_id": "inertia_calculator",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Parametric URDF Builder",
"path": "src/urdf_builder_gui/launch_pyqt6.py",
"type": "python",
"desc": "Generate parametric URDF models for robotics applications",
"tool_id": "urdf_builder_gui",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Rotation Converter (PyQt6)",
"path": "src/rotation_converter/launch_pyqt6.py",
"type": "python",
"desc": "Comprehensive rotation and rigid-body transform converter with interactive 3D visualization. Supports quaternions, Euler angles, rotation matrices, axis-angle, SE(3), twists, screw axes, and frame-aware transforms.",
"tool_id": "rotation_converter",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Rotation Converter (Web)",
"path": "src/rotation_converter/launch_web.py",
"type": "python",
"desc": "Comprehensive rotation and rigid-body transform converter with interactive 3D visualization. Supports quaternions, Euler angles, rotation matrices, axis-angle, SE(3), twists, screw axes, and frame-aware transforms.",
"tool_id": "rotation_converter",
"surface": "web",
"maturity": "stable"
}
],
"Signal Processing": [
{
"name": "Function Generator (PyQt6)",
"path": "src/function_generator/launch_pyqt6.py",
"type": "python",
"desc": "Generate and visualize various waveforms (sine, square, triangle, etc.)",
"tool_id": "function_generator",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Function Generator (Web)",
"path": "src/function_generator/launch_web.py",
"type": "python",
"desc": "Generate and visualize various waveforms (sine, square, triangle, etc.)",
"tool_id": "function_generator",
"surface": "web",
"maturity": "stable"
},
{
"name": "Signal Processing Studio",
"path": "src/signal_processing_studio/launch_pyqt6.py",
"type": "python",
"desc": "Unified signal processing: waveform generation, analysis, filtering, curve fitting",
"tool_id": "signal_processing_studio",
"surface": "pyqt6",
"maturity": "stable"
}
],
"Thermodynamics": [
{
"name": "Steam Engine Calculator (PyQt6)",
"path": "src/steam_engine_calculator/launch_pyqt6.py",
"type": "python",
"desc": "Calculate thermodynamic properties of steam/water",
"tool_id": "steam_engine_calculator",
"surface": "pyqt6",
"maturity": "stable"
},
{
"name": "Steam Engine Calculator (Web)",
"path": "src/steam_engine_calculator/launch_web.py",
"type": "python",
"desc": "Calculate thermodynamic properties of steam/water",
"tool_id": "steam_engine_calculator",
"surface": "web",
"maturity": "stable"
}
],
"Utilities": [
{
"name": "Flow Rate Converter",
"path": "src/flow_rate_converter/launch_pyqt6.py",
"type": "python",
"desc": "Convert between mass, molar, and volumetric flow rate units",
"tool_id": "flow_rate_converter",
"surface": "pyqt6",
"maturity": "stable"
}
]
}