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Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

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18 stars

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3 watching

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, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Add copy buttons to all
 blocks\n(function() {\n function addCopyButtons() {\n document.querySelectorAll('pre code').forEach(function(codeBlock) {\n if (codeBlock.parentElement.hasAttribute('data-copy-added')) return;\n codeBlock.parentElement.setAttribute('data-copy-added', 'true');\n \n var btn = document.createElement('button');\n btn.textContent = 'Copy';\n btn.style.cssText = 'position:absolute;top:4px;right:4px;padding:2px 8px;font-size:11px;background:#4ecdc4;border:none;border-radius:4px;color:#1a1a2e;cursor:pointer;opacity:0.7;transition:opacity 0.2s;';\n btn.onmouseover = function() { this.style.opacity = '1'; };\n btn.onmouseout = function() { this.style.opacity = '0.7'; };\n btn.onclick = function() {\n navigator.clipboard.writeText(codeBlock.textContent).then(function() {\n btn.textContent = 'Copied!';\n setTimeout(function() { btn.textContent = 'Copy'; }, 1500);\n });\n };\n codeBlock.parentElement.style.position = 'relative';\n codeBlock.parentElement.appendChild(btn);\n });\n }\n \n addCopyButtons();\n \n // Re-run on dynamic content\n var observer = new MutationObserver(addCopyButtons);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Add Copy Buttons to Code Blocks");
}
} catch(__e) { console.warn('[Userscript:Add Copy Buttons to Code Blocks]', __e); }
})();
(function(){
try {
var __m = "github.com";
var __re = new RegExp('^' + "github\\.com" + '
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Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

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3 watching

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, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Force GitHub README to respect dark mode\n(function() {\n var style = document.createElement('style');\n style.textContent = '\n .markdown-body {\n color-scheme: dark light;\n }\n .markdown-body pre { background: #161b22 !important; }\n .markdown-body code { background: rgba(110, 118, 129, 0.4) !important; }\n .markdown-body table th, .markdown-body table td { border-color: #30363d !important; }\n .markdown-body img { background: #0d1117; }\n .markdown-body blockquote { border-left-color: #8b949e; }\n .markdown-body hr { border-color: #30363d; }\n ';\n document.head.appendChild(style);\n})();", "GitHub Dark Mode README Fix"); } } catch(__e) { console.warn('[Userscript:GitHub Dark Mode README Fix]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
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Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

Watchers

3 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Highlight search terms from Google/DuckDuckGo/Bing referrer\n(function() {\n var ref = document.referrer;\n var terms = [];\n \n if (ref.includes('google.com') || ref.includes('duckduckgo.com') || ref.includes('bing.com')) {\n var url = new URL(ref);\n var q = url.searchParams.get('q') || url.searchParams.get('p');\n if (q) {\n terms = q.split(/\\s+/).filter(function(t) { return t.length > 2; });\n }\n }\n \n if (terms.length === 0) return;\n \n var style = document.createElement('style');\n style.textContent = '.userscript-highlight { background: #fbbf24; color: #1a1a2e; padding: 1px 3px; border-radius: 2px; }';\n document.head.appendChild(style);\n \n function highlight(node) {\n if (node.nodeType === 3) { // text node\n var text = node.textContent;\n var found = false;\n terms.forEach(function(term) {\n var regex = new RegExp('(' + term.replace(/[.*+?^${}()|[\\]\\\\]/g, '\\\\') + ')', 'gi');\n if (regex.test(text)) {\n found = true;\n var frag = document.createDocumentFragment();\n var parts = text.split(regex);\n parts.forEach(function(part, i) {\n if (i % 2 === 0) {\n frag.appendChild(document.createTextNode(part));\n } else {\n var span = document.createElement('span');\n span.className = 'userscript-highlight';\n span.textContent = part;\n frag.appendChild(span);\n }\n });\n node.parentNode.replaceChild(frag, node);\n }\n });\n } else if (node.nodeType === 1 && node.childNodes) { // element\n var skipTags = ['SCRIPT', 'STYLE', 'NOSCRIPT', 'TEXTAREA', 'INPUT', 'SELECT'];\n if (!skipTags.includes(node.tagName)) {\n Array.from(node.childNodes).forEach(highlight);\n }\n }\n }\n \n highlight(document.body);\n \n // Re-highlight on dynamic content\n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1 || node.nodeType === 3) highlight(node);\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Highlight Search Terms"); } } catch(__e) { console.warn('[Userscript:Highlight Search Terms]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

Watchers

3 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Strip utm_, fbclid, gclid, etc. from all links on page\n(function() {\n var trackingParams = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content',\n 'fbclid', 'gclid', 'dclid', 'msclkid', 'yclid',\n 'ref', 'ref_src', 'source', 'medium', 'campaign'];\n \n function cleanUrl(url) {\n try {\n var u = new URL(url, window.location.origin);\n var changed = false;\n trackingParams.forEach(function(p) {\n if (u.searchParams.has(p)) {\n u.searchParams.delete(p);\n changed = true;\n }\n });\n return changed ? u.toString() : url;\n } catch (e) {\n return url;\n }\n }\n \n function cleanLinks() {\n document.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n \n cleanLinks();\n \n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1) {\n if (node.tagName === 'A') cleanLinks();\n node.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Remove Tracking Parameters from Links"); } } catch(__e) { console.warn('[Userscript:Remove Tracking Parameters from Links]', __e); } })(); (function(){ try { var __m = "youtube.com"; var __re = new RegExp('^' + "youtube\\.com" + '
Skip to content

Repository files navigation

Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

Watchers

3 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Auto-enable theater mode on YouTube\n(function() {\n function tryTheater() {\n var btn = document.querySelector('button[aria-label=\"Theater mode\"], ytd-player #player button[title=\"Theater mode\"]');\n if (btn && !btn.classList.contains('activated')) {\n btn.click();\n }\n }\n \n // Try immediately\n tryTheater();\n \n // Try after navigation (SPA)\n var lastUrl = location.href;\n setInterval(function() {\n if (location.href !== lastUrl) {\n lastUrl = location.href;\n setTimeout(tryTheater, 500);\n }\n }, 1000);\n \n // Also try on player load\n var observer = new MutationObserver(tryTheater);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "YouTube Theater Mode Default"); } } catch(__e) { console.warn('[Userscript:YouTube Theater Mode Default]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

Watchers

3 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Remove or un-stick sticky/fixed headers that block content\n(function() {\n function unstick() {\n document.querySelectorAll('header, nav, [role=\"banner\"], .header, .navbar, .sticky, .fixed-top, [style*=\"position: fixed\"], [style*=\"position:sticky\"]').forEach(function(el) {\n if (el.style.position === 'fixed' || el.style.position === 'sticky' || \n getComputedStyle(el).position === 'fixed' || getComputedStyle(el).position === 'sticky') {\n el.style.position = 'static';\n el.style.top = 'auto';\n el.style.zIndex = 'auto';\n }\n });\n }\n \n unstick();\n \n var observer = new MutationObserver(unstick);\n observer.observe(document.body, { childList: true, subtree: true, attributes: true, attributeFilter: ['style', 'class'] });\n})();", "Kill Sticky Headers"); } } catch(__e) { console.warn('[Userscript:Kill Sticky Headers]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

Watchers

3 watching

Forks

Releases

Packages

Used by

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Universal Dark Mode - works on any site\n(function() {\n var enabled = true;\n \n function applyDarkMode() {\n if (!enabled) return;\n \n // Create style element if it doesn't exist\n var style = document.getElementById('universal-dark-mode-style');\n if (!style) {\n style = document.createElement('style');\n style.id = 'universal-dark-mode-style';\n document.head.appendChild(style);\n }\n \n // Dark mode CSS - inverts colors but preserves images/video\n style.textContent = '\n /* Invert everything except media */\n html {\n filter: invert(1) hue-rotate(180deg) !important;\n background: #1a1a2e !important;\n }\n \n /* Restore images, videos, iframes, canvas */\n img, video, iframe, canvas, svg, picture, [style*=\"background-image\"] {\n filter: invert(1) hue-rotate(180deg) !important;\n }\n \n /* Preserve specific elements that should not be inverted */\n .no-dark-mode, .no-dark-mode *,\n [data-theme=\"light\"], [data-theme=\"light\"],\n .ace_editor, .ace_editor *,\n .CodeMirror, .CodeMirror *,\n .monaco-editor, .monaco-editor *,\n .markdown-body pre, .markdown-body pre *,\n .highlight, .highlight *,\n pre code, pre code * {\n filter: none !important;\n }\n \n /* Fix common UI elements */\n .modal, .popup, .dropdown-menu, .tooltip, .popover {\n filter: invert(1) hue-rotate(180deg) !important;\n background: #2d2d44 !important;\n border-color: #444 !important;\n }\n \n /* Scrollbars */\n ::-webkit-scrollbar { background: #1a1a2e !important; }\n ::-webkit-scrollbar-thumb { background: #444 !important; }\n ::-webkit-scrollbar-thumb:hover { background: #555 !important; }\n \n /* Selection */\n ::selection { background: #4ecdc4 !important; color: #1a1a2e !important; }\n ::-moz-selection { background: #4ecdc4 !important; color: #1a1a2e !important; }\n ';\n }\n \n function removeDarkMode() {\n var style = document.getElementById('universal-dark-mode-style');\n if (style) style.remove();\n }\n \n // Toggle with Alt+Shift+D\n document.addEventListener('keydown', function(e) {\n if (e.altKey && e.shiftKey && e.key === 'D') {\n e.preventDefault();\n enabled = !enabled;\n if (enabled) {\n applyDarkMode();\n console.log('[Universal Dark Mode] Enabled');\n } else {\n removeDarkMode();\n console.log('[Universal Dark Mode] Disabled');\n }\n }\n });\n \n // Apply on load\n applyDarkMode();\n \n // Re-apply on dynamic content\n var observer = new MutationObserver(function(mutations) {\n if (enabled && !document.getElementById('universal-dark-mode-style')) {\n applyDarkMode();\n }\n });\n observer.observe(document.head, { childList: true });\n \n console.log('[Universal Dark Mode] Loaded - Press Alt+Shift+D to toggle');\n})();", "Universal Dark Mode"); } } catch(__e) { console.warn('[Userscript:Universal Dark Mode]', __e); } })(); })();
Skip to content

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Introduction

Py4Incompact3D is a library for postprocessig data produced by Xcompact3D simulations. The aim of this project is to facillitate automated postprocessing of Xcompact3D simulations by providing, at first:

  • Mesh class: this stores the domain data for the simulation
  • Case class: this stores the information of the case: boundary conditions, fields etc.

With these building blocks, complex postprocessing tools may be built - for example, derivative calculateors to compute the vorticity and Q-criterion given the velocity field.

Installation

  • Clone the git repository
  • Move into the location you cloned the code to and pip install ., you may need to use pip install --user . if you do not have write permissions in the default pip install location.
  • Test module can be imported by python interpreter: import py4incompact3d
  • [Optional] Install h5py using pip3 install h5py to work with HDF5 files generated by Xcompact3d - note this is only intended as a temporary solution until a proper integration with ADIOS2 is implemented. Upon import py4incompact3d will report the status of HDF5 functionality, this can be toggled on/off by running py4incompact3d.toggle_hdf5() which will repeat the status report to confirm if HDF5 has been enabled.

Documentation

Documentation of functions can be found under doc/build/latex/.

To regenerate documentation, from the project root type make -C doc/ latexpdf (requires sphinx with the sphinx-fortran extension installation instructions).

Contributing

It is hoped that users of Xcompact3D will find this library useful and contribute to its development, for instance by adding additional functionality.

About

Python library for postprocessing data produced using Incompact3d

Resources

Stars

18 stars

Watchers

3 watching

Forks

Releases

Packages

Used by

Contributors

Languages