Signet Funding The Future Of IoT Enabled Smart Homes Pitch Deck – (55 MB)

Signet Funding The Future Of IoT Enabled Smart Homes Pitch Deck​
PPTX | FIG | DECK | Size: 55 Mb​

Elevate your presentations with Signet, a cutting-edge Figma-powered pitch deck designed for smart home IoT enthusiast. Featuring a sleek, minimalist aesthetic, this dynamic template is fully customizable with your brand colors, ensuring a professional and visually striking pitch every time.

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️ Signet Funding The Future Of IoT Enabled Smart Homes Pitch Deck – (55 MB)

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Siemens Star CCM+ APT Series 2410 Suite (x64) – (462 MB)

Siemens Star CCM+ APT Series 2410 Suite (x64)​

Overview of Siemens Star CCM+ APT Series
Based on best practices, it automates the preparation, meshing, running, and post-processing of vehicular wind tunnel simulations. It takes CAD files and Excel spreadsheet data as inputs and uses them to determine the geometry and settings for Simcenter STAR-CCM+. The output comprises a PowerPoint file, images, and .csv files.
It provides a dedicated user interface to guide you through simulations of ship hull motion in calm water. Hull Performance Workflow is designed for analyses of displacement hulls with no appendages.

Features of Siemens Star CCM+ APT Series

βœ”Automotive Aerodynamics Workflow
βœ”Hull Performance Workflow
βœ”Cycle Average Workflow
βœ”Mixing Vessel Workflow

Technical Details and System Requirements

βœ”Supported OS: Windows 11, Windows 10, Windows 8.1, Windows 7
βœ”RAM (Memory): 2 GB RAM (4 GB recommended)
βœ”Free Hard Disk Space: 1GB or more

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️ Siemens Star CCM+ APT Series 2410 Suite (x64) – (462 MB)
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Siemens Simcenter3D 2512 Series HTML Multilang Documentation x64 – (3.66 GB)

Siemens Simcenter3D 2512 Series HTML Multilang Documentation x64​

Localized HTML help for Siemens Simcenter 3D 2212 Series series)

Add. Information : Composition of distribution
HelpServer.2.1.0.exe >>> Siemens documentation server
docs-simcenter-3d-2212-series-en-US.exe >>> English HTML documentation

Bit depth : 64bit
Interface language : English
Tabletka : not required
System requirements : Win64

What News?
Official site does not provide any info about changes in this version.

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️ Siemens Simcenter3D 2512 Series HTML Multilang Documentation x64 – (3.66 GB)
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Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens Solid Edge (x64) – (936 MB)

Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens Solid Edge (x64)​

FloEFD for Siemens Solid Edge is an application for simulating flow and heat transfer in liquids and gases within the Siemens Solid Edge environment. FloEFD is fully integrated into the Siemens Solid Edge environment and uses solvers based on computational fluid dynamics (CFD) technology.

Main advantages

Working directly with the model in the Siemens Solid Edge environment

There is no need to convert geometry to another format, which often leads to a loss of quality. The task of calculating hydrogasdynamics and heat transfer is fully synchronized with the model at any time .
Minimization of efforts, and as a result, errors in the process of synchronizing the assigned hydrogasdynamic problem and the model.
Automatic detection of changes in the model.

There is no need to "manually" construct the geometry describing the area occupied by the liquid/gas

Automatic detection of the area occupied by liquid/gas.

The same graphical controls are used as in other Siemens Solid Edge modules.

Very easy to learn
Easy to use
Uses the Siemens Solid Edge model feature tree.

Intuitive and fully interactive.
Use model elements selected in the graphics window/model tree when creating a project/processing results.
Visualization of calculation results as static and animated images directly in the graphics window.
Support for exporting results to MS Excel and Word. The ability to play and record animations.
Support for multi-configuration models.
For effective multi-parameter research, the following features are implemented: the ability to clone projects and automatically launch a series of calculations.

Automated to reduce the number of cases where analysis of the setup and calculation results requires the involvement of specialists in the field of fluid dynamics and heat transfer

Reliable and fully automatic computational grid generator.
Unique turbulence and boundary layer model is used
. Automatic control of solution convergence.

Reliable and accurate numerical methods and physical models

Large set of physical models
Accurate solution
Possibility of calculating very complex structures and physical phenomena.

Computational Fluid Dynamics (CFD) allows you to analyze a wide range of complex problems, including
β€’ Analysis of hydro-aerodynamics and heat transfer of two- and three-dimensional models
β€’ Analysis of external and internal flow
β€’ Analysis of steady-state and unsteady flow
β€’ Flow of incompressible liquid and compressible gas, including combustible mixtures, at subsonic,

Transonic, Supersonic, and Hypersonic Flow Regimes
β€’ Water Vapor Condensation
β€’ Calculation of Relative Humidity in Gas Flows
β€’ Non-Newtonian Fluid Flow (laminar flow only)
β€’ Compressible Fluid Flow (fluid density depends on pressure)
β€’ Real Gas Flows
β€’ Laminar, Turbulent, and Unsteady Flow Analysis
β€’ Vortex and Fan Analysis
β€’ Analysis of Flows with Solids
β€’ Analysis of Heat Transfer within and between Liquids and Solids
β€’ Analysis of Heat Transfer within Solids in the Absence of a Washover
β€’ Calculation of Thermal Contact Resistance
β€’ Calculation of Electrical Contact Resistance
β€’ Thermoelectric Coolers
β€’ Radiative Heat Transfer
β€’ Joule Heating
β€’ Flows with Gravity Effects (also known as Buoyancy Effect)
β€’ Porous Media
β€’ Heat Pipes
β€’ Heat Transfer in Printed Circuit Boards
β€’ Heat Transfer in Perforated Plates
β€’ Aerosol Flow
β€’ Taking into account the roughness of bodies during flow
β€’ Taking into account the tangential movement of walls (displacement and rotation)
β€’ Flow in rotating devices
β€’ Cavitation in liquid flows
β€’ Combustion in gas mixtures

Solid Edge 2023
Solid Edge 2024
Solid Edge 2025

What’s New
official site does not provide any info about changes in this version.

β‹†πŸ•·- – – – -β˜½β”€β”€β”€β›§ β€β–β€ž β›§β”€β”€β”€β˜Ύ – – – -πŸ•·β‹†β€‹

️ Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens Solid Edge (x64) – (936 MB)
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Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens NX – Simcenter3D Win64 – (1.13 GB)

Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens NX – Simcenter3D Win64​

Siemens Digital Industries Software has released Simcenter FLOEFD 2512, is a fully CAD-embedded CFD software with multiphysics capabilities, for designers to analysts.

The new Simcenter FLOEFD 2512 software release as of December 12, 2025 is now available in all its CAD-embedded CFD variants, and also the Simcenter 3D embedded variant. This release delivers focused improvements for fast sealing of geometry for internal flow analyses for all general purpose CFD applications through to multiple enhancements for electronics thermal analysis workflows.

What’s new in Simcenter FLOEFD 2512
In this blog post we are summarizing the highlights from the new features of version 2512 of Simcenter FLOEFD.
Sealing for internal flow simulations
In version 2512 the Fill thin slots feature is extended with the additional option "Fill within slots and openings". The Fill thin slots feature was added last year. It allows for closing narrow channels that should be closed or where you don’t want to resolve the fluid flow. The addition of filling the openings as well will ease closing your geometry and prepare a water-tight fluid domain. In simulation for internal flow the requirement is to have a water-tight domain, and with this sealing you are guaranteed to get this requirement fulfilled. In the picture below you see the new feature setup window along with the expected mesh for both "Fill thin slots" and "Fill within slots and openings". The parameter value will limit for which maximum value you set/choose to use, to close slots and openings. The possibility to select which solid material should fill the slots and openings can be set manually – if customizing default values is desired. For visualization, you can show Closed thin slots cells in your meh plot. Also worth mentioning is that this feature can be applied globally, but then your local settings have higher priority than these faces. The default thermal condition for closed cells is set to your default outer wall condition.

Henyey-Greenstein phase function for optic scattering
In version 2512 a new phase function for scattering of light was added. Previously, only a linear phase function was available, and that corresponds to radiation without scattering, as seen in the picture below. With the new implementation of the Henyey-Greenstein phase function you can simulate scattering of light through semi-transparent materials. In the Engineering database you can create new materials and modify the radiation properties, and this is where to set which scattering phase function to use. Copying existing materials to the user-defined folder will save you time – by not needing to define a new material from scratch. Choosing the Henyey-Greenstein function instead of the linear function enables the possibility to define the scattering coefficient C, which is defined per millimeter. The coefficient can also be defined with anisotropic properties. Phosphor particles are enabled in the Engineering database as well.

Honorable mentions

  • Faster calculations with two-resistor models: In version 2512 the preparation time for setting up this type of analysis is optimized. What previously could take 1.5 hours with a memory peak load of 150GB will in this reference case now only take 6 minutes and with a peak load of 38GB. This makes two-resistor calculations both faster and less computationally heavy.
  • And as a bonus, the compatibility now goes both ways from 2512, were XTXML formats are possible to export from Simcenter FLOEFD, but FLOEFD for Catia will first get this possibility in future versions. The export support transfer for geometry, solid material conditions, etc. but not general project settings.

Simcenter FloEFD is a fully CAD-embedded CFD software with multiphysics capabilities, for designers to analysts, which enables design engineers to perform simulation earlier in the design process when it is more cost-effective to identify and fix problems or explore improvements. It helps shorten development by up to 65-75% compared to typical CFD approaches by frontloading fluid flow simulation and thermal analysis and using native CAD geometry.

Simcenter FLOEFD

Siemens Digital Industries Software is driving transformation to enable a digital enterprise where engineering, manufacturing and electronics design meet tomorrow. The Xcelerator portfolio helps companies of all sizes create and leverage digital twins that provide organizations with new insights, opportunities and levels of automation to drive innovation.

Owner: Siemens Digital Industries Software
Product Name: Simcenter FloEFD
Version: 2512.0.0 v6992 *
Supported Architectures: x64
Website Home Page : Code:Copy to clipboard

http://www.plm.automation.siemens.com

Languages Supported: multilanguage
System Requirements: Windows **
Size: 11.4 Gb

Siemens Simcenter FloEFD 2512.0.0 v6992 for CATIA V5
Siemens Simcenter FloEFD 2512.0.0 v6992 for PTC Creo Parametric
Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens NX / Simcenter 3D
Siemens Simcenter FloEFD 2512.0.0 v6992 Standalone
Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens Solid Edge

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️ Siemens Simcenter FloEFD 2512.0.0 v6992 for Siemens NX – Simcenter3D Win64 – (1.13 GB)
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Siemens Simcenter FloEFD 2512.0.0 v6992 for PTC Creo (x64) – (952 MB)

Siemens Simcenter FloEFD 2512.0.0 v6992 for PTC Creo (x64)​

FloEFD for PTC Creo is an application for simulating flow and heat transfer in liquids and gases in the PTC Creo Parametric environment. FloEFD is fully integrated into the PTC Creo DS environment and uses solvers based on computational fluid dynamics (CFD) technology.

Main advantages

Working directly with the model in the PTC Creo environment

There is no need to convert geometry to another format, which often leads to a loss of quality. The task of calculating hydrogasdynamics and heat transfer is fully synchronized with the model at any time .
Minimization of efforts, and as a result, errors in the process of synchronizing the assigned hydrogasdynamic problem and the model.
Automatic detection of changes in the model.

There is no need to "manually" construct the geometry describing the area occupied by the liquid/gas

Automatic detection of the area occupied by liquid/gas.

Uses the same graphical controls as other PTC Creo modules

Very easy to learn
Easy to use
Uses the PTC Creo model element tree.

Intuitive and fully interactive.
Use model elements selected in the graphics window/model tree when creating a project/processing results.
Visualization of calculation results as static and animated images directly in the graphics window.
Support for exporting results to MS Excel and Word. The ability to play and record animations.
Support for multi-configuration models.
For effective multi-parameter research, the following features are implemented: the ability to clone projects and automatically launch a series of calculations.

Automated to reduce the number of cases where analysis of the setup and calculation results requires the involvement of specialists in the field of fluid dynamics and heat transfer

Reliable and fully automatic computational grid generator.
Unique turbulence and boundary layer model is used
. Automatic control of solution convergence.

Reliable and accurate numerical methods and physical models

Large set of physical models
Accurate solution
Possibility of calculating very complex structures and physical phenomena.

Computational Fluid Dynamics (CFD) allows you to analyze a wide range of complex problems, including
β€’ Analysis of hydro-aerodynamics and heat transfer of two- and three-dimensional models
β€’ Analysis of external and internal flow
β€’ Analysis of steady-state and unsteady flow
β€’ Flow of incompressible liquid and compressible gas, including combustible mixtures, at subsonic,

Transonic, Supersonic, and Hypersonic Flow Regimes
β€’ Water Vapor Condensation
β€’ Calculation of Relative Humidity in Gas Flows
β€’ Non-Newtonian Fluid Flow (laminar flow only)
β€’ Compressible Fluid Flow (fluid density depends on pressure)
β€’ Real Gas Flows
β€’ Laminar, Turbulent, and Unsteady Flow Analysis
β€’ Vortex and Fan Analysis
β€’ Analysis of Flows with Solids
β€’ Analysis of Heat Transfer within and between Liquids and Solids
β€’ Analysis of Heat Transfer within Solids in the Absence of a Washover
β€’ Calculation of Thermal Contact Resistance
β€’ Calculation of Electrical Contact Resistance
β€’ Thermoelectric Coolers
β€’ Radiative Heat Transfer
β€’ Joule Heating
β€’ Flows with Gravity Effects (also known as Buoyancy Effect)
β€’ Porous Media
β€’ Heat Pipes
β€’ Heat Transfer in Printed Circuit Boards
β€’ Heat Transfer in Perforated Plates
β€’ Aerosol Flow
β€’ Taking into account the roughness of bodies during flow
β€’ Taking into account the tangential movement of walls (displacement and rotation)
β€’ Flow in rotating devices
β€’ Cavitation in liquid flows
β€’ Combustion in gas mixtures

19-Dec-25 15:21 (32 minutes ago) Code:Copy to clipboard

Siemens Simcenter FloEFD 2512.0.0 v6992 for PTC Creo Win64

picYear/Release Date : 2025
Version : 2512.0.0 v6992
Developer : Siemens PLM/Mentor Graphics
Developer’s website : www.mentor.com/products/mechanical/products/floefd/

Bit depth : 64bit
Interface language : English, German, French, Chinese, Japanese, Russian
Tablet : Present (TeAM SolidSQUAD-SSQ)
System requirements
minimal
Operating System: Windows 10 Pro (64-bit)
Processor: 4-core Intel/AMD (x86-64)
Memory (RAM): 16 GB
Graphics Card: OpenGL 3.3 compatible

recommended
Operating System: Windows 11 Pro/Enterprise (64-bit)
Processor: 8+ cores (Intel Core i9/Xeon or AMD Ryzen 9/Threadripper)
Memory (RAM): 32 GB to 64 GB+ (High RAM is critical for complex meshes)
Graphics Card: NVIDIA RTX / Quadro or AMD Radeon Pro
– Localized languages: French, German, Japanese, Korean, Simplified Chinese, Russian

Π‘reo Parametric v3
Creo Parametric v4
Creo Parametric v5
Creo Parametric v6
Creo Parametric v7
Creo Parametric v8
Creo Parametric v9
Creo Parametric v10
Creo Parametric v11
Creo Parametric v12.4

🌟 What’s New
official site does not provide any info about changes in this version.

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⭐️ Siemens Simcenter FloEFD 2512.0.0 v6992 for PTC Creo (x64) – (952 MB)
ClickNUpload Link(s)
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Siemens Simcenter FloEFD 2512.0.0 v6992 for CATIA V5 (x64) – (1013 MB)

Siemens Simcenter FloEFD 2512.0.0 v6992 for CATIA V5 (x64)​

FloEFD for CATIA V5 is an application for simulating flow and heat transfer in liquids and gases in the DS CATIA V5 environment.FloEFD is fully integrated into the DS CATIA V5 environment and uses solvers based on computational fluid dynamics (CFD) technology.

Main advantages

Working directly with the model in the DS CATIA V5 environment

There is no need to convert geometry to another format, which often leads to a loss of quality. The task of calculating hydrogasdynamics and heat transfer is fully synchronized with the model at any time .
Minimization of efforts, and as a result, errors in the process of synchronizing the assigned hydrogasdynamic problem and the model.
Automatic detection of changes in the model.

There is no need to "manually" construct the geometry describing the area occupied by the liquid/gas

Automatic detection of the area occupied by liquid/gas.

The same graphical controls are used as in other DS CATIA V5 modules

Very easy to learn
Easy to use
Uses the DS CATIA V5 model element tree.

Intuitive and fully interactive.
Use model elements selected in the graphics window/model tree when creating a project/processing results.
Visualization of calculation results as static and animated images directly in the graphics window.
Support for exporting results to MS Excel and Word. The ability to play and record animations.
Support for multi-configuration models.
For effective multi-parameter research, the following features are implemented: the ability to clone projects and automatically launch a series of calculations.

Automated to reduce the number of cases where analysis of the setup and calculation results requires the involvement of specialists in the field of fluid dynamics and heat transfer

Reliable and fully automatic computational grid generator.
Unique turbulence and boundary layer model is used
. Automatic control of solution convergence.

Reliable and accurate numerical methods and physical models

Large set of physical models
Accurate solution
Possibility of calculating very complex structures and physical phenomena.

Computational Fluid Dynamics (CFD) allows you to analyze a wide range of complex problems, including
β€’ Analysis of hydro-aerodynamics and heat transfer of two- and three-dimensional models
β€’ Analysis of external and internal flow
β€’ Analysis of steady-state and unsteady flow
β€’ Flow of incompressible liquid and compressible gas, including combustible mixtures, at subsonic,

Transonic, Supersonic, and Hypersonic Flow Regimes
β€’ Water Vapor Condensation
β€’ Calculation of Relative Humidity in Gas Flows
β€’ Non-Newtonian Fluid Flow (laminar flow only)
β€’ Compressible Fluid Flow (fluid density depends on pressure)
β€’ Real Gas Flows
β€’ Laminar, Turbulent, and Unsteady Flow Analysis
β€’ Vortex and Fan Analysis
β€’ Analysis of Flows with Solids
β€’ Analysis of Heat Transfer within and between Liquids and Solids
β€’ Analysis of Heat Transfer within Solids in the Absence of a Washover
β€’ Calculation of Thermal Contact Resistance
β€’ Calculation of Electrical Contact Resistance
β€’ Thermoelectric Coolers
β€’ Radiative Heat Transfer
β€’ Joule Heating
β€’ Flows with Gravity Effects (also known as Buoyancy Effect)
β€’ Porous Media
β€’ Heat Pipes
β€’ Heat Transfer in Printed Circuit Boards
β€’ Heat Transfer in Perforated Plates
β€’ Aerosol Flow
β€’ Taking into account the roughness of bodies during flow
β€’ Taking into account the tangential movement of walls (displacement and rotation)
β€’ Flow in rotating devices
β€’ Cavitation in liquid flows
β€’ Combustion in gas mixtures

CATIA V5-6 2021 (R31)
CATIA V5-6 2022 (R32)
CATIA V5-6 2023 (R33)
CATIA V5-6 2024 (R34)
CATIA V5-6 2025 (R35)

What’s New
official site does not provide any info about changes in this version.

β‹†πŸ•·- – – – -β˜½β”€β”€β”€β›§ β€β–β€ž β›§β”€β”€β”€β˜Ύ – – – -πŸ•·β‹†β€‹

️ Siemens Simcenter FloEFD 2512.0.0 v6992 for CATIA V5 (x64) – (1013 MB)
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Siemens Simcenter FloEFD 2412.0.0 v6637 for Siemens Solid Edge x64 – (882 MB)

Siemens Simcenter FloEFD 2412.0.0 v6637 for Siemens Solid Edge x64​

FloEFD for Solid Edge is an application for modeling the flow and heat transfer in liquids and gases in the Siemens Solid Edge environment. FloEFD is fully integrated into Siemens Solid Edge environment and uses computational fluid dynamics (CFD) based solvers.

Main advantages
Working directly with the model in the Siemens Solid Edge environment

There is no need to convert the geometry to another format, which often leads to a loss of quality.The task of calculating fluid dynamics and heat transfer at any time is fully synchronized with the model
Minimization of efforts, and as a result, errors in the synchronization process of the set fluid dynamics problem and the model
Automatic detection of changes in the model.

There is no need for "manual" construction of the geometry describing the area occupied by the liquid / gas

Automatic detection of the area occupied by liquid / gas.

The same graphic controls are used as in other modules of the corresponding CAD

Very easy to learn
Easy to use
Uses the CAD model tree.

Intuitive and fully interactive
Use when creating a project / processing results of model elements selected in the graphics window / model tree
Visualization of the calculation results in the form of static and animated images directly in the graphics window
Support for exporting results to MS Excel, Word. The ability to play and record animations.
Support for the multi-configuration of the model.
For an efficient multi-parameter study, implemented – the ability to clone projects, automatic start of a series of calculations.

Automated to reduce the number of cases when it is necessary to involve specialists in the field of fluid dynamics and heat transfer to analyze the formulation and calculation results

Reliable and fully automatic generator of computational grids
. Unique turbulence and boundary layer model is used.
Automatic control of solution convergence.

Reliable and accurate numerical methods and physical models

Large set of physical models
Exact solution
Ability to calculate very complex structures and physical phenomena.

Computational Fluid Dynamics (CFD) and allows you to analyze a wide range of complex problems, including
β€’ Analysis of hydro-aerodynamics and heat transfer of two – and three-dimensional models
β€’ Analysis of external and internal flow flows
β€’ Analysis of steady and unsteady flow
β€’ Incompressible liquid and compressible gas flow , including including a combustible mixture, at subsonic, transonic, supersonic and hypersonic flow regimes
β€’ Condensation of water vapor
β€’ Calculation of the relative humidity of air in gas streams
β€’ Flow in non-Newtonian fluids (only laminar flow regime)
β€’ Flow in a compressible fluid (fluid density depends on pressure)
β€’ Flows in real gases
β€’ Laminar analysis , turbulent and unsteady flows
β€’ Analysis of vortex flows and fans
β€’ Analysis of flows with solid inclusions
β€’ Analysis of heat transfer inside and between liquids and solids
β€’ Analysis of heat transfer inside solids in the absence of a washing flow
β€’ Calculation of thermal contact resistance
β€’ Calculation of electrical contact resistance
β€’ Thermoelectric coolers
β€’ Heat transfer by radiation
β€’ Joule heating
β€’ Flows with gravitational effects (also known as the buoyancy effect)
β€’ Porous media
β€’ Heat pipes
β€’ Heat transfer in printed circuit boards
β€’ Heat transfer in perforated plates
β€’ Aerosol flow
β€’ Taking into account the roughness of bodies during tangential flow
β€’ wall movements (mixing and rotation)
β€’ Flow in rotating devices
β€’ Cavitation in liquid flows
β€’ Combustion in gas mixtures

System requirements
Siemens Solid Edge 2021
Siemens Solid Edge 2022

Whats New
Updates: official site does not provide any info about changes in this version.

β‹†πŸ•·- – – – -β˜½β”€β”€β”€β›§ β€β–β€ž β›§β”€β”€β”€β˜Ύ – – – -πŸ•·β‹†β€‹

️ Siemens Simcenter FloEFD 2412.0.0 v6637 for Siemens Solid Edge x64 – (882 MB)
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Siemens FiberSIM 17.5.0 For NX 2306.2506 Series (x64) (520 MB)

Siemens FiberSIM 17.5.0 For NX 2306.2506 Series (x64)​
File size: 520.3 MB​

FiberSIM from Siemens PLM Software allows specialists in the aerospace, automotive and wind energy industries to optimize the weight, cost and performance of products from PCM (polymer composite materials) due to precise control of the orientation of the reinforcing fibers.

Using Fibersim reduces risk by streamlining the design and fabrication of innovative, strong and lightweight structures in the aerospace, automotive and wind energy industries. The package was developed by Vistagy, which was acquired by Siemens on December 7, 2011 and is a commercial division of Siemens PLM Software.

Fibersim reduces uncertainty in the behavior of composite parts under stress by describing, communicating, and verifying desired fiber orientation throughout the product development process, ensuring that specifications are met exactly. By using easy-to-use tools that eliminate errors in working with design data, you can reduce the risk of designing complex parts with excess weight, undefined properties and inflated costs.

Fibersim is an advanced PCM product development solution that helps world leaders in the aerospace, automotive, wind energy and other industries successfully solve complex problems throughout the entire production cycle – from conceptual design, detailed design, layering simulation and production data generation to quality control . Fibersim can be fully integrated into the market leading commercial 3D CAD systems.

Benefits of Fibersim
β€’Enhanced Design-Time Optimization
Fibersim helps reduce the uncertainty of PCM product behavior under stress with a new Spine-Based Rosette that enables path-oriented material stacking simulation. This information can be transferred between all participants in the development process throughout the cycle. Ensuring the proper fiber orientation of manufactured parts – whether it be an aircraft structure stringer, a car frame, or a 60-meter wind turbine blade – is a critical factor in optimizing the weight and performance of a product.

β€’Accurate modeling of composite materials laying on complex shapes
Fibersim was the first to introduce advanced process modeling for multilayer materials, including multiaxial fabrics. These features form the basis of Fibersim, which allows you to simulate even more materials and manufacturing processes with the first ever Spine-Based Simulation for buckling parts. Material laid along the generatrix of parts such as an aircraft stringer, an automobile body strut, or a wind turbine blade guide will have localized waviness and deformation. Determining the causes of these phenomena early in the production cycle allows you to make the right key decisions to ensure the expected strength of parts in a timely and cost-effective manner.

β€’Efficient transfer of a full-fledged description of the part between the design and calculation departments
The program introduces a new functionality for the exchange of descriptions of multiaxial fabrics and fillers. This functionality provides an opportunity for effective interaction between designers and structural engineers, taking into account the most important components throughout the entire product development cycle. Accurately calculating the stiffness and strength of parts requires consideration of the specific characteristics of multiaxial fabrics and fillers commonly used in aerospace, automotive, and wind power applications.

β€’Simplify the development of composite parts and documentation
Fibersim helps simplify the development of composite parts with new, easy-to-use design and documentation tools designed for engineers of all levels of PCM experience. The most difficult and time-consuming task in the design process is to work with specifications for runoffs between zones of constant thickness. Fibersim is the first to introduce the Visual Stagger Editor feature to make it easier to work with these specifications. Large aerospace panels such as wings, stabilizers or tails have a significant number of different flight profiles. The Escape Profile Editor makes it easier to develop profiles and reduces the possibility of design errors.

Whats New
Updates: official site does not provide any info about changes in this version

β‹†πŸ•·- – – – -β˜½β”€β”€β”€β›§ β€β–β€ž β›§β”€β”€β”€β˜Ύ – – – -πŸ•·β‹†β€‹

️ Siemens FiberSIM 17.5.0 For NX 2306.2506 Series (x64) (520 MB) [520.32 MB]
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Shy Audio Shy 90s Channel 1.3.0

QUICK INFO: File size: 6.5 MB

DESCRIPTION: 90s Channel Energy Infuser
Inject all the vibes of classic ’90s consumer mixing desks! With Shy 90s Channel, you can work as if you’re sitting in a bedroom studio in 1996, tweaking your tracks without knowing exactly what you’re doing, yet achieving gritty greatness!

EQ
Use the EQ section to sculpt your tracks with the broadest brush imaginable and massively change their timbre from soft to really over-the-top!

  • Switchable High Shelf (from ‘Original’ to ‘Linear’): Original behavior lowers the mid-gain as you boost the high shelf
  • Parametric Mid Band: This band really pushes everything thrown at it with huge power reserves
  • Switchable Low Shelf: It can either act as a super broad shelf or be centered around 30 Hz for maximum low bass power

Drive
Capable of pushing any source into intense distortion while preserving the low-end. When combined with the EQ, the Drive creates unique frequency-dependent harmonics, enabling a wide range of overdrive effects.

  • Frequency-dependent nonlinearities up to +30 dB! At max settings, though, it introduces a 60 Hz low cut to protect your speakers (Low cut can be switched "OFF" by clicking on "90s")
  • Unique mixture of even and odd harmonics
  • Smooth response, even when all EQ gains are maxed out (We actually recommend doing that)
  • "Flux" introduces slight L/R variantions for more "analog" feel

Signal
The final part of the chain is the Signal module, where you can apply additional filters to even out and modulate the signal. Use the Dry/Wet knob to fully blow your audio and reintroduce some of its original character.

  • 12 dB/Oct Low and High Cut filters
  • Phase-aligned Dry/Wet control for the entire signal chain, excluding the clean output fader, allowing you to level everything to taste
  • Mini signal metering, where 0 VU indicates you’re close to the ideal input, and the red OL means: It’s getting tasty

Whats New
Updates: official site does not provide any info about changes in this version

β‹†πŸ•·- – – – -β˜½β”€β”€β”€β›§ β€β–β€ž β›§β”€β”€β”€β˜Ύ – – – -πŸ•·β‹†β€‹

Shy Audio Shy 90s Channel 1.3.0 (7 MB)
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