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Siemens Star CCM+ 2020

KAMAL

MyBoerse.bz Pro Member
Siemens Star CCM+ 2020.1.1 (15.02.009-R8 double precision)


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Siemens Star CCM+ 2020.1.1 (15.02.009-R8 double precision) | 3.5 GB


The Simcenter product team is pleased to announce the availability of updated release of Simcenter STAR-CCM+ 2020.1.0. With this release, we are enabling faster meshing, smarter solvers and greater collaboration to help you make better engineering decisions in hours to achieve your next innovative breakthrough.

Fixes in Update Release of Simcenter STAR-CCM+ 2020.1
- CADM-6476 In 3D-CAD, change the sequence of filter evaluation and the cutting of bodies by features, so that the filter evaluation no longer incorrectly includes the bodies that are cut by the feature.
- DEP-2241 Fix the failure of Simcenter STAR-CCM+ Viewer to appear in the "Open with" menu on Windows.
- DEP-2267 Fix the product name of the double precision version of Simcenter STAR-CCM+ to include "R8" in the Windows "Apps & Features" listing.
- EMAG-1970 Remove incompatibility between the Specified Temperature and the Ohmic Heating models.
- FDF-1371 Fix the inability of the Fixed Physical Time stopping criterion of a time-scale to refresh its status.
- FDF-1392 Fix a SIGSEGV error that occurs when, in parallel, the Base Size of the Automated Mesh is changed and the volume mesh is regenerated.
- IMC-1313 Fix the error that occurs when Adaptive Mesh Refinement (AMR) attempts to undo refinement.
- IMM-3064 Improve the Morpher boundary condition so that when the Remove Invalid Cells action is applied to an invalid cell boundary, it changes the boundary type to Floating rather than Symmetry Plane, since Symmetry Plane does not work with non-planar objects.
- IMM-3105 Fix an error that occurs when the physics continuum is changed for a region in a case with morphing motion.
- IXD-271 Fix the repetition of the confirmation message that appears when overwriting an existing simulation file.
- PPR-1557 Fix a SIGSEGV error that occurs when an xyz internal table is extracted on a threshold part.
- PPR-1574 Fix the failure to restore simulation files containing invalid expressions.
- PVIZ-5259 Fix the inability to switch transforms in non-English versions.
- REA-3281 Fix the restore of Periodic Spark Ignition in Simcenter STAR-CCM+ In-Cylinder 2020.1.
- SRM-2232 Fix a SIGSEGV error that occurs when the Surface Wrapper operation is executed with a poor Seed Point setting.
- SRM-2233 Fix the tendency of the Enhanced Quality Triangle meshing method to hang with spherical surfaces.


Simcenter STAR-CCM+ is a complete multiphysics solution for the simulation of products and designs operating under real-world conditions. Uniquely, Simcenter STAR-CCM+ brings automated design exploration and optimization to the simulation toolkit of every engineer, allowing you to efficiently explore the entire design space instead of focusing on single point design scenarios.

The additional insight gained by using Simcenter STAR-CCM+ to guide your design process ultimately leads to more innovative products that exceed customer expectations.
Matt Godo explains how virtual reality in STAR-CCM+ allows anyone to explore a simulation model in an intuitive and immersive sense, increasing insight, and empowering innovation.

WHAT'S NEW in Simcenter STAR-CCM+ 2020.1

Siemens PLM Software a business unit of the Siemens Digital Factory Division, is a leading global provider of software solutions to drive the digital transformation of industry, creating new opportunities for manufacturers to realize innovation. With headquarters in Plano, Texas, and over 140,000 customers worldwide, Siemens PLM Software works with companies of all sizes to transform the way ideas come to life, the way products are realized, and the way products and assets in operation are used and understood.

Product: Siemens Simcenter Star CCM+
Version: 2020.1.1 (15.02.009_01-R8 double precision)
Supported Architectures: x64
Website Home Page : Language: multilanguage
System Requirements: PC
Supported Operating Systems: *
Size: 3.5 Gb

Certified Platforms for Simcenter STAR-CCM+ 2020.1.1 Windows
Windows 10 October 2018 Update
Windows 10 May 2019 Update
Windows Server 2012 R2 Standard
Windows Server 2012 R2 HPC Pack
Windows Server 2016
Windows Server 2019

These are the recommended hardware requirements to run Simcenter STAR-CCM+ and the CAD Clients. You can improve performance by using better specifications than those listed.
- Processor: 2.4 GHz CPU with at least 4 cores per CPU (to allow client and server to work in separate spaces and to run in parallel)
- Memory: 4 GB of memory per core.
- Disk Space: 9 GB of free disk space (more space is required to save simulations).
- Graphics Card: Dedicated graphics hardware that has 3D capability, z-buffer and translucency. Minimum screen resolution of 1024x768 pixels is recommended.



DOWNLOAD LINKS:






Siemens Star CCM+ 2020.1.1 (15.02.009-R8 double precision) (Linux)


4af780790a782d54d0bd30ea559d2563.jpg




Siemens Star CCM+ 2020.1.1 (15.02.009-R8 double precision) (Linux) | 3.6 GB


The Simcenter product team is pleased to announce the availability of updated release of Simcenter STAR-CCM+ 2020.1.0. With this release, we are enabling faster meshing, smarter solvers and greater collaboration to help you make better engineering decisions in hours to achieve your next innovative breakthrough.

Fixes in Update Release of Simcenter STAR-CCM+ 2020.1
- CADM-6476 In 3D-CAD, change the sequence of filter evaluation and the cutting of bodies by features, so that the filter evaluation no longer incorrectly includes the bodies that are cut by the feature.
- DEP-2241 Fix the failure of Simcenter STAR-CCM+ Viewer to appear in the "Open with" menu on Windows.
- DEP-2267 Fix the product name of the double precision version of Simcenter STAR-CCM+ to include "R8" in the Windows "Apps & Features" listing.
- EMAG-1970 Remove incompatibility between the Specified Temperature and the Ohmic Heating models.
- FDF-1371 Fix the inability of the Fixed Physical Time stopping criterion of a time-scale to refresh its status.
- FDF-1392 Fix a SIGSEGV error that occurs when, in parallel, the Base Size of the Automated Mesh is changed and the volume mesh is regenerated.
- IMC-1313 Fix the error that occurs when Adaptive Mesh Refinement (AMR) attempts to undo refinement.
- IMM-3064 Improve the Morpher boundary condition so that when the Remove Invalid Cells action is applied to an invalid cell boundary, it changes the boundary type to Floating rather than Symmetry Plane, since Symmetry Plane does not work with non-planar objects.
- IMM-3105 Fix an error that occurs when the physics continuum is changed for a region in a case with morphing motion.
- IXD-271 Fix the repetition of the confirmation message that appears when overwriting an existing simulation file.
- PPR-1557 Fix a SIGSEGV error that occurs when an xyz internal table is extracted on a threshold part.
- PPR-1574 Fix the failure to restore simulation files containing invalid expressions.
- PVIZ-5259 Fix the inability to switch transforms in non-English versions.
- REA-3281 Fix the restore of Periodic Spark Ignition in Simcenter STAR-CCM+ In-Cylinder 2020.1.
- SRM-2232 Fix a SIGSEGV error that occurs when the Surface Wrapper operation is executed with a poor Seed Point setting.
- SRM-2233 Fix the tendency of the Enhanced Quality Triangle meshing method to hang with spherical surfaces.


Simcenter STAR-CCM+ is a complete multiphysics solution for the simulation of products and designs operating under real-world conditions. Uniquely, Simcenter STAR-CCM+ brings automated design exploration and optimization to the simulation toolkit of every engineer, allowing you to efficiently explore the entire design space instead of focusing on single point design scenarios.

The additional insight gained by using Simcenter STAR-CCM+ to guide your design process ultimately leads to more innovative products that exceed customer expectations.
Matt Godo explains how virtual reality in STAR-CCM+ allows anyone to explore a simulation model in an intuitive and immersive sense, increasing insight, and empowering innovation.

WHAT'S NEW in Simcenter STAR-CCM+ 2020.1

Siemens PLM Software a business unit of the Siemens Digital Factory Division, is a leading global provider of software solutions to drive the digital transformation of industry, creating new opportunities for manufacturers to realize innovation. With headquarters in Plano, Texas, and over 140,000 customers worldwide, Siemens PLM Software works with companies of all sizes to transform the way ideas come to life, the way products are realized, and the way products and assets in operation are used and understood.

Product: Siemens Simcenter Star CCM+
Version: 2020.1.1 (15.02.009_01-R8 double precision)
Supported Architectures: x64
Website Home Page : Language: multilanguage
System Requirements: Linux *
Supported Operating Systems: *
Size: 3.6 Gb


Certified Platforms for Simcenter STAR-CCM+ 2020.1.1 Linux
RHEL Workstation 6.10
RHEL Workstation 7.4, 7.5, 7.6
RHEL Workstation 8
CentOS 6.10
CentOS 7.4, 7.5, 7.6
CentOS 8
SUSE Linux EnterpriseServer 12 SP3, SP4
SUSE Linux EnterpriseServer 15, 15.1
openSUSE Leap 15, 15.1
SLES 15.1
These are the recommended hardware requirements to run Simcenter STAR-CCM+ and the CAD Clients. You can improve performance by using better specifications than those listed.
- Processor: 2.4 GHz CPU with at least 4 cores per CPU (to allow client and server to work in separate spaces and to run in parallel)
- Memory: 4 GB of memory per core.
- Disk Space: 9 GB of free disk space (more space is required to save simulations).
- Graphics Card: Dedicated graphics hardware that has 3D capability, z-buffer and translucency. Minimum screen resolution of 1024x768 pixels is recommended.



DOWNLOAD LINKS:



 
Siemens Star CCM+ 2020.2.1 x64 (15.04.010-R8 double precision) Multilingual


95f5461d39fd97570867b400395cf686.jpeg




Siemens Star CCM+ 2020.2.1 x64 (15.04.010-R8 double precision) Multilingual | 3.4 GB | Language: Multilanguage


The Simcenter product team is pleased to announce the availability of updated release of Simcenter STAR-CCM+ 2020.2.1. Version 2020.2 is packed with a host of new features to streamline your simulation workflow and increase the fidelity of your simulations so you can bring better products to market faster.

Simcenter STAR-CCM+ is a complete multiphysics solution for the simulation of products and designs operating under real-world conditions. Uniquely, Simcenter STAR-CCM+ brings automated design exploration and optimization to the simulation toolkit of every engineer, allowing you to efficiently explore the entire design space instead of focusing on single point design scenarios.

The additional insight gained by using Simcenter STAR-CCM+ to guide your design process ultimately leads to more innovative products that exceed customer expectations.
With Simcenter STAR-CCM+ 2020.2 we deliver new capabilities and enhancements to help you deploy high-fidelity digital twins with ease. Version 2020.2 is packed with a host of new features to streamline your simulation workflow and increase the fidelity of your simulations so you can bring better products to market faster.


WHAT'S NEW Simcenter STAR-CCM+ 2020.2
Siemens PLM Software a business unit of the Siemens Digital Factory Division, is a leading global provider of software solutions to drive the digital transformation of industry, creating new opportunities for manufacturers to realize innovation. With headquarters in Plano, Texas, and over 140,000 customers worldwide, Siemens PLM Software works with companies of all sizes to transform the way ideas come to life, the way products are realized, and the way products and assets in operation are used and understood.


Product: Siemens Simcenter Star CCM+
Version: 2020.2.1 (15.04.010-R8 double precision)
Supported Architectures: x64
Website Home Page : Language: multilanguage
System Requirements: PC
Size: 3.4 Gb

Certified Platforms for Simcenter STAR-CCM+ 2020.2 Windows
Windows 10 October 2018 Update
Windows 10 May 2019 Update
Windows Server 2012 R2 Standard
Windows Server 2012 R2 HPC Pack
Windows Server 2016
Windows Server 2019

These are the recommended hardware requirements to run Simcenter STAR-CCM+ and the CAD Clients. You can improve performance by using better specifications than those listed.
- Processor: 2.4 GHz CPU with at least 4 cores per CPU (to allow client and server to work in separate spaces and to run in parallel)
- Memory: 4 GB of memory per core.
- Disk Space: 9 GB of free disk space (more space is required to save simulations).
- Graphics Card: Dedicated graphics hardware that has 3D capability, z-buffer and translucency. Minimum screen resolution of 1024x768 pixels is recommended.



b7a58bc5d310c5b4a551b2b1dcd7c3e0.jpeg

39867af870f158b88639477b2e2d3723.jpeg



DOWNLOAD LINKS:



 
Siemens Star CCM+ 2020.2.1 15.04.010-R8 Double Precision (x64)

Multilingual/Deutsch / inkl. Crack SolidSQUAD + Anleitung / 64-Bit

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Beschreibung:

Die Vorhersage der tatsächlichen Leistung eines Produkts erfordert Simulationswerkzeuge, die eine Vielzahl von technischen Disziplinen abdecken. STAR-CCM + ist eine All-in-One-Lösung, die präzise und effiziente multidisziplinäre Technologien in einer einzigen integrierten Benutzeroberfläche bietet.

Um bessere Produkte zu entwerfen, müssen Ingenieure die Konsequenzen von Konstruktionsänderungen auf die tatsächliche Leistung ihres Produkts vorhersagen, zum Guten oder zum Schlechten. Historisch gesehen stammten diese Vorhersagen aus Handberechnungen oder aus experimentellen Tests physikalischer Prototypen. Heutzutage bietet die technische Simulation umfassende Vorhersagen, die normalerweise genauer und immer kostengünstiger sind als experimentelle Tests. Diese werden effektiv eingesetzt und können verwendet werden, um ein Design durch mehrere Iterationen zu verbessern. Letztendlich führt dies zu höherer Qualität und robusteren Produkten, die die Kundenerwartungen besser erfüllen. Im Gegensatz zu anderen Methoden bietet die technische Simulation auch den Vorteil, dass die Leistung eines Produkts über alle Betriebsbedingungen hinweg untersucht werden kann, denen es wahrscheinlich während seiner Lebensdauer ausgesetzt ist, und nicht nur an einer Handvoll sorgfältig ausgewählter „Konstruktionspunkte“. Es sind jedoch nicht alle Engineering-Simulationswerkzeuge gleich. Um einen konstanten Strom relevanter technischer Daten bereitzustellen, muss die Simulationssoftware:

Multidisziplinär
Die Lösung komplexer industrieller Probleme erfordert Simulationswerkzeuge, die eine Vielzahl physikalischer Phänomene und eine Vielzahl technischer Disziplinen umfassen. Reale technische Probleme lassen sich nicht in geeignete Kategorien wie „Aerodynamik“, „Hydrodynamik“, „Wärmeübertragung“ und „Festkörpermechanik“ einteilen. Nur eine multidisziplinäre Engineering-Simulation kann die gesamte relevante Physik, die die reale Leistung eines Produkts beeinflusst, genau erfassen und dazu verwendet werden, das virtuelle Produkt automatisch durch eine Reihe von Designkonfigurationen und Betriebsszenarien zu steuern. Durch die Minimierung des Approximationsniveaus können Ingenieure sicher sein, dass das vorhergesagte Verhalten ihres Designs mit der tatsächlichen Leistung ihres Produkts übereinstimmt.

Rechtzeitig
Unabhängig davon, wie „realistisch“ Ihre Simulation ist, sind die bereitgestellten Daten nutzlos, wenn sie das endgültige Design Ihres Produkts nicht beeinflussen. Damit die Simulation ein nützliches Werkzeug im Konstruktionsprozess ist, müssen Vorhersagen jedes Mal pünktlich geliefert werden. Ein spätes Simulationsergebnis ist nicht viel besser als gar kein Ergebnis. Im Idealfall sollte die Simulation einen konstanten Datenstrom generieren, der den Entwurfsprozess bei jeder Entscheidung leitet und informiert. Dies ist nur möglich, wenn der Simulationsprozess robust und automatisiert ist. Sobald ein Ingenieur in die Erstellung eines multidisziplinären Simulationsmodells investiert hat, sollte dieses Modell leicht umsetzbar sein, um eine vollständige Palette von Konstruktionskonfigurationen und Betriebsszenarien mit geringem oder keinem manuellen Aufwand des Ingenieurs zu untersuchen.

Erschwinglich
Effektiv eingesetzt liefert die Engineering-Simulation durchweg einen hohen Return on Investment (ROI). Es bietet weit mehr in Bezug auf reduzierte Entwicklungskosten und höhere Produkteinnahmen als die Implementierungskosten. Herkömmliche Lizenzierungsschemata für technische Simulationen können jedoch den Übergang von der Denkweise eines Experimentators, „nur wenige Entwurfspunkte zu testen“, zu einer „Untersuchung des gesamten Entwurfsraums“ unerschwinglich teuer machen. Dies liegt daran, dass die meisten Anbieter von Engineering-Simulationssoftware ihr Lizenzmodell auf dem gebrochenen Paradigma basieren: "Je mehr Sie verwenden, desto mehr verlieren Sie". Sie berechnen Ihnen pro Kern statt pro Simulation und binden Kunden an ein nahezu lineares Verhältnis zwischen den Kosten ihrer Software Lizenz und die maximale Anzahl von Kernen, die sie in ihren Simulationen verwenden dürfen. Innovative Lizenzierungsschemata wie Power Sessions (unbegrenzte Kerne zum Festpreis), Power-on-Demand (für die Ausführung in der Cloud) und Power Tokens (beispiellose Flexibilität und Erleichterung der Designerkundung) verursachen die Nutzungskosten Engineering-Simulation erschwinglich.

Von Experten unterstützt
Eine unangenehme Wahrheit über moderne Technik ist, dass es wirklich keine einfachen Probleme mehr gibt, die gelöst werden müssen. Um den Anforderungen der Industrie gerecht zu werden, ist es nicht mehr gut genug, „ein bisschen CFD“ oder „eine Stressanalyse“ durchzuführen. Um wirklich innovative Produkte zu entwerfen, „verschieben“ Ingenieure häufig die Grenzen des Möglichen. Dies ist isoliert nur schwer zu erreichen und erfordert häufig Kompetenzen außerhalb des unmittelbaren Fachgebiets eines einzelnen Ingenieurs. Um erfolgreich zu sein, sollte ein Ingenieur Zugang zu einer Community von Simulationsexperten haben und im Idealfall eine feste Beziehung zu einem engagierten Support-Ingenieur haben, der nicht nur die Probleme des Ingenieurs versteht, sondern sich bei Bedarf an die richtige Expertenhilfe wenden kann.

_________________________________________________

Größe: 3.37 GB
Sprache: Multi/Deutsch
Format: Iso
Plattform: Windows (64-Bit)
Hoster: RapidGator.net, Alfafile.net, Ddownload.com
________________________________________

8126D094C2.png



 

Siemens Star CCM+ 2020.3.0 v15.06.007-R8 Double Precision (x64) Multilingual


12361b193f8d5f668705cd2fa71a39c2.png




Siemens Star CCM+ 2020.3.0 v15.06.007-R8 Double Precision (x64) Multilingual | 3.3 GB | Language: Multilanguage


Predicting the real-world performance of a product requires simulation tools that span a variety of engineering disciplines. STAR-CCM+ is an all-in-one solution that delivers accurate and efficient multidisciplinary technologies in a single integrated user interface. Why STAR-CCM+?


Don't just simulate, innovate!
In order to design better products, engineers need to predict the consequence of any design changes on the real-world performance of their product, for better or for worse. Historically those predictions came from hand calculations or from the experimental testing of physical prototypes. Today, engineering simulation offers comprehensive predictions that are usually more accurate and always less expensive than experimental testing. Deployed effectively, these can be used to improve a design through multiple iterations. Ultimately this results in higher quality and more robust products that better fulfill customer expectations. Unlike other methods, engineering simulation also offers the benefit of exploring the performance of a product over the full range of operating conditions that it is likely to face in its working life, rather than just at a handful of carefully chosen "design points." However, not all engineering simulation tools are created equal. In order to provide a constant stream of relevant engineering data, simulation software must be:

Multidisciplinary
Solving complex industrial problems requires simulation tools that span a multitude of physical phenomena and a variety of engineering disciplines. Real-world engineering problems do not separate themselves into convenient categories such as "aerodynamics", "hydrodynamics", "heat transfer" and "solid mechanics". Only multidisciplinary engineering simulation can accurately capture all of the relevant physics that influence the real-world performance of a product, and can be used to automatically drive the virtual product through a range of design configurations and operating scenarios. By minimizing the level of approximation, engineers can be confident that the predicted behavior of their design will match the real-world performance of their product.

Timely
No matter how "realistic" your simulation is, the data it provides is useless if it does not influence the final design of your product. For simulation to be a useful tool in the engineering design process, predictions must be delivered on time, every time. A late simulation result is not much better than no result at all. Ideally, simulation should generate a constant stream of data that guides and informs the design process through every decision. This is only possible when the simulation process is a robust and automated one. Once an engineer has invested in the creation of a multidisciplinary simulation model, that model should be easily redeployable to investigate a full range of design configurations and operating scenarios, with little or no manual effort from the engineer.

Affordable
Used effectively, engineering simulation consistently delivers a high return on investment (ROI). It provides far more in terms of reduced development costs and increased product revenue than it costs to implement. However, traditional engineering simulation licensing schemes can make the transition from an experimentalist's mindset of "testing just a few design points" to "investigating the whole design space" prohibitively expensive. This is because most engineering simulation software vendors base their licensing model around the broken paradigm of "the more you use, the more you lose," charging you per core instead of per simulation and tying customers to an almost linear relationship between the cost of their license and the maximum number of cores that they are allowed to utilize in their simulations. Innovative licensing schemes such as Power Sessions (giving you unlimited cores for a fixed price), Power-on-Demand (enabling you to run on the cloud) and Power Tokens (giving you unprecedented flexibility and facilitating design exploration) render the cost of using engineering simulation affordable.

Backed by experts
An uncomfortable truth about modern engineering is that there really are no easy problems left to solve. In order to meet the demands of industry, it is no longer good enough to do 'a bit of CFD' or 'some stress analysis'. In order to design truly innovative products, engineers are often "pushing back the boundaries of the possible". This is something that is difficult to achieve in isolation, and often requires competences outside an individual engineer's immediate area of expertise. In order to be successful, an engineer should have ready access to a community of simulation experts, and ideally an established relationship with a dedicated support engineer who not only understands the engineer's problems, but can approach the right expert help whenever needed.






Größe: 3.3 GB
Sprache: Multilingual-Deutsch
Format: .rar / .iso
Plattform: Windows (64 Bit)


HOSTER:

K2s.cc (Keep2Share)

Rapidgator.net

Nitroflare.com

Uploadgig.com


DOWNLOAD

























 

Siemens Star CCM+ 2020.3.1 Build 15.06.008-(R8) Multilingual


851f4a6ef654743ad0c22e0375c7e2cd.jpeg




Siemens Star CCM+ 2020.3.1 Build 15.06.008-(R8) Multilingual | 6.5 GB | Language: Multilanguage


The Siemens Digital Industries Software development team is pleased to announce the availability of Simcenter STAR-CCM+ 2020.3.1. This updated release includes fixes to various user-reported issues from the previous release, providing an overall more stable experience.


Simcenter STAR-CCM+ is a complete multiphysics solution for the simulation of products and designs operating under real-world conditions. Uniquely, Simcenter STAR-CCM+ brings automated design exploration and optimization to the simulation toolkit of every engineer, allowing you to efficiently explore the entire design space instead of focusing on single point design scenarios.

The additional insight gained by using Simcenter STAR-CCM+ to guide your design process ultimately leads to more innovative products that exceed customer expectations.

Siemens Digital Industries Software provides increased simulation realism with Simcenter STAR-CCM+ 2020.3, enabling you to accurately model the complexity of today's products and deliver real innovation.

Simcenter STAR-CCM+ 2020.3 makes it even easier to solve your complex design challenges and engineer real innovation into your products.

What's New Simcenter STAR-CCM+ 2020.3
Siemens PLM Software a business unit of the Siemens Digital Factory Division, is a leading global provider of software solutions to drive the digital transformation of industry, creating new opportunities for manufacturers to realize innovation. With headquarters in Plano, Texas, and over 140,000 customers worldwide, Siemens PLM Software works with companies of all sizes to transform the way ideas come to life, the way products are realized, and the way products and assets in operation are used and understood.


Product: Siemens Simcenter Star CCM+
Version: 2020.3.1 Build 15.06.008-(R8) *
Supported Architectures: x64
Website Home Page : Language: multilanguage
System Requirements: PC **
Size: 6.5 Gb


- Siemens Star CCM+ 2020.3.1 (15.06.008-R8 double precision)
- Siemens Star CCM+ 2020.3.1 (15.06.008 single precision)

Certified Platforms for Simcenter STAR-CCM+ 2020.3 Windows
Windows 10 October 2018 Update
Windows 10 May 2019 Update
Windows 10 Version 1908
Windows 10, Version 1909 November 2019 Update
Windows Server 2012 R2 Standard
Windows Server 2012 R2 HPC Pack
Windows Server 2016
Windows Server 2019

These are the recommended hardware requirements to run Simcenter STAR-CCM+ and the CAD Clients. You can improve performance by using better specifications than those listed.

- Processor: 2.4 GHz CPU with at least 4 cores per CPU (to allow client and server to work in separate spaces and to run in parallel)
- Memory: 4 GB of memory per core.
- Disk Space: 9 GB of free disk space (more space is required to save simulations).
- Graphics Card: Dedicated graphics hardware that has 3D capability, z-buffer and translucency. Minimum screen resolution of 1024x768 pixels is recommended.

7ca2111f863ade14a7cac0f0b58c10e1.jpeg

f2f50a8f3ade4005360b07ce3a0c650c.jpeg





Größe: 6.5 GB
Sprache: Multilingual-Deutsch
Format: .rar / .exe / .iso
Plattform: Windows (32 Bit 64 Bit)


HOSTER:

K2s.cc (Keep2Share)

Rapidgator.net

Nitroflare.com

Uploadgig.com


DOWNLOAD





































 
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