تازگی گردآوری
تا حدی تازه- آخرین مشاهده موفق
- 2026-08-14 22:26 UTC
- وضعیت گردآوری
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- نسخه تجزیهگر
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Vela of novelty & Technology 💬 ارتباط با ما: 🆔 @h_Yousefi94 🆔 @EhsanKhavasi💜 همراهِمون باش...🆔 @VelanoTech 📷 instagram.com/velanotech
مشاهدات عمومی نمایه؛ این اعداد توسط مالک کانال ارائه نشدهاند.
تازگی نسبی · اطمینان متوسط · 16 نمونه پست
دسترسی برابر است با میانه بازدید پستهای منتشرشده در ۳۰ روز گذشته تقسیم بر آخرین تعداد مشاهدهشده اعضا. خط تیره یعنی داده تاریخی کافی نیست. (channel-v1)
هفت روز اخیر
این بخش آنچه دایرکتوری واقعاً مشاهده کرده نشان میدهد و امتیاز ترکیبی اعتبار یا کیفیت تولید نمیکند.
ویرایش و حذف پست از داده تجمیعی فعلی در دسترس نیست؛ بنابراین بهجای صفر، ناموجود نمایش داده میشود.
بازه 2026-08-10 تا 2026-08-16 · ذخیره موقت ۱۵ دقیقه · channel-evidence-7d-v2
#HOORAN_VISUALS 03Wind does not simply pass around buildings. Every structure changes the flow field, creating pressure gradients, wake regions, recirculation zones, and vortices that influence both structural performance and the surrounding urban environment.This visualization, generated with OpenFOAM, demonstrates how Computational Fluid Dynamics (CFD) helps engineers analyze airflow around buildings before construction. By understanding these invisible flow structures early in the design process, engineers can improve pedestrian comfort, optimize natural ventilation, reduce wind loads, and support more resilient urban planning.Every successful design begins with understanding the physics that cannot be seen.Test Before Reality.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
#HOORAN_VISUALS 02Mixing looks simple.Physics disagrees.Inside an industrial mixer, performance is determined by what cannot be seen:• Velocity distribution• Recirculation zones• Dead volumes• Shear rates• Mixing uniformityA mixer that appears identical from the outside can behave completely differently on the inside.Some regions mix rapidly.Others barely move.Some consume more energy than necessary.Others fail to achieve the required product quality.CFD makes these hidden flow structures visible before manufacturing, scaling up, or modifying equipment.Because better mixing is rarely about adding more power.It is usually about moving fluid more intelligently.TEST BEFORE REALITY.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
#BEFORE_REALITY 02For decades, vacuum cleaners shared the same flaw:The more dust they collected, the less effective they became.Most people accepted it.James Dyson didn't.He believed the problem wasn't inevitable.The design was.What followed was not a breakthrough idea or a sudden moment of inspiration.It was thousands of failures.More than 5,000 prototypes were built before the first Dyson vacuum cleaner reached the market.Most of them never worked.Each one revealed something new about airflow, pressure losses, and particle separation.Each failure made the next design better.Today, engineering teams increasingly move those failures into simulation.Because failure itself is not expensive.Late failure is.The goal of engineering is not avoiding failure.It is making failure cheaper, faster, and smarter.Reality is expensive. Simulation isn't.TEST BEFORE REALITY.📖 Read the full story on our Instagram.🔗 Stay ConnectedInstagram | LinkedIn | Telegram#BEFORE_REALITY 02For decades, vacuum cleaners shared the same flaw:The more dust they collected, the less effective they became.Most people accepted it.James Dyson didn't.He believed the problem wasn't inevitable.The design was.What followed was not a breakthrough idea or a sudden moment of inspiration.It was thousands of failures.More than 5,000 prototypes were built before the first Dyson vacuum cleaner reached the market.Most of them never worked.Each one revealed something new about airflow, pressure losses, and particle separation.Each failure made the next design better.Today, engineering teams increasingly move those failures into simulation.Because failure itself is not expensive.Late failure is.The goal of engineering is not avoiding failure.It is making failure cheaper, faster, and smarter.Reality is expensive. Simulation isn't.TEST BEFORE REALITY.📖 Read the full story on our Instagram.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
#Where_It_Shines🔋 Thermal Management Simulation of Electric Vehicle BatteriesIn battery systems, temperature is more than just a number. It is a key factor that determines performance, lifetime, and safety.Non-uniform temperature distribution inside a battery pack can reduce efficiency, accelerate degradation, shorten battery life, and in critical conditions, lead to thermal runaway.Using CFD and OpenFOAM®, engineers can analyze airflow, heat transfer, and temperature distribution inside the battery pack before building a physical prototype, enabling design decisions to be driven by data rather than trial and error.This means:✔ Optimized cooling performance✔ Reduced thermal hotspots✔ Extended battery lifetime✔ Improved safety and reliability✔ Lower development cost and timeIn industry, simulation is more than an engineering tool. It is a competitive advantage.Test Before Reality.🔗 Stay ConnectedInstagram | LinkedIn | Telegram#Where_It_Shines🔋 Thermal Management Simulation of Electric Vehicle BatteriesIn battery systems, temperature is more than just a number. It is a key factor that determines performance, lifetime, and safety.Non-uniform temperature distribution inside a battery pack can reduce efficiency, accelerate degradation, shorten battery life, and in critical conditions, lead to thermal runaway.Using CFD and OpenFOAM®, engineers can analyze airflow, heat transfer, and temperature distribution inside the battery pack before building a physical prototype, enabling design decisions to be driven by data rather than trial and error.This means:✔ Optimized cooling performance✔ Reduced thermal hotspots✔ Extended battery lifetime✔ Improved safety and reliability✔ Lower development cost and timeIn industry, simulation is more than an engineering tool. It is a competitive advantage.Test Before Reality.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
#HOORAN_VISUALS 01Inside a cyclone separator, there are no moving parts.No filters.No complex mechanisms.Only geometry and fluid physics.As the flow enters tangentially, a powerful vortex develops inside the chamber. Centrifugal forces drive particles toward the wall, while cleaner air moves toward the core and exits through the vortex finder.The engineering challenge is simple to describe but difficult to optimize:Increase particle collection efficiency.Minimize pressure drop.Improve one too much, and the other usually suffers.CFD allows engineers to observe what experiments often cannot reveal directly:• Flow structures• Particle trajectories• Recirculation regions• Vortex behavior• Separation performanceBecause before equipment is manufactured, installed, or operated...the physics can already be tested.TEST BEFORE REALITY.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
#BEFORE_REALITY 01Imagine discovering a critical design flaw...after manufacturing.For aerospace engineers, this was once common.A small cooling issue inside a turbine blade could mean months of redesign, testing, and costly prototype changes.Then engineering changed.Instead of testing ideas only in the real world, engineers began testing them inside computers.Airflow became visible.Heat transfer became measurable.Failures happened in simulation, not in the factory.Every virtual failure improved the final product.Simulation doesn't eliminate failure.It changes where failure happens.Based on a real engineering storyCompany: Rolls-RoyceChallenge: Reduce design risks before manufacturingSolution: CFD & High Performance ComputingOutcome: Faster design cycles and fewer costly prototypes.TEST BEFORE REALITY.🔗 Stay ConnectedInstagram | LinkedIn | Telegram#BEFORE_REALITY 01Imagine discovering a critical design flaw...after manufacturing.For aerospace engineers, this was once common.A small cooling issue inside a turbine blade could mean months of redesign, testing, and costly prototype changes.Then engineering changed.Instead of testing ideas only in the real world, engineers began testing them inside computers.Airflow became visible.Heat transfer became measurable.Failures happened in simulation, not in the factory.Every virtual failure improved the final product.Simulation doesn't eliminate failure.It changes where failure happens.Based on a real engineering storyCompany: Rolls-RoyceChallenge: Reduce design risks before manufacturingSolution: CFD & High Performance ComputingOutcome: Faster design cycles and fewer costly prototypes.TEST BEFORE REALITY.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
VelanoTech pinned «🔅🔅سلام به همگی، ما دوباره برگشتیم، با یه رویکرد جدید، همون تیم قبلی دوباره تصمیم گرفتیم دورهم یه کار جدید براساس تخصصمون شروع کنیم، با تجربیاتی که از ولانوتک داشتیم! ✅خوشحال میشیم دنبالمون کنید و با نظرات ارزشمندتون کمکمون کنید، پیشرفت کنیم! @HooranASC»
WELCOME TO HOORANHooran is built around one idea:Better engineering starts with better understanding.Here, we explore what happens before reality.We break down complex engineering concepts into clear insights.We turn research papers into stories you can understand in minutes.We explore the real engineering stories behind some of the world's most ambitious technologies.We make invisible physics visible through simulation.And we share the tools, methods, and ideas that help engineers make better decisions.This is where engineering meets simulation, research, and curiosity.Welcome to Hooran.TEST BEFORE REALITY.🔗 Stay ConnectedInstagram | LinkedIn | TelegramWELCOME TO HOORANHooran is built around one idea:Better engineering starts with better understanding.Here, we explore what happens before reality.We break down complex engineering concepts into clear insights.We turn research papers into stories you can understand in minutes.We explore the real engineering stories behind some of the world's most ambitious technologies.We make invisible physics visible through simulation.And we share the tools, methods, and ideas that help engineers make better decisions.This is where engineering meets simulation, research, and curiosity.Welcome to Hooran.TEST BEFORE REALITY.🔗 Stay ConnectedInstagram | LinkedIn | Telegram
🔅🔅سلام به همگی، ما دوباره برگشتیم، با یه رویکرد جدید، همون تیم قبلی دوباره تصمیم گرفتیم دورهم یه کار جدید براساس تخصصمون شروع کنیم، با تجربیاتی که از ولانوتک داشتیم! ✅خوشحال میشیم دنبالمون کنید و با نظرات ارزشمندتون کمکمون کنید، پیشرفت کنیم!@HooranASC
#ManifestEvery engineering achievement begins with uncertainty.A new product.A new process.A new design.A new idea.But ideas are expensive when they fail.For decades, engineering progress has relied on prototypes, experiments, and trial and error. Yet today's challenges demand something better:The ability to understand reality before building it.At Hooran, we believe simulation is more than a tool.It is a way of thinking.A way to replace assumptions with evidence.To replace uncertainty with insight.To replace guesswork with confidence.Our mission is simple:To help engineers, researchers, and innovators make better decisions before time, before cost, before risk, and before reality.Because every important decision deserves confidence.TEST BEFORE REALITY.Welcome to Hooran.Engineering the future, before it's built.🔗 Stay ConnectedInstagram | LinkedIn | Telegram#ManifestEvery engineering achievement begins with uncertainty.A new product.A new process.A new design.A new idea.But ideas are expensive when they fail.For decades, engineering progress has relied on prototypes, experiments, and trial and error. Yet today's challenges demand something better:The ability to understand reality before building it.At Hooran, we believe simulation is more than a tool.It is a way of thinking.A way to replace assumptions with evidence.To replace uncertainty with insight.To replace guesswork with confidence.Our mission is simple:To help engineers, researchers, and innovators make better decisions before time, before cost, before risk, and before reality.Because every important decision deserves confidence.TEST BEFORE REALITY.Welcome to Hooran.Engineering the future, before it's built.🔗 Stay ConnectedInstagram | LinkedIn | Telegram