Transform your fire protection engineering process with PyroSim. Import CAD geometry seamlessly, manage simulation assets effectively, and design complex simulations with ease. PyroSim’s tools help you create professional, reliable results for safer building designs and fire safety analysis. Learn more: https://lnkd.in/gik4UTCr
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Transform your fire protection engineering process with PyroSim. Import CAD geometry seamlessly, manage simulation assets effectively, and design complex simulations with ease. PyroSim’s tools help you create professional, reliable results for safer building designs and fire safety analysis. Learn more: https://lnkd.in/gik4UTCr
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🌟 Discover Versatile Example Models! 🌟 Ever wondered how to design and analyze complex structures with precision? Dive into our latest example model—a stainless steel tank, meticulously designed and calculated using the powerful RFEM 6 structural analysis software. 🔹 What’s Special About This Model? - Explore advanced structural behaviors and stability features. - Learn how to handle stainless steel properties in your calculations. - Perfect for sharpening your skills or jumpstarting your next project! Whether you're a seasoned engineer or a curious learner, this model offers a hands-on way to master cutting-edge engineering techniques. And the best part? The download is completely free! 👉 Download the structural model now and take your projects to the next level: https://lnkd.in/eby6nZuw #StructuralAnalysis #RFEM6 #EngineeringSoftware #StainlessSteel #FreeDownload #DlubalSoftware #StructuralModel #EngineeringTools #InnovativeDesign #LearnEngineering
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❓ How many blocks should I throw? This is a question that often comes up in probabilistic simulations, in various forms, essentially related to the dimensioning of a protection system: ❓ Have I thrown enough blocks? ❓ Is the number of blocks reaching the protection sufficient? ❓ Can I have confidence in the protection design? ❓ Is the dimensioning of the protection realistic in terms of height and energy? ✅ With RocPro3D, you can answer these questions by checking the convergence of the value of the statistical indicator (quantile, confidence limit) of the parameters used to dimension the protection. ✅ In one click, visualize the evolution of the value of this parameter and make a fully informed decision on the quality of the dimensioning according to the number of blocks reaching the protection and therefore the number of blocks launched. Interesting, isn't it? #rockfall #geohazard #protection #mitigationdesign
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❓ How many blocks should I throw? This is a question that often comes up in probabilistic simulations, in various forms, essentially related to the dimensioning of a protection system: ❓ Have I thrown enough blocks? ❓ Is the number of blocks reaching the protection sufficient? ❓ Can I have confidence in the protection design? ❓ Is the dimensioning of the protection realistic in terms of height and energy? ✅ With RocPro3D, you can answer these questions by checking the convergence of the value of the statistical indicator (quantile, confidence limit) of the parameters used to dimension the protection. ✅ In one click, visualize the evolution of the value of this parameter and make a fully informed decision on the quality of the dimensioning according to the number of blocks reaching the protection and therefore the number of blocks launched. Interesting, isn't it? #rockfall #geohazard #naturalhazard #protection #mitigationdesign
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Have I thrown enough blocks? How many blocks should I throw to assess the rockfall hazard using probabilistic software? These are common questions. In RocPro3D, you can easily answer them. Have you tested the feature described below? 👇 👇
❓ How many blocks should I throw? This is a question that often comes up in probabilistic simulations, in various forms, essentially related to the dimensioning of a protection system: ❓ Have I thrown enough blocks? ❓ Is the number of blocks reaching the protection sufficient? ❓ Can I have confidence in the protection design? ❓ Is the dimensioning of the protection realistic in terms of height and energy? ✅ With RocPro3D, you can answer these questions by checking the convergence of the value of the statistical indicator (quantile, confidence limit) of the parameters used to dimension the protection. ✅ In one click, visualize the evolution of the value of this parameter and make a fully informed decision on the quality of the dimensioning according to the number of blocks reaching the protection and therefore the number of blocks launched. Interesting, isn't it? #rockfall #geohazard #naturalhazard #protection #mitigationdesign
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💪 Dynamic Analysis with Dlubal Software
🔍 Are you responsible for the structural design of a building and need to analyze it in terms of dynamics? Look no further than Dlubal Software. 📹 In this video, we present the most essential add-ons and features for #dynamic analysis in #RFEM6 and #RSTAB9: 📌 Modal Analysis add-on: - Mode shapes - Eigenvalues - Natural frequencies - Involved masses for deformation similar to mode shapes 📌 Response Spectrum Analysis add-on: - Method for complete structure, including all mass points - Response spectra according to various standards - SRSS and CQC rule - Accidental torsional actions 📌 Time History Analysis add-on: - Linearly implied Newmark analysis or modal analysis - Rayleigh damping coefficient - Lehr's damping value 📌 Pushover Analysis add-on: - Load increment until plastic hinges occur - #Pushover curve 📌 Dashpot: - Linear viscous damping element - Kelvin-Voigt model - Additional options in Time History Analysis 📌 Calculation Diagrams: - Result diagram via building axis - Seismic force over building height 📌 Capacity Design: - Strong column – weak beam #Seismic #Earthquake #SeismicDesign #StructuralEngineering #Tragwerksplanung #Dynamik #DynamischeBerechnung
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In our latest blog, we explore how RSATB and RSTAB enhance structural analysis for complex designs. Learn how our engineering teams use these tools for accurate and efficient calculations.
💡 Blog 9 - Designing with 3D structural analysis program Previously in this blog series, we covered how to use the siFramo Technical Guidelines for typical frame configurations but what happens when your designs are more complex? Using RSATB for structural analysis is the answer to this. Read more about how our Engineering teams use RSTAB for structural calculations here: https://hubs.la/Q02WqvKz0 #structuralanalysis #RSTAB #engineering #loaddata
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🔍 Are you responsible for the structural design of a building and need to analyze it in terms of dynamics? Look no further than Dlubal Software. 📹 In this video, we present the most essential add-ons and features for #dynamic analysis in #RFEM6 and #RSTAB9: 📌 Modal Analysis add-on: - Mode shapes - Eigenvalues - Natural frequencies - Involved masses for deformation similar to mode shapes 📌 Response Spectrum Analysis add-on: - Method for complete structure, including all mass points - Response spectra according to various standards - SRSS and CQC rule - Accidental torsional actions 📌 Time History Analysis add-on: - Linearly implied Newmark analysis or modal analysis - Rayleigh damping coefficient - Lehr's damping value 📌 Pushover Analysis add-on: - Load increment until plastic hinges occur - #Pushover curve 📌 Dashpot: - Linear viscous damping element - Kelvin-Voigt model - Additional options in Time History Analysis 📌 Calculation Diagrams: - Result diagram via building axis - Seismic force over building height 📌 Capacity Design: - Strong column – weak beam #Seismic #Earthquake #SeismicDesign #StructuralEngineering #Tragwerksplanung #Dynamik #DynamischeBerechnung
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💡 Blog 9 - Designing with 3D structural analysis program Previously in this blog series, we covered how to use the siFramo Technical Guidelines for typical frame configurations but what happens when your designs are more complex? Using RSATB for structural analysis is the answer to this. Read more about how our Engineering teams use RSTAB for structural calculations here: https://hubs.la/Q02WqvKz0 #structuralanalysis #RSTAB #engineering #loaddata
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Modeling and Design of Steel Structures in RFEM 6 | Part 1: Modeling and Load Input In this two-part webinar, you will learn how to model and design steel structures in #RFEM 6. Part 1 covers modeling and load input. Content: ✅ Modeling of a steel structure on the basis of an imported DXF file (background layer) ✅ Load input (including import of load zones from the Dlubal website, snow and wind load wizard) ✅ Applying imperfections Recorded Webinar: https://lnkd.in/eXXVE6RJ #DlubalSoftware #RFEM6 #SteelStructures #SteelDesign #StructuralAnalysis
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