In this How-to Wednesday: How to Create 2D Sections from 3D Models in DeepEX Unlock new dimensions in your geotechnical engineering projects with DeepEX. This guide walks you through the process of converting 3D models into precise 2D sections, streamlining your workflow and enhancing project accuracy: ✓ Import Your 3D Model: Start by importing your 3D model into DeepEX. Navigate to the model import area, select your file, and let DeepEX transform complex 3D data into manageable 2D sections. ✓ Generate 2D Sections: With a few clicks, extract essential 2D sections from your 3D model. Right-click on the desired 3D area, choose "Generate 2D Section," and watch as DeepEX creates a detailed cross-section for your design. ✓ Customize and Sync: Tailor each section to your project's needs by adjusting geometry and structural elements. DeepEX ensures that all modifications are synchronized across your sections, maintaining consistency throughout your project. DeepEX is more than just software—it’s your partner in precision and innovation. Visit our website to explore comprehensive guides and download the files you need to elevate your projects. 👍 Found this guide helpful? Like it! 🚀 Share these insights to contribute to the advancement of geotechnical engineering. #HowToWednesdays #DeepExcavaiton #DeepEX #GeotechnicalEngineering
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Usually we show the other way around, how we can create a 3D model based on 2D sections in minutes with #DeepEx, this feature though is a game changer! From a generated 3D model, even with 3D external buildings imported automatically into the program, we can directly cut, generate and analyze any 2D cut section with all construction stages! #deepexcavation #shoringdesign #geotechnicalengineering
In this How-to Wednesday: How to Create 2D Sections from 3D Models in DeepEX Unlock new dimensions in your geotechnical engineering projects with DeepEX. This guide walks you through the process of converting 3D models into precise 2D sections, streamlining your workflow and enhancing project accuracy: ✓ Import Your 3D Model: Start by importing your 3D model into DeepEX. Navigate to the model import area, select your file, and let DeepEX transform complex 3D data into manageable 2D sections. ✓ Generate 2D Sections: With a few clicks, extract essential 2D sections from your 3D model. Right-click on the desired 3D area, choose "Generate 2D Section," and watch as DeepEX creates a detailed cross-section for your design. ✓ Customize and Sync: Tailor each section to your project's needs by adjusting geometry and structural elements. DeepEX ensures that all modifications are synchronized across your sections, maintaining consistency throughout your project. DeepEX is more than just software—it’s your partner in precision and innovation. Visit our website to explore comprehensive guides and download the files you need to elevate your projects. 👍 Found this guide helpful? Like it! 🚀 Share these insights to contribute to the advancement of geotechnical engineering. #HowToWednesdays #DeepExcavaiton #DeepEX #GeotechnicalEngineering
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One of the most critical aspects of #deepexcavations is to examine all #construction stages. This includes stages going down to the final #excavation subgrade as well as potentially removing temporary braces and replacing them with the permanent structure. What I am really proud is how quickly an #engineer can model all construction staging in DeepEX!
In this How-To Wednesday: How to edit construction stages in a DeepEX model In deep excavation projects, evaluating every construction stage is crucial for ensuring stability and safety. It's not just the final stage that demands attention—intermediate stages can often be more critical. For instance, supports may become overstressed before they are fully installed, posing significant risks if not properly monitored. Advanced analysis methods, such as Non-Linear Analysis with Winkler springs and Finite Element Analysis (FEA), take construction staging into account, providing more realistic and reliable results. A strict and detailed staging process helps predict and prevent potential issues, ensuring the structural integrity of the excavation throughout the project. Our DeepEX software integrates all key analysis methods—Limit Equilibrium, Non-Linear Analysis, and both 2D and 3D Finite Element Analysis. Within DeepEX, you can easily generate and manage all construction stages, monitoring result graphs and structural check ratios at each phase. This allows for a clear understanding of critical conditions and helps in optimizing your design for safety and efficiency. This PDF demonstrates how construction stages can be effectively managed and edited within DeepEX, empowering you to master even the most complex excavation projects. #DeepEX #DeepExcavation
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In this How-To Wednesday: How to edit construction stages in a DeepEX model In deep excavation projects, evaluating every construction stage is crucial for ensuring stability and safety. It's not just the final stage that demands attention—intermediate stages can often be more critical. For instance, supports may become overstressed before they are fully installed, posing significant risks if not properly monitored. Advanced analysis methods, such as Non-Linear Analysis with Winkler springs and Finite Element Analysis (FEA), take construction staging into account, providing more realistic and reliable results. A strict and detailed staging process helps predict and prevent potential issues, ensuring the structural integrity of the excavation throughout the project. Our DeepEX software integrates all key analysis methods—Limit Equilibrium, Non-Linear Analysis, and both 2D and 3D Finite Element Analysis. Within DeepEX, you can easily generate and manage all construction stages, monitoring result graphs and structural check ratios at each phase. This allows for a clear understanding of critical conditions and helps in optimizing your design for safety and efficiency. This PDF demonstrates how construction stages can be effectively managed and edited within DeepEX, empowering you to master even the most complex excavation projects. #DeepEX #DeepExcavation
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Incorporating 3D modeling into engineering design processes revolutionizes the approach to structural and geotechnical resolution. By leveraging advanced visualization tools and precise spatial representations, engineers can accurately analyze complex structures and geological formations, leading to enhanced safety, efficiency, and cost-effectiveness in construction projects. 3D modeling enables comprehensive assessments of structural integrity, identification of potential weaknesses, and optimization of designs, ultimately ensuring robust and resilient infrastructure development. #civilengineering #geotechnicalengineering #engineering #3dmodeling
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I am excited to share my latest project involving the development and analysis of 1D static structural I-beam elements! Leveraging this powerful tool has enabled us to efficiently model and evaluate the behavior of beams under static loads, ensuring optimal structural performance. This innovation is set to enhance our capabilities in designing robust and resilient structures across various engineering applications. #StructuralEngineering #FiniteElementAnalysis #Innovation #EngineeringExcellence
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🚀MOTIVE Original Content Series #15 2D Structural Analysis of Vertical Shaft using SW 📓A vertical shaft, a tunnel drilled in the vertical direction, is significantly affected by external air. Thus, this analysis is relatively complex, requiring more loads and load combinations than typical tunnel structural analysis. In this series, detailed information will be provided on the following topics: ✔️Concept of 2D Analysis for Vertical Shafts ✔️Analysis Process Using midas Civil Including Modeling and Rebar Calculation ✔️Differences in results between 2D and 3D structural analysis To explore the Full article, Visit our Website : https://hubs.ly/Q02yz7Yx0 Curious about the MOTIVATOR, Steve Choi? https://hubs.ly/Q02yzbkG0 #GeotechnicalEngineering #Shaft #MOTIVE
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What does structural engineering look like in few years? Me (a prompt engineer!): Design a pile supported octagon foundation for a facility at ... The foundation is to support a vertical process vessel on skirt with following design values: Diameter: ... Height: ... Shell thickness: ... Skirt height: ... Empty weight: ... Operating weight: ... Apply environmental loads according to ASCE 7-22. Provide full detailed calculations and a CAD drawing for permit application. CoPilot: Certainly! (few seconds later a pdf file is downloaded to the browser) here you go! ... Is there anything else I can help you with? 😐 #StructuralEngineering #AI
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In this How-to Wednesday: HOW TO generate a 3D model from a 2D section in DeepEX DeepEX is top-tier geotechnical engineering software, designed to simplify your project management. This guide shows you how to turn a 2D section into a 3D model effortlessly. First, open the 3D Model Wizard in the 3D World tab. Define your rectangular excavation dimensions and corner bracing distances. Alternatively, you can draw your model directly in the 3D model area by clicking points clockwise. To refine your model, adjust any corner node coordinates and modify struts, walers, and tiebacks in the model area. You can also add new supports during the support installation stage for each bracing level. Ready to enhance your geotechnical designs? Visit our site to explore detailed guides and training materials. Discover the future of engineering design with DeepEX. 👍Like this post if you found it useful! 🚀Share these tips with others. #HowToWednesdays #GeotechnicalEngineering #DeepEX
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Experienced Civil & Geotechnical Engineer | Structural Analysis | Geotechnical Software Expert | Onshore & Offshore Engineering | Research Enthusiast | YouTuber
𝐄𝐱𝐩𝐥𝐨𝐫𝐢𝐧𝐠 𝐂𝐨𝐧𝐬𝐭𝐫𝐮𝐜𝐭𝐢𝐨𝐧 𝐏𝐡𝐚𝐬𝐞𝐬 𝐰𝐢𝐭𝐡 𝐏𝐥𝐚𝐱𝐢𝐬 𝟑𝐃 In the realm of construction engineering, the simulation of construction stages stands as a cornerstone of project development. Understanding the evolving interactions between soil, structure, and environment throughout each phase is paramount for ensuring the integrity and safety of any edifice. With its sophisticated capabilities, Plaxis 3D serves as a potent tool for engineers and designers, offering unparalleled insight into the intricate dynamics of construction. From the initial ground excavation to the final structural adjustments, Plaxis 3D excels in simulating each construction stage with meticulous detail. Through its powerful algorithms and advanced modeling techniques, Plaxis 3D enables precise estimation of settlement and stress within the soil substrate, providing invaluable data for informed decision-making and proactive risk management. #ConstructionSimulations #Plaxis3D #BuildingStages #EngineeringInsights #ConstructionEngineering #SmartTools #SafetyFirst #StructuralIntegrity
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🚀 Exciting News from IDEA StatiCa 3D Detail We're thrilled to announce the publication of our latest verification article on the Mohr-Coulomb theory, showcasing the active confinement effect in concrete structures. The confinement effect is crucial in improving the strength and ductility of concrete, especially under high loads. By applying lateral pressure (active confinement) or using surrounding materials like steel reinforcement (passive confinement), the performance of concrete in compression can be significantly enhanced. Our detailed analysis compares IDEA StatiCa 3D Detail with ABAQUS, providing valuable insights into this important phenomenon. 🔍 Read the full article here: https://lnkd.in/eSFmghuy Let's continue pushing the boundaries of structural engineering together! 🌟 IDEA StatiCa #StructuralEngineering #ConcreteStructures #ActiveConfinement #IDEAStatiCa #MohrCoulombTheory #EngineeringInnovation #ResearchAndDevelopment
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