Unleash the full potential of DeepEX, where you can create borings and define soil layers with unparalleled precision. Our software empowers you to define the top elevation of soil layers, select a soil type from a comprehensive list, and assign borings to selected design sections with ease. Experience the difference with DeepEX and revolutionize your geotechnical engineering process. In our new video, you can learn how to switch to custom layer mode, generate custom layers from boring, edit custom layer points, and even draw new custom layer lines. 🎥 Ready to Dive In? Watch the Video. Join us and become a master of defining soil layers and creating borings with DeepEX. Add a new dimension to your 2D sections, edit soil layers, and change the order of custom layers as per your requirements. #DeepEX #GeotechnicalEngineering
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Review and Evaluate Results in the DeepEX Analysis and Summary Table Unlock the full potential of your geotechnical projects with DeepEX. Our sophisticated software allows you to: ✓Review the Generated Model: Examine every stage of your excavation model, ensuring comprehensive analysis and optimization. ✓Analyze with Precision: Focus on selected sections or assess all design sections for a thorough evaluation. ✓Insightful Summary Table: The Analysis & Checking Summary Table provides a clear overview, highlighting critical results and flagging issues with an intuitive red indicator for immediate attention. ✓Critical Results at a Glance: Easily identify key displacement and settlement results, as well as moment and shear check ratios, ensuring your project's integrity. ✓Optimize Support Structures: Maximize efficiency with automatic calculations for maximum reactions and structural & geotechnical check ratios. ✓Minimum Wall Embedment Factors: Trust in the reliability of your design with our LEM Analysis, providing essential embedment factors. With DeepEX, you have the power to review multiple results versus stage for all design sections, select specific sections for detailed stage results, and gain insights into lagging estimation results and more. 🎥 Ready to Explore Further? watch the video and see DeepEX in action. Join the community of professionals who rely on DeepEX for geometrically precise and structurally sound excavations. #DeepExcavation #GeotechnicalEngineering
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FAQ: Can I Define Drained and Undrained Clays in DeepEX? Are you a geotechnical engineer seeking to understand and simulate the behavior of clays under different conditions in DeepEX? Our software provides comprehensive tools to model both drained and undrained clay properties, ensuring reliable analysis and design. With DeepEX, you can easily define the undrained behavior of clays below the water table using undrained shear strength (Su) and model drained clays above the water table using cohesion (c') and friction angle (phi). These parameters are crucial for accurate predictions of soil stability and deformation, especially in scenarios involving foundations, slopes, and embankments. For a more detailed guide on how to define and simulate these conditions in your projects, download the comprehensive guide from our site. Transform your geotechnical designs with DeepEX and ensure robust and reliable engineering outcomes. 📄 Ready to enhance your simulations? View the files on our site today! #DeepEX #DeepExcavation #GeotechnicalEngineering
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In this How-to Wednesday: How-To: Add a Custom Shape Tunnel in DeepEX DeepEX is your ultimate software in geotechnical engineering. It provides a comprehensive guide on how to add a tunnel in the model area, draw a custom tunnel shape, define the exact custom shape point coordinates, and define the lining structural section. With DeepEX, you can access the "Draw Supports" drop-down and select the tool "Draw a tunnel". You can also use the draw tools to draw an initial shape and adjust the coordinates for each point. This ensures a thorough understanding of the tunnel behavior under various conditions. Ready to elevate your geotechnical engineering skills? Dive into DeepEX today and experience the difference! 👍Like this post if you found it useful! 🚀Pass these tips along by reposting. #HowToWednesdays #DeepExcavation #Deepex
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In this How-To Wednesday: How to Limit the Interaction Impact Loads on Deadman Walls in DeepEX DeepEX empowers geotechnical engineers with innovative tools for efficient and accurate design. This guide explores how to manage interaction impact loads on deadman walls, ensuring optimal stability and performance in your projects: In traditional limit equilibrium and combined analysis methods, interference between the passive zone of the back wall and the active zone of the front wall can result in significant impact loads. By increasing the distance between walls or adjusting the depth of the back wall, you can effectively minimize this load. Additionally, DeepEX integrates a semi-empirical impact load reduction factor and automates interaction analysis using Finite Element Method (FEM) for seamless execution. For more insights and practical examples, visit our website to download comprehensive files and enhance your geotechnical expertise today! 👍 Found this helpful? Like it! 🚀 Share it with your colleagues. #HowToWednesdays #GeotechnicalEngineering #DeepEX
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Create Models with Soil Reinforcements in DeepEX Master soil reinforcement modeling with DeepEX and elevate your geotechnical designs to a new level of precision and efficiency. ✓ Begin by creating backfills with soil reinforcements using the intuitive tools in the MSE tab. Easily draw a single soil reinforcement row, or generate a group with customized lengths, vertical spacing, and section types. ✓ Choose from various materials such as steel strips, geotextiles, or geogrids to suit your project needs. Specify backfill bench properties and make adjustments effortlessly. You can even remove reinforcements with a simple click. ✓ Need to build segmental block walls? The DeepEX model wizard allows you to adjust wall height, water elevations, and backfill soil types while factoring in seismic pressures for advanced analysis. 🎥 Ready to improve your modeling skills? View the files from our site and learn how DeepEX makes soil reinforcement modeling seamless. Unlock the potential of DeepEX today and excel in geotechnical engineering projects. #DeepEX #DeepExcavation #GeotechnicalEngineering
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In this How-to Wednesday: HOW TO: Create Slope and Bench Surfaces in a DeepEX Model Unlock the full potential of geotechnical modeling with DeepEX the leading software that empowers engineers to create accurate slope and bench surfaces swiftly. Whether you're manually editing point coordinates or generating surfaces automatically, DeepEX streamlines the process with precision. DeepEX doesn't just facilitate the creation of geotechnical models; it elevates your engineering capabilities. With tools designed for ease and efficiency, you can focus on innovation and design excellence. Explore the depths of geotechnical engineering with DeepEX. Visit our website to view detailed files and enhance your modeling skills today! 👍 Like this post if it guides your next project! 🚀 Share these tips to support the engineering community. #HowToWednesdays #GeotechnicalEngineering #DeepEX
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Important information for Geotechnical Engineers! A common oversight in the planning of such projects is the assumption of hydrostatic water pressures in the ground. However, this approach can be misleading, potentially hazardous and increasing the cost of your project. Why Hydrostatic Assumptions Are Inadequate: Hydrostatic water pressure, which assumes a uniform pressure exerted by the water at all points at a given depth, might not accurately represent the actual conditions in a complex geological setting. This simplistic assumption can lead to a significant overestimation of resisting pressures within an excavation site. The Importance of Groundwater Flownet Analysis: Instead of relying on hydrostatic assumptions, conducting a groundwater flownet analysis is essential. This method provides a more accurate visualization of potential water flow paths through soil layers around and beneath an excavation site. By understanding these flow paths, engineers can better predict the actual water pressures exerted against the excavation walls and base. Risks of Overestimation: Overestimating the resisting pressures can lead you to mistake in calculate safety factors for wall embedment than are realistically present. This miscalculation can dangerously lead to inadequate designs that may not hold up under actual conditions, posing risks of excavation collapse. #geotechnicalengineering #construction #civilengineering #sheetpiling #vinylsheetpiles
Must read this if you are a #geotechnicalengineer and you are working with #cofferdams and #deepexcavations in #marineconstruction. Attention, do not use hydrostatic water pressures in the ground, always run an analysis using a #groundwater flownet analysis. If you assume hydrostatic water pressures you will be overestimating the resisting pressures within the #excavation. This can lead to seriously overestimating your available wall embedment safety factors and can further lead to excavation collapse. I will be describing such a case in our upcoming workshop New York University on May 24th. The #DeepEX model below clearly shows some of the differences, and also includes a 2D #geotechnical #finitelement analysis. Follow Deep Excavation LLC for more lifesaving #geotechnical knowledge!
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FAQ: How can I create a deadman wall model with DeepEX model wizard? Learn how to efficiently model a deadman wall system using the DeepEX Model Wizard! Deadman walls are essential for stabilizing retaining structures by using buried anchors connected to the wall to resist lateral forces. In this guide, you'll explore the key steps: selecting your unit system, choosing an analysis method, defining project dimensions, and inputting soil properties and surcharges. With just a few clicks, you can generate detailed construction stages for deadman systems. DeepEX simplifies this process, ensuring compliance with structural codes while offering powerful modeling capabilities. For a comprehensive understanding of how to simulate real-world conditions with DeepEX, explore the files available on our site! #GeotechnicalEngineering #DeepExcavation #RetainingWalls
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Excavation design made easy! 🚀 Here’s a quick video showing how I used an API to create excavation geometries in PLAXIS quickly and efficiently. This was part of my work as a visitor at Tampere University. Check it out and see how automation can save time and improve accuracy! #PLAXIS #Automation #Excavation
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Generate, Analyze, and Optimize a Deep Excavation in Seconds with DeepEX Unlock the full potential of DeepEX for your deep excavation projects. ✓ Generate, analyze, and optimize deep excavation models in seconds. Benefit from automatic optimization of wall embedment depth, structural sections, support locations, and more. ✓ Create precise models with simple commands like “Create a 38-foot deep excavation with tiebacks.” Review each stage of your model effortlessly. ✓ Use the Design tab to optimize wall depth for specified safety factors. Analyze and review critical results, with vital checks highlighted in red. ✓ Employ the Optimize tab to autodesign walls, select recommended sections, and refine support lengths. Ensure your model meets all safety and design criteria. 🎥 Ready to elevate your geotechnical engineering projects? Watch the video and explore DeepEX. Join us and master the art of generating, analyzing, and optimizing deep excavations with DeepEX. #GeotechnicalEngineering #DeepEX
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