Trending

#Geotechnical

Watch 418K Reels videos about Geotechnical from people all over the world.

Watch anonymously without logging in.

418K posts
NewTrendingViral

Trending Reels

(12)
#Geotechnical Reel by @valleygeotechnical - Choose your player🫣

Visit the link in our bio to see how we can help you with your next project!

#GeotechnicalEngineering #Geotech #SoilTesting  #S
30.3K
VA
@valleygeotechnical
Choose your player🫣 Visit the link in our bio to see how we can help you with your next project! #GeotechnicalEngineering #Geotech #SoilTesting #SiteInvestigation #geotechnical
#Geotechnical Reel by @mndsingapore (verified account) - Not an archaeologist, not a seismologist. Any guesses? 👀🪨

.
.
.

Yes, it is a geotechnical #engineer. They study the ground beneath us so our build
2.6K
MN
@mndsingapore
Not an archaeologist, not a seismologist. Any guesses? 👀🪨 . . . Yes, it is a geotechnical #engineer. They study the ground beneath us so our buildings stay strong, stable and safe for everyone. 🏙️✨ #BuildSG #WeBuiltThisCity #BuildDifferent
#Geotechnical Reel by @drentamboura - Vertical Drainage System for Soft Soil Improvement

Vertical drains are used in geotechnical engineering to accelerate the consolidation of soft soils
1.4K
DR
@drentamboura
Vertical Drainage System for Soft Soil Improvement Vertical drains are used in geotechnical engineering to accelerate the consolidation of soft soils such as clay. By shortening the drainage path, excess pore water escapes faster under loading, allowing the ground to gain strength more quickly. This technique is widely used in roads, airports, embankments, and land reclamation projects. ✅ Faster settlement ✅ Improved soil stability ✅ Reduced construction time #GeotechnicalEngineering #GroundImprovement #CivilEngineering
#Geotechnical Reel by @dalinghausconstruction - We lift sinking and settling homes😎🤘🏽 
These homes sank for various reasons, but the most prevalent would have to be expansive clay soils. 
 
These
65.5K
DA
@dalinghausconstruction
We lift sinking and settling homes😎🤘🏽 These homes sank for various reasons, but the most prevalent would have to be expansive clay soils. These soils expand when wet and then contact when dry.. and this constant, vicious cycle of expansion and contraction leads to unstable soil and oftentimes differential settlement. We’re using American made galvanized steel helical piles and push piers to stabilize these homes from future settlement while also lifting and recovering some of the settlement that’s occurred. The hydraulic system is daisy chained together but each hydraulic lift head can be controlled individually. This means that the crews can turn certain areas on and off when lifting. Pair that with constant interior floor elevation measurements by the foreman, and we’re able to lift the home evenly and smoothly without adding stress to the structure. Super important to look at repairing foundation issues prior to performing home improvement projects, otherwise it may prevent how much lift can be achieved before causing cosmetic damage fresh improvement. Any questions about foundation repair and lifting homes? Leave them down below👇🏽👇🏽👇🏽 #foundationrepair #underpinning #geotechnical #engineering #homeimprovement
#Geotechnical Reel by @viralvideoms - Site Preparation: The Efficiency of Excavator Rake Buckets! 🛠️🚜

​Observe the amazing utility and hydraulic precision of an Excavator equipped with
220.1K
VI
@viralvideoms
Site Preparation: The Efficiency of Excavator Rake Buckets! 🛠️🚜 ​Observe the amazing utility and hydraulic precision of an Excavator equipped with a Heavy-Duty Rake Bucket in action! This is a prime example of geotechnical site preparation, where specialized attachments are used to clear debris, separate stones from soil, and grade surfaces with industrial-level speed. ​The Art of Mechanical Soil Sorting ​This process is a core example of how specialized geometry optimizes earthmoving tasks: ​The Setup: A standard excavator is fitted with a wide, tined rake bucket instead of a solid digging bucket. In civil engineering, this is a mechanical sorting system designed to let fine soil pass through the tines while capturing larger rocks, roots, and debris. ​The Sifting Mechanism (0:01 - 0:04): As the operator drags the rake through the loose soil, the spacing between the tines acts as a physical filter. This process, known as mechanical screening, is essential for preparing "clean fill" or creating a smooth base for landscaping and agricultural projects. ​Hydraulic Coordination (0:05 - 0:09): Notice the steady, horizontal movement of the boom and arm. The operator must maintain a consistent depth to avoid digging too deep while ensuring that the tines effectively comb through the top layer. This level of control is a masterclass in Fluid Power Management. ​Land Clearing & Grading: Unlike a standard bucket, the rake allows the operator to level the ground while simultaneously removing obstacles. This "multi-tasking" design significantly reduces the number of passes required, saving both time and fuel on the project site. ​The Final Result: A perfectly cleared and graded trench or field, achieved with surgical precision. It’s a flawless industrial-style operation that proves how the right attachment can transform a machine’s productivity! ​Engineering for Versatility ​From the high-tensile steel used for the wear-resistant tines to the precision-calculated spacing between them, the rake bucket is a testament to functional industrial design. It’s all about the perfect comb!
#Geotechnical Reel by @scottdhenry31 (verified account) - Four years ago Lee made the prediction….the rest is history!! 😂😂😂 Thank you all for choosing to follow me! I hope I can continue to make you laugh!
574.7K
SC
@scottdhenry31
Four years ago Lee made the prediction….the rest is history!! 😂😂😂 Thank you all for choosing to follow me! I hope I can continue to make you laugh! #backtothebasics #construction #geotechnical
#Geotechnical Reel by @civil_world96 - Dynamic compaction is a geotechnical ground improvement technique that uses high-energy impact-dropping 8-36 tonne weights from 1-30 meters-to densify
6.2K
CI
@civil_world96
Dynamic compaction is a geotechnical ground improvement technique that uses high-energy impact—dropping 8–36 tonne weights from 1–30 meters—to densify loose, granular soils, saturated sands, and fills. It reduces void ratios, increases bearing capacity, and minimizes settlement by rearranging soil particles through shear strain and deep-penetrating stress waves. #civilengineering #construction #instagram #instagramreels #trendingreels
#Geotechnical Reel by @trimblegeospatial - For haul road compliance: Use TMI
For drill and blast optimization: Use TMI
For high wall compliance: Use TMI

Optimize your surveying, drilling, blas
8.2K
TR
@trimblegeospatial
For haul road compliance: Use TMI For drill and blast optimization: Use TMI For high wall compliance: Use TMI Optimize your surveying, drilling, blasting and geotechnical workflows with Trimble Mine Insights (TMI) software, a cloud-based mining analytics application that delivers high-value, AI-powered insights to mining professionals.
#Geotechnical Reel by @civilgyan_ - The 7 key fields of civil engineering-structural, geotechnical, transportation, environmental, water resources, construction, and urban/municipal engi
3.8K
CI
@civilgyan_
The 7 key fields of civil engineering—structural, geotechnical, transportation, environmental, water resources, construction, and urban/municipal engineering—focus on planning, designing, and maintaining infrastructure like bridges, tunnels, roads, and water systems . They ensure safe, sustainable, and functional structures, utilizing specialized skills for soil analysis, project management, and environmental protection. #Civilgyan_8 #civilgyan_
#Geotechnical Reel by @thevanessacole (verified account) - Houston soil can crack foundations. 🏚️
Or it can build cities. 🌆 

The difference?
Understanding it.

This month, Ladies in Land partnered with @tea
5.2K
TH
@thevanessacole
Houston soil can crack foundations. 🏚️ Or it can build cities. 🌆 The difference? Understanding it. This month, Ladies in Land partnered with @team_ues for a behind the scenes geotechnical lab tour because reviewing a soil report isn’t enough. You need to know what’s beneath the surface. In Houston, our expansive clay soils swell and shrink with moisture changes putting real pressure on foundations, infrastructure, and budgets. Seeing the testing. Touching the samples. Understanding the data. That’s how smarter development happens. Thank you to UES for opening your doors and investing in deeper education. We don’t just network. We build competence. Join us → ladiesinland.com 🎬 Script Writer & Creative Director: @robelyemaneofficial #LadiesInLand #HoustonDevelopment #BuildingSmarter #WomenInDevelopment
#Geotechnical Reel by @insightowlhq - Follow @insightowlhq for more civil engineering, geotechnical science, and ideas that spark curiosity 🧠

This material is lacustrine clay.

It formed
55.4K
IN
@insightowlhq
Follow @insightowlhq for more civil engineering, geotechnical science, and ideas that spark curiosity 🧠 This material is lacustrine clay. It formed at the bottom of ancient lakes where extremely fine particles settled slowly in water. The structure traps moisture between weak layers, giving the soil very low strength. Under buildings or roads, water gradually squeezes out. The ground compresses over time, causing settlement, tilted structures, and cracking foundations years after construction. Engineers study properties like moisture content, consolidation rate, and shear strength before building. Projects often require drainage systems, soil improvement, or deep foundations to stay stable. What looks smooth and solid can slowly deform under load — making soil behavior just as important as the structure above it. #engineering #construction #geotechnical #infrastructure #howthing

✨ #Geotechnical Discovery Guide

Instagram hosts 418K posts under #Geotechnical, creating one of the platform's most vibrant visual ecosystems. This massive collection represents trending moments, creative expressions, and global conversations happening right now.

The massive #Geotechnical collection on Instagram features today's most engaging videos. Content from @scottdhenry31, @viralvideoms and @civilcraftstudio and other creative producers has reached 418K posts globally. Filter and watch the freshest #Geotechnical reels instantly.

What's trending in #Geotechnical? The most watched Reels videos and viral content are featured above. Explore the gallery to discover creative storytelling, popular moments, and content that's capturing millions of views worldwide.

Popular Categories

📹 Video Trends: Discover the latest Reels and viral videos

📈 Hashtag Strategy: Explore trending hashtag options for your content

🌟 Featured Creators: @scottdhenry31, @viralvideoms, @civilcraftstudio and others leading the community

FAQs About #Geotechnical

With Pictame, you can browse all #Geotechnical reels and videos without logging into Instagram. No account required and your activity remains private.

Content Performance Insights

Analysis of 12 reels

✅ Moderate Competition

💡 Top performing posts average 242.7K views (2.7x above average). Moderate competition - consistent posting builds momentum.

Post consistently 3-5 times/week at times when your audience is most active

Content Creation Tips & Strategy

🔥 #Geotechnical shows high engagement potential - post strategically at peak times

✍️ Detailed captions with story work well - average caption length is 627 characters

📹 High-quality vertical videos (9:16) perform best for #Geotechnical - use good lighting and clear audio

✨ Many verified creators are active (33%) - study their content style for inspiration

Popular Searches Related to #Geotechnical

🎬For Video Lovers

Geotechnical ReelsWatch Geotechnical Videos

📈For Strategy Seekers

Geotechnical Trending HashtagsBest Geotechnical Hashtags

🌟Explore More

Explore Geotechnical#geotechnical engineering tips#geotechnical engineering projects#geotechnical engineering applications#geotechnical engineering techniques#geotechnical engineering#geotechnics#geotechnical engineer#jiroft dam geotechnical challenges