Another two-parter to end the #Timing 101 series: The Case of the Noisy Source Clock Tree Part 1. In this #TimingTuesday blog we will go a step beyond the prototypical or “canonical” #clock tree and discuss the motivation for adding a #jitter attenuator and its impact on clock tree jitter estimation. ⏲ https://lnkd.in/g6zTnYf4 #clocktree101 #timing #timingbasics #GoSkyworks
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Have you ever wondered where you would use a jitter attenuator? We can answer that in this week's edition of Timing Tuesday. If you still have questions, I can help. #timingtuesday #timing #goskyworks #semiconductor #icdevelopment #infrastructure
Another two-parter to end the #Timing 101 series: The Case of the Noisy Source Clock Tree Part 1. In this #TimingTuesday blog we will go a step beyond the prototypical or “canonical” #clock tree and discuss the motivation for adding a #jitter attenuator and its impact on clock tree jitter estimation. ⏲ https://lnkd.in/g6zTnYf4 #clocktree101 #timing #timingbasics #GoSkyworks
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Excited to share our new, exciting drill results from the end of 2023 for our Rodburn Ni-Cu-Co project! Hole 16 contains 27.0m @ 0.47% Ni, 0.3% Cu, 0.04% Co, from a depth of 62.0m (0.64% Ni equivalent). This includes 9m @ 1.13% Ni, 0.73% Cu, 0.10% Co from 74m (1.54% Ni equivalent). This new section of drilling (holes 016 and 015) is deemed to represent another structure of mineralisation compared to the structure observed in previous holes such as 009. The zones are 600m apart, but are geologically similar. The mineralisation zones exhibit a thick 'conduit/feeder zone' style with high grades of massive sulphide. Our recent news release is available for reading here: https://lnkd.in/e7AtP77g Our March 2024 presentation (which includes data for all the holes drilled so far) is also available if anyone is interested in giving it a read: https://lnkd.in/e-kDnxmd #nickel #exploration #copper #cobalt
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Need pinpoint accuracy whether you’re online or offline? eSteering has you covered with everything from seismic data integration to real-time adjustments, all from your desktop. We know drilling isn't just about making a hole, but it's about making the 𝘳𝘪𝘨𝘩𝘵 hole. That’s where 𝗲𝗦𝘁𝗲𝗲𝗿 shines, optimizing your well’s position to boost efficiency and hit your targets spot on. What innovations have made the biggest impact on your field recently, and how have they changed the way you work? #Geosteering #DrillingTechnology
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Geotechnical and Rock Mechanics Engineer | Hydro Dam Design and Construction | Dam Safety Review | Mine Tailing | Tunnelling
Addressing Liquefaction Challenges: Evaluation of liquefaction potential faces engineering hurdles due to soil complexity and uncertain ground conditions. Key challenges include: 1. Site-Specific Soil Properties: Obtaining accurate soil data is vital but challenging due to variability and depth-dependent behavior. 2. Groundwater Assessment: Precise evaluation of groundwater levels is crucial for predicting liquefaction potential. 3. Seismic Loading Influence: Accurate prediction of seismic stress history is essential, considering factors like earthquake magnitude. 4. Soil Behavior Modeling: Numerical modeling complexities demand expertise and validation against field data. 5. Variability and Uncertainty: Inherent soil variability and uncertainties affect assessment reliability. 6. Field Validation: Limited access and earthquake unpredictability hinder post-earthquake reconnaissance. A multidisciplinary approach is crucial, incorporating geotechnical principles, advanced testing, and computational modeling. Introducing Vibro Compaction with Stone Columns: Vibro compaction with stone columns offers effective ground improvement, particularly in urban areas. This ground improvement technique was introduced along the north coast of the Persian Gulf in densely populated urban areas in 2002, yielding outstanding results. I am pleased to have been involved in the initial trial as well as in the subsequent design and implementation processes. Benefits of Vibro Stone Columns: • Increased bearing capacity • Liquefaction mitigation • Settlement reduction Benefits also include rapid installation, minimal disturbance, and cost-effectiveness. Design factors include soil type, column specifications, and desired improvements. Watch these short two videos for a brief view of this method: https://lnkd.in/gRj8b3ds https://lnkd.in/gEfrZqCw
Vibroflot compaction without side water
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🌟 Unlock the Power of Expertise with Our Blast Vibration Training Module! Calling all mining and construction professionals! Elevate your team’s skills with our comprehensive online Blast Vibration Training Module. Led by industry specialist Nathan Rouse of Thoroughbred Drill and Blast Consultants in collaboration with ShotTrack Pty Ltd, this 5-hour training session is designed to transform your approach to blast vibration management. 🚀 What You'll Learn: * Fundamentals of Blast Vibrations: Understand the definitions, characteristics, and factors affecting vibrations. * Instrumentation & Setup: Master the art of setting up geophones and accelerometers for accurate data collection. * Waveform Analysis: Dive deep into analyzing waveforms, calculating frequencies, and interpreting data for optimal results. * Site Model Building: Learn to calculate charge weight per delay and develop regression models specific to your site. * Design & Control: Gain insights into timing optimization, vibration control, and designing blast patterns that minimize environmental impact. 👉 Sign up today and prepare to lead your projects with confidence and expertise! 🔗 Visit our website or contact us for more information and to reserve your spot in our next session! https://lnkd.in/gjis9-Z5 #BlastVibrationTraining #MiningIndustry #ConstructionSafety #ProfessionalDevelopment #Shottrack #vibrationmonitoring #ThoroughbredDrillandBlastConsultants
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🌟 Introducing "Short" Stories – A New Initiative! 🌟 While attending the Appalachian Underground Corrosion Short Course recently, a fascinating discussion inspired me to start something special. We've all faced those wild and unpredictable "shorts" in our cathodic protection systems that are as crazy as they are educational. I'm excited to announce "Short" Stories – a place to share the craziest short stories from the field. Let's uncover the most unusual, unexpected shorts and the ingenious solutions that came with them. 📢 **How to Participate:** - Drop your craziest short story in the comments or email [email protected]. - Share any insights and what you learned from the experience. - With your permission, I’ll feature your story in a special series here on LinkedIn. Let's transform our shocking shorts into compelling tales. I’m eager to hear about your most memorable encounters! #CorrosionControl #CathodicProtection #ShortStories
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Expanding from our poll from yesterday, we want to discuss in more depth porosity and permeability and the importance of it. In the energy sector, whether it's extracting hydrocarbons or safely storing carbon dioxide (CO2) underground for CCUS (Carbon Capture, Utilization, and Storage), understanding porosity and permeability is important. But what exactly are they? Porosity refers to the percentage of void space within a rock or sediment. Think of it like the air bubbles in a sponge. The higher the porosity, the more space a rock has the capability to hold fluids like oil, gas, or water. Permeability measures the ease with which fluids can flow through these interconnected pores. It's like the size and number of pathways within the sponge - wider and more numerous channels allow for faster flow. Why are these properties so important? ➡ Hydrocarbon Exploration & Production: High porosity and permeability are essential for identifying reservoirs - rock formations that can store and release significant quantities of oil and gas. ➡ Carbon Capture & Storage: For safe and effective CO2 storage, we need reservoirs with adequate porosity to hold the injected CO2 and sufficient permeability to allow for its controlled injection and long-term storage. Understanding these factors helps us: 🔹 Locate and evaluate potential hydrocarbon reserves. 🔸 Design efficient and safe CO2 storage projects. 🔹 Optimize extraction and injection processes. Watch this video to get a more in-depth explanation of porosity and permeability. https://lnkd.in/gDrdUz9m What other geological properties are essential for hydrocarbon exploration? #Porosity #Permeability #CCUS #Hydrocarbons #OilAndGas #Geology #Energy #Science #Education #Discussion #LinkedIn
Porosity and Permeability
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Want to cut down on your leak inspection time ? Create amazing reports ? Save Money ? Maybe get involved in an Energy rebate program ? The UltraView Camera is the fastest way to locate and identify compressed air leaks in your facility! While the leak in the video has an estimated cost of $903 annually, there are likely many other leaks in your facility that could be costing you more, so book a demo and see how easy the UltraView Camera is to use: https://lnkd.in/gS68KWeY #reliability #ultrasoniccamera #predictivemaintenance #compressedairleaks #partialdischarge #leakdetection #leaks #energysavings #leakcamera
Huge energy savings with leak survey at Mining facility - Predictive Maintenance - Ultrasound Tech
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MSc in Energy Engineering, University of Pisa - Traineeship at Kempten University of Applied Sciences (DE)
Simple calculations on boiling and condensing flow, in order to get an idea of the orders of magnitude involved in the two-phase fluid dynamic. #fluiddynamics #heattransfer #twophaseflow
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Streamline patterns and contours of the main velocity in rectangular labyrinth pool and weir fishway. This Figure shows the pattern distribution of streamlines along with the velocity contour at various distances from the weir for given discharge. A stream like flow is generally formed in the pool at a small distance between weirs (L/B = 0.61)(L is distance between weirs and B is channel width). The rotation cell under the jet forms clockwise between the two weirs. At the distances between the spillways (L/B = 1.22), the transition regime of the flow is formed. The transition regime occurs when or shortly after the weir is flooded. The rotation cell under the jet is clockwise smaller than the flow regime and larger than the submergence regime. At a distance L/B = 1.83, a plunging flow is formed so that the plunging jet dips into the pool and extends downstream to the center of the pool. The clockwise rotation of the cell is bounded by the dipping jet of the weir and is located between the bottom and the side walls of the weir and the channel. Software: FLOW-3D v11.04 Simulated by Dr. Amir Ghaderi and Parisa Mirakhorli hashtag #Fishway hashtag #hydraulics hashtag #stream_lines hashtag #Ecohydraulics hashtag #cfd hashtag #flow3d hashtag #Computational_fluid_dynamics hashtag #Pool_and_weir_fishway
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