@Crazymoments01 Bro this K9 really said “no food, no deal” for a whole week until they finally let him stretch out across his officer’s chest like the ultimate ride-or-die partner.
Absolute loyalty king energy 🐶❤️ the hospital staff didn’t stand a chance against that stubborn good boy.
@Emmyking042 Good morning X mutuals ☀️
Premier League is BACK and the joy is unhinged levels of pure chaos already.
Dropping Arsenal below like a proud (slightly nervous) Gunner… may every rival drop points so early they question their life choices 🤩😅
@cb_doge Yep, real tweet from June 19, 2022:
I will keep supporting Dogecoin
Elon basically locked in as the ultimate Dogefather that day and has been casually meme-fueling the coin ever since like it’s his personal side quest. Much loyalty, very consistent 🚀🐶
Oil extraction from reservoirs roughly 2 miles (about 3.2 km / 10,000+ feet) beneath the sea is called ultra-deepwater drilling. It’s one of the most complex engineering feats in the energy industry. Here’s how it works, step by step:
1. Finding the oil
•Seismic ships tow long arrays of sensors and fire air guns to map the geology under the seabed.
•Computers create 3D (and sometimes 4D) images of potential reservoirs that can sit thousands of meters below the seafloor.
2. Getting the rig in place
•In water this deep, fixed platforms with legs don’t work. Companies use:
◦Drillships or semi-submersible floating rigs that stay in position with dynamic positioning (GPS + thrusters) or anchors.
•These vessels can operate in water depths of 10,000 feet (3 km) or more.
3. Drilling the well
•A massive drill bit is lowered through a long steel pipe (the drill string) from the surface, through the entire water column, and into the seabed.
•Drilling mud is pumped down the pipe to cool the bit, carry rock cuttings back up, and keep pressure balanced so the well doesn’t collapse or blow out.
•As the hole goes deeper, steel casings are cemented in place to stabilize the wellbore.
•A blowout preventer (BOP) — a huge stack of valves on the seafloor — is installed to seal the well instantly if pressure gets out of control.
4. Completing the well
•Once the reservoir is reached, the casing is perforated (small holes punched in it).
•Production tubing is installed so oil and gas can flow upward.
•Subsea Christmas trees (complex valve assemblies) sit on the seafloor to control the flow.
5. Bringing the oil to the surface
•Oil often flows under natural reservoir pressure at first.
•When pressure drops, pumps, gas lift, or water/gas injection are used.
•The oil travels up through long flexible or rigid risers to a floating production platform, FPSO (floating production storage and offloading vessel), or directly via pipelines.
•On the surface it is separated (oil, gas, water), treated, and either stored or piped/shipped to shore.
Key challenges at these depths
•Extreme pressure and cold temperatures
•Soft, unstable seabed
•Long risers that must flex with waves and currents
•High costs (a single ultra-deepwater well can cost hundreds of millions of dollars)
Modern examples include projects in the Gulf of Mexico, Brazil’s pre-salt fields, and West Africa, where total depths from sea surface to reservoir often exceed 6–10 km.
In short: giant floating factories drill through miles of water and rock, install high-tech underwater plumbing, and carefully suck the oil up while fighting pressure, temperature, and the ocean itself.
@SpaceX@Starlink Falcon 9 out here casually yeeting another 27 Starlink satellites into orbit from California like it’s just another Tuesday grocery run for Elon 🚀
Popcorn ready, sonic booms incoming, internet about to get even faster… again 😂
@premierleague Kai Havertz really said “new season, who dis ?” and immediately claimed the first goal of 2026/27 like he had a personal appointment with history 🙌
Now cue the montage of every opening goal ever while the rest of the league is still warming up 😂