@itelenergy.nigeria: ere is a complete commercial and industrial solar installation at D-Arena Supermarket, Surulere featuring 50kW Inverter 8 units of 16kWh Lithium Batteries 65 pieces of 620W Solar Panels This Solar Setup is designed to provide reliable power, keeping products refrigerated, to powering lights, POS systems, CCTV and everyday store operations while reducing dependence on diesel generators. Your Business or Industry should not experience power outages, send us a DM to choose the solution for you #itelEnergy #C&I #LightUpNigeria

itel Energy Nigeria
itel Energy Nigeria
Open In TikTok:
Region: NG
Tuesday 15 September 2026 16:12:35 GMT
433
15
0
3

Music

Download

Comments

There are no more comments for this video.
To see more videos from user @itelenergy.nigeria, please go to the Tikwm homepage.

Other Videos

The Engine of the Future Is Already Working: Astrobotic’s Revolutionary RDRE Breaks Records A New Era of Space Propulsion In the world of space technology, truly game-changing breakthroughs are rare. But this time, we may be witnessing something exceptional. Astrobotic has announced a major milestone: its experimental RDRE (Rotating Detonation Rocket Engine) called Chakram has completed a series of tests that could open an entirely new chapter in space exploration. This is not just another upgraded rocket engine. It’s a completely different philosophy of combustion. How RDRE Works — Physics Instead of Compromise Traditional rocket engines use continuous combustion (deflagration), where fuel burns in a controlled way to generate a steady stream of exhaust gases. RDRE works very differently: - instead of normal combustion, it uses a continuous detonation wave - the wave travels around an annular combustion chamber - detonation occurs at supersonic speed - it generates higher pressure and temperature with lower fuel consumption The result? More thrust with less mass and greater efficiency. Theoretical efficiency gains are estimated at 10–15%, which is enormous in spaceflight. Every kilogram of fuel saved means more payload capacity or longer mission range. Record-Breaking Test Results The tests were conducted at NASA Marshall Space Flight Center, one of the world’s most important rocket engine testing facilities. Key achievements: - over 470 seconds of total runtime - 300 seconds of continuous burn time (a record for RDRE) - more than 4,000 pounds of thrust (~18 kN) - stable thermal steady-state operation achieved - no visible damage after testing This is a crucial moment because the biggest challenge for RDRE technology has always been instability and short operating times. For the first time, this looked less like a laboratory experiment and more like a real operational rocket engine. Why Is It So Difficult? RDRE sounds incredible in theory, but in practice it has challenged engineers for decades: - maintaining a stable detonation wave is extremely difficult - detonations generate enormous thermal and mechanical stress - even tiny disturbances can destabilize or extinguish the engine - materials must survive conditions close to the limits of physics That’s why most previous RDRE tests ended with: - very short firing durations - unstable operation - rapid component degradation Astrobotic has now shown that these problems may finally be solvable. The Technologies Behind Chakram The success of Chakram is not just about physics — it’s also about modern engineering: - 3D-printed metal structures with controlled porosity - advanced fuel injection systems - improved regenerative cooling - optimized flow dynamics and combustion stability This combination of technologies helped move RDRE from theory toward practical reality. What Will Chakram Be Used For? Astrobotic is not developing this technology “just for fun.” Real applications are already planned. Lunar Missions The engine could power future versions of the Griffin lunar lander, increasing payload capability and efficiency. Orbital Transportation Astrobotic is also targeting orbital transfer vehicles designed to move cargo between Earth and lunar orbit within cislunar space. Reusable Rockets Higher efficiency could reduce operational costs and improve competitiveness for reusable launch systems. The Bigger Picture: A Technological Race Astrobotic is not the only company developing RDRE technology. Venus Aerospace has also conducted flight tests involving detonation-based propulsion. But Chakram currently stands out because of its: - long-duration operation - stability - thrust scale This pushes RDRE from the category of “experimental concept” toward “near-operational technology.” What Could This Mean for the Future of Spaceflight? #nasa #spacex #blueorigin #astrobotic
The Engine of the Future Is Already Working: Astrobotic’s Revolutionary RDRE Breaks Records A New Era of Space Propulsion In the world of space technology, truly game-changing breakthroughs are rare. But this time, we may be witnessing something exceptional. Astrobotic has announced a major milestone: its experimental RDRE (Rotating Detonation Rocket Engine) called Chakram has completed a series of tests that could open an entirely new chapter in space exploration. This is not just another upgraded rocket engine. It’s a completely different philosophy of combustion. How RDRE Works — Physics Instead of Compromise Traditional rocket engines use continuous combustion (deflagration), where fuel burns in a controlled way to generate a steady stream of exhaust gases. RDRE works very differently: - instead of normal combustion, it uses a continuous detonation wave - the wave travels around an annular combustion chamber - detonation occurs at supersonic speed - it generates higher pressure and temperature with lower fuel consumption The result? More thrust with less mass and greater efficiency. Theoretical efficiency gains are estimated at 10–15%, which is enormous in spaceflight. Every kilogram of fuel saved means more payload capacity or longer mission range. Record-Breaking Test Results The tests were conducted at NASA Marshall Space Flight Center, one of the world’s most important rocket engine testing facilities. Key achievements: - over 470 seconds of total runtime - 300 seconds of continuous burn time (a record for RDRE) - more than 4,000 pounds of thrust (~18 kN) - stable thermal steady-state operation achieved - no visible damage after testing This is a crucial moment because the biggest challenge for RDRE technology has always been instability and short operating times. For the first time, this looked less like a laboratory experiment and more like a real operational rocket engine. Why Is It So Difficult? RDRE sounds incredible in theory, but in practice it has challenged engineers for decades: - maintaining a stable detonation wave is extremely difficult - detonations generate enormous thermal and mechanical stress - even tiny disturbances can destabilize or extinguish the engine - materials must survive conditions close to the limits of physics That’s why most previous RDRE tests ended with: - very short firing durations - unstable operation - rapid component degradation Astrobotic has now shown that these problems may finally be solvable. The Technologies Behind Chakram The success of Chakram is not just about physics — it’s also about modern engineering: - 3D-printed metal structures with controlled porosity - advanced fuel injection systems - improved regenerative cooling - optimized flow dynamics and combustion stability This combination of technologies helped move RDRE from theory toward practical reality. What Will Chakram Be Used For? Astrobotic is not developing this technology “just for fun.” Real applications are already planned. Lunar Missions The engine could power future versions of the Griffin lunar lander, increasing payload capability and efficiency. Orbital Transportation Astrobotic is also targeting orbital transfer vehicles designed to move cargo between Earth and lunar orbit within cislunar space. Reusable Rockets Higher efficiency could reduce operational costs and improve competitiveness for reusable launch systems. The Bigger Picture: A Technological Race Astrobotic is not the only company developing RDRE technology. Venus Aerospace has also conducted flight tests involving detonation-based propulsion. But Chakram currently stands out because of its: - long-duration operation - stability - thrust scale This pushes RDRE from the category of “experimental concept” toward “near-operational technology.” What Could This Mean for the Future of Spaceflight? #nasa #spacex #blueorigin #astrobotic

About