Rocket Lab USA, Inc (โRocket Labโ or the โCompanyโ) (Nasdaq: RKLB) has today revealed it will attempt a controlled ocean splashdown and recovery of the first stage of an Electron rocket during the companyโs next launch in November. The mission will be Rocket Labโs third ocean recovery of an Electron stage; however, it will be the first time a helicopter will be stationed in the recovery zone around 200 nautical miles offshore to track and visually observe a descending stage in preparation for future aerial capture attempts. The helicopter will not attempt a mid-air capture for this mission but will test communications and tracking to refine the concept of operations (CONOPS) for future Electron aerial capture.
The โLove At First Insightโ mission is scheduled to lift-off from Launch Complex 1 in New Zealand during a 14-day launch window that opens on November 11, 2021 UTC. The missionโs primary objective is to deploy two Earth-observation satellites for global monitoring company BlackSky, with the secondary objective to splash down and recover Electronโs first stage to further validate Rocket Labโs recovery operations and hardware.
โAs one of only two companies to recover an orbital-class booster from space, weโve proven itโs possible to make Electron the worldโs first orbital-class reusable small launch vehicle,โ says Peter Beck, Rocket Lab founder and CEO. โWeโve perfected Electronโs controlled descent, demonstrated flawless parachute deployment, and successfully plucked stages from the ocean. Now weโre gearing up for the next stage โ preparing to use a helicopter to catch a rocket as it descends to Earth from space. Itโs ambitious, but with each recovery mission weโve iterated and refined the hardware and processes to make the impossible ordinary. Iโm excited to take what we learn from this launch and put it into practice with aerial capture missions in future.โ
Rocket Lab will be tracking the stageโs descent from space and as it approaches 19,000 ft (5.7 km) from the ocean surface, a helicopter will be dispatched to conduct reconnaissance of the returning booster. The โLove At First Insightโ mission will also include new recovery hardware developments to Electron including an advanced parachute to be deployed from the first stage at a higher-altitude, allowing for a slower drift back to Earth to test communications and tracking for future aerial recovery. Electron also features improvements to the first stage heat shield which protects its nine Rutherford engines while they endure up to 2200 ยฐC heat and incredible pressure on the descent back to Earth. A team of Rocket Lab engineers and technicians will again be stationed at sea with their purpose-built Ocean
Recovery and Capture Apparatus (ORCA) to retrieve the stage from the ocean and return it to Rocket Labโs production complex in New Zealand for analysis and inspection.
The โLove At First Insightโ mission follows two previous ocean splashdown recovery missions; the โReturn to Senderโ mission in November 2020, and the โRunning Out of Toesโ mission in May 2021.
A livestream of the launch and real-time updates of recovery operations for โLove At First Insightโ will be available on Rocket Labโs social media channels and website.
+ note to editors:ย
โLove At First Insightโ launch and recovery operations timeline:
Approximately two and a half minutes after lift-off, the nine Rutherford engines on Electronโs first stage will shut down and Electronโs first and second stages will separate. Electronโs second stage will continue with the customerโs payload to space, where the Kick Stage will separate and deploy the satellites.
Following stage separation, Electronโs first stage will begin its descent. A cold-gas reaction control system will position the stage on an ideal angle to re-enter the atmosphere.
While descending, Electronโs first stage is expected to experience intense heat and pressure while travelling up to eight times the speed of sound before significantly decelerating to enable a drogue parachute to be deployed.
At approximately seven and a half minutes into the mission, Electronโs drogue parachute will be deployed at around 43,000 ft (13 km) altitude. This drogue parachute both increases the boosterโs drag and stabilizes its descent as it approaches the ocean.
Earlier and higher than on previous flights, the large main parachute will be deployed less than a minute after the drogue, at an altitude of 19,000 ft (5.7 km) to further slow the stage and enable a controlled splashdown. A key objective of this mission is to increase the drift-time of Electronโs first stage to test communications and tracking for future aerial recovery efforts.
Upon receiving the all-clear from the recovery team stationed at sea, a nearby helicopter will be deployed to sight the returning stage and observe its descent to record data that will help refine Electron aerial capture CONOPS.
Once in the ocean, Rocket Lab engineers will attempt to retrieve the stage onboard their vessel with their purpose-built Ocean Recovery and Capture Apparatus (ORCA), a specialised cradle and winch system manufactured to Electron specifications and dimensions, before transporting the stage back to Rocket Labโs production complex for analysis and inspection.
+ further mission informationย
https://www.rocketlabusa.com/missions/next-mission/
+ images and video contentย
www.rocketlabusa.com/news/updates/link-to-rocket-lab-imagery-and-video
+ live launch webcastย
The live launch webcast will be available approximately 15 minutes prior to lift-off at: www.rocketlabusa.com/live-stream
About Rocket Labย
Founded in 2006, Rocket Lab is an end-to-end space company with an established track record of mission success. We deliver reliable launch services, spacecraft components, satellites and other spacecraft and on-orbit management solutions that make it faster, easier and more affordable to access space. Headquartered in Long Beach, California, Rocket Lab designs and manufactures the Electron small orbital launch vehicle and the Photon satellite platform and is developing the Neutron 8-ton payload class launch vehicle. Since its first orbital launch in January 2018, Rocket Labโs Electron launch vehicle has become the second most frequently launched U.S. rocket annually and has delivered 105 satellites to orbit for private and public sector organizations, enabling operations in national security, scientific research, space debris mitigation, Earth observation, climate monitoring, and communications. Rocket Labโs Photon spacecraft platform has been selected to support NASA missions to the Moon and Mars, as well as the first private commercial mission to Venus. Rocket Lab has three launch pads at two launch sites, including two launch pads at a private orbital launch site located in New Zealand, one of which is currently operational, and a second launch site in Virginia, USA which is expected to become operational by the end of 2021. To learn more, visit www.rocketlabusa.com.
