NASA Delays Return of Boeing Starliner for More Technical Checks

The massive Vehicle Assembly Building where NASA’s powerful new 322-foot-tall moon rocket has been assembled for the unpiloted Artemis 1 mission, is reflected after a hard rain at the Kennedy Space Center in Cape Canaveral, Florida, US October 28, 2021. REUTERS/Thom Baur/Files
The massive Vehicle Assembly Building where NASA’s powerful new 322-foot-tall moon rocket has been assembled for the unpiloted Artemis 1 mission, is reflected after a hard rain at the Kennedy Space Center in Cape Canaveral, Florida, US October 28, 2021. REUTERS/Thom Baur/Files
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NASA Delays Return of Boeing Starliner for More Technical Checks

The massive Vehicle Assembly Building where NASA’s powerful new 322-foot-tall moon rocket has been assembled for the unpiloted Artemis 1 mission, is reflected after a hard rain at the Kennedy Space Center in Cape Canaveral, Florida, US October 28, 2021. REUTERS/Thom Baur/Files
The massive Vehicle Assembly Building where NASA’s powerful new 322-foot-tall moon rocket has been assembled for the unpiloted Artemis 1 mission, is reflected after a hard rain at the Kennedy Space Center in Cape Canaveral, Florida, US October 28, 2021. REUTERS/Thom Baur/Files

NASA has further postponed the Boeing Starliner's return to Earth from the International Space Station with its first crew of astronauts, to allow more time for review of technical issues encountered, the agency said on Friday.

According to Reuters, it did not set a new date, raising questions about the timing of the return of the two astronauts on Boeing's first crewed mission, which had initially been set for June 26, itself a pushback from the first potential date of June 14.

"Mission managers are evaluating future return opportunities following the station’s two planned spacewalks on June 24 and July 2," NASA said in a statement.

The US astronauts, Butch Wilmore and Suni Williams, lifted off on June 5 as a final demonstration to obtain routine flight certification from NASA.

"We are taking our time and following our standard mission management team process," said Steve Stich, NASA's commercial crew program manager.

"Starliner is performing well in orbit while docked to the space station," Stich said, adding that the additional time would yield "valuable insight" into system upgrades for future missions.

The crewed test of the spacecraft, test-flown to space two times since 2019 without humans on board, has encountered five failures of its 28 maneuvering thrusters, five leaks of helium gas meant to pressurize those thrusters, and a slow-moving propellant valve that signalled unfixed past issues.

The issues and the additional tests run by NASA and Boeing call into question when exactly Starliner's crew will be able to make the roughly six-hour return journey home, and add to the program's broader problems.

Boeing has spent $1.5 billion in cost overruns beyond its $4.5-billion NASA development contract.

NASA wants Starliner to become a second US spacecraft capable of ferrying astronauts with the ISS, alongside SpaceX's Crew Dragon, its primary ride since 2020.

But Boeing's Starliner program has battled software glitches, design problems and subcontractor disputes for years.

When Starliner arrived in the space station's vicinity to dock on June 6, the five thruster failures prevented a close approach by the spacecraft until Boeing made a fix.

It rewrote software and tweaked some procedures to revive four of them and proceed with a docking.

Starliner's undocking and return to Earth represent the spacecraft's most complicated phases of its test mission.

NASA officials have said they want to better understand the cause of the thruster failures, valve issue and helium leaks before Starliner begins its return.

While just one thruster remains dead in Starliner's current flight, Boeing encountered four thruster problems during the capsule's uncrewed return from space in 2022.

Flight rules set by Boeing and NASA require Starliner's maneuvering thrusters to allow for "six degrees of freedom of control," at a minimum, and each have one backup thruster, a NASA spokesperson told Reuters.

That could mean at least 12 of the 28 thrusters, most of them backups, are required for a safe flight.



Saudi National Center for Wildlife Development to Assess Crown-of-Thorns Starfish Outbreak

Saudi National Center for Wildlife Development to Assess Crown-of-Thorns Starfish Outbreak
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Saudi National Center for Wildlife Development to Assess Crown-of-Thorns Starfish Outbreak

Saudi National Center for Wildlife Development to Assess Crown-of-Thorns Starfish Outbreak

Saudi Arabia’s National Center for Wildlife (NCW) initiated a comprehensive survey plan to gather essential data on Crown-of-Thorns Starfish (COTS) populations in key areas of the Red Sea.

The data will be used to promptly address outbreaks of the organism, thereby safeguarding biodiversity and the health of coral reefs.

The effort is part of NCW's role as the national authority and point of reference for establishing protocols and standards related to terrestrial and marine wildlife and addressing the threats they face. It follows the adoption of a protocol to control the spread of COTS, which is tailored to the organism's nature in the Red Sea environment. The protocol allows for a swift and effective response to limit its spread and protect coral reefs.

In December 2022, the NCW convened a workshop to discuss combating COTS outbreaks and develop a protocol for studying the current situation and identifying the causes of the increase in COTS numbers above the natural rate. The workshop also aimed to learn about best practices and applications for controlling the spread of damage from various global experts and consultants in this field.

The plan aims to identify operational procedures and establish the best response framework and mechanism for involving stakeholders. COTS is a marine organism that feeds on algae and types of bacteria that grow on coral reefs. However, it poses a significant threat to ecosystems when it undergoes outbreaks, which have been linked to significant damage to coral reefs in the Red Sea, particularly during the observed spawning season, from the last two weeks of July to the first two weeks of August.

Understanding the organism's spatial distribution, density, and reproductive behavior during its peak period is crucial for effective management and mitigation of potential outbreaks that could lead to coral-reef degradation.

The survey plan offers baseline data on COTS populations in key areas of the Red Sea that can be utilized to predict and manage outbreaks of the organism in a timely manner, thus protecting coral-reef health and biodiversity. The approach is based on accuracy and practical considerations to ensure the comprehensiveness and feasibility of the survey.

Cooperation between marine biologists, local stakeholders, and divers in this initiative is an integral part of conservation efforts in the region.

The crown-of-thorns is a large starfish species belonging to the echinoderm phylum. It inhabits tropical and subtropical Pacific reefs and typically reproduces when the water temperature is 28 degrees Celsius.

During outbreaks, its consumption of coral reefs exceeds the growth rates of reefs. One of the main causes of this organism's outbreak is the imbalance of the food chain and overfishing of the organisms that feed on it, the most important of which is the Napoleon fish, or tarpon.