Hayabusa 2 (Хаябуса-2), Procyon – H-IIA F26 – Танэгасима – 03.12.2014 04:22:04 UTC

Автор Космос-3794, 13.08.2010 10:49:07

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tnt22

ЦитироватьHAYABUSA2@JAXA‏ @haya2e_jaxa 44 мин. назад

Before we could see the shape of Ryugu, what did the Hayabusa2 team expect? From the realistic to the horrifying to the edible, these were our best guesses! http://www.hayabusa2.jaxa.jp/topics/20180626_e/index_e.html ...

Спойлер

[свернуть]

tnt22

К #260
Цитировать小惑星探査機「はやぶさ2」‏Подлинная учетная запись @haya2_jaxa 1 мин. назад

さきほど書いた「7度目の軌道制御」は「9度目の軌道制御」の書き間違いでした。失礼しました。
Цитироватьhttps://twitter.com/haya2_jaxa/status/1011453058159538177
Цитировать«7-й корректирующий манёвр траектории», написанный ранее ранее, был ошибкой. Следует читать «9-й корректирующий манёвр траектории». Приносим извинения.

tnt22

Цитировать小惑星探査機「はやぶさ2」の接近運用(2018.06.17-18)

jaxasgm

Опубликовано: 25 июн. 2018 г.

Hayabusa2 : Operation of Approaching Phase (17-18 June, 2018 )
https://www.youtube.com/watch?v=_bRRQ_8twDEhttps://www.youtube.com/watch?v=_bRRQ_8twDE (3:19)

tnt22

Маршрут «Hayabusa 2» к астероиду Рюгю
Цитироватьjaxasgm

Опубликовано: 25 июн. 2018 г.

https://www.youtube.com/watch?v=QcuzDAEqgjs
https://www.youtube.com/watch?v=QcuzDAEqgjs (1:29)


jaxasgm

Опубликовано: 26 июн. 2018 г.

https://www.youtube.com/watch?v=PJQRGoWPIishttps://www.youtube.com/watch?v=PJQRGoWPIis (1:29)
Прим. Разницу между роликами не уловил...

tnt22

ЦитироватьHAYABUSA2@JAXA‏ @haya2e_jaxa 1 ч. назад

Our 9th Trajectory Control Manoeuvre (TCM09) for optical navigation was made on June 26 at ~10:10-10:20JST. Thrusters changed the velocity by ~0.8cm/s (-x), 0.3cm/s (+y), 10cm/s (+z). Ryugu to Hayabusa2 distance was ~23km & the speed towards the asteroid after TCM09 was ~2cm/s.

tnt22


tnt22

Через 1302 дня после запуска зонд Хаябуса-2 прибыл к астероиду Рюгю. Съёмка с расстояния около 22 км.
Цитироватьhaya2kun‏ @haya2kun 24 мин. назад

ついに、☆リュウグウ☆に到着したよ
打ち上がってから1302日。
長かったけど、あっと言う間という感じも。
これがリュウグウ(約22kmから撮影)
これからが探査の本番だね。


tnt22

ЦитироватьDr. Brian May‏Подлинная учетная запись @DrBrianMay 2 ч. назад

Ryugu in glorious stereo for the first time ever ! For more details visit JAXA - or Bri's soapbox ! Or my IG - brianmayforreal - Bri


tnt22

ЦитироватьHAYABUSA2@JAXA‏ @haya2e_jaxa 19 мин. назад

Thank you, Brian! This stereoscopic image is an amazing way to see the surface irregularities on Ryugu.
ЦитироватьDr. Brian May‏Подлинная учетная запись @DrBrianMay 2 ч. назад

Ryugu in glorious stereo for the first time ever ! For more details visit JAXA - or Bri's soapbox ! Or my IG - brianmayforreal - Bri


tnt22

Пресс-конференция JAXA о прибытии зонда Хаябуса-2 к астероиду Рюгю (на яп. яз.)
Цитировать小惑星探査機「はやぶさ2」の小惑星到着に関する記者会見(18/06/27)

JAXA | 宇宙航空研究開発機構

Трансляция началась 2 часа назад
https://www.youtube.com/watch?v=Zmya363w010https://www.youtube.com/watch?v=Zmya363w010 (2:11:59)

tnt22

http://global.jaxa.jp/press/2018/06/20180627_hayabusa2.html
Цитировать
Hayabusa2 Rendezvous with Ryugu
June 27, 2018 (JST)

National Research and Development Agency
Japan Aerospace Exploration Agency (JAXA)
JAXA confirmed Hayabusa2, JAXA's asteroid explorer rendezvoused with Ryugu, the target asteroid. 

On June 27, 2018, JAXA operated Hayabusa2 chemical propulsion thrusters for the spacecraft's orbit control.*
The confirmation of the Hayabusa2 rendezvous made at 9:35 a.m. (Japan Standard Time, JST) is based on the following data analyses;
    [/li]
  • The thruster operation of Hayabusa2 occurred nominally
  • The distance between Hayabusa2 and Ryugu is approximately 20 kilometers
  • Hayabusa2 is able to maintain a constant distance to asteroid Ryugu
  • The status of Hayabusa2 is normal
From this point, we are planning to conduct exploratory activities in the vicinity of the asteroid, including scientific observation of asteroid Ryugu and surveying the asteroid for sample collection.

*Hayabusa2 operation hours: 7:00 a.m. (JST) through 3:00 p.m. (JST), June 27. The thruster operation was pre-programmed in the event sequence earlier on the day and the command was automatically executed.


[Reference]

Optical Navigation Camera – Telescopic (ONC-T) image of Ryugu, photographed at 12:50 p.m. (JST), June 26, 2018.
ONC team (image credit): JAXA, University of Tokyo, Kochi University, Rikkyo University, Nagoya University, Chiba Institute of Technology,
Meiji University, University of Aizu, AIST. 
(If a shortened credit is required, please us "JAXA, University of Tokyo and collaborators".)

The location of Hayabusa2 thrusters

A set of 12 thrusters is loaded with the Hayabusa2 spacecraft as circled in red.
Propulsion at 2.9 cm/s in the plus z-axis proceeded for the rendezvous.

ХВ.

Прямо "кубсат", только чуть-чуть побольше.

tnt22

ЦитироватьHAYABUSA2@JAXA‏ @haya2e_jaxa 6 ч. назад

Our 10th Trajectory Control Manoeuvre (TCM10) for optical navigation was made on June 27, 2018. This is our "Arrival TCM"! Thrusters adjusted the spacecraft velocity between ~09:30 - 09:35 JST by 0.7 cm/s (x) and 2.8 cm/s (z). (1/2)

6 ч. назад

The distance between Hayabusa2 and Ryugu at the time of the TCM was 20.7 km and the relative speed after TCM10 was less than about 0.01 m/s (1 cm/s). Finally we have arrived at Ryugu. (2/2)

tnt22

ЦитироватьNASA's OSIRIS-REx‏Подлинная учетная запись @OSIRISREx 4 ч. назад

Today -- June 27, 2018 -- will go down in history as the day that fellow asteroid explorer @haya2_jaxa arrived at asteroid Ryugu. Congratulations to the whole team! Can't wait to see the mysteries of Ryugu revealed.


tnt22

Материалы пресс-конференции JAXA 2018-06-27 (яп. яз., иллюстративный материал)

20180627_hayabusa2.pdf - 1.1 MB, 15 стр, 2018-06-27 07:29:55 UTC

tnt22

https://spaceflightnow.com/2018/06/28/japanese-spacecraft-reaches-asteroid-after-three-and-a-half-year-journey/
ЦитироватьJapanese spacecraft reaches asteroid after three-and-a-half-year journey
June 28, 2018 | Stephen Clark

Japan's robotic Hayabusa 2 spacecraft arrived Wednesday at asteroid Ryugu, a diamond-shaped object more than a half-mile wide where the probe will attempt a brief landing later this year to collect rock specimens for return to Earth.

After creeping up to the asteroid at an ever-slowing pace, thrusters on the Hayabusa 2 spacecraft stopped its approach Wednesday at a distance of about 12 miles, or 20 kilometers, according to the Japan Aerospace Exploration Agency.

The milestone marked the conclusion of a three-and-a-half-year voyage spanning nearly 2 billion miles (3.2 billion kilometers) since Hayabusa 2's launch fr om southern Japan on an H-2A rocket in December 2014.

The space probe and asteroid Ryugu, seen up-close for the first time, are currently located roughly 177 million miles (285 million kilometers) from Earth. Under remote control from engineers and scientists in Japan, Hayabusa 2 will spend the next few weeks surveying Ryugu, moving closer in a sequence of maneuvers to obtain higher-resolution imagery and data on the asteroid's gravity field.
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Asteroid Ryugu imaged by the Hayabusa 2 spacecraft June 26 at a range of 13 miles (22 kilometers) Wednesday. Credit: JAXA, University of Tokyo, Kochi University, Rikkyo University, Nagoya University, Chiba Institute of Technology, Meiji University, Aizu University, AIST

"The shape of Ryugu is now revealed," wrote Yuichi Tsuda, Hayabusa 2's project manager at JAXA. "From a distance, Ryugu initially appeared round, then gradually turned into a square before becoming a beautiful shape similar to fluorite [known as the 'firefly stone' in Japanese].

"Now, craters are visible, rocks are visible and the geographical features are seen to vary from place to place," Tsuda wrote. "This form of Ryugu is scientifically surprising and also poses a few engineering challenges."


Engineers and scientists oversee the final phase of Hayabusa 2's arrival at asteroid Ryugu from a control center in Sagamihara, Japan. Credit: JAXA/ISAS

Hayabusa 2 will try to capture at least a gram of rock samples from Ryugu on three touch-and-go landing attempts, beginning as soon as early October. In late 2019, the spacecraft will depart the asteroid and head for Earth, dropping its sample-carrying re-entry canister for a parachute-assisted landing in South Australia in December 2020.

Scientists said Ryugu's rotation is perpendicular to its orbit, which is good news for plans later this year to deploy a series of landers and tiny rovers on the asteroid, beginning with the deployment in October of the 10-pound (22-kilogram) MASCOT vehicle developed by German and French engineers.

The asteroid completes one rotation every 7.6 hours, and its orbit takes it around the sun once every 1.3 years. Ryugu's orbit crosses the path of Earth around the sun, making it a potentially hazardous asteroid.

"On the other hand, there is a peak in the vicinity of the equator and a number of large craters, which makes the selection of the landing points both interesting and difficult," Tsuda wrote.

The shape of Ryugu also suggests it may have an uneven gravity field, which is estimated to be around 60,000 times weaker than Earth's, according to Tsuda.

"The project team is fascinated by the appearance of Ryugu and morale is rising at the prospect of this challenge," Tsuda wrote. "Together with all of you, we have become the first eyewitnesses to see asteroid Ryugu. I feel this amazing honor as we proceed with the mission operations."

All of Hayabusa 2's science instruments are functioning as designed. The sensors include a camera suite, a laser designed to measure topography, and a near-infrared spectrometer to study Ryugu's composition.

"At the end of July we will approach to within 5 kilometers (3 miles) of the surface, so we will have much more detailed surface images," said Makoto Yoshikawa, Hayabusa 2's mission manager, in an interview with Spaceflight Now earlier this month. "Also, in August, we will measure the gravity of Ryugu, and in that case we will send the spacecraft down to 1 kilometer (about 3,300 feet) from the surface."

After the initial survey, Japanese scientists will decide in August wh ere to send Hayabusa 2 to collect the first of three samples from Ryugu.

Hayabusa 2 will not go into orbit around Ryugu. Instead, the probe will follow trajectories around the asteroid, similar to the way a rendezvousing spacecraft approaches the International Space Station.


Artist's illustration of the Hayabusa 2 spacecraft. Credit: JAXA

Since switching off its ion propulsion system in early June, Hayabusa employed hydrazine-fueled rocket thrusters to follow a zig-zag pattern toward Ryugu, taking range and bearing measurements to fine-tune its navigation to the asteroid. There was some uncertainty in the asteroid's exact position before Hayabusa 2's arrival.

The spacecraft's telescopic camera also scanned for moons and other debris accompanying Ryugu, but found no evidence of any companions.

In an interview with BBC News on Wednesday, Yoshikawa said the sampling maneuvers will the be the riskiest part of the Hayabusa 2 mission.

"The most difficult part is getting the sample," Yoshikawa told BBC News. "It is a little risky because we cannot operate from the Earth because there is a time delay, so the spacecraft must move by itself. The spacecraft has autonomous functions, but it's very risky because the surface of Ryugu is not so smooth."

We have three touchdowns (planned)," he said. "The first one is maybe in October. The second is maybe next year in February or March.

"So we have two chances, and actually one more," he told BBC News. "Hayabusa 2 has an impactor which will create a small crater on the surface of the asteroid. If we can make a small crater, then the spacecraft will touch down at the crater to get subsurface material."

Hayabusa 2 is one of two robotic asteroid missions arriving at distant objects this year. NASA's OSIRIS-REx spacecraft, which launched in September 2016, is scheduled to arrive at asteroid Bennu on Dec. 3 to collect its own samples to bring back to Earth.


A comparison of asteroid Bennu, the target of NASA's OSIRIS-REx mission, and asteroid Ryugu, the target of Japan's Hayabusa 2 mission. Credit: University of Arizona

Hayabusa 2 is a follow-up to Japan's Hayabusa mission, which collect less than a milligram of sample from the stony S-type asteroid Itokawa in 2005 and returned the material to Earth in 2010. But Hayabusa ran into numerous difficulties, including a fuel leak and a malfunction in its sampling mechanism, causing it to collect much less material than originally planned.

"Hayabusa was a technological demonstrator, so its main purpose was technology and the second purpose is science," Yoshikawa said in an interview with Spaceflight Now. "For Hayabusa 2, science is the main purpose. That's the big difference."

Ryugu is a primitive C-type asteroid that contains organic materials scientists believe are leftovers from the birth of the solar system.

"For both missions, we wanted to learn about the origins of the solar system, but for Hayabusa 2, we want to understand the organic matter and water at the beginning of the solar system," Yoshikawa said. "This is the major point for science."
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tnt22

ЦитироватьHAYABUSA2@JAXA‏ @haya2e_jaxa 3 ч. назад

It's been our first day officially at asteroid Ryugu! @haya2kun and @MASCOT2018 are curious about the shape of their new home since it does seem familiar... #hayabusa2
Цитироватьhaya2kun‏ @haya2kun 4 ч. назад

Rise and shine @MASCOT2018 ! It's a new day and we have arrived at #Ryugu! Take a look... #hayabusa2


Прол

#278
ЦитироватьХВ. пишет:
Прямо "кубсат", только чуть-чуть побольше.
Нет, это тот самый "кубокилометр бетона", след погибшей цивилизации :)  .

Not

ЦитироватьПрол пишет:
ЦитироватьХВ. пишет:
Прямо "кубсат", только чуть-чуть побольше.
Нет, это тот самый "кубокилометр бетона", след погибшей цивилизации  :)  .
Построили царь-ракету, вывели, и... надорвались. Надо повнимательней посмотреть, нет ли там вишневого родстера?  :D