#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #酒泉衛星發射中心 #JiuquanSatelliteLaunchCenter #July2022| Preparing for the#中科院之声 #ChineseAcademyOfSciences #ChinaSolarProbe #ASOS #AdvanceSpaceSolarObservatory for the #October2022 launch calendar.

酒泉衛星發射中心On the launch calendar October 2022 Hong Kong SAR – Beijing Time  morning, CNSA –China National Space Administration  Jiuquan Satellite Launch Center – Inner Mongolia – China – People’s Republic of China is preparing to launch China- People’s Republic of China’s first comprehensive solar exploration satellite named [Advanced Space-based Solar Observatory (ASO-S) call for centralized nicknames and plans to launch in October this year] According to the latest news from the Chinese Academy of Sciences, my country’s first comprehensive solar exploration satellite – Advanced Space The base Solar Observatory (ASO-S) will launch from the Jiuquan Satellite Launch Center in October 2022 to start a journey of exploration of the sun.

The satellite is equipped with payloads such as the All-Solar Vector Magnetic Imager, the Lyman Alpha Solar Telescope, and the Solar Hard X-ray Imager. It weighs 888KG and will operate in a 720-kilometer sun-synchronous orbit with a design life of more than 4 years. It will reveal the solar magnetic field. , the formation and interrelation of solar flares and coronal mass ejections (“one magnetic and two storms”).

The Purple Mountain Observatory of the Chinese Academy of Sciences sincerely invites everyone to give a Chinese nickname to the upcoming Advanced Space-Based Solar Observatory (ASO-S), and the call for naming selection for the ASO-S probe  will be held from July 11 to 24, 2022..

Operating in a sun-synchronous orbit of 720 kilometers.  With many instrumentations of  Using Solar hard X-ray imager, equipped with 3 payloads, designed for a life span of more than 4 years and development time of more than 5 years, will reveal the formation and interrelationship of the solar magnetic field, solar flares and coronal mass ejections (“one magnetic and two storms….

After the successful launch of ASO-S, the “solar storm” of the 25th solar cycle will be recorded in detail. After the satellite is in orbit, it will generate about 500GB of detection data every day. All scientific data and analysis software of the satellite will be open and shared to users around the world to jointly achieve the ASO-S scientific goals.

Images and visuals are from Weibo also their respectives..

#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #July2022 | #CMS #ChinaMannedSpace #Tiangong #ChinaSpaceStation #中国空间站…  The younger generation told by #SpaceEngineer #Xiao Xuedi working from #Shenzhou12 towards Shenzhou14 …

In a Post-1990’s Generation gradually become the main force inspiration in the construction of the China space station… One of many those inspirationally force the 29-year-old Xiao Xuedi has only been in the job for one and a half years. He has already participated in the launch missions of Shenzhou 12 to Shenzhou 14, and has been the dispatcher of the Great Wall post three times, responsible for the Beijing Center. Broadcast the spacecraft status password. Nowadays, many of these key positions are “post-90s”. How to make new people quickly adapt to the position? Look at the behind the scenes “of the Fifth Academy of Aerospace Science and Technology Group, where the Shenzhou spacecraft development team is located…

中国空间站 On currently on June 5th 2022, the Belt and Road Initiative CNSA –China National Space Administration   CSS China Space Station in which on a six months setting up a new home of the third crew of Tiangong Space Station – China Space Station Shenzhou 14  in which spending up to on for the further construction and verifications of the systems of the CSS –China Space Station 2022 launch calendar in which currently the third China Space Station crew Takionauts current Shenzhou 14 ……  Preparations for the six months of extension of the China Space Station  In which the currently it remains awaiting for the crew of setting up home in conducting fun scientifically onboard中国空间站..  China Space station ….. The three Shenzhou 14 crewmates will spend around six months aboard Tianhe, the core module of the Tiangong space station. They will be aboard to receive two new modules, named Wentian and Mengtian, which are due to launch in late July and October, respectively…. crew is expected to conduct 2-3 extravehicular activities (EVA) from Wentian lab module and continue to livestream lectures from the Tiangong space station.

Images and visuals are from their respectives.

#MadeInChina #中國製造 |#深蓝航天#DeepBlueLimitedCompany #July2022| Deep Blue Aerospace successfully Testing its #Nebula #ReusableCarrierRocket One #ThunderR1 #ReusableRocketEngine …..

深蓝航天  Deep Blue Limited – Deep Blue Aerospace One of sixty Chinese private space Carrier Rocket Companies in China-People’s Republic of China…  As many of sixty plus Private Rocket Deep Blue Aerospace Co., Ltd. was established in 2017. The company is mainly a high-tech aerospace enterprise that focuses on the direction of liquid recovery and reusable launch vehicles and provides users with commercial launch services. Deep Blue Aerospace Co., Ltd. is headquartered in Nantong City, Jiangsu Province. At the same time, the company has rocket general and liquid engine R&D centers in Yizhuang, Beijing and Xi’an, Shaanxi, respectively, and a rocket power system test base in Tongchuan, Shaanxi…..

The Thunder-R1 engine is the latest reusable liquid oxygen kerosene rocket engine developed by Deep Blue Aerospace. It will be used in the first sub-stage of Deep Blue Aerospace’s first orbit-level recoverable launch vehicle “Nebulas 1” in a parallel manner. It will carry out technical iterations and upgrades in the future to rapidly improve the thrust performance of the engine to the order of 35-40 tons.


The “Nebula 1” carrier rocket has a take-off thrust of more than 130 tons, a low-Earth orbit carrying capacity of about 2 tons, and has a design goal of 50 reuses in the long run. It is planned to have the ability to launch into orbit by the end of 2023

On May 6, 2022, the “Nebula-M” test rocket independently developed by DeepBlue Aerospace completed a 1-kilometer vertical take-off and landing flight test. It has climbed to a new height and is a solid step closer to the successful realization of orbit and recovery

On 9th July 2022 Recently, Deep Blue Aerospace’s 20-ton “Thunder-R1” reusable engine (Thunder Reusable 1) successfully completed the first round of ignition test. The same engine was used in this test, and a total of 5 ignition tests were carried out. The cumulative ignition working time reached 138 seconds, and the longest single working time reached 90 seconds; the engine worked smoothly, and the startup and shutdown were normal in each test run. It marks the complete success of the first-round test run of the Thunder-R1 engine……

Deep Blue Aerospace’s third-hand “Nebula-M” rocket completes the flight recovery mission
​On May 6, 2022, the “Nebula-M” No. 1 test rocket independently developed by DeepBlue Aerospace completed a 1-kilometer vertical take-off and landing (VTVL) flight test, and the rocket moved laterally during the process of climbing and falling. , and finally landed to a point less than 0.5 meters from the “bull’s eye” position of the landing site, and the “Nebula-M” test arrow was successfully recovered.

Images and visuals are from Deep Blue AerospaceAspiring to be the promoter of space transportation industry

#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #CLEP #June2022 #July2022 |#ChinaLunarExplorationProgram #PovertyAlleviation towards the Deep Space – #OnlineEducation Activity of Sanlipeng Primary School Reading Dreams….

As of Month of June 2022, The CNSA –China National Space Administration CLEP- China Lunar Exploration Program  Belt and Road Initiative Lunar Mission  providing Online continuously  education to Poverty Alleviation programmes in remote schools ..   In June of this year 2022, Lunar Exploration, the Aerospace Engineering Center and the Third Academy of Aerospace Engineering jointly held an online activity “Going to Deep Space” Sanli Peng boarding primary school to realize the dream of reading. In this activity, researcher Tang Yuhua of the Lunar Exploration and Aerospace Engineering Center took the development process of the lunar exploration project as the main line, explained aerospace knowledge, spread aerospace culture, brought a unique aerospace science education to the children, and broadened the students’ horizons , sowing the seeds of spaceflight dreams

As the guest speaker of this event, researcher Tang Yuhua gave lively and interesting explanations from three aspects: the historical origin of deep space exploration, the history of China’s deep space exploration, and China’s future exploration missions. The rich and wonderful aerospace stories, inspiring aerospace achievements, and interesting and educational aerospace knowledge have inspired and inspired the students. The children were engrossed, recorded carefully, and had no idea what to do. Finally, researcher Tang Yuhua expressed his ardent expectations for the children. After the lecture, the lecturer and volunteers had an online knowledge quiz with the children

After the online activity, the students of Sanlipeng boarding primary school received school bags, books, extracurricular reading materials, stationery and other school supplies carefully prepared by the volunteers. Although the epidemic prevented the volunteers from going to Sanlipeng boarding primary school, it could not stop the communication between the volunteers and the children..

Sanlipeng Boarding Primary School is a poverty-stricken mountainous area primary school in Zhangjiakou, Hebei Province. As the counterpart assistance unit, 304 Aerospace Third Institutes have organized volunteers to carry out voluntary service activities for the school for 9 consecutive years. In the future, the volunteers will continue to carry out more service activities and open more interesting aerospace classes, so that children can grow and become talents under the inspiration of aerospace dreams!

Images and visuals are from their Respectives source CLEP – China Lunar Exploration Project

#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #CLEP #July2022 | #VonKarmanCrater #LunarMission #Change4 #Yutu2 travelling 1239.88 meters on #LunaExploration reveal the secrets of the Antarctic-Aiken Basin ……

As of Month of 7th July 2022, The CNSA –China National Space Administration CLEP- China Lunar Exploration Program  Belt and Road Initiative Lunar Mission……Chang’e-4 with Yutu two the Lunar rover still working exploring more than moved more than 1239.88  meters on the other side of the moon on the 103 Kilometers Diameter Von Karman Crater in which is least than two length by length fifty five Kilometers Hong Kong –Macau- Zhuhai Bridges …. Working Exploring the Crater on the other side of the Moon Chang’e Luna…. Chang’e-4 completed the 44th day of work, and the results revealed the cause of the abnormal area of ​​​​the Moon’s South Pole-Aiken ….composition travelling The “Yutu 2” lunar rover and lander of the Chang’e The total mileage of the lunar rover on the far side of the moon is 1239.88 meters

In which Chang’e-4 research results reveal the secrets of the Antarctic-Aiken Basin The cause of the abnormal area of ​​composition…..

The South Pole-Aiken Basin is the largest impact basin on the Moon, with a diameter of over 2,400 kilometers. The study of the South Pole-Aiken Basin is of great significance for revealing the origin of the lunar asymmetry, the impact process, the early evolution process and the composition of the deep material. Orbital remote sensing observations show that there is a compositional anomaly in the center of the Antarctic-Aiken Basin. The planetary science team of Shandong University analyzed and interpreted the in-situ visible and near-infrared spectral data of the Yutu-2 lunar rover and found that the lunar crust is the Antarctic-Aiken composition anomaly. The main material source provides important constraints for the future exploration of materials in the Antarctic-Aiken Basin and even the deep parts of the moon.


​The main material components on the lunar The material composition at the bottom of the South Pole-Aiken Basin is abnormal, and the content of mafic silicate minerals and iron is significantly higher than that in the peripheral area of ​​the basin (Figure 1).

Figure 1. The distribution of iron and pyroxene content inside and outside the Antarctic-Aiken Basin

Most of the previous studies on the material composition of the Antarctic-Aiken Basin only focused on mafic minerals. Due to the anomalous characteristics of mafic in this region, there has even been a debate about whether the lunar mantle is peridotite or pyroxene. Although according to the lunar magma ocean hypothesis, olivine and pyroxene are the main minerals of the lunar mantle, the plutonic magma intrusion after the formation of the lunar crust can also form rocks rich in olivine or pyroxene in the lunar crust, so olivine is enriched Or pyroxene does not serve as evidence of origin from the lunar mantle. So far, humans have not obtained samples from the Antarctic-Aiken Basin and returned to Earth, and their trace elements and isotopic characteristics cannot be known. Among the material composition information available through remote sensing or in situ detection, the plagioclase content also distinguishes crust-derived and mantle-derived rocks. key indicators.

Figure 2. Mineral composition and source reservoir of Chang’e-4 landing area

​The content of plagioclase in the material of the Antarctic-Aiken composition anomaly area sputtered by the Finsen
Numerical simulation studies believe that during the excavation process of the South Pole-Aiken impact, the lunar crust has been completely stripped, but in the subsequent transformation stage, the collapse of the instantaneous crater wall may cause the lunar crustal material to slip off the bottom of the basin. In addition, other basin impact events after the Antarctic-Aiken impact event also produced a backfilling effect on the bottom of the Antarctic-Aiken Basin, and the exposed lunar mantle material or impact melting products during the formation of the basin is likely to have been diluted by the lunar crust material. Mineralogical and geochemical unmixing analysis results show that the lunar soil on the surface of the anomalous area is composed of about 70% of the lunar crust material and about 30% of the material enriched in iron and incompatible elements.

The first author of this research is postdoctoral fellow Chen Jian of Shandong University, and the corresponding author is Professor Ling Zongcheng, head of the planetary science team of Shandong University and senior researcher of the Center for Excellence in Comparative Planetology, Chinese Academy of Sciences. It was published in The Astrophysical Journal Letters, an international astronomy journal …..

Images and visuals are from their Respectives source CLEP – China Lunar Exploration Project