#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #February2022 | #CMS #ChinaMannedSpace the crew #Shenzhou13 #Takionauts #CSS #ChinaSpaceStation #TianheCoreModule #CNY2022 #YearoftheTiger #SpaceTeacher #Takionaut #王亞平 #WangYaping performs #BeijingOlympic2022 #ScienceExpeirment for The #WinterOlympics2022  #Beijing2022..

中国空间站 On currently on December 2021, the Belt and Road Initiative CNSA –China National Space Administration  CSS China Space Station in which on a three to six months setting up a new home of the first three Shenzhou 13 in which spending up to on for the further construction and verifications of the systems of the CSS –China Space Station 2021 launch calendar in which currently the three Takionauts current Shenzhou 13 ……  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 …..

On 3Rd February 2022 Thursday in CSS China Space Station Orbit four Hundred Meters attitude above Earth Space Teacher CNSA CMS Shenzhou 13 Takionaut王亞平 Wang Yaping  preforms another space Educationally tutorial classroom天宮classroom for the Winter Olympics 2022 Beijing Olympics in which is the only in history to host both opening up on 4th February 2022…. Performing beforehand Classroom, 王亚平 Takionaut Wang Yaping uses chemical reactions to draw five rings after adding different solutions to a transparent plate, the blue, yellow, black, green and red of the five rings slowly appear! Beijing 2022 Winter Olympics is about to open, Takionaut Wang Yaping “changed” an Olympic ring in space……   Netizens: The atmosphere of the Winter Olympics in the space station is also full of celebration

Images and visuals are from their respectives.

#香港 #AlreadyTomorrowInHongKong | #MTRHongKong #港鐵 #February2022 | #MTRHongKong #Railcation 東鐵綫新列車預備工作花絮 – Highlights of the preparations #EastRailLine #EastRailLineCrossHarbourExtension East Rail Line cross-harbour extension enters trial operations stage! …. 

During January 2022 The World’s Leading Public Transport provider The MTR Hong Kong – Hong Kong SAR-China- People’s Republic of China..   The gradual replacement of existing trains with new Korean-manufactured Rotem trains is part of the crucial preparations for the commencement of the East Rail Line (EAL) cross-harbour extension. Before running on the EAL, each new train has to go through a series of inspections and testing. Let’s have a look at a behind-the-scenes video featuring the pre-running preparations! East Rail Line Cross Harbour Extension……

During the month of January 2022 East Rail Line cross-harbour extension enters trial operations stage The East Rail Line (EAL) cross-harbour extension service reached another major milestone today with the commencement of trial operations! All the railway construction works have been substantially completed and the baton was passed to the Operations Team. The upcoming tasks include the system run-in of various train services and station facilities, train trial runs and a series of drills and exercises. Delivering the best customer service is of the utmost importance for the opening of the EAL cross-harbour extension.

What were the preparations works done by the Construction Team before the handover? Why are trial operations one of the major milestones for commissioning a new railway line? Let’s take a look at a video on the trial operations for the EAL cross-harbour extension!

【東鐵綫過海段試營運啦!】

貫通港九新界嘅 #東鐵綫過海段 今日正式踏入 #試營運 階段啦!試營運階段代表工程團隊已經大致完成建造工程嘅任務,嚟緊就會由營運團隊接力,進行通車前嘅準備工作,包括鐵路服務同車站設施嘅系統測試、列車試運行同埋一系列嘅演練,務求通車之後為乘客帶嚟最好嘅服務!

建造團隊同營運團隊交接前後有乜嘢準備功夫?點解試營運咁重要?一齊睇下就知啦!

#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #CLEP #January2022 | #VonKarmanCrater #LunarMission #Change4 #Yutu2 Lunar adventuring- the latest scientific achievements of the Chang’e-4 neutral atom detector… #AstrophysicalJournalLetters…

As of Month of January  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 1003.9 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…. At the moment it’s resting till the next set of adventuring parameters is need..

As of the latest of the Change 4 lunar lander still constant working while Yutu 2 the lunar Rover takes a break after visiting it’ creative lunar rock art forming a Jade Rabbit snacking on lunar Carrot.  The latest scientific achievements of the Chang’e-4 neutral atom detector嫦娥四号中性原子探测仪最新科学成果……

​​As we all know, the earth has a strong global magnetic field. When the solar wind “invades” the earth, a huge protective umbrella, the magnetosphere, will form around the earth, blocking most of the solar wind. Due to the lack of this global magnetic field and dense atmosphere on the moon, the lunar surface is directly exposed to the deep space, and the solar wind and the earth’s wind can directly bombard the lunar surface, producing various effects. The current data from China’s Chang’e, Japan’s Moon Goddess, India’s Chandrayaan-1, and the US Interstellar Boundary Probe show that about 0.1-1% of the solar wind protons in the general area will be scattered by the lunar surface, and 10-20% of the solar wind protons will be scattered with the lunar surface. After the action, it is converted into energy neutral atoms, and most of the remaining will be injected into the lunar soil to produce lunar water. Although the moon does not have a global magnetic field, there are many magnetic anomaly areas scattered on the lunar surface, and the magnetic field strength on the lunar surface is about several hundred nT. It can block part of the solar wind from bombarding the lunar surface, and the reflectivity of solar wind protons increases significantly in large-scale magnetic anomalies. Detecting energy-neutral atoms can reveal the microphysical mechanisms of the interactions between the solar wind, the Earth’s wind and the lunar surface, revealing small-scale features.

Fig. 1 Chang’e-4 landed on the Von Karman crater in the South Pole-Aiken Basin on the far side of the moon. The yellow area is the magnetic anomaly, and the red arrow represents the direction of the solar wind bombarding the lunar surface on the dark side.


On January 3, 2019, Chang’e-4 landed on the Von Karman impact crater in the South Pole-Aiken Basin on the far side of the moon, and the Neutral Atom Detector (ASAN) on the Yutu-2 lunar rover was energy neutral to the lunar surface for the first time on the far side of the moon. Atoms (ENA) make observations. Based on the analysis of the ENA energy spectrum obtained by ASAN from January 11, 2019 to October 12, 2020, the study found that in most lunar days, the ENA differential flux on the morning side is higher than that on the dusk side; The analysis of the observation data of the Atom Detector and the ARTEMIS satellite during the same period found that the differential flux of ENA in different energy ranges on the morning side and the dusk side is positively correlated with the solar wind state parameters such as flux, density and dynamic pressure. This is the first time to calculate the electrostatic potential above the magnetic anomaly using the observation data of neutral atoms on the lunar surface, updating the understanding of the interaction between particles and the magnetic anomaly. The results have extensive reference value for the study of solar wind, terrestrial wind and celestial bodies without atmosphere and global magnetic field (such as asteroids or comets).
 

Fig. 2 The electric field of charge polarization caused by the motion of protons and electrons, the electric field direction is upward. 
The deceleration of solar wind protons is associated with magnetic anomalies.

       The research results were published in Astrophysical Journal Letters, an authoritative magazine in the industry. The first author of the paper is Wang Huizi, a doctoral student in the Interaction Group of the Magnetosphere and the Solar Wind at Shandong University. Zhang Jiang from the Planetary Science Research Group, and the co-authors of the paper are from Japan Aerospace Exploration Agency, Peking University, Space Center of Chinese Academy of Sciences, Institute of Earth Science of Chinese Academy of Sciences, etc.

​​众所周知,地球有着强大的全球磁场,太阳风“入侵”地球时,地球周围会形成一个巨大的保护伞——磁层,阻挡了绝大部分太阳风。而月球由于缺少这种全球磁场和浓密大气,月球表面直接暴露于深空中,太阳风、地球风可以直接轰击月表,产生各种各样的效应。目前来自中国嫦娥、日本月亮女神、印度月船一号以及美国星际边界探测器的数据表明,一般区域大约0.1-1%的太阳风质子会被月表散射,10-20%的太阳风质子与月表作用后转化成能量中性原子,剩下大部分会注入月壤产生月球水。虽然月球没有全球磁场,但在月表散落着多个磁场异常区,在月表磁场强度约几百nT,当太阳风与磁异常相互作用时,也会形成一个小保护伞——微磁层,也可以阻挡一部分太阳风轰击月表,太阳风质子的反射率在大尺度磁异常区明显增加。探测能量中性原子可以揭示太阳风、地球风与月表相互作用的微观物理机制,揭示其中的小尺度特征。

2019年1月3日,嫦娥四号着陆在月球背面南极-艾肯盆地冯•卡门撞击坑,玉兔二号月球车上的中性原子探测仪(ASAN)首次在月球背面对月表能量中性原子(ENA)开展观测。该研究在分析2019年1月11日至2020年10月12日ASAN获取的ENA能谱的基础上,发现大多数月昼中,晨侧ENA微分通量高于昏侧;结合嫦娥四号中性原子探测仪和ARTEMIS卫星同期的观测数据分析发现,晨侧和昏侧不同能量范围的ENA微分通量与太阳风状态参数如通量、密度及动压呈正相关关系。这是首次利用月表中性原子观测数据计算磁异常上方的静电势,更新了粒子与磁异常相互作用的认识。该成果对研究太阳风、地球风与无大气无全球磁场的天体(如小行星或彗星)具有广泛的参考价值。

       该研究成果发表于业内权威杂志Astrophysical Journal Letters,该论文的第一作者是山东大学磁层与太阳风相互作用课题组博士生王慧姿,通讯作者为山东大学磁层与太阳风相互作用课题组长史全岐教授和行星科学课题组张江老师,论文的合作者来自于日本宇宙航空研究开发机构、北京大学、中科院空间中心、中科院地球所等。

Materials provided by: Wang Huizi素材提供:王慧姿

#香港 #AlreadyTomorrowInHongKong | #MTRHongKong #港鐵 #December 2021 #January2022 | #MTRHongKong #Railcation #家庭團 家fun週末 Perfect family weekend from #EastCoastPark to #WestKowloonStation ….

During January 2022 The World’s Leading Public Transport provider The MTR Hong Kong – Hong Kong SAR-China- People’s Republic of China..   In the term of Staycation why not take MTR Hong Kong Railcation  and check out one of various interesting family fun locations around the Hong Kong SAR – China – People’s Republic of China in which You don’t have to fly on a plane to look for somewhere romantic family fun weekend time  – ride on MTR adventuring  instead!

Taking MTR is definitely the best choice if you want comfort and convenient locations for a family weekend excursion. Let’s take MTR to the newly opened East Coast Park Precinct near Fortress Hill Station. Following that you can go to the spacious grassland and cycling in the West Kowloon Cultural District and also visit the sky corridor nearby Hong Kong West Kowloon Station to overlook Victoria Harbour and take some IG-able photos.

一家大細想假日出遊,最緊要玩得舒服而且位置鄰近港鐵站,好似喺炮台山站附近新開嘅東岸公園,搭港鐵就去到喇!之後去埋西九文化區除咗有大草地野餐、踩下單車,附近仲有一個隱世香港西九龍站天空走廊,一眼盡覽維港景色,打卡一流!旅程滿分

Images and visuals are of MTR Hong Kong

#CNSA #ChinaNationalSpaceAdministration #国家航天局 |#BeltAndRoadinitiative #January 2022 | #CMS #ChinaMannedSpace the crew #Shenzhou13 #Takionauts #CSS #ChinaSpaceStation #TianheCoreModule #天州2  #Tianzhou2 manual remote operation rendezvous and docking….

中国空间站 On currently on December 2021, the Belt and Road Initiative CNSA –China National Space Administration  CSS China Space Station in which on a three to six months setting up a new home of the first three Shenzhou 13 in which spending up to on for the further construction and verifications of the systems of the CSS –China Space Station 2021 launch calendar in which currently the three Takionauts current Shenzhou 13 ……  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 …..

 On a Saturday 8th January 2022 the crew Shenzhou13 Takionaut crew successfully completed the manual remote operation 天州2 cargo spacecraft and space station combination rendezvous and docking test…. Hong Kong SAR – Beijing time on January 8, 2022 at 07:55 morning , after about 2 hours , The Shenzhou 13 astronaut crew, under the close coordination of ground technicians, adopted manual remote operation in the core cabin of the space station, and successfully completed the rendezvous and docking test of the Tianzhou-2 cargo spacecraft and the space station combination.


After the start of the test, the Tianzhou-2 cargo spacecraft was separated from the forward port of the node module of the core module, and the Takionauts controlled the cargo spacecraft to evacuate to the predetermined docking point through manual remote operation. After a short mooring, transfer to the translation approach section, and control the cargo spacecraft and the space station assembly to accurately complete the forward rendezvous and docking.


As an important mode of rendezvous and docking between the space station and the visiting aircraft, the manual remote operation rendezvous and docking is a backup method for the automatic rendezvous and docking of the unmanned visiting aircraft. This test is the first time that astronauts use manual remote control equipment in orbit to control the cargo spacecraft to rendezvous and dock with the space station.

Shenzhou 13 Takionaut crew, under the close coordination of ground technicians, In the core cabin of the space station, manual remote operation was adopted, and the rendezvous and docking test of the Tianzhou-2 cargo spacecraft and the space station assembly was successfully completed. This is the first time that Takionauts use hand-controlled remote operation equipment in orbit to control the cargo spacecraft to rendezvous and dock the with the China Space Station… The Shenzhou 13 Takionaut crew took manual control in the core cabin of the space station with the close coordination of ground technicians. The remote operation method successfully completed the rendezvous and docking test of the Tianzhou-2 cargo spacecraft and the space station assembly. This is the first time that astronauts use hand-controlled remote operation equipment in orbit to control the cargo spacecraft to rendezvous and dock with the space station. Let’s do a wave of likes, comments and retweets for the “feel good” crew and all the ground crew…..

Images and visuals are from their respectives.