男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語(yǔ)Fran?ais
China
Home / China / Innovation

Atmospheric model to aid future Mars missions

China Daily | Updated: 2023-11-13 09:48
Share
Share - WeChat
Photo released on June 11, 2021 by the China National Space Administration (CNSA) shows a selfie of China's first Mars rover Zhurong with the landing platform. [CNSA/Handout via Xinhua]

Chinese scientists have developed a numerical model to simulate the atmospheric environment of Mars, offering research support for China's sample-return mission to the Red Planet.

The study, recently published in the journal Chinese Science Bulletin, said that the China National Space Administration plans to bring Martian samples back to Earth on the Tianwen 3 mission in around 2028.

To provide information on the meteorological conditions for spacecraft landing, scientists at the Institute of Atmospheric Physics of the Chinese Academy of Sciences have designed and built "GoMars", a global open planetary atmospheric model for Mars.

They've used the model to replicate the three critical cycles of the Martian atmosphere — dust, water and carbon dioxide — and validated it based on the observations of Zhurong, China's Mars rover, and NASA's Viking 1 and 2 landers, as well as the Open-MARS reanalysis dataset, a global record of Martian weather.

The results of the study showed that the GoMars model successfully reproduced the unique characteristics of surface pressure on Mars as recorded by the Zhurong rover and the two Viking landers. Furthermore, the model has good simulation performance for the surface temperature, zonal wind, polar ice and dust.

With the rising complexity of Mars explorations, the demand for Martian weather forecasts is growing. The research team said it would further study weather processes such as dust storms on the planet to offer possible support for future Mars missions, manned Mars landings and resource development on the planet.

Launched on July 23, 2020, China's Tianwen 1, comprised of an orbiter, lander and rover, arrived on Mars in February 2021.The Zhurong rover drove down from its landing platform to the Martian surface on May 22, 2021, and has been exploring the Red Planet ever since.

Lead researcher Wang Bin said the Tianwen 3 mission will include the tasks of landing, sampling and returning, requiring detailed information about Martian atmospheric conditions.

Last year, the Insight rover from the United States and China's Zhurong rover were shut down due to strong dust, and pebbles caught in a sandstorm damaged a wind sensor on the US Perseverance rover.

Since the 1960s, many countries have committed to the development of Martian atmospheric models.

"The dust cycle on Mars is as important as the water cycle on Earth," said Wang, stressing that dusty weather has had a significant impact on the landing, departure, communication, energy supply and equipment of Mars probes.

On May 18 last year, Zhurong switched to dormant mode after having traveled about 1,921.5 meters on the Martian surface. According to experts, the cause behind Zhurong's dormancy was unclear, but satellite photos showed that its solar panels were covered in dust.

"GoMars can be used to simulate the dust activity before and after the rover's dormancy, which can provide atmospheric environment data to analyze the possible causes of the dormancy," Wang said.

Far more than just analyzing dusty weather, the model can function as a "virtual Mars". Since observation data on Mars is rare, scientists need simulation data to learn about the planet and then help them select appropriate landing areas and design rovers.

"For example, GoMars can simulate the temperatures of the landing zone, and scientists can use this data to design materials that are suitable for building Mars rovers to cope with extreme cold," Wang explained.

Xinhua

Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
主站蜘蛛池模板: 内乡县| 大埔区| 太原市| 象州县| 烟台市| 岢岚县| 庆阳市| 丹阳市| 马尔康县| 乌拉特中旗| 偏关县| 公安县| 益阳市| 韶关市| 松潘县| 防城港市| 乳山市| 茶陵县| 九台市| 定州市| 获嘉县| 东丽区| 若尔盖县| 杭锦后旗| 兴文县| 兴文县| 麦盖提县| 通许县| 罗甸县| 清镇市| 门源| 宁晋县| 吴忠市| 吴旗县| 榕江县| 濮阳市| 荣成市| 顺平县| 武汉市| 讷河市| 西昌市| 新干县| 威信县| 银川市| 曲周县| 永丰县| 沁阳市| 容城县| 封开县| 千阳县| 通道| 乌兰县| 灵武市| 江口县| 曲阜市| 毕节市| 康乐县| 政和县| 邯郸市| 金堂县| 南陵县| 大城县| 东明县| 吉木萨尔县| 墨玉县| 土默特左旗| 策勒县| 崇礼县| 邳州市| 苍南县| 姜堰市| 马边| 资阳市| 岑巩县| 泰安市| 东辽县| 合作市| 凤台县| 临高县| 黄大仙区| 新田县| 宝兴县|