How to apply AI and Automatic into Mission Operation

Author(s):  
Bai Meng ◽  
Liu Yurong ◽  
Dalin Li
Keyword(s):  

Subject COVID-19 impact on Chad. Significance Chad has a relatively low number of confirmed COVID-19 cases but appears quite vulnerable to the impact of the pandemic, especially the economic impact. The country’s highly rural and youthful demography may help to slow the spread and keep the death rate low. Yet low oil prices, a return to recession and a new wave of sector-specific protests could pose major challenges for the government. Impacts Chad's epidemic appears unlikely to affect France’s Sahel counterterrorism mission Operation Barkhane, headquartered in Chad. A bottom-up revolution appears unlikely, and no major rebel challengers appear poised to take advantage of COVID-19 and associated crises. President Idriss Deby's government appears unlikely to fall in the short term -- French backing will continue to ensure his survival.


Author(s):  
Filipe Dias ◽  
José Páscoa ◽  
Carlos Xisto

In hypersonic flight of reentry vehicles the radio blackout is a typical problem, in particular because it arises during a critical mission operation point. To mitigate this radio blackout the magnetic window concept is proposed. In this work a numerical model is presented to accurately simulate the effect of a magnetic field interacting with ionized plasma surrounding the vehicle. The numerical model is based on the MHD flow equations. Initially, the code is validated for pure hypersonic gas dynamics. Diverse high resolution spatial discretisation schemes, within a Finite Volume framework, are analyzed for robustness. Afterwards, the numerical code is further validated for MHD flows using the well-known Hartmann case. A very good comparison between numerical and analytical results is verified. This allows a proper validation of the method in terms of Lorentz force, in particular under low-magnetic Reynolds number conditions. A very tough test-case is finally computed, being typical of a reentry capsule geometry. The accuracy of the model is then verified for different applied magnetic fields.


2016 ◽  
Vol 20 (3) ◽  
pp. 238-245
Author(s):  
Seheon Song ◽  
SangIl Lee ◽  
JaeHyun Park

2021 ◽  
Vol 11 ◽  
Author(s):  
Andrew P. Koutnik ◽  
Michelle E. Favre ◽  
Karina Noboa ◽  
Marcos A. Sanchez-Gonzalez ◽  
Sara E. Moss ◽  
...  

Human adaptation to extreme environments has been explored for over a century to understand human psychology, integrated physiology, comparative pathologies, and exploratory potential. It has been demonstrated that these environments can provide multiple external stimuli and stressors, which are sufficient to disrupt internal homeostasis and induce adaptation processes. Multiday hyperbaric and/or saturated (HBS) environments represent the most understudied of environmental extremes due to inherent experimental, analytical, technical, temporal, and safety limitations. National Aeronautic Space Agency (NASA) Extreme Environment Mission Operation (NEEMO) is a space-flight analog mission conducted within Florida International University’s Aquarius Undersea Research Laboratory (AURL), the only existing operational and habitable undersea saturated environment. To investigate human objective and subjective adaptations to multiday HBS, we evaluated aquanauts living at saturation for 9–10 days via NASA NEEMO 22 and 23, across psychologic, cardiac, respiratory, autonomic, thermic, hemodynamic, sleep, and body composition parameters. We found that aquanauts exposed to saturation over 9–10 days experienced intrapersonal physical and mental burden, sustained good mood and work satisfaction, decreased heart and respiratory rates, increased parasympathetic and reduced sympathetic modulation, lower cerebral blood flow velocity, intact cerebral autoregulation and maintenance of baroreflex functionality, as well as losses in systemic bodyweight and adipose tissue. Together, these findings illustrate novel insights into human adaptation across multiple body systems in response to multiday hyperbaric saturation.


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