Complex increase in safety of space flights by thermoemission cooling of elements of aerospace equipment

2021 ◽  
Author(s):  
Alexey V. Kolychev ◽  
Vladimir A. Kernozhitsky ◽  
Vitaly A. Savelov ◽  
Artem M. Fedorov
Author(s):  
Anton Bózner ◽  
Mikuláš Gažo ◽  
Jozef Dostál

It is anticipated that Japanese quail /Coturnix coturnix japonica/ will provide animal proteins in long term space flights. Consequently this species of birds is of research interest of international space program INTERCOSMOS. In the year 1987 we reported on an experiment /2/ in which the effect of chronic acceleration of 2 G hypergravitation, the hypodynamy and the simultaneous effect of chronic acceleration and the location in the centre of the turntable of the centrifuge on the protein fractions in skeletal muscles was studied. The ultrastructure of the heart muscle was now in this experiments examined as well.Japanese quail cockerels, aged 48 days were exposed to 2 G hypergravitation /group IV/ in a 6,4 m diameter centrifuge, to hypodynamy /group III/ and their combination /group V/, respectively for 6 days / Fig.1/. The hypodynamy in group III was achieved by suspending the birds in jackets without contact the floor. The group II was located in the centre ofthe turntable of the centrifuge. The control group I. was kept under normal conditions. The quantitative ultrastructure of myocard was evaluated by the methods of Weibel/3/ - this enables to determine the number, relative size and volume of mitochondria volume of single mitochondria, defficiency of mitochondrial cristae and volume of myofibrils.


2020 ◽  
Vol 25 (1) ◽  
pp. 45-53
Author(s):  
L.B. Strogonova ◽  
◽  
Yu.A. Vasin ◽  
R.A. Gardunio ◽  
A.N. Knyazev ◽  
...  

Since April 1961, all manned space flights have been accompanied by medical control ensuring flight safety. Medical control in space flight has a technological and medical methodology that allows, at a distance from medical specialists, to make an adequate medical decision for the current situation. This work would be impossible if there were no measures taken to unify and standardize equipment and techniques. Telemedicine technologies developed on the basis of flight medical control. The origin of the word telemedicine comes from the expression «telemetric medical information», adopted in space technology. The issues of mutual development and mutual enrichment, standardization of methods and equipment of two areas of medicine, medical control in extreme situations and general telemedicine are considered in this article.


Author(s):  
A.V. Bagrov

Patent law, which arose at the beginning of the industrial revolution and protects the rights of the patent holder solely on the territory of patenting, does not apply to inventions used in outer space. Space is not included in any patenting territory. It is necessary on a new basis to form the space law on the protection of innovative solutions, which will take into account the uncertain time between the filing of an application for an invention and its first use in space. Now it often exceeds the generally accepted period of validity of patents. For space patents, it is advisable to establish their validity for at least 50 years from the date of first use. All outer space, including all objects located in it, is proposed to be declared a single patent territory. It is necessary to exclude duties on the maintenance of patents used in space flights, if they are used only by the developer or are transferred to them for free leasing.


2021 ◽  
Author(s):  
Alexey V. Kolychev ◽  
Vladimir A. Kernozhitsky ◽  
Pavel A. Arkhipov ◽  
Artem M. Fedorov
Keyword(s):  

2019 ◽  
Vol 13 (4) ◽  
pp. 685-713
Author(s):  
Sh. Sh. Nabiev ◽  
G. Yu. Grigor’ev ◽  
A. S. Lagutin ◽  
L. A. Palkina ◽  
A. A. Vasil’ev ◽  
...  

1998 ◽  
Vol 551 ◽  
Author(s):  
H.-J. Fecht ◽  
R.K. Wunderlich

AbstractThe analysis of nucleation and growth processes relies mostly on circular arguments since basic thermophysical properties necessary, such as the Gibbs free energy (enthalpy of crystallization, specific heat), the density, emissivity, thermal conductivity (diffusivity), diffusion coefficients, surface tension, viscosity, interfacial crystal / liquid tension, etc. are generally unknown with sufficient precision and therefore often deduced from insufficient linear interpolations from the elements. The paucity of thermophysical property data for commercial materials as well as research materials is mostly a result of the experimental difficulties arising from the unwanted convection and reactions of melts with containers at high temperatures. An overview will be given on the results of thermophysical property measurements during several different space flights using containerless processing methods. Furthermore, a perspective on a future measurement program of thermophysical properties supported by the European Space Agency is described. In this regard, the International Space Station is considered as the ideal laboratory for high precision measurements of thermophysical properties of fluids which help to improve manufacturing processes for a number of key industries.


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