Документ взят из кэша поисковой машины. Адрес оригинального документа : http://www.energia.ru/eng/iss/researches/techn-38.html
Дата изменения: Unknown
Дата индексирования: Tue Oct 2 07:13:57 2012
Кодировка:

Поисковые слова: arp 220
INTERNATIONAL SPACE STATION


TENZOR ISKAZHENIYE PRIVYAZKA IDENTIFIKATSIA IZGIB INFRAZVUK METEOROID VEKTOR-T SCORPION KROMKA SPICA-S F/PKE MIRSUPIO DCCO ZEOGRID NANOSLAB COSMIC ACOUSTIKA-M TOKSICHNOST NANOSLAB-2 CREW RESTRAINT 3D CAMERA ARGES HEAT MOUSE TELEMETER ENEIDE LAZIO EST E-NOSE SPQR ASIA RADIOSKAF SREDA INFOTEKH CEMEX WMHP INFRAZVUK-M DHL-G KONTUR VETEROK

 
homepage
INTERNATIONAL SPACE STATION
EXPERIMENTS AND RESEARCHES

SCIENTIFIC RESEARCH ON THE RUSSIAN SEGMENT
ENGINEERING EXPERIMENTS AND RESEARCH
BSM Project "CENTENARIO"
EXPERIMENT "CEMEX"
SE Research Manager: BSA (Brazil)

russian
   

Experiment CEMEX forms part of the scientific research program performed by Brazilian Astronaut Marcos C. Pontes (BSA) on the Russian Segment of the ISS in the frame of CENTENARIO Brazilian Soyuz Mission Project. The Brazilian Space Agency is a customer of the preparation and implementation of the research program.


USED SCIENCE HARDWARE:

Kit with CEM equipment consisting of:

  • CPL block
  • Memory map CEM* (in cover)

    Circuit diagram of CPL block
The experimental equipment is a monoblock and consists of a capillary evaporator configured as a circuit (CPL1) and an electronic control unit.
The capillary evaporator design uses a two-phase heat transfer loop, which is used to support satellite thermal control. The loop consists of an evaporator, cooler and reservoir connected by pipes. The heat generated in the evaporator is transferred by working fluid to the cooler section. The reservoir supports the temperature inside the loop and the required reserves of working fluid. The fans provide cooling of the capacitor.
The electronic unit consists of a computer with a single-board microprocessor for data acquisition and regulation of the capillary evaporator power, as well as for setting an operating temperature in the reservoir. Water in amount of 20 ml will be used as a coolant.
 

PURPOSE:

Performance of thermodynamic analysis and assessment of the technical characteristics of the capillary evaporator. Assessment of proposed technologies of evaporators for future application in space conditions.

OBJECTIVE:

Capillary evaporator test performance aboard the ISS RS.

EXPERIMENT RESULTS:

Information on the capillary evaporator operation recorded on the memory map.

 

 

 

 

Official WEB-site of S.P.Korolev RSC Energia
E-mail:mail@rsce.ru