ABOUT THE COMPLEX OF THE ACTIONS PROVIDING STRENGTH THE RESOURCE OF SPACE VEHICLES FOR REMOTE SOUNDING OF THE EARTH

Владимир Никитович Маслей

Abstract


The subject of the work is the process of creating Earth remote sensing spacecraft (ERS SC) within the framework of solving the problem of obtaining a high-resolution optical system by achieving high temperature dimensional stability (TDS) while retaining the strength of load-bearing structures (LBSs) during SC operation in orbit. The purpose of the work is to substantiate the block diagram of a package of SC strength measures that has been developed and is being implemented at Yuzhnoye SDO in the process of creating ERS SC containing laminar composite materials in their load-bearing structures, in particular using in their LBSs laminar polymer composite materials (PCMs) with special patterns of reinforcing carbon fibers. Objectives of the work: to analyze the use of layered structures with a resulting coefficient of temperature linear elongation close to zero, including negative in the direction of developing a long-term satellite remote sensing; to consider options for compensating for the weakening of the stiffness and strength characteristics of nanocrystals for TRS layered structures, taking into account the properties of PCM, significantly different from the properties of metals and alloys in the direction of increasing the reliability of spacecraft at various stages of development; to evaluate the compensation for the high cost of spacecraft for remote sensing with the duration of the period of active work in orbit based on modern information technologies.The results consist in that the article formulates features of a package of measures directly linked with ensuring the strength, stiffness, durability, and operating life of LBSs in ERS SC. This package of the measures Yuzhnoye SDO has developed and been implementing in the last years has its first priority to attain the TDS of LBSs and covers the whole life cycle of SC: design, manufacture (technology), testing and service. The service includes storage, transportation, prelaunch tests, injection into orbit and operation in orbit. The scientific novelty consists in the fact that the package takes into account all possible technological processes, tests on several versions of mockups and models with maximally full imitation of standard service conditions according to the scheme: onboard equipment ® onboard systems ® SC in whole. Problems are solved using CALS-class information technologies, for the complete realization of which a super computer has been put into operation with a peak speed of 300 teraflops. This enables to continuously improve ERS SC using PCMs for the TDS of LBSs.

Keywords


spacecraft; Earth remote sensing; polymer composite material; temperature dimensional stability; strength; stiffness; durability; operating life

References


Zahal'noderzhavna tsil'ova naukovo-tekhnichna kosmichna prohrama Ukrayiny na 2008-2012 roky". Zakon Ukrayiny vid 30 veresnya 2008 roku # 608 VI [The nation-wide target technological space program of Ukraine for 2008-2012 ". The law of Ukraine from September, 30th, 2008. no. 608-VI]. Available at: https://zakon.rada.gov.ua/laws/show/608-17 (аccessed 30.09.2008).

Zahal'noderzhavna tsil'ova naukovo-tekhnichna kosmichna prohrama Ukrayiny na 2013—2017 roky". Zakon Ukrayiny vid 5 veresnya 2013 roku. # 439 VII [The nation-wide target technological space program of Ukraine for 2013-2017 ". The law of Ukraine from September, 5th, 2013. no. 439 VII]. Available at: https://zakon.rada.gov.ua/laws/show/439-18 (аccessed 5.09.2013).

Dzhur, Ye.O., Kuchma, L.D., Man'ko, T.A., Sitalo, V.H., Sanin, F.P., Sanin, A.F. Polimerni kompozytsiyni materialy v raketno-kosmichniy tekhnitsi [Polymeric composite materials in the space-rocket engineering]. Kyiv, “Vyshcha osvita” Publ., 2003. 399 p.

Eskiznyi proekt. Korpus skanera vysokoi razreshayushchei sposobnosti "Korpus-SVRZ". Poyasnitel'naya zapiska. Osnovnye kharakteristiki korpusa skanera vysokoi razreshayushchei sposobnosti. "Korpus-SVRZ" P3 [The preliminary design. A body of the scanner of high resolution "Body-SVRZ". An explanatory note. Basic performances of a body of the scanner of high resolution. "Body-SVRZ" P3]. GP "KB "Yuzhnoe im. M. K. Yangelya", 2009. 103 p.

Degtyarev, A. V., Kovalenko, V. A., Potapov, A. V. Primenenie kompozitsionnykh materialov pri sozdanii perspektivnykh obraztsov raketnoi tekhniki [Application of composite materials at creation of perspective samples of rocket engineering]. Aviacijno-kosmicna tehnika i tehnologia – Aerospace technic and technology, 2012. no. 2(89), pp. 34-38.

Makarov, A.L., Potapov, A.M., Kovalenko, V.A., Kondrat'ev, A.V. Karkas skanera vysokoi razreshayushchei sposobnosti iz ugleplastika dlya krepleniya opticheskikh elementov i uzlov kosmicheskogo apparata [A skeleton of the scanner of high resolution from carbon plastic for attachment of optical elements and space vehicle knots]. Voprosy proektirovaniya i proizvodstva konstruktsii letatel'nykh apparatov : sb. nauch. tr. Nats. aerokosm. un-ta im. N.E. Zhukovskogo "KhAI", vol. 1(73), 2013, pp. 40-51.

Taktiko-tekhnicheskoe zadanie (TTZ) kontseptsii sozdaniya natsional'noi kosmicheskoi sistemy optiko-elektronnogo nablyudeniya Zemli [The Taktiko-technical project (TTP) concepts of creation of national space system of optiko-electronic supervision of the Earth]. GP "KB "Yuzhnoe im. M.K. Yangelya", 2014. 30 p.

Borshcheva, G. A., Maslei, V. N., Shovkoplyas, Yu. A., Yarmol'chuk, E. D. Struktura i osnovnye kharakteristiki kosmicheskoi sistemy "Sich-2" [Structure and basic performances of space system "Sich-2"]. Gosudarstvenno predpriyatie "Konstruktorskoe Byuro "Yuzhnoe" im. M. K. Yangelya" "Kosmicheskaya tekhnika. Raketnye vooruzheniya": Nauchno–tekhnicheskii sbornik, vol. 2(109), 2015, pp. 16-24.

Vaisero, M. V. Dobrushina, M. G., Kavun, V. V., Maslei, V. N., Moskalev, S. I., Shovkoplyas, Yu. A., Shchudro, A. P. Konstruktivnye osobennosti platformy malogo kosmicheskogo apparata "Sіch-perspektiva" [Design features of a platform of a small space vehicle "Sich-prospect"]. Gosudarstvenno predpriyatie "Konstruktorskoe Byuro "Yuzhnoe" im. M.K. Yangelya" "Kosmiche-skaya tekhnika. Raketnye vooruzheniya": Nauchno–tekhnicheskii sbornik, vol. 2(109), 2015, pp. 25-29.

Metodika proektirovaniya razmerostabil'noi obolochechnoi konstruktsii iz kompozitsionnogo materiala [A technique of designing the size of a stable shell design from a composite material]. GP "KB "Yuzhnoe", 2016. no. 311/358-2016 M.

Dobrushina, M. G., Kavun, V. V., Galaburda, D. A., Maslei, V. N., Moskalev, S. I., Boklagova, I. N., Kushnirenko, S. I. Aspekty razrabotki razmerostabil'noi konstruktsii skanera vysokogo razresheniya [Aspekty of working out the size of a stable designs of the scanner of the high permission]. Tekhnologicheskie sistemy, 2017, no. 3(80), pp. 87-92.

Maslei, V. N., Kulik, A. S. Metody proektirovaniya izdelii iz polimernykh kompozitsionnykh materialov [Methods of designing of products from polymeric composite materials]. Kosmіchna nauka і tekhnologіya – Space Science and Technology, 2017, vol. 23, no. 5(108), pp. 44-48.

Maslyey, V., Kulyk А., Sanin, A., Moskal’ov, S., Kavun, V., Schudro, A. Development of dimentionally stable structure of drawtube of optical device made of composite material. European Commission funded International Workshop "Materials resistant to extreme conditions for future energy systems", 12-14 June 2017, Kyiv – Ukraine, pp. 72. Book of abstracts.

Bratukhin, A. G. Osnovopolagayushchie integrirovannye informatsionnye tekhnologi konkurentospo-sobnykh izdelii mashinostroeniya [The basic integrated information technologists of competitive products of engineering]. Tekhnologicheskie sistemy, 2012. no. 3(60), pp. 7–32.

Frolov, A. F., Makhutov, N. A., Khurshudov, G. Kh., Gadenin, M. M. Prochnost', resurs i bezopasnost' tekhnicheskikh sistem [Strength, resource and safety of technical systems]. Problemy prochnosti, 2000, no. 5, pp. 8-18.

Rukovodstvo dlya konstruktorov po raschetu ob"ektov na prochnost' [A management for designers by calculation of objects on strength]. GP "KB "Yuzhnoe", 1972. Iskh. no. 321/124.

Korpus SVRS 03.1019. Raschet na prochnost'. 03.1019 03.1019.0000.0000.00.0 R14 [A body of the Scanner of high resolution 03.1019. The Strength calculation. 03.1019 03.1019.0000.0000.00.0 Р14]. GP "KB "Yuzhnoe im. M. K. Yangelya", 2016. 51 p.

Korpus SVRS 03.1019. Kompleksnaya programma eksperimental'noi otrabotki 03.1019.13.0412.311 KPEO [A body of the Scanner of high resolution 03.1019. The complex program of experimental optimisation 03.1019.13.0412.311 KPEO]. GP "KB "Yuzhnoe im. M. K. Yangelya", 2016. 30 p.

KB "YuZhNOE" razvivaet novye tekhnologii sozdaniya RKT s primeneniem kompozitov [Yuzhnoye State Design Office advances new technologies of creation РКТ with application of composites]. Available at: https://www.yuzhnoye.com/press-center/news/copy_news_496.html (accessed 04.06.2019).

Bolotin, V. V., Novichkov, Yu. N. Mekhanika mnogosloinykh konstruktsii [Of the Mechanic of multilayered designs]. Moskow, “Mashinostroenie” Publ., 1980. 375 p.

Kanovich, M. Z., Trofimov, N. N. Soprotivlenie kompozitsionnykh materialov [Resistance of composite materials]. Moskow, “Mir” Publ., 2004. 504 p.

Reutov, A. I. Nadezhnost' izdelii iz polimernykh kompozitsionnykh materialov s uchetom statisticheskoi izmenchivosti ikh kharakteristik . Avtoref. diss. … d.t.n. [Reliability of products from polymeric composite materials taking into account statistical variability of their characteristics. Autoref. diss. … dr. eng. sci.]. Tomsk, Nats. issl. Tomskii politekhn. un-t Publ., 2011. 38 p.

V KB "YuZhNOE" otkrylsya mnogofunktsional'nyi ispytatel'nyi tsentr [In Yuzhnoye State Design Office the multipurpose test centre was opened]. Available at: https://www.yuzhnoye.com/press-center/news/copy_news_483.html (accessed 04.06.2019).

Metodika provedeniya verifikatsii vypolneniya uslovii TTZ posle kazhdogo polugodiya ekspluatatsii v kosmose [A technique of carrying out of verification of fulfilment of conditions ТТZ after every half-year operation in space]. GP "KB "Yuzhnoe", 2016. 36 p.

V KB "YuZhNOE" otkryt novyi vychislitel'nyi tsentr s superkomp'yuterom [In Yuzhnoye State Design Office the new computer centre with a supercomputer is opened]. Available at: https://www.yuzhnoye.com/press-center/news/copy_news_486.html (accessed 04.06.2019).




DOI: https://doi.org/10.32620/aktt.2019.5.06