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To calculation the reliability of the body sheets of the storage capacity

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article deals with the separate questions of the stochastic calculation of the body sheets of steel cylindrical silo capacities. Particular attention is paid to the quantitative evaluation of statistical parameters of the particulate solid characteristics: unit weight, angle of internal friction, lateral pressure ratio and wall friction coefficient. Their analysis and comparison in various regulative documents is represented. The expression for calculating the random value of the horizontal pressure of the particulate solids is formulated and the curves of density and the distribution function of the given quantity are constructed for the case of considering the correlation dependence of the statistical parameters of the particulate solid characteristics and when these quantities are completely independent. Also it is presented an expression for calculating the random value of the critical factor of the sheets of steel storage capacity with the following statistical of the given quantity with different coefficient values of the steel variation. Conclusions are made accordingly to the influence of the coefficient of variation at the value of probability of the failure-free operation of the body sheets.
Rocznik
Strony
96--101
Opis fizyczny
Bibliogr. 11 poz., tab., wykr., wzory
Twórcy
  • O.M. Beketov National University of Urban Economy in Kharkiv, Ukraine
  • National Aviation University, Ukraine
Bibliografia
  • [1] Augueti G., Baratti A., Kashiati F., Verojatnostnye metody v stroitel'nom proektirovanii, Strojizdat, 1988, 584 p. (in Russian).
  • [2] ASTM D6683-01 Standard Test Method for Measuring Bulk Density Values of Powders and Other Bulk Solids, ASTM International, West Conshohocken, PA, 2014.
  • [3] DBN V.2.2-8-98: Pidpriemstva, budivli i sporudi po zberigannju ta pererobci zerna, Derzhbud Ukraini, 1998, 41 p.
  • [4] Ditlevsen O., Christensen C., Randrup-Thomsen S., Empirical Stochastic Silo Load Model. III: Reliability Applications, Journal of Engineering Mechanics, Vol. 121, No. 9, 1995, pp. 987-993.
  • [5] DSTU-N B EN 1991-4:2012 Evrokod 1. Diï na konstrukciï. Chastina 4. Bunkeri i rezervuari (EN 1991-4:2006, IDT), Ministerstvo regional'nogo rozvitku, budivnictva ta zhitlovo-komunal'nogo gospodarstwa Ukraïni, 2010, 178 p.
  • [6] Gumbel E., Statistika ekstremalnykh znachenii, Mir, 1965, 450 p. (in Russian).
  • [7] Makhinko A., Makhinko N., Analysis of the deflective mode of thin-walled barrell shell. Academic journal Industrial Machine Building, Civil Engineering, 2018, pp. 69-78.
  • [8] Makhinko N., Rozrahunok emnostej z ploskim dnishhem, jak obolonok obertannja zminno'i zhorstkosti, Visnik Odes'koï derzhavnoï akademiï budivnictva ta arhitektuh, 70, 2018, pp. 68-74. (in Ukrainian).
  • [9] Pichugin S.F., Nadezhnost stalnykh konstruktsii proizvodstvennykh zdanii monografiia, ASMI, 2009, 452 p. (in Russian).
  • [10] Rajzer V.D., Teorija nadezhnosti sooruzhenij, Izdatel'stvo Associacii stroitel'nyh vuzov, 2010, 384 p. (in Russian).
  • [11] Winkelmann K., The use of Response Surface Methodology for reliability estimation of aluminum silo subjected to wind load. Shell Structures: Theory and Application, Vol. 52, No. 4, 2014, pp. 1019-1032.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-798042e7-685e-44d4-916b-5b07bc7a2767
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