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O. Devoyno, P. Drozdov, Y. Dovoretskiy, M. Kardapolova, N. Lutsko and E. Tamanis

Deposition (DMD) of H13 tool steel for 3-D components: microstructure and mechanical properties. J. Metals, 49 (5), 55-60. Mazumder, J., Schifferer, A., & Choi, J. (1999). Direct materials deposition: designed macro and microstructure. Mater. Res. Innova, 3 , 118-31. Keicher, D. M., & Smugersky, J. E. (1997). The laser forming of metallic components using particulate materials. J. Metals, 49 (5), 51-54. Milewski, J.O, Lewis, G. K., Thoma, D. J. et al (1997). Directed light fabrication of a

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Richard J. Wilbraham and Colin Boxall

pyridine-pyrazole type in acidic corrosion of steel. Colloids Surf. A, 259, 143-149. 23. Kosari, A., Moayed, M. H., Davoodi, A., Parvizi, R., Momeni, M., Eshghi, H., & Moradi, H. (2014). Electrochemical and quantum chemical assessment of two organic compounds from pyridine derivatives as corrosion inhibitors for mild steel in HCl solution under stagnant condition and hydrodynamic flow. Corros. Sci., 78, 138-150 24. Hayward, T. M., Svishchev, I. M., & Makhija, R. C. (2003). Stainless steel flow reactor for supercritical water oxidation

Open access

Maciej Sobótka

References [1] MACHELSKI C., Modelling of soil-steel bridge structures, (in Polish), DWE, Wrocław, 2008. [2] MACHELSKI C., ANTONISZYN G., MICHALSKI B., Live load effects on a soil-steel bridge founded on elastic supports, Studia Geotechnica et Mechanica, 2006, 28, 2-4, 65-82. [3] ANTONISZYN G., Is the road pavement structural element of the bridge?, Geoengineering: roads, bridges, tunnels, (in Polish), 2009, 3, 76-79. [4] JANUSZ L., MADAJ A., Engineering structures made form corrugated plates

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M.K. Alyzhanov, M.R. Sikhimbayev, S.B. Kuzembayev, K.T. Sherov, D.R. Sikhimbayeva, T.A. Khanov, T.B. Kurmangaliyev, D.E. Elemes, B.S. Donenbayev, M.M. Musaev and T.M. Buzauova

., M. K. ALYZHANOV, M. M. BUKENOV, B. S. FIALKOV. Matematicheskaya Model of Interaction of a Gas Stream with a Dense Bed of Bulk, VINITI, 10.01.1986, No. 228-B86. The Deposited Manuscript, 1986. [4] ALYZHANOV, M. K., E. V. MAKSIMOV, SN. K. KAPBASOV. Dewatering and drying of Iron - Ore Concentrates in the Regime of Active Interation Turbulent Gas Flow, Metallurgu - 92, Modernization of Iron and Itell Industry and New Processes of Steel Production, Cracow, 1992. [5] ALYZHANOV, M. K., D. E. DUSEMBAEV, V. G. KIM. Large - scale Formations

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Antoni Rożeń

June 2017, from http://us.areva.com/EN/home-1495/passive-autocatalytic-recombiner-par.html . 5. Simon, B., Reinecke, E.-A., Kubelt, C., & Allelein, H.-J. (2014). Start-up behaviour of a passive auto-catalytic recombiner under counter flow conditions: Results of a first orienting experimental study. Nucl. Eng. Des ., 278 , 317–322. DOI: 10.1016/j.nucengdes.2014.06.029. 6. Liang, Z., Gardner, L., Clouther, T., & Thomas, B. (2016). Experimental study of effect of ambient flow condition on the performance of a passive autocatalytic recombiner. Nucl. Eng

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S. Upnere, N. Jekabsons and R. Joffe

. Boundary Field Problems and Computer Simulation, 54 (2012), 30-37. [8] Joffe, R., et al. Evaluation of Damage and Deformation of the RT-32 Radio Telescope. Latvian J. of Physics and Tech. Sci., 49 (2012), 4-12. [9] Zienkiewicz, O. C., et al. The Finite Element Method for Fluid Dynamics, Amsterdam, Elsevier BH, 2009. [10] Launder, B. E., D. B. Spalding. The Numerical Computation of Turbulent Flows. Comput. Method Appl. Mech. Eng., 3 (1974), 269-289. [11] Upnere, S., et al. Analysis of Wind Influence to Radio

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M. Moya, P.J. Aguado and F. Ayuga

-Montellano C.,RamírezA., GallegoE., andAyugaF., 2011. Validation and experimental calibration of 3D discrete element models for the simulation of the discharge flow in silo. Chem. Eng. Sci., 66(21), 5116-5126. Härtl J. and Ooi J.Y., 2011. Numerical investigation of particle shape and particle friction on limiting bulk friction in direct shear tests and comparison with experiments. Powder Technol., 212, 231-239. Lebegue Y. and Boudakian A., 1989. Bases de regles Silos du SNBATI. Essais sur les produits et principes des formules silos

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Hakan Kibar

Society for Testing and Materials. AS3774, 1996. Loads on bulk solids containers. Standards Australia, Sydney, Australia. DIN1055-6, 1987. Design loads for buildings: loads in silo bins, Deutsches Institut fur Normung, Berlin, Germany. Eurocode 1, 2006. EN 1991-4, Eurocode 1: Basis of Design and Actions on Structures, Part 4 - Silos and Tanks. European Committee for Standardisation, Brussels. Eurocode 3, 2004. Design of Steel Structures (EN 1993-1-3), Part 1-3: General Rules-Supplementary Rules for Cold

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Juan Pedro Ruiz-Fernández, Javier Benlloch, Miguel A. López and Nelia Valverde-Gascueña

directly. 2 Methodology The suggested methodology is novel and is based on the scientific empirical method, which is the one that supports statistics. The main goal of this paper is to directly measure how seasonal factors influence the earned value of construction. Thus, we analyse the actual output historical records from construction works. To deal with, it becomes necessary to have working units (by time unit) available. For instance, m 3 of digging by time unit, m 2 of road surface by time unit, kg of frame steel by time unit, etc. However, observe that a

Open access

Pablo Guindos, Christian Michel and Cindy Weichert

Influence on Drawing Restistance] Beitr. Tabakforsch. Int. 16 1994 11 46 10.2478/cttr-2013-0630 14. Gaißer, H.: Die stationäre Strömung in der Cigarette und deren Einfluß auf den Zugwiderstand [Steady State Flow in the Cigarette and its Influence on Pressure Drop]; Beitr. Tabakforsch. Int. 15 (1992) 93–122. 10.2478/cttr-2013-0626 Gaißer H. Die stationäre Strömung in der Cigarette und deren Einfluß auf den Zugwiderstand [Steady State Flow in the Cigarette and its Influence on Pressure Drop] Beitr. Tabakforsch. Int. 15 1992 93 122