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DESIGNING AND DETAILING OF BUILDING SYSTEMS. MECHANICS IN CIVIL ENGINEERING

Essential FEM statements applied to structural mechanics problems. Part 1

Вестник МГСУ 11/2014
  • Ignat’ev Aleksandr Vladimirovich - Volgograd State University of Architecture and Civil Engineering (VSUACE) Candidate of Technical Sciences, Associate Professor, Department of Structural Mechanics, Volgograd State University of Architecture and Civil Engineering (VSUACE), 1 Akademicheskaya str., Volgograd, 400074, Russian Federation; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .

Страницы 37-57

In the article, the author shares his classification of FEM statements that may serve as a guide in respect of the huge number of works that are published and being published with a view to the FEM efficiency improvement. The author provides a summarized history of the finite element method, and classifies its configurations and versions. The author also provides FEM statements applicable to the deflection method. Derivation of the rigidity matrix designated for shaft-based finite elements is demonstrated in the article. The author employs one-dimensional framing as an example aimed to demonstrate the convergence of the FEM method in terms of deflections, if the finite element grid is refined. However it is also noteworthy that in the event of a fine grid, the finite element designed for plates does not coincide with the finite element of a thin plate designed as the initial physical model. However, the system of equations, provided by the author, takes account of the influence produced by the load onto the finite element and generates the exact solution irrespective of any finite values of the length that are equal to the physical model of a finite element.

DOI: 10.22227/1997-0935.2014.11.37-57

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Analysis and estimation of risk management methods

Вестник МГСУ 5/2016
  • Kankhva Vadim Sergeevich - Moscow State University of Civil Engineering (National Research University) (MGSU) Candidate of Economical Sciences, Associate Professor, Department of Economy and Management in the Construction, Moscow State University of Civil Engineering (National Research University) (MGSU), 26 Yaroslavskoye Shosse, Moscow, 129337, Russian Federation; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .
  • Efremyan Boris Levonovich - Moscow State University of Civil Engineering (National Research University) (MGSU) postgraduate student, Department of Economy and Management in the Construction, Moscow State University of Civil Engineering (National Research University) (MGSU), 26 Yaroslavskoye Shosse, Moscow, 129337, Russian Federation; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .

Страницы 107-118

At the present time risk management is an integral part of state policy in all the countries with developed market economy. Companies dealing with consulting services and implementation of the risk management systems carve out a niche. Unfortunately, conscious preventive risk management in Russia is still far from the level of standardized process of a construction company activity, which often leads to scandals and disapproval in case of unprofessional implementation of projects. The authors present the results of the investigation of the modern understanding of the existing methodology classification and offer the authorial concept of classification matrix of risk management methods. Creation of the developed matrix is based on the analysis of the method in the context of incoming and outgoing transformed information, which may include different elements of risk control stages. So the offered approach allows analyzing the possibilities of each method.

DOI: 10.22227/1997-0935.2016.5.107-118

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  15. Kankhva V.S., Neretin M.V. Klassifikatsiya riskov organizatsiy stroitel’noy otrasli i metody ikh snizheniya [Classification of Risks of Construction Enterprises and Methods of Their Reduction]. Ekonomika i upravlenie narodnym khozyaystvom [Economy and Management of the National Economy]. 2014, no. 1—2, pp. 64—67. (In Russian)
  16. Kankhva V.S., Efremyan B.L. Klassifikatsiya riskov po urovnyam operatsionnogo upravleniya [Risk Classification According to Levels of Operational Management]. Nauchnoe obozrenie [Scientific Review]. 2015, no. 12, pp. 295—298. (In Russian)
  17. Panteleeva M.S., Gorobnyak A.A., Borozdina S.M. Otsenka effektivnosti funktsionirovaniya organizatsionnoy struktury marketinga dlya stroitel’nogo predpriyatiya [Efficiency Estimation of Marketing Structure Organization for a Construction Enterprise]. Ekonomika i predprinimatel’stvo [Economy and Entrepreneurship]. 2015, no. 6—3 (59—3), pp. 491—496. (In Russian)
  18. Trifonov D.A. Mesto risk-menedzhmenta v obshchey strategii upravleniya bankom [Place of Risk Management in the General Strategy of Bank Management]. Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 3: Ekonomika. Ekologiya [Science Journal of Volgograd State University. Global Economic System]. 2010, vol. 3, no. 2, pp.169—173. (In Russian)
  19. Uvarova S.S., Papel’nyuk O.V., Panenkov A.A. Kontseptual’nye i metodicheskie aspekty upravleniya innovatsionnym razvitiem stroitel’nogo predpriyatiya v proektsii teorii organizatsionno-ekonomicheskikh izmeneniy [Conceptual and Methodological Aspects of Innovative Development Management of a Construction Enterprise According to the Theory of Organizational and Economical Changes]. Ekonomika i predprinimatel’stvo [Economy and Entrepreneurship]. 2015, no. 3—2 (56—2), pp. 809—811. (In Russian)
  20. Silka D.N. Mechanisms to Actuate Growth in Conditions of Stagnation of Russian Economy. World Applied Sciences Journal. 2014, vol. 31, no. 1, pp. 148—150. DOI: http://dx.doi.org/10.5829/idosi.wasj.2014.31.01.14289.

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Principles of classification of soilmasses for construction purposes

Вестник МГСУ 9/2013
  • Chernyshev Sergey Nikolaevich - Moscow State University of Civil Engineering (National Research University) (MGSU) Doctor of Geologo-Mineralogical Sciences, Professor, Department of Engineering Geology and Geoecology, Moscow State University of Civil Engineering (National Research University) (MGSU), 26 Yaroslavskoe shosse, Moscow, 129337, Russian Federation; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .

Страницы 41-46

The author proposes original grounds for the classification of the full range of soil masses as a supplement to the classification of soils provided in GOST 25100—2011. The author proposes four classes of soil masses, each class having several types and sub-types of soils. The classification will improve the accuracy of engineering and geological surveys and computer models of the geological environment developed for the purpose of design of buildings and structures. The author offers a classification of soils to identify the geological environment comprising one or more types of soil which are genetically and structurally distinct. Any soil mass type differs by its origin, and, as a consequence, its internal geological structure, stress-strain state and inherent geological processes. Any genetically isolated type of soils a specific program of research, both in terms of methods and in terms of density testing in the point of sampling. The behavior of rock masses together with the engineering structure is pre-determined by the properties of the rock, its relative position (geological structure), a network of cracks and other weakening factors, and the natural state of stress. The fracture network is of paramount importance. Cracks are characterized by direction, length, width, surface roughness of walls, and a distance between parallel cracks.

DOI: 10.22227/1997-0935.2013.9.41-46

Библиографический список
  1. Pashkin E.M., Kagan A.A., Krivonogova N.F.; Pashkina E.M., editor. Terminologicheskiy spravochnik po inzhenernoy geologii [Reference Book of Terms of Engineering Geology]. Moscow, KDU Publ., 2011, 952 p.
  2. Panyukov P.N. Inzhenernaya geologiya [Engineering Geology]. Moscow, Gosgortekhizdat Publ., 1962.
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  4. Belyi L.D. Obshie principial'nye polozheniya [General Principal Provisions]. In the book: Geologiya i plotiny [Geology and Dams]. Moscow — Leningrad, Gosenergoizdat Publ., 1959, pp. 9—19.
  5. Muller L. Der Felsbau. Ferdinand Enke Verlag. Stuttgart, 1963, 453 p.
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CLASSIFICATION OF PROCESSES: SOME ASPECTS OF APPLICATION

Вестник МГСУ 7/2016
  • Patrusova Alena Mikhaylovna - 40 Makarenko str., Bratsk, 665709, Russian Federation Candidate of Technical Sciences, Associate Professor, dean, Department of Extra-Mural and Accelerated Education, 40 Makarenko str., Bratsk, 665709, Russian Federation, ; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .

Страницы 142-151

Classification of the processes in an enterprise is a methodical basis for the solution of the problems of identification and reference of processes to concrete category depending on a classification sign that in turn is the basis for the choice of management tools of the processes and of an enterprise in general. The classification of processes is one of the problems of information search consisting in reference of the process to one of several categories on the basis of certain classification criterion. Rather often some authors make terminological mistake in their works when they refer to all the processes at an enterprise to the category “business process”, including management processes, and supporting processes. The classification of the processes of an enterprise has to be carried out with a definite purpose: it can be carried out for ensuring systematic studying and completeness of coverage of the studied subject domain, or for the purpose of business management on the basis of process approach. The first purpose provides exclusively analytical character of solvable tasks of studying the processes of the enterprise and doesn’t allow developing recommendations on the solution of management problems of the organization. In the second case it is quite possible to use classification of processes of an economic entity as a business management mechanism basis on the ground of process approach. According to the offered classification three groups of processes of the enterprise are defined: management processes (management), business processes (the main processes) and the providing (auxiliary) processes. These classification criteria will allow identifying the processes of the enterprise and defining the system of their interaction. The hierarchy level of the processes allows determining the duration of life cycle of the processes and is the basis for processes planning. Vertical and horizontal processes allow defining the roles, powers and responsibility of linear and functional heads of the organization. Depending on the scale of the organization the presented classification can be concretized concerning business processes. The developed classification allows referring any process of the enterprise to one of the categories, determining the level of its hierarchy and its orientation which is a basis of the choice and formation of management instruments of processes and of an enterprises in general.

DOI: 10.22227/1997-0935.2016.7.142-151

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  7. Kharitonova P.V. Metodicheskiy podkhod k kachestvennoy otsenke nematerial’nykh resursov [Methodological Approach to Qualitative Assessment of Immaterial Resources]. Problemy sotsial’no-ekonomicheskogo razvitiya Sibiri [Issues of Social-Economic Development of Siberia]. 2014, no. 1 (15), pp. 83—87. (In Russian)
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  11. Ostroukhova N.G. Biznes-protsessy predpriyatiy TEK: ponyatie, soderzhanie, klassifikatsiya [Business Processes of Fuel and Energy Complexes: Notion, Content, Classification]. Sibirskaya finansovaya shkola [Siberian Financial School]. 2012, no. 1 (90), pp. 118—122. (In Russian)
  12. Vandina O.G. Otraslevye osobennosti formirovaniya biznes-protsessov stroitel’nykh organizatsiy [Industry Characteristics of Business Processes Formation of Construction Organizations]. Izvestiya Volgogradskogo gosudarstvennogo pedagogicheskogo universiteta [News of the Volgograd State Pedagogica lUniversity]. 2014, no. 3 (88), pp. 126—132. (In Russian)
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  14. Panin A.V. Upravlenie predpriyatiem cherez identifikatsiyu i klassifikatsiyu protsessov [Management of an Enterprise Using Identification and Classification of Processes]. Terra Economicus. 2007, vol. 5, no. 3—3, pp. 224—228. (In Russian)
  15. Peryazeva E.K., Marchenko S.D., Ivanov A.I., Andreeva D.M. Klassifikatsiya protsessov farmatsevticheskogo predpriyatiya [Classification of the Processes of a Pharmaceutical Enterprise]. Farmatsiya [Pharmacy]. 2010, no. 8, pp. 34—35. (In Russian)
  16. Frolov T.Yu. Klassifikatsiya innovatsionnykh protsessov na neftegazovykh predpriyatiyakh [Classification of Innovative Processes on Oil and Gas Enterprises]. Izvestiya Sankt-Peterburgskogo gosudarstvennogo ekonomicheskogo universiteta [News of St. Petersburg State University of Economics]. 2016, no. 2 (98), pp. 131—134. (In Russian)
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  18. Boyarchuk N.Ya., Zverintsev S.A. Razrabotka kontseptual’noy modeli analiza finansovo-khozyaystvennoy deyatel’nosti predpriyatiya [Development of the Conceptual Model for Analyzing Financial and Economic Activity of an Enterprise]. Problemy sotsial’no-ekonomicheskogo razvitiya Sibiri [Issues of Social-Economic Development of Siberia]. 2013, no. 3 (13), pp. 9—16. (In Russian)
  19. Slepenko E.D. Formirovanie i uchet raskhodov kommercheskoy organizatsii v sootvetstvii s zakonodatel’stvom Rossiyskoy Federatsii [Formation and Account of the Expenses of a Commercial Organization in Correspondence with the Laws of the Russian Federation]. Trudy Bratskogo gosudarstvennogo universiteta. Seriya: Ekonomika i upravlenie [Bratsk State University Scientific Journal. Series: Economy and Management]. 2015, vol. 1, pp. 127—132. (In Russian)
  20. Magomedova N.G. Klassifikatsiya biznes-protsessov na agropromyshlennykh predpriyatiyakh [Classification of Business Processes on Agro-Industrial Enterprises]. Voprosy strukturizatsii ekonomiki [Issues of Economy Structuring]. 2012, no. 1, pp. 41—45. (In Russian)
  21. Gubareva T.V., Lukovnikova E.I. Osobennosti primeneniya novykh informatsionnykh tekhnologiy bol’shikh dannykh [Features of Using New Information Technologies of Big Data]. Problemy sotsial’no-ekonomicheskogo razvitiya Sibiri [Issues of Social-Economic Development of Siberia]. 2015, no. 2 (20), pp. 24—31. (In Russian)
  22. Giniyatullina E.Z., Stremilova A.V. K voprosu o pravovom regulirovanii obshchestvennykh otnosheniy v sfere informatsionnykh tekhnologiy [To the Issue of Legal Regulation of Public Relations in the Field of Information Technologies]. Crede Experto: transport, obshchestvo, obrazovanie, yazyk [Crede Experto: Transport, Society, Education, Language]. 2016, no. 1, pp. 133—139. (In Russian)
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  24. Vakhrusheva M.Yu. Avtomatizatsiya monitoringa reytingovykh pokazateley v sisteme menedzhmenta kachestva vuza [Automation of Rating Indicators Monitoring in the Management System of University Quality]. Trudy Bratskogo gosudarstvennogo universiteta. Seriya: Ekonomika i upravlenie [Bratsk State University Scientific Journal. Series: Economy and Management]. 2015, vol. 1, pp. 193—199. (In Russian)
  25. Vakhrusheva M.Yu. Metodicheskie i organizatsionnye printsipy sozdaniya AIS predpriyatiya [Methodological and Organizational Principles of Creating Automated Information System of an Enterprise]. Trudy Bratskogo gosudarstvennogo universiteta. Seriya: Ekonomika i upravlenie [Bratsk State University Scientific Journal. Series: Economy and Management]. 2015, vol. 1, pp. 189—193. (In Russian)

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MODELING OF DESIGN PROCESS AUTOMATION FOR LOGISTICS SYSTEMS AND DATA FLOW PROCESSES IN CONSTRUCTION

Вестник МГСУ 1/2012
  • Martinson Oleg Evgenievich - Moscow State University of Civil Engineering (MSUCE) graduate student of information systems, technology and automation in construction (ISTAS) +7-(499)-183-49-06, Moscow State University of Civil Engineering (MSUCE), 26, Jaroslavskoe shosse, Moscow, 129337, Russia; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .
  • Fahratov Victor Muhammetovich - Moscow State University of Civil Engineering (MSUCE) graduate student of information systems, technology and automation in construction (ISTAS) +7-(499)-183-49-06, Moscow State University of Civil Engineering (MSUCE), 26, Jaroslavskoe shosse, Moscow, 129337, Russia; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .
  • Selezneva Elena Vjzcheslavovna - Moscow State University of Civil Engineering (MSUCE) applicant department of information systems, technology and automation in construction (ISTAS) +7-(499)-183-49-06, Moscow State University of Civil Engineering (MSUCE), 26, Jaroslavskoe shosse, Moscow, 129337, Russia; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .
  • Kulikova Ekaterina Nikolajevna - Moscow State University of Civil Engineering (MSUCE) candidate technical sciences, assistant professor of information systems, technology and automation in construction (ISTAS) +7-(499)-183-49-06, Moscow State University of Civil Engineering (MSUCE), 26, Jaroslavskoe shosse, Moscow, 129337, Russia; Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript .

Страницы 188 - 191

The authors set out the basic principles for development of logistics systems models. Additionally detailed classification of models and modeling methods for such systems are described in the paper.

DOI: 10.22227/1997-0935.2012.1.188 - 191

Библиографический список
  1. Stakhanov E.N., Ivakin, E.?. Logistika v stroitel'stve [Logistics in construction]. Moscow, Prior, 2001, 176 p.
  2. Zhavoronkov E.P. Jeffektivnost' logistiki v stroitel'stve [Efficiency of logistics in construction]. Moscow, KIA Zentr, 2002, 136 c.

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