Preview

Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture

Advanced search

Modeling of Building Lifecycle Based on the Process Approach

Abstract

The paper discusses the application of the process approach for the lifecycle analysis of highly dangerous facilities including design, building, normative-technical support and operation. Design and development of the lifecycle model based on the process approach allow not only to increase the operation safety but also foresee emergency situations and timely correct the decisions oriented to their prevention. The analysis of the enterprise operation highlights the most critical processes, which require detailed studying based on the additional experimental and calculation research. The discussed problems of safe operation of energy objects and a possibility of implementing design solutions must prevent emergency situations and provide normal operation of machines.

About the Authors

Viktor A. Vlasov
Tomsk State University of Architecture and Building
Russian Federation


Anatolii E. Karpov
Russian Ecological Fund ‘TEKHEKO’
Russian Federation


Dmitrii G. Kopanitsa
Tomsk State University of Architecture and Building
Russian Federation


Andrei G. Laskovenko
Russian Ecological Fund ‘TEKHEKO’
Russian Federation


Georgii A. Laskovenko
Russian Ecological Fund ‘TEKHEKO’
Russian Federation


References

1. Vlasov V.A., Karpov A.E., Kopanitsa G.D., Kopanitsa D.G., Laskovenko A.G., Laskovenko G.A. Protsessnyi metod analiza zhiznennogo tsikla gidroelektrostantsii [Process analysis of hydro electric plant lifecycle]. Vestnik TSUAB. 2016. No. 3 (56). Pp. 82–94. (rus)

2. Berlin V.V. Murav'ev O.A., Golubev A.V. Dinamicheskie kharakteristiki ortogonal'noi gidroturbiny i sistemy regulirovaniya moshchnosti PES s vysokovol'tnym preobrazovatelem chastoty [Dynamic properties of orthogonal hydraulic turbine and power control systems with high-voltage converter]. Gidrotekhnicheskoe stroitel'stvo. 2011. No. 10. Pp. 37–44. (rus)

3. Berlin V.V., Murav'ev O.A. Issledovanie rezonansnykh yavlenii v napornykh vodovodakh i otsasyvayushchikh trubakh GES [Resonance phenomena in pressure conduits and draft tubes]. Gidrotekhnicheskoe stroitel'stvo. 2012. No. 7. Pp. 46–58. (rus)

4. Niu S. Insley M. An options pricing approach to ramping rate restrictions at hydro power plants. Journal of Economic Dynamics and Control. 2016. No. 63. Pp. 25–52.

5. Saket R.K. Design aspects and probabilistic approach for generation reliability evaluation of MWW based micro-hydro power plant. Renewable and Sustainable Energy Reviews. 2013. No. 28. Pp. 917–929.

6. Berlin, V.V., Murav'ev O.A. Load drops at high-head pumped-storage power plants with branched conduits. Power Technology and Engineering. 2014. V. 48. No. 1. Pp. 23–28.

7. Cianfrani C.A., Tsiakals J.J., West J. ISO 9001:2008 explained. 3rd edn. Milwaukee, Wis.: ASQ Quality Press, 2009.

8. Berman J. Maximizing project value: defining, managing, and measuring for optimal return. New York: Amacom, American Management Association, 2007.

9. Berlin V.V. Murav'ev O.A. Tekhnicheskie aspekty avarii na vtorom agregate SayanoShushenskoi GES [Technical aspects of accident on the second aggregate of SayanoShushenskaya hydroelectric power station]. Gidrotekhnicheskoe stroitel'stvo. 2010. No. 5. Pp. 25–32. (rus)


Review

For citations:


Vlasov V.A., Karpov A.E., Kopanitsa D.G., Laskovenko A.G., Laskovenko G.A. Modeling of Building Lifecycle Based on the Process Approach. Vestnik of Tomsk state university of architecture and building. 2016;(5):161-166. (In Russ.)

Views: 1215


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1607-1859 (Print)
ISSN 2310-0044 (Online)