Open Access
Issue
E3S Web Conf.
Volume 135, 2019
Innovative Technologies in Environmental Science and Education (ITESE-2019)
Article Number 01031
Number of page(s) 9
Section Environmental Engineering
DOI https://doi.org/10.1051/e3sconf/201913501031
Published online 04 December 2019
  1. The program of modernization of housing and communal services until 2020. Heat supply scheme of the city of Karaganda. No.2 (2019) primeminister.kz/page/article_item-87 [Google Scholar]
  2. N.I. Karasev, Association of GA-EA. Prospective development of heat supply of megacities of Kazakhstan in the context of accelerated modernization of economic sectors, No 4, pp.18-24, KSTU (2005) [Google Scholar]
  3. V.M. Lebedev, V.Z. Dmitriyev, D.V. Zhukov, G.A. Pobegayev, Factors affecting the loss of thermal energy and coolant in open heat supply systems. Ind. Ener., No. 11, pp. 28-32, Moscow (2010) [Google Scholar]
  4. V. M. Lebedev. S.D. Prikhodko, V.Z. Dmitriyev, I. V. Matveyev, Reconstruction of industrial heating boilers at a small power TPS and their technical and economic efficiency. Ind. Ener., No. 12. pp. 28-32, Moscow (2012) [Google Scholar]
  5. V.Z. Dmitriyev, The dynamics of the development of the centralized heat supply system in Omsk. Imp. the eff. of heat pow. Fac. and heat sup. Syst., Inter. thematic coll., OmGUPS, pp. 2126, Omsk (2012) [Google Scholar]
  6. T.G. Gorbunova, Reliability of heating networks of various schemes in the development of heating systems. Ind. heat power eng., Orenburg State University, Kazan State Energy University, p. 86 (2014) [Google Scholar]
  7. V.Z. Dmitriyev, Improvement of district heating systems taking into account the structure of sources’ thermal loads. Ind. heat power eng., MIIT, VPO OmGUPS, p. 199 (2012) [Google Scholar]
  8. N.I. Karasev, A.B. Kritsky, N.I. Tomilova, G.N. Tsok, Analysis of requirements for an automated process control system in large district heating systems. Auto. and Inf. Karaganda, No. 1-2, pp. 61-67 (2003) [Google Scholar]
  9. B.N. Feshin, N.I. Tomilova, A.A. Kalinin et al., Information and control technologies for optimizing the functioning of heat supply complexes of megacities. Auto. Inf. No. 2 (31), pp. 12-14 (2012) [Google Scholar]
  10. N.I. Karasev, V.I. Folgart, V.L. Dirksen, Application package for modeling the hydraulic modes of water systems of district heating. Elect. mod. No. 3, pp. 50-55 (1986) [Google Scholar]
  11. N.I. Karasev, The solver of the simulation problems of large heat supply systems. Energy, telecommunications and higher education in modern conditions: 3rd Int. Scie. and Prac. Conf., Almaty: AIPP, pp.24-28 (2002) [Google Scholar]
  12. V.I. Sharapov, P.V. Rotov, Regulation of the heat supply systems load. Moscow, “News of heat supply” publishing house (2007) [Google Scholar]
  13. N.I. Tomilova, D.M. Alisheva, A.N. Tomilov, G.B. Abildayeva, B.O. Mukhametzhanova, Requirements for information technology to solve the problems of operation and future development of heat supply systems in megacities. Young Scientist, No. 17, pp. 276-280 (2015) https://moluch.ru/archive/97/21696/30/10/2019 [Google Scholar]
  14. A. Zhumabayev, N. Karasev, Energy conservation in heat supply systems of megacities of Kazakhstan. Energy: Bul. of the power eng. un. No. 1 (20), pp. 9-13 (2007) [Google Scholar]
  15. N.I. Tomilova, Mathematical models of stationary hydraulic modes of district heating systems. Mat. of the 6th int. scie. and tech. conf. “Energy, telecommunications and higher education in modern conditions”. Bull. of the Almaty Inst.of Ener. and Comm., pp.19-24 (2008) [Google Scholar]

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