|
Reference
|
|
*** (2013) District heating pipes: Preinsulated bonded pipe systems for directly buried hot water networks: Pipe assembly of steel service pipe, polyurethane thermal insulation and outer casing of polyethylene. u: DIN EN 253, BSI British Standards
|
|
*** (2009) District heating pipes. Preinsulated bonded pipe systems for directly buried hot water networks: Fitting assemblies of steel service pipes, polyurethane thermal insulation and outer casing of polyethylene. BSI British Standards, DIN EN 448
|
|
*** (2009) District heating pipes: Preinsulated bonded pipe systems for directly buried hot water networks: Joint assembly for steel service pipes, polyurethane thermal insulation and outer casing of polyethylene. BSI British Standards, DIN EN 489
|
|
Akishev, Y.S., Petryakov, A.V., Trushkin, N.I., Ustyugov, V.A. (2017) Improving of the adhesion of polyurethane foam to the low-pressure polyethylene processed by a plasma. Applied Physics
|
|
Chopra, K., Tyagi, V.V., Pandey, A.K., Sari, A. (2018) Global advancement on experimental and thermal analysis of evacuated tube collector with and without heat pipe systems and possible applications. Applied Energy, 228; 351-389
|
|
Danielewicz, J., Śniechowska, B., Sayegh, M.A., Fidorów, N., Jouhara, H. (2016) Three-dimensional numerical model of heat losses from district heating network pre-insulated pipes buried in the ground. Energy, 108; 172-184
|
|
Elnaggar, E., Elsokkary, T., Shohide, M., El-Sabbagh, B., Abdel-Gawwad, H. (2019) Surface protection of concrete by new protective coating. Construction and Building Materials, 220; 245-252
|
|
Gair, J.L., Lambeth, R.H., Cole, D.P., Lidston, D.L., Stein, I.Y., Kalfon-Cohen, E., Hsieh, A.J., Bruck, H.A., Bundy, M.L., Wardle, B.L. (2018) Strong process-structure interaction in stoveable poly(urethane-urea) aligned carbon nanotube nanocomposites. Composites Science and Technology, 166; 115-124
|
|
He, L., Attard, T.L., Zhou, H., Brooks, A. (2019) Integrating energy transferability into the connection-detail of coastal bridges using reinforced interfacial epoxy-polyurea reaction matrix composite. Composite Structures, 216; 89-103
|
|
Hou, H., Chen, C., Cheng, Y., Zhang, P., Tian, X., Liu, T., Wang, J. (2019) Effect of structural configuration on air blast resistance of polyurea-coated composite steel plates: Experimental studies. Materials & Design, 182; 108049-108049
|
|
Iqbal, N., Sharma, P., Kumar, D., Roy, P. (2018) Protective polyurea coatings for enhanced blast survivability of concrete. Construction and Building Materials, 175; 682-690
|
|
Kayfeci, M. (2014) Determination of energy saving and optimum insulation thicknesses of the heating piping systems for different insulation materials. Energy and Buildings, 69; 278-284
|
|
Korolev, I.A., Petrakov, G.P. (2010) Creation of a testing center for checking the quality of polyurethane foam insulation of pre-insulated pipelines used in heat supply systems. Magazine of Civil Engineering, No. 1 (11); Pp. 23-25
|
|
Patent, J. (2017) Patent EP2166269B2: Method for connecting cladded pipes. Germany: EuropeanPatentOffice, Patent EP2166269B2: isoplusFernwärmetechnik GmbH
|
|
Petrakov, G.P. (2012) The service life of plastic pipe in the polyurethane foam insulation, used for heating systems. Magazine of Civil Engineering, 29(3); 48-53
|
|
Sadr-Al-sadat,, Syed, A., Jalili, G., Mohammadreza (2019) The experimental and numerical study of water leakage from High-Density Polyethylene pipes at elevated temperatures. Polymer Testing, vol.74. Pp. 274-280
|
|
Slepchenok, V.S., Petrakov, G.P. (2011) Increasing the energy efficiency of thermal insulation of heat network pipelines in Northern and Northeastern regions of Russia. Magazine of civil engineering, 22(4); 26-32
|
|
Turski, M., Sekret, R. (2018) Buildings and a district heating network as thermal energy storages in the district heating system. Energy and Buildings, 179; 49-56
|
|
Wang, H., Meng, H., Zhu, T. (2018) New model for onsite heat loss state estimation of general district heating network with hourly measurements. Energy Conversion and Management, 157; 71-85
|
|
Zhang, F., Ju, P., Pan, M., Zhang, D., Huang, Y., Li, G., Li, X. (2018) Self-healing mechanisms in smart protective coatings: A review. Corrosion Science, 144; 74-88
|
|
|
|