1. Golofast, S. L., & Vladova, A. Yu. (2019). Influence of temperature field route of the oil-trunk pipeline on linear section strength reliability. Occupational safety in industry, (11), pp. 24-33. (In Russian). DOI: 10.24000/0409-2961-2019-11-24-33
2. Garris, N. A. (1998). Ekspluatatsiya nefteproduktoprovodov v razlichnykh temperaturnykh rezhimakh i zagruzkakh pri uslovii sokhrannosti ekologicheskoy sredy. Diss. … dokt. tekhn. nauk. Ufa, 385 p. (In Russian).
3. Shabarov, A. B., Mikhailov, P. Yu., Puldas, L. A., & Vakulin, A. A. (2010). Physical-mathematical modelling of temperature and ice content fields in the frozen soil around the buried pipeline. Tyumen State University Herald. Physical and Mathematical Modeling. Oil, Gas, Energy, (6), pp. 14-19. (In Russian).
4. Shabarov, A. B., Mikhailov, P. Yu., Vilkov, M. N., Vakulin, A. A., & Suvorovtsev, I. A. (2011). Eksperimental'noe issledovanie poley temperatury vblizi zaglublennykh truboprovodov. Neft' i gaz Zapadnoy Sibiri. Materialy mezhdunarodnoy nauchno-tekhnicheskoy konferentsii, posvyashchennoy 55-letiyu Tyumenskogo gosudarstvennogo neftegazovogo universiteta. Tom II. Tyumen, Tyumen State Oil and Gas University Publ., pp. 108-111. (In Russian).
5. Xu, C., Yu, B., Zhang, Z., Zhang, J., Wei, J., & Sun, Sh. (2010). Numerical simulation of a buried hot crude oil pipeline during shutdown. Petroleum Science, (7), pp. 73-82. (In English). DOI: 10.1007/s12182-010-0008-x