1. V. A. Zagoruchenko and A. M. Zhuravlyov, Thermophysical Properties of Gaseous and Liquid Methane [in Russian], Izdat. Gosstandart SSSR, Moscow (1969).
2. A. Ignatkovich, B. Bosello, E. Benedetti, P. Kampane, and M. Milkovich, “Measurement of the permeability of thermally cured linings for gas pipelines and tanks,” in: Theory and practice of production technologies of the articles of composite materials and new metal alloys (TPKMM). Complex computerization of the manufacture of composite materials and their processing into products in high-technology fields of industry. Trans. Moscow Int. Sci. Conf., April 21-24, 2009, Moscow, Russia, Vol. 2, Izdat. “Maska” (2011), pp. 265-274.
3. N. D. Tskhadaya and E. Z. Yagubov, “Effect of the volume content of fibers on the tightness of fiberglass pipes,” Konstr. Kompoz. Mater., No. 4, 49-52 (2012).
4. A. Ghouaoula, A. Hocine, D. Chapelle, F. Karaachira, and M. L. Boubakar, “Analytical prediction of damage in the composite part of a type-3 hydrogen storage vessel,” Mech. Compos. Mater., 48, No. 1, 77-88 (2012).
5. V. V. Vasil’ev, A. F. Razin, and F. K. Sin’kovskii, “Optimum form of a composite pressure cylinder with a metal liner,” Kompoz. Nanostrukt., 1, No. 21, 18-24 (2014).