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Cavernes: Litterature

La liste suivante contient des publications répertoriées dans Structurae qui sont rélévant pour ce projet.

  1. Auffahren großer Kavernenquerschnitte in ungünstigen geologischen Bedingungen. Dans: Felsbau-Magazin, n. 6 ( 2008), pp. 358.
  2. Pöschl, Irmina / Genser, Waltraud / Kleberger, Johannes (2006): Development of a High-Value Geological Model for Cavern Design in Faulted Rock Mass. Dans: Felsbau, v. 24, n. 5 ( 2006), pp. 28.
  3. Langer, M. (1990): Empfehlungen des Arbeitskreises "Salzmechanik" der Deutschen Gesellschaft für Erd- und Grundbau e.V. zur Geotechnik der Untertagedeponierung von Sonderabfällen im Salzgebirge. Ablagerung in Kavernen. Dans: Bautechnik, v. 67, n. 3 (mars 1990), pp. 91-95.
  4. Schubert, Peter / Zigon, Anjo / Vergeiner, Ralf (2006): Entscheidungskriterien für die Planung zweier 360 m3 Kavernen in Slowenien. Dans: Felsbau, v. 24, n. 5 ( 2006), pp. 38.
  5. Kramer, Jacques-René (2002): Réhabilitation de carriers, cavernes et troglodytes en Anjou. Présenté pendant: AFTES – Toulouse 21-23 octobre 2002, pp. 83-88.
  6. Gu, Shuancheng / Zhou, Pan / Sun, Wei / Hu, Chunhui / Li, Zhi / Wang, Chao (2018): Study on the Stability of Surrounding Rock of Underground Circular Cavern Based on the Anchor Reinforcement Effect. Dans: Advances in Civil Engineering, v. 2018 ( 2018), pp. 1-18.

    https://doi.org/10.1155/2018/4185070

  7. Broch, Einar / Myrvang, Arne M. / Stjern, Gisle (1996): Support of large rock caverns in Norway. Dans: Tunnelling and Underground Space Technology, v. 11, n. 1 (janvier 1996), pp. 11-19.

    https://doi.org/10.1016/0886-7798(96)00046-6

  8. Glamheden, R. / Lindblom, U. (2002): Thermal and mechanical behaviour of refrigerated caverns in hard rock. Dans: Tunnelling and Underground Space Technology, v. 17, n. 4 (octobre 2002), pp. 341-353.

    https://doi.org/10.1016/s0886-7798(02)00029-9

  9. Lin, Fang / Chen, Shougen / Ma, Guowei (2016): Transient electromagnetic detection method in water-sealed underground storage caverns. Dans: Underground Space, v. 1, n. 1 (septembre 2016), pp. 44-61.

    https://doi.org/10.1016/j.undsp.2016.07.001

  10. Bailly, D. (1995): Travaux souterrains à Hong Kong: cavernes Stanley. Dans: Travaux, n. 709 (mai 1995), pp. 82.
  11. Testa, Carmine / Leo Carlucci, Pier / Pelizza, Sebastiano / Peila, Daniele / Kalamaras, Georgios / Alessio, Carlo (2008): Tunnel design in asbestos-bearing rocks and design of an underground cavern for storing the contaminated muck material. The case of the Cesana tunnel. Présenté pendant: AFTES - Journées techniques, Monaco, 2008, pp. 85-92.
  12. Zhao, J. / Liu, Q. / Lee, K. W. / Choa, V. / Teh, C. I. (1999): Underground cavern development in the Jurong sedimentary rock formation. Dans: Tunnelling and Underground Space Technology, v. 14, n. 4 (octobre 1999), pp. 449-459.

    https://doi.org/10.1016/s0886-7798(00)00007-9

  13. Sigl, Oskar / Millen, Bernard / Höfer-Öllinger, Giorgio (2014): The underground crude oil storage caverns of Visakhapatnam, India. Dans: Geomechanics and Tunnelling, v. 7, n. 2 ( 2014), pp. 155-162.

    https://doi.org/10.1002/geot.201400012

  14. Xu, Ding-ping / Feng, Xia-Ting / Cui, Yu-Jun / Jiang, Quan (2015): Use of the equivalent continuum approach to model the behavior of a rock mass containing an interlayer shear weakness zone in an underground cavern excavation. Dans: Tunnelling and Underground Space Technology, v. 47 (mars 2015), pp. 35-51.

    https://doi.org/10.1016/j.tust.2014.12.006

  15. Jansson, Birger (1989): Water and sewage in caverns and tunnels: Thirty years experience in Sweden. Dans: Tunnelling and Underground Space Technology, v. 4, n. 1 (janvier 1989), pp. 47-51.

    https://doi.org/10.1016/0886-7798(89)90032-1

  16. Kjørholt, H. / Broch, E. (1992): The water curtain—a successful means of preventing gas leakage from high-pressure, unlined rock caverns. Dans: Tunnelling and Underground Space Technology, v. 7, n. 2 (avril 1992), pp. 127-132.

    https://doi.org/10.1016/0886-7798(92)90042-g