Over 10 mio. titler Fri fragt ved køb over 499,- Hurtig levering 30 dages retur

The Mechanical Behavior of Salt – Understanding of THMC Processes in Salt

- Proceedings of the 6th Conference (SaltMech6), Hannover, Germany, 22–25 May 2007

Forfatter: info mangler
Bog

Beskrivelse

A unique opportunity to review the latest progress in an expanding area of interest: the Mechanical Behaviour of Salt. These Proceedings include over fifty papers and summaries describing the latest findings in ongoing studies from a number of research groups. For the 2007 conference, there was a particular focus on the understanding of thermal, mechanical, hydraulic and chemical coupled processes (THMC). Such processes are of specific interest when considering advanced problems in waste disposal, storage and mining. The book includes a number of themes:

- laboratory and in-situ investigations modelling, e.g. derivation of constitutive equations

- numerical computations and prediction of long-term behaviour

- THMC processes in mining projects, storage and permanent disposal

- case studies

- geology

- mining and storage applications and abandonment

The International Conferences on the Mechanical Behaviour of Salt have a long tradition, being initiated in 1981 at The Pennsylvania State University, USA. The present conference, the sixth of the series, took place in Hannover, Germany, in May 2007. The conference brought together mining engineers, researchers, and university professors interested in the mechanical behaviour of salt, mostly from Europe and beyond.

Læs hele beskrivelsen
Detaljer
  • SprogEngelsk
  • Sidetal453
  • Udgivelsesdato10-05-2007
  • ISBN139780415443982
  • Forlag Crc Press
  • FormatHardback
Størrelse og vægt
  • Vægt975 g
  • coffee cup img
    10 cm
    book img
    17,4 cm
    24,6 cm

    Findes i disse kategorier...

    Se andre, der handler om...

    Rock Boundary Steady-State Creep Dilatancy Thomas Spies Creep tests A. Kansy A. Hampel A. Lindert Anhydritic Layer A. Reitze Asse Salt Mine A. Pudewills Afonso L.P. Carvalho A. Gens Brine Pressure B. Faust Anhydrous MgSO Cavern Pressure C. Hübscher C.J. Spiers B. Brouard Chun-Liang Zhang C.J. Peach Creep Rate Confining Pressure B.L. Ehgartner Crushed Salt Crystallisation Pressure D. Stührenberg D. Brückner B. Stielow Cavern Wall C. Caligaris C. Hillmann C. Rolin D.H. Wei C.H. Yang F. Chen F. Werunsky G.D. Callahan G.L. Netzeband G. Gärtner H. Alkan H. Böhnel F. Hasselkus D.A. Qu H.-K. Nipp G. Pusch Hua Shao Granular Salt Heleg C. Moog H.C. Moog H.-J. Herbert H.-J. Engelhardt Dilatancy Boundary D. Zapf H. von Tryller Hesser Jürgen Ingo Plischke J.G. Durup EDZ K. Salzer J. Zulauf J. Schoenherr K.L. De Vries K.D. Mellegard K.M. Urbańczyk Leo Rothenburg J.L. Urai J. Ślizowski J.W. Chen J.-P. Schleinig Klaus Wieczorek F. Zetsche N. Stockmann Maurice B. Dusseault M.B. Dusseaut Minimum Principle Stress Mingliang Xie M. Mohlfeld G. Zulauf P. Bérest Norbert Jockwer G. Storch O. Schulze G. Hévin G.M. Pennock Hort-Jürgen Herbert Otto Schulze R.F. Bekendam Rock Salt H.-D. Voigt Rock Burst R. Eickemeier J. Mühlbauer R. Wolters Salt Concrete Q.H. Qian Salt Caverns S. Heusermann Steady State Creep Rate Salt Rocks Johannes Droste T. Popp S. Eberth K.-H. Lux U. Heemann T. Wilsnack Th. Leusmann Wenqing Wang V. Lukas Z. Schléder* W. Sarfeld J. Grupa Y.S. Zhao U. Düsterloh M. Wiedemann J. Preuss Natural Gas Storage Cavern O. Bornemann Y.P. Li Rock Salt Mass M. Karimi-Jafari Olaf Kolditz O. Pichayrou S. Olivella P.A. Fokker Tilmann Rothfuchs R. Mauke Robert Walsh P. Kamlot X. Zhang Z. Hou Solution Precipitation Creep S.R. Sobolik R.-M. Günther R. Rokahr S. Fahland W.G. Liang W. Minkley W. Müller X.Y. Yin
    Machine Name: SAXO082