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Laboratory gas hydrate investigation of well potential and industrial structures of VNIIGaz


, : Laboratory gas hydrate investigation of well potential and industrial structures of VNIIGaz. Pages 241-243:



Accession: 018458226

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Related references

Kulenkampff J.; Spangenberg E.; Naumann R., 2002: Experimental methods for the laboratory investigation of gas hydrate containing sediments. Geotechnologien (Potsdam): ges 76-77. 2002.

Booth James S.; Clennell Ben; Pecher Ingo A.; Winters William J.; Relle Monica K.; Dillon William P., 1998: Laboratory investigation of gas hydrate genesis in sediments; modes of occurrence, volumes and growth patterns. Annales Geophysicae (1988): uppl. 1; Pages 296. 1998.

Aronskiy A.A.; Gintov O.B.; Kendzera A.V., 2001: Potential activity of ruptured structures and seismic hazard potential in region with large industrial objects. A method of additional evaluation of the seismic hazard of the territories has been proposed. It was done by means of tectonophysical study of the rupture tectonics and usage of data of the arrivals of different types of seismic waves in the studi...

Moudrakovski, I.L..; Ratcliffe, C.I..; Ripmeester, J.A.., 2001: Probing Transient Hydrate Structures with Hyperpolarized (129)Xe NMR Spectroscopy: A Metastable Structure II Hydrate of Xe. Angewandte Chemie 40(20): 3890-3892

MacDonald Ian R., 2002: Shallow deposits of gas hydrate on the Gulf of Mexico slope; a natural laboratory for hydrate research. Pages (unpaginated 2002

van de Streek, J.; Brüning, Jürgen.; Ivashevskaya, S.N.; Ermrich, M.; Paulus, E.F.; Bolte, M.; Schmidt, M.U., 2009: Structures of six industrial benzimidazolone pigments from laboratory powder diffraction data. The crystal structures of six industrially produced benzimidazolone pigments [Pigment Orange 36 (beta phase), Pigment Orange 62, Pigment Yellow 151, Pigment Yellow 154 (alpha phase), Pigment Yellow 181 (beta phase) and Pigment Yellow 194] were det...

Okui T.; Uchida T.; Masuda Y.; Munakata T.; Kawasaki T., 2005: Laboratory analysis of gas hydrate dissociation in cores from the JAPEX/ JNOC/ GSC et al. Mallik 5L-38 gas hydrate production research well; observational and experimental investigations using X-ray computed tomography. The dissociation behaviour of gas hydrate in sandstone core samples from the JAPEX/JNOC/GSC et al. Mallik 5L-38 gas hydrate production research well was experimentally investigated in this study using X-ray computed tomography (CT scanning). Labor...

J.A.M.jorowicz; P.K.H.nnigan; K.G.O.adetz, 2002: Study of the natural gas hydrate trap zone and the methane hydrate potential in the Sverdrup Basin, Canada. Natural Resources Research 11(2): 79-96

Johnson, A.; Patil, S.; Dandekar, A., 2011: Experimental investigation of gas-water relative permeability for gas hydrate-bearing sediments from the Mount Elbert gas hydrate stratigraphic test well, Alaska North Slope. Marine and Petroleum Geology 28.2

Palenik, G.J.; Mathew, M.; Restivo, R., 1978: Structural studies of tetracyclines crystal and molecular structures of anhydro tetracycline hydro bromide mono hydrate and 6 demethyl 7 chlortetracycline hydro chloride tri hydrate. The crystal and molecular structures of 2 tetracyclines, anhydrotetracycline hydrobromide (I) and 6-demethyl-7-chlorotetracycline hydrochloride (II) were determined by X-ray diffraction techniques. Aromatization of the C ring of tetracyclines give...