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115 results on '"calcite veins"'

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1. Tracing a Mantle Component in Both Paleo and Modern Fluids Along Seismogenic Faults of Southern Italy.

2. Tracing a Mantle Component in Both Paleo and Modern Fluids Along Seismogenic Faults of Southern Italy

3. Further study on the genesis of lamellar calcite veins in lacustrine black shaledA case study of Paleogene in Dongying Depression, China.

4. Three-stage hydrocarbon accumulations in the Middle Permian in the Central Sichuan Basin.

5. Successive Fracturing and Fluid Flow Events During Thrust Sheet Emplacement: The Montsec Thrust Sheet (Southern Pyrenees)

6. Investigations on the effect of natural veined calcite on the mechanical properties of limestone

7. Direct tensile damage process of calcite vein shale based on 3D CT reconstruction

9. Direct tensile damage process of calcite vein shale based on 3D CT reconstruction.

10. Three-stage hydrocarbon accumulations in the Middle Permian in the Central Sichuan Basin

11. Influence of Calcite Veins on the Failure Mode and Mechanical Behaviour of Basalt

12. Genesis of Calcite Veins in 8# Coal Seam of the Upper Carboniferous Benxi Formation, Southeastern Margin of Ordos Basin.

13. Long-term evolution of a carbonate reservoir submitted to fresh, saline and thermal waters interactions – Jurassic carbonates in the coastal area of the Gulf of Lion margin (southern France).

14. Fault zone fluid pathways in the carbonate Irecê basin, NE Brazil.

15. U-Pb dating and geochemical dataset of fracture-filling calcite veins from the Bóixols-Sant Corneli anticline (Southern Pyrenees)

16. Origins of vein-forming fluid and hydrocarbon accumulation in Shiniulan Formation in Dingshan, southeast Sichuan Basin

17. Late-fracture calcite veins decode natural gas preservation.

18. 海相高演化页岩裂缝方解石脉成因机制及指示意义.

19. The origin of fluid in calcite veins and its implications for hydrocarbon accumulation in the Shunnan-Gucheng area of the Tarim Basin, China

20. Long-term evolution of a carbonate reservoir submitted to fresh, saline and thermal waters interactions – Jurassic carbonates in the coastal area of the Gulf of Lion margin (southern France)

21. Initiation and development of tectonic stylolite – Vein system in micritic limestone (Les Matelles, France).

22. The thermal history of Permian carbonate strata reconstructed with clumped isotopes and U–Pb dating: Eastern Sichuan Basin, SW China.

23. Restricted internal oxygen isotope exchange in calcite veins: Constraints from fluid inclusion and clumped isotope-derived temperatures.

24. Post-magmatic fracturing, fluid flow, and vein mineralization in supra-subduction zones: a comparative study on vein calcites from the Troodos ophiolite and the Izu–Bonin forearc and rear arc.

25. Geochemistry and Microtextures of Vein Calcites Pervading the Izu‐Bonin Forearc and Rear Arc Crust: New Insights From IODP Expeditions 352 and 351

26. Precipitation of Calcite Veins in Serpentinized Harzburgite at Tianxiu Hydrothermal Field on Carlsberg Ridge (3.67°N), Northwest Indian Ocean: Implications for Fluid Circulation.

27. Geochemistry and Microtextures of Vein Calcites Pervading the Izu‐Bonin Forearc and Rear Arc Crust: New Insights From IODP Expeditions 352 and 351.

28. U-Pb geochronology of brittle deformation using LA-ICP-MS imaging on calcite veins

29. Absolute age of deformation and duration of folding in the southern Pyrenees from U-Pb dating of calcite veins

30. A study of fluid overpressure microstructures from the creeping segment of the San Andreas fault.

31. Diagenetic history of calcite fractures in Vaca Muerta shales (Argentina) inferred from paired Δ47 and fluid inclusion geothermometry.

32. Genesis of Calcite Veins in 8# Coal Seam of the Upper Carboniferous Benxi Formation, Southeastern Margin of Ordos Basin

33. Geochemistry of Vein Calcites Hosted in the Troodos Pillow Lavas and Their Implications for the Timing and Physicochemical Environment of Fracturing, Fluid Circulation, and Vein Mineral Growth.

34. Intraformational fluid flow in the Thuringian Syncline (Germany) - Evidence from stable isotope data in vein mineralization of Upper Permian and Mesozoic sediments.

35. Quantifying the carbon source of pedogenic calcite veins in weathered limestone: implications for the terrestrial carbon cycle.

36. Dissolution of marine shales and its influence on reservoir properties in the Jiaoshiba area, Sichuan Basin, China.

37. Exploring for the Future - Fluid Inclusion Petrology and Microthermometry on selected samples from NDI Carrara 1

38. Crustal-scale fluid circulation and co-seismic shallow comb-veining along the longest normal fault of the central Apennines, Italy.

39. Applicability of carbonate clumped isotope thermometry in the Tuchang-Jentse geothermal field.

40. U-Pb dating and geochemical dataset of fracture-filling calcite veins from the Boixols-Sant Corneli anticline (Southern Pyrenees)

41. Spatio-temporal variation of fluid flow behavior along a fold: The Bóixols-Sant Corneli anticline (Southern Pyrenees) from UPb dating and structural, petrographic and geochemical constraints

42. Post-magmatic fracturing, fluid flow, and vein mineralization in supra-subduction zones: a comparative study on vein calcites from the Troodos ophiolite and the Izu–Bonin forearc and rear arc

43. Comment on “First records of syn-diagenetic non-tectonic folding in Quaternary thermogene travertines caused by hydrothermal incremental veining” by Billi et al. Tectonophysics 700–701 (2017) 60–79.

44. Magmatic-like fluid source of the Chingshui geothermal field, NE Taiwan evidenced by carbonate clumped-isotope paleothermometry.

45. Origin of the saline paleofluids in fault-damage zones of the Jabal Qusaybah Anticline (Adam Foothills, Oman): Constraints from fluid inclusions geochemistry.

46. Fluid inclusion and geochemistry studies of calcite veins in Shizhu synclinorium, central China: Record of origin of fluids and diagenetic conditions.

47. The origin of fluid in calcite veins and its implications for hydrocarbon accumulation in the Shunnan-Gucheng area of the Tarim Basin, China

48. Constraints on paleofluid sources using the clumped-isotope thermometry of carbonate veins from the SAFOD (San Andreas Fault Observatory at Depth) borehole.

49. Solid bitumen in calcite veins from the Natih Formation in the Oman Mountains: Multiple phases of petroleum migration in a changing stress field.

50. Basin-scale fluid movement patterns revealed by veins: Wessex Basin, UK.

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