Kumar Hemant Singh – författare
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This book introduces to the reader an analytical procedure to characterize the organic-rich Indian Gondwana shale in terms of its elastic, petrophysical, geochemical, and microstructural properties using state-of-the-art laboratory measurements and accounting for the elastic anisotropy, pore microstructure along with rock physics models, image segmentation techniques, and pore network models. As compared to sandstone, shale possesses a more complex origin, strong heterogeneity, and is anisotropic in nature. This makes the characterization of shale rock and the assessment of the potential of the reservoir extremely challenging. The laboratory-measured properties of the reservoir rock are important for the evaluation of the potential of the reservoir rock. These input parameters are utilized to predict variables, build a petrophysical model, and set up strategies in several domains of petroleum engineering and petrophysics. The authors presented the case studies for the identification of prospective shale formation zones in the Indian Gondwana basin that might be used for commercial gas and/or oil production. The scope of this book covers the interest of all researchers and academicians involved in source-rock characterization at the laboratory scale. Furthermore, the source-rock evaluation methods and their many nuances covered here provide excellent reading for geoscience graduates.
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This book presents selected articles from the workshop on "Challenges in Petrophysical Evaluation and Rock Physics Modeling of Carbonate Reservoirs" held at IIT Bombay in November 2017. The articles included explore the challenges associated with using well-log data, core data analysis, and their integration in the qualitative and quantitative assessment of petrophysical and elastic properties in carbonate reservoirs. The book also discusses the recent trends and advances in the area of research and development of carbonate reservoir characterization, both in industry and academia. Further, it addresses the challenging concept of porosity portioning, which has huge implications for exploration and development success in these complex reservoirs, enabling readers to understand the varying orders of deposition and diagenesis and also to model the flow and elastic properties.