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Modeling of Gas Transport in Shale Matrix from Nanoscale to Reservoir Scale: Developments in Petroleum Science, cartea 74

Autor Keliu Wu, Jinze Xu, Zhangxing Chen
en Limba Engleză Paperback – 30 sep 2024
Engineers continue to understand shale gas reservoirs and how to improve well productivity. One aspect is through pore transport, but this is an advanced level of research unlike any conventional method or model. Modeling of Gas Transport in Shale Matrix from Nanoscale to Reservoir Scale delivers a necessary reference to engineers and researchers on how to approach, model, and validate gas transport through multi-scale phenomena. Bridging between theory and practical, the reference walks the engineer through the scope of the project, establishing a model, illustrating the case study through workflow charts and follow up actions needed, then rounds out with project results, remaining challenges, and future references to advance learning. Supported from a strong group of experts in the field, Modeling of Gas Transport in Shale Matrix from Nanoscale to Reservoir Scale gives today’s engineers and researchers the most advanced research and field application knowledge to understand unconventional shale gas and increase overall well productivity.

  • Bridge between the latest research developments and practical applications through case studies and workflow charts
  • Gain knowledge on model limitations, future challenges and additional references
  • Calculate and validate shale gas models step-by-step with the help of process diagrams and SEM images
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Specificații

ISBN-13: 9780323902335
ISBN-10: 0323902332
Pagini: 400
Dimensiuni: 151 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Developments in Petroleum Science


Cuprins

1. Introduction
2. Flow Regime Analysis for Free Gas Transport in Shale Matrix under High Pressure
3. Shale Gas Transport in Tapered Non-Circular Nanopores in Shale Rocks
4. Effects of Shale Matrix on Gas Transport in a Bundle of Pores
5. Nano-scale Pore Size Distribution Effects on Shale Gas Production
6. Conclusions and Recommendations