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Modern Reservoir Engineering Handbook: A Practical Guide to Simulation, Unconventional Reservoirs, History Matching, and CO₂ Storage - Couverture souple

Livre 11 sur 12: Updated Practical Handbooks

Newman, Sienna

 
9798177288505: Modern Reservoir Engineering Handbook: A Practical Guide to Simulation, Unconventional Reservoirs, History Matching, and CO₂ Storage

Synopsis

The modern reservoir engineer needs a practical bridge between established theory and emerging workflows…

Does the history match look reasonable, but the parameters feel stretched?

Is there pressure to explain P10/P50/P90, uncertainty, or model assumptions to a mixed technical audience?

Does the growing importance of Python, unconventional reservoirs, and CO₂ storage create pressure to expand existing skills?

Written for engineers who need practical guidance rather than theory alone, Modern Reservoir Engineering Handbook connects classical reservoir fundamentals with simulation, forecasting, history matching, unconventional analysis, uncertainty, Python-assisted workflows, and CO₂-EOR and geological storage. The outline emphasizes independent reality checks, physical credibility, transparent modeling, and decision-ready communication.

Readers learn how to:

  • Build defensible reservoir workflows
  • Check rock and fluid assumptions
  • Interpret pressure and saturation
  • Apply material-balance reality checks
  • Construct and QC simulation models
  • Handle PVT and initialization
  • Represent wells and controls
  • Diagnose history-match problems
  • Recognize non-uniqueness
  • Evaluate RTA, DCA, and type curves
  • Understand parent-child effects
  • Build forecast scenarios
  • Use Python and spreadsheets transparently
  • Evaluate proxy and surrogate models
  • Screen CO₂ storage opportunities

The focus stays on practical interpretation, common mistakes, uncertainty, and reproducible engineering decisions—not unexplained black-box outputs.

Readers do not need to be data scientists or abandon classical reservoir engineering. The book treats Python, machine learning, unconventional workflows, and CO₂ storage as extensions of established engineering principles, while keeping physical reasoning and transparent validation central.

If you want to extend reservoir-engineering skills into modern subsurface and CO₂-storage applications, then put this practical guide within reach.


Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.