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Engineering and Technology

D-Index
63
Citations
13212
World Ranking
1795
National Ranking
24

Chemistry

D-Index
62
Citations
12271
World Ranking
8927
National Ranking
73

Overview

Erling Halfdan Stenby is affiliated with the Technical University of Denmark in Denmark. Their research is situated primarily within the field of engineering, encompassing 33 publications focused on various engineering disciplines.

Their subfields of study include:

  • Biomedical Engineering
  • Environmental Engineering
  • Mechanical Engineering
  • Fluid Flow and Transfer Processes
  • Ocean Engineering

Stenby's research topics cover a range of themes related to thermodynamics, fluid behavior, and reservoir engineering. These main topics include:

  • Phase Equilibria and Thermodynamics
  • CO2 Sequestration and Geologic Interactions
  • Thermodynamic properties of mixtures
  • Enhanced Oil Recovery Techniques
  • Hydraulic Fracturing and Reservoir Analysis
  • Chemical Thermodynamics and Molecular Structure
  • Hydrocarbon exploration and reservoir analysis

Their recent papers illustrate the scope of their work in energy and fluid sciences. Notable recent publications are:

  • "An Integrated Framework for Geothermal Energy Storage with CO2 Sequestration and Utilization," 2023, Engineering
  • "Importance of conformance control in reinforcing synergy of CO2 EOR and sequestration," 2022, Petroleum Science
  • "Density Modeling of High-Pressure Mixtures using Cubic and Non-Cubic EoS and an Excess Volume Method," 2020, Fluid Phase Equilibria
  • "Density, compressibility and phase equilibrium of high pressure-high temperature reservoir fluids up to 473 K and 140 MPa," 2020, The Journal of Supercritical Fluids
  • "Long tube flooding tests for investigating salt precipitation induced by CO2 injection," 2023, Carbon Capture Science & Technology

Frequent co-authors contributing to their body of work include:

  • Wei Yan
  • Teresa Regueira
  • Fernando de Azevedo Medeiros
  • Daria Grigorash
  • Simon Müller

Stenby has a consistent publication record in several key scientific venues. These venues are:

  • Fluid Phase Equilibria
  • SSRN Electronic Journal
  • Chemical Engineering Science
  • arXiv (Cornell University)
  • Engineering

Best Publications

  • REVIEW OF WAG FIELD EXPERIENCE

    Jes Reimer Christensen;Erling Halfdan Stenby;A. Skauge

  • Ten Years with the CPA (Cubic-Plus-Association) Equation of State. Part 1. Pure Compounds and Self-Associating Systems

    Georgios Kontogeorgis;Michael Locht Michelsen;Georgios Folas;Samer Derawi

  • REVIEW OF WAG FIELD EXPERIENCE

    Unknown

  • Chilled ammonia process for CO2 capture

    Victor Camille Alfred Darde;Kaj Thomsen;Willy J.M. van Well;Erling Halfdan Stenby

  • The friction theory (f-theory) for viscosity modeling

    Sergio E. Quiñones-Cisneros;Claus K. Zéberg-Mikkelsen;Erling H. Stenby

  • Ten Years with the CPA (Cubic-Plus-Association) Equation of State. Part 2. Cross-Associating and Multicomponent Systems

    Georgios Kontogeorgis;Michael Locht Michelsen;Georgios Folas;Samer Derawi

  • Measurement and modeling of CO2 solubility in NaCl brine and CO2–saturated NaCl brine density

    Wei Yan;Shengli Huang;Erling Halfdan Stenby

  • Modeling phase equilibria for acid gas mixtures using the CPA equation of state. Part II: Binary mixtures with CO2

    Ioannis Tsivintzelis;Georgios M. Kontogeorgis;Michael L. Michelsen;Erling H. Stenby

  • Evaluation of activity coefficient models in prediction of alkane solid-liquid equilibria

    João A.P. Coutinho;Simon I. Andersen;Erling H. Stenby

  • A model for estimating CO2 solubility in aqueous alkanolamines

    Jostein Gabrielsen;Michael Locht Michelsen;Erling Halfdan Stenby;Georgios Kontogeorgis

  • A Dynamic Two-Phase Pore-Scale Model of Imbibition

    Kristian Mogensen;Erling Halfdan Stenby

  • One parameter friction theory models for viscosity

    Sergio E Quiñones-Cisneros;Claus K Zéberg-Mikkelsen;Erling H Stenby

  • Application of the cubic-plus-association (CPA) equation of state to cross-associating systems

    Georgios Folas;Jostein Gabrielsen;Michael Locht Michelsen;Erling Halfdan Stenby

  • Modeling phase equilibria for acid gas mixtures using the CPA equation of state. I. Mixtures with H2S

    Ioannis Tsivintzelis;Georgios Kontogeorgis;Michael Locht Michelsen;Erling Halfdan Stenby

  • Global approach for calculation of minimum miscibility pressure

    Kristian Jessen;Michael Locht Michelsen;Erling Halfdan Stenby

  • Experimental validation of a rate-based model for CO2 capture using an AMP solution

    Jostein Gabrielsen;H. F. Svendsen;Michael Locht Michelsen;Erling Halfdan Stenby

  • A Linear Gradient Theory Model for Calculating Interfacial Tensions of Mixtures

    You-Xiang Zuo;Erling H. Stenby

  • Extension of the Cubic-Plus-Association Equation of State to Glycol−Water Cross-Associating Systems

    Samer O. Derawi;Georgios M. Kontogeorgis;and Michael L. Michelsen;Erling H. Stenby

  • Prediction of high-pressure gas solubilities in aqueous mixtures of electrolytes

    Kim Aasberg-Petersen;Erling Stenby;Aage Fredenslund

  • Application of the cubic-plus-association (CPA) equation of state to complex mixtures with aromatic hydrocarbons

    Georgios Folas;Georgios Kontogeorgis;Michael Locht Michelsen;Erling Halfdan Stenby

  • Application of the CPA equation of state to glycol/hydrocarbons liquid-liquid equilibria

    Samer Derawi;Michael Locht Michelsen;Georgios Kontogeorgis;Erling Halfdan Stenby

Frequent Co-Authors

Michael Locht Michelsen
Michael Locht Michelsen Technical University of Denmark
Georgios M. Kontogeorgis
Georgios M. Kontogeorgis Technical University of Denmark
Kaj Thomsen
Kaj Thomsen Technical University of Denmark
Nicolas von Solms
Nicolas von Solms Technical University of Denmark
João A. P. Coutinho
João A. P. Coutinho University of Aveiro
Isabel M. Marrucho
Isabel M. Marrucho Instituto Superior Técnico
Lisbeth Olsson
Lisbeth Olsson Chalmers University of Technology
Franklin M. Orr
Franklin M. Orr Stanford University
Johannes van der Plicht
Johannes van der Plicht University of Groningen
Ali Eftekhari
Ali Eftekhari Technical University of Denmark

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