Echuan Wang

ORCID: 0000-0002-1015-8042
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About
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Research Areas
  • CO2 Sequestration and Geologic Interactions
  • Hydraulic Fracturing and Reservoir Analysis
  • Drilling and Well Engineering
  • Methane Hydrates and Related Phenomena
  • Enhanced Oil Recovery Techniques
  • Spacecraft and Cryogenic Technologies
  • Fluid Dynamics and Mixing
  • Hydrocarbon exploration and reservoir analysis
  • Innovative Microfluidic and Catalytic Techniques Innovation
  • Lattice Boltzmann Simulation Studies
  • Atmospheric and Environmental Gas Dynamics

China University of Petroleum, East China
2022-2024

China National Offshore Oil Corporation (China)
2021-2024

China National Petroleum Corporation (China)
2024

Argillaceous fine silt hydrate reservoirs have a clay content of 20–25% and median sand particle size 10–15 um. Sand control is extremely difficult, restricting the continuous stable testing gas hydrate. This paper focuses on production mechanisms, plugging characteristics, clogging mechanisms these reservoirs. Based actual characteristics reservoirs, it presents an understanding mechanism argillaceous silt. The properties three different methods six kinds screens are analyzed. Clear design...

10.3390/app142210219 article EN cc-by Applied Sciences 2024-11-07

Natural gas hydrates (NGHs) have abundant reserves and are greener energy source compared to petroleum resources. Intense heat release of cement slurry impacts the stability NGHs during oil well cementing operations. Traditional low hydration-heat slurries significantly reduce early strength. This paper proposes a new strategy for exothermic mechanical properties control on account synergistic effects with various mineral admixtures additives. The hydration microstructure different were...

10.2139/ssrn.4494398 preprint EN 2023-01-01

In order to guide the research and development of low hydration heat cement slurry for natural gas hydrates (NGHs) well, effect fly ash (FA) phase change material (PCM) on low-temperature early performance were investigated by isothermal calorimetry (IC), semi-adiabatic temperature (ST) mechanical strength test. A prediction model cementing according kinetics was built, a design methodology formulation which is suitable NGHs presented newly established model. An in-house device designed...

10.2139/ssrn.4658093 preprint EN 2023-01-01
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