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Testing LCM on a Large Scale for Geothermal Drilling Applications Using a Novel Experimental Setup
OwnerNational Renewable Energy Laboratory (NREL) - view all
Update frequencyunknown
Last updatedabout 1 year ago
Format
Overview

Rheology data obtained from flow loop tests, performed using different lost circulation materials (LCM) to study their effect on fluid rheology and wellbore hydraulics. The sealing performance of different LCM was tested using different fracture sizes. Five academic papers / reports derived from this research are also presented.

3D printingAnnular flowDrilling fluidDrilling fluid additivesFlow loopFluid stabilityGeothermal drillingGeothermal wellsHPHTHPHT challengesHT Flow loopHigh temperatureHole cleaningLost circulationLost circulation materialRheological propertiesRheologySGWSealing efficiencyShape memory polymerSmart LCMTemperatureWellbore hydraulicscharacterizationdrillingdrilling technologyenergyexperimentfiltration controlgeochemistrygeothermalmodelprocessed datareporttechnologyviscosifierwellbore
Additional Information
KeyValue
dcat_issued2022-04-22T06:00:00Z
dcat_modified2023-06-27T01:09:15Z
dcat_publisher_nameUniversity of Oklahoma
guidhttps://data.openei.org/submissions/5899
ib1_trust_framework[]
language
Files
  • PDF
    Testing Lost Circulation Material on a Large Scale for Geothermal Drilling Applications.pdf
  • PDF
    Evaluate the Sealing Efficiency of Lost Circulation Material.pdf
  • PDF
    Significance and complications of drilling fluid rheology.pdf
  • PDF
    Experimental Investigation of a Smart LCM.pdf
  • PDF
    Experimental study on rheological and settling properties of SMPs.pdf
  • XLSX
    Summary of LCM Transportation Experiments in HT Flow loop.XLSX
  • XLSX
    Summary of Rheology Experiments in HT Flow loop.XLSX
  • XLSX
    Summary of Fracture Sealing Experiments in HT Flow loop.XLSX
  • XLSX
    Rheology Screening for Mud Additives.xlsx
  • PDF
    Rheological Properties of Drilling Fluids Containing Special Additives
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