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The flowing fluid electric conductivity (FFEC) logging method is a well-logging technique that may be used to estimate flow rate, salinity, transmissivity, and hydraulic head of individual fractures or high-permeability zones intersected by a wellbore.
In this paper, we introduced a new logging method for effective identification of low resistivity reservoirs.
This logging method provides a more effective approach than existing methods for the characterization of low resistivity reservoirs.
This study illustrates the strengths and weaknesses of the multi-rate FFEC logging method applied to artesian wells.
In order to use this new logging method in practice, effect of some factors on the relaxation time spectrum should be investigated.
We found that canopy damage and regrowth rates varied according to the logging method used, either conventional logging or reduced impact logging.
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Local conditions may dictate uncommon logging methods.
Video analysis and manual data logging methods were surprisingly accurate when measured against software logs.
This paper reviews new integrated production logging methods of evaluating multiphase flow in horizontal wells.
Low resistivity reservoirs, which are important oil reservoirs with considerable productivity, cannot be easily identified through traditional electrical logging methods.
A combination of logging methods is advantageous: gamma-ray and density logging for identifying the type of coal present; gamma-ray (radiometric), resistivity (electric), and calliper logs for determining the thickness of the seam; and sonic and density logs for determining the condition of the roof and floor strata.
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