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- W2012254688 abstract "Summary This paper surveys cementing terminology for clarifying cement setting and its capability to control interzonal fluid flow. It also demonstrates the results of several test procedures designed to measure two or more cement properties simultaneously under conditions that simulate job applications. These procedures test the validity of theories and procedures for controlling annular gas flow, cement bonding, interzonal channeling, and intrazone isolation. From these results, guidelines may be developed for using laboratory data to determine times for temperature logs, perforating, and stimulation treatments. Existing laboratory equipment was modified and new equipment was designed to measure the interrelationships between static-gel-strength development, volume reductions, hydration temperatures, permeability changes, net plastic-state shrinkage, and compressive strength. Test results indicated that (1) hydration volume reduction (HVR) during the transition period is relatively small and shows a general correlation to unit volume cement content; (2) temperature increases from hydration show a rough correlation to static-gel-strength development; (3) permeability during static-gel-strength development decreases rapidly and shows a definite correlation to fluid-loss test values; (4) plastic-state shrinkage is only a very small part of the total HVR; (5) a general correlation exists between compressive strength, HVR, and heat of hydration; (6) the HVR for an expansive cement was greater than that of a nonexpansive cement, but its plastic-state shrinkage was less." @default.
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- W2012254688 date "1991-06-01" @default.
- W2012254688 modified "2023-10-04" @default.
- W2012254688 title "Interrelationship Between Critical Cement Properties and Volume Changes During Cement Setting" @default.
- W2012254688 cites W1966195973 @default.
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- W2012254688 doi "https://doi.org/10.2118/20451-pa" @default.
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