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#### Data frac

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Images

in Reactive Liner Perforating Technology used to Improve Efficiency of Hydraulic Fracturing Operations

**Published:**12 November 2018

Figure 14 Data Frac stage #1 for case C - Data Frac pumped at various rates. More

Images

**Published:**09 December 2021

Figure 8 Data Frac and Main Frac Actual Job Data Pressure Match More

Images

in Reactive Liner Perforating Technology used to Improve Efficiency of Hydraulic Fracturing Operations

**Published:**12 November 2018

Figure 11 Data Frac stage #1 for case B - Frac Initiation attempts with Reactive Liner perforations. More

Images

in Reactive Liner Perforating Technology used to Improve Efficiency of Hydraulic Fracturing Operations

**Published:**12 November 2018

Figure 12 Data Frac stage #1 for case B –- Frac Initiation attempts with Abbrasive Jetting perforations. More

Images

**Published:**22 October 2013

Figure 6 Net pressure Matching of Data Frac for Well#1 frac conducted in 2006 More

Images

**Published:**26 October 2020

Figure 4 Interpretation of data frac, viscous pill and main frac of the 1 st stage) More

Proceedings Papers

#### Understanding Frac Fluid Distribution of an Individual Frac Stage from Chemical Tracer Flowback Data

Publisher: Society of Petroleum Engineers (SPE)

Paper presented at the SPE Hydraulic Fracturing Technology Conference and Exhibition, February 5–7, 2019

Paper Number: SPE-194362-MS

... back faster than the earlier segments. No obvious piston-like displacement of frac fluid was observed from the tracer data. hydraulic fracturing fracture complexity recovery chemical tracer concentration fracture network fluid segment Upstream Oil & Gas reservoir frac fluid...

Images

**Published:**27 October 2020

Figure 6 Data frac treatment plot using 25 ppt NDFF fluid More

Images

**Published:**09 June 2008

Fig. 14 W6 Data frac(W6 lower interval) More

Images

**Published:**09 October 2005

Fig. 17 The vertical profiles of the data frac and propped fracture treatments are shown at top, and the plan view of the data showing the azimuth angles for both jobs are shown at bottom. Fracture mapping summary statistics for Case #4 are also provided. More

Images

**Published:**25 May 2005

Figure 7 Instantanious pressure drop at shut-in after data frac at top perforations More

Images

**Published:**03 October 1999

Fig. 2 Pressure and Pump Rate curves for data-frac and pulse. More

Images

**Published:**03 October 1999

Fig. 9 Pressure and Pump Rate curves for data-frac and pulses. More

Images

**Published:**03 October 1999

Fig. 13 Pressure and Pump Rate curves for data-frac and pulses. More

Images

**Published:**19 June 2000

FIG. 11 Data frac bottomhole pressure and dP(t) /dG derivative for Case 2. More

Images

**Published:**19 June 2000

FIG. 12 Data frac bottomhole pressure and ISIP − GdP /dG derivative for Case 2. More

Images

**Published:**19 June 2000

FIG. 13 Data frac logarithmic plot of bottomhole pressure and log derivative for Case 2. More

Images

**Published:**19 June 2000

FIG. 14 Data frac dimensionless pressure ψ(α cp = 1) and derivative d ψ /dG for Case 2. More

Images

**Published:**19 June 2000

FIG. 15 Data frac dimensionless pressure ψ( α cp = 1) and derivative 1− Gd ψ/ dG for Case 2. More

Images

**Published:**19 June 2000

FIG. 16 Data Frac logarithmic plot of dim. pressure Δψ (α cp = 1) and derivative d (logΔψ) / d( log G ) for Case 2. More

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