course 7: utilities and integration. digitize log program

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Course 7: utilities and integration

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Page 1: Course 7: utilities and integration. Digitize log program

Course 7: utilities and integration

Page 2: Course 7: utilities and integration. Digitize log program
Page 3: Course 7: utilities and integration. Digitize log program

Digitize log program

Page 4: Course 7: utilities and integration. Digitize log program

Define curve type

Page 5: Course 7: utilities and integration. Digitize log program

Wavelet Editor amplitude freq and phase can be edited separately save reference points wihcu

Page 6: Course 7: utilities and integration. Digitize log program

Change spectrum to observe influence on wavelet

Page 7: Course 7: utilities and integration. Digitize log program

Selecting the required omponend icon allows you to do the editing

Page 8: Course 7: utilities and integration. Digitize log program

Batch Manager schedule and run processes later

Page 9: Course 7: utilities and integration. Digitize log program

Fill Patterns create your own patterns

Page 10: Course 7: utilities and integration. Digitize log program

Previous the pattern you develop

Page 11: Course 7: utilities and integration. Digitize log program

Rebuild work area list: creates a new work area .lst file usually created auto when well is imported

Page 12: Course 7: utilities and integration. Digitize log program

Project mode control: probably will not use since no standalone keys

Page 13: Course 7: utilities and integration. Digitize log program

Log M Integration

Page 14: Course 7: utilities and integration. Digitize log program

Switch to project mode: DC Utilities > Project Mode Control (from the drop down list) > Launch

Yes to switch

Page 15: Course 7: utilities and integration. Digitize log program

Wells transferred from discovery to logM

Page 16: Course 7: utilities and integration. Digitize log program

Click on the file menu in the logM well editor

Page 17: Course 7: utilities and integration. Digitize log program

Select buld transfer collowed by > from Discovery to logM workspace

Page 18: Course 7: utilities and integration. Digitize log program

Transfer from disc to logM

Page 19: Course 7: utilities and integration. Digitize log program

File > Bulk transfer > fr0m Log M Workspace

Trnasferred into discovery workspace and associated with UWI and API logs velocity etc can be transferred back to Discovery

Page 20: Course 7: utilities and integration. Digitize log program

You can send wells from logM well editor or model builder >

Page 21: Course 7: utilities and integration. Digitize log program

Click on well spots

Page 22: Course 7: utilities and integration. Digitize log program

On cross section window select well-to well

Click on wells then click in blan area to initiate the model builder

Page 23: Course 7: utilities and integration. Digitize log program

Change to projected mode

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Use to immediately generate 2d trace models in the model builder

Page 27: Course 7: utilities and integration. Digitize log program

Top of the madison group with many wells note producing wells in highs and lows

Need stratigraphic modeling

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Madison and Torquay horizons picked in seisvision are displayed in the logM Well editor

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Page 32: Course 7: utilities and integration. Digitize log program

Note the mismatch using logm time alignment, stretch squeeze we can do much better

Synthetic is giving a much stronger peak in the Bakken

Wavelet phase and freq must match that in the data. We will use the wavelet extraction shaping filter to obtain a much better match

Page 33: Course 7: utilities and integration. Digitize log program
Page 34: Course 7: utilities and integration. Digitize log program

Use fluid substitution model

Original synthetic

Page 35: Course 7: utilities and integration. Digitize log program

Note the presence of slight peak in the synthetic with oil as the pore fluid

Next we will examine the influence of water versions of the sonic and density with the extracted wavelet. Note that this peak disappears.

Page 36: Course 7: utilities and integration. Digitize log program

Now wel will attempt to quant results with 2D strat modeling

Page 37: Course 7: utilities and integration. Digitize log program

water oil water

Page 38: Course 7: utilities and integration. Digitize log program

We will thicken the oil sand. Launch the middle well in the logm well editor We will use the multicurve stretch squeeze function to thicken the Bakken sand by about 5 meters

Page 39: Course 7: utilities and integration. Digitize log program

We can now conclude that both oil (rather than water in the zone) and thickening of the oil zone produce increased amplitude

Page 40: Course 7: utilities and integration. Digitize log program

Save back to cross section > auto updated > now out of sync> RMB on traces > regenerate traces

Page 41: Course 7: utilities and integration. Digitize log program

Use view model in seisvision we can have the trace model show up in a second vertical trace window

Page 42: Course 7: utilities and integration. Digitize log program

We can use the create correlation polygon option from the pop-up menu to overlay the thickened Bakken sand on other various locations on our seismic to attempt to discover other prospective drilling locations

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Notice the southwest to northeast thickening of the Madison to Torquay interval > open arbitrary line

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Shows the peak of the Bakken sand over it’s extend across the field >2D models > high am best oil targets

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