IP Library Granted Patent US 8,380,436
Granted Patent B2
US 8,380,436 · App. 13/347,492 · Granted Feb 19, 2013

Blasting method

Inventor: Jay Howard Heck, Sr. (New Braunfels, TX)
Assignee: Live Oak Ministries
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Quick Facts
Patent No.
US 8,380,436
App. No.
13/347,492
Granted
Feb 19, 2013
Kind
B2
Abstract

Methods for evaluating drill pattern parameters such as burden, spacing, borehole diameter, etc., at a blast site are disclosed. One method involves accumulating the burden contributed by successive layers of rock and matching the accumulated rock burden to a target value for a borehole having a length related to the average height of the layers. Another method relates to varying drill pattern parameters and characteristics to match blast design constraints, including the substitution of one explosive material for another by the proper balance of materials and/or output energies to the associated rock burden. Analysis of deviations from target rock burdens and corrective measures are disclosed, as well as cost optimization methods. The various methods can be practiced using an appropriately programmed general purpose computer.

Claims (27)

1. A method for evaluating the suitability of a candidate explosive material of known specific energy for use in at least a segment of a borehole having a predetermined diameter and having a rock burden associated therewith, comprising:

identifying, by a processor, a reference Material Factor (MF R ) for the associated rock burden with reference to a reference explosive material of known specific energy;

calculating, by the processor, an adjusted Material Factor (MF A ) corresponding to the use of the candidate explosive material in the borehole for the associated rock burden; and

indicating, by the processor, whether the adjusted Material Factor (MF A ) compares favorably to the reference Material Factor (MF R ).

2. The method of claim 1 wherein calculating the adjusted Material Factor (MF A ) comprises multiplying, by the processor, the reference Material Factor (MF R ) by (M Ref )(E Ref )/(M EXP )(E EXP ); wherein M Ref =the mass of reference explosive in the section of the borehole; M EXP =the mass of candidate explosive in the section of the borehole; E Ref =the specific mass energy of the reference explosive; and E EXP =the specific mass energy of the candidate explosive, so that MF A =MF R ((M Ref )(E Ref )/(M EXP )(E EXP )).

3. A non-transitory computer-readable medium having computer-readable code therein for evaluating the suitability of a candidate explosive material of known specific energy for use in at least a segment of a borehole having a predetermined diameter and having a rock burden associated therewith, the code comprising:

code responsive to data indicating the specific energy of reference explosive material and a target rock burden to determine a reference Material Factor (MF R ) for the rock burden associated with the borehole;

code responsive to data for a candidate explosive material for calculating an adjusted Material Factor (MF A ) corresponding to the use of the candidate explosive material in the borehole; and

code for comparing the adjusted Material Factor (MF A ) to the reference Material Factor (MF R ) and for indicating the result.

4. The medium of claim 3 comprising code for calculating the adjusted Material Factor (MF A ) by multiplying the reference Material Factor (MF R ) by (M Ref )(E Ref )/(M EXP )(E EXP ); wherein M Ref =the mass of reference explosive in the section of the borehole; M EXP =the mass of candidate explosive in the section of the borehole; E Ref =the specific mass energy of the reference explosive; and E EXP =the specific mass energy of the candidate explosive material.

5. An apparatus for evaluating the suitability of a candidate explosive material of known specific energy for use in at least a segment of a borehole having a predetermined diameter and having a rock burden associated therewith, the apparatus comprising:

a computer processor;

at least one storage medium accessible to the processor, for storing data and executable code;

input means for delivering data to at least one storage medium; and

output means for conveying at least data indicating the result of the evaluation;

wherein the storage media storing instructions that, when executed by the computer processor, cause the processor to

identify a reference Material Factor (MF R ) for the associated rock burden with reference to a reference explosive material of known specific energy;

calculate an adjusted Material Factor (MF A ) corresponding to the use of the candidate explosive material in the borehole for the associated rock burden; and

indicate whether the adjusted Material Factor (MF A ) compares favorably to the reference Material Factor (MF R ).

6. The apparatus of claim 5 wherein the storage media further comprising instructions that cause the processor to calculate the adjusted Material Factor (MF A ) by multiplying the reference Material Factor (MF R ) by (M Ref )(E Ref )/(M EXP )(E EXP ); wherein M Ref =the mass of reference explosive in the section of the borehole; M EXP =the mass of candidate explosive in the section of the borehole; E Ref =the specific mass energy of the reference explosive; and E EXP =the specific mass energy of the candidate explosive material.

7. A non-transitory computer-readable medium storing instructions that, when executed by a processor, cause the processor to:

evaluate the suitability of a candidate explosive material of known specific energy for use in at least a segment of a borehole having a predetermined diameter and having a rock burden associated therewith;

when the processor evaluates, the code causes the processor to:

determine a reference Material Factor (MF R ) for the rock burden associated with the borehole, the determination responsive to data indicating the specific energy of reference explosive material and a target rock burden;

calculate an adjusted Material Factor (MF A ) corresponding to the use of a candidate explosive material in the borehole, the calculation responsive to data for the candidate explosive material; and

compare the adjusted Material Factor (MF A ) to the reference Material Factor (MF R ) and indicate a result.

8. The non-transitory computer-readable medium of claim 7 wherein when the instructions calculate the MF A , the instructions further cause the processor to calculate the adjusted Material Factor (MF A ) by multiplying the reference Material Factor (MF R ) by (M Ref )(E Ref )/(M EXP )(E EXP ); wherein M Ref =the mass of reference explosive in the section of the borehole; M EXP =the mass of candidate explosive in the section of the borehole; E Ref =the specific mass energy of the reference explosive; and E EXP =the specific mass energy of the candidate explosive material.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 2, 2015
From: HECK, JAY HOWARD, SR.
To: OPTIMUCK, LLC
Reel/Frame 034613/0771 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2014
From: LIVE OAK MINISTRIES
To: HECK, JAY HOWARD, SR.
Reel/Frame 034392/0951 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: HECK, JAY HOWARD
To: BLAST DESIGN INTERNATIONAL, INC.
Reel/Frame 027559/0247 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: BLAST DESIGN INTERNATIONAL, INC.
To: LIVE OAK MINISTRIES
Reel/Frame 027559/0323 →
Continuity (5)
Continuation 12890235 · Sep 24, 2010
Continuation 12180302 · Jul 25, 2008
Division 10911792 · Aug 3, 2004
Division 09391831 · Sep 8, 1999
Related Publication 20120109602A1 · May 3, 2012