Claims
- 1. A method for recovering liquid and gaseous products from an in situ oil shale retort formed in a retort site within a substerranean formation containing oil shale, such as in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming an upper void extending horizontally across the retort site, leaving an upper zone of unfragmented formation above the upper void, and leaving at least a first pillar of unfragmented formation within the upper void for providing temporary support for the upper zone of unfragmented formation;
- excavating formation from within the retort site for forming a lower void extending horizontally across the retort site, the lower void being spaced immediately below the upper void, leaving an intermediate zone of unfragmented formation extending horizontally across the retort site between the upper and lower voids, leaving a lower zone of unfragmented formation below the lower void, and leaving at least a second pillar of unfragmented formation within the lower void for providing temporary support for the intermediate zone of unfragmented formation, the second pillar being offset horizontally from the first pillar so that at least a portion of a floor of the upper void lies vertically above at least a portion of the second pillar;
- placing explosive in the lower zone of unfragmented formation, at least a portion of such explosive being placed in at least one vertical blast hole extending from said portion of the floor of the upper void through the second pillar and into the lower zone of unfragmented formation below the second pillar;
- placing explosive in the upper and intermediate zones of unfragmented formation;
- detonating such explosive in the upper, intermediate and lower zones of unfragmented formation for explosively expanding formation within such zones toward the upper and lower voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort;
- establishing a retorting zone in an upper portion of the fragmented mass;
- introducing a retorting gas into the fragmented mass for sustaining the retorting zone and for advancing the retorting zone through the fragmented mass; and
- withdrawing liquid and gaseous products of retorting from a lower portion of the fragmented mass on the advancing side of the retorting zone.
- 2. The method according to claim 1 including placing explosive in the first and second pillars, and detonating the explosive in the pillars for explosively expanding the pillars before explosively expanding the zones of unfragmented formation.
- 3. The method according to claim 1 including:
- drilling an array of vertical blast holes down from the floor of the upper void into the intermediate zone of unfragmented formation, a first group of the blast holes extending into the intermediate zone of unfragmented formation, a second group of the blast holes extending through the intermediate zone of unfragmented formation, through at least one second pillar in the intermediate void, and into the lower zone of unfragmented formation below such second pillar; and
- placing explosive in the first group of the blast holes for explosively expanding at least a portion of the intermediate zone, and placing explosive in the second group of the blast holes for explosively expanding at least a portion of the intermediate zone and at least a portion of the lower zone.
- 4. The method according to claim 3 including placing separate first columns of explosive in the first group of the blast holes; placing separate second columns of explosive in the second group of the blast holes, the second columns of explosive being placed in the lower zone of unfragmented formation below such a second pillar; and placing separate third columns of explosive in the second group of the blast holes, said third columns extending between substantially the same elevations in the intermediate zone as the first columns of explosive in the first group of the blast holes.
- 5. The method according to claim 3 wherein the vertical blast holes drilled down from the floor of the upper void have substantially uniform horizontal spacing; and wherein any portion of the second pillar extending below such a first pillar in the upper void has a horizontal extent less than the spacing between the blast holes.
- 6. The method according to claim 1 including drilling an array of vertical blast holes down from the floor of the upper void into the intermediate zone of unfragmented formation, the blast holes being substantially equidistantly spaced apart; and wherein any portion of the second pillar extending below such a first pillar in the upper void has a horizontal extent less than the spacing between the blast holes.
- 7. A method for forming an in situ oil shale retort in a retort site within a subterranean formation containing oil shale, such an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming an upper void extending horizontally across the retort site, leaving at least a first pillar of unfragmented formation within the upper void for providing temporary support for an upper zone of unfragmented formation above the upper void;
- excavating formation from within the retort site for forming a lower void extending horizontally across the retort site and spaced directly below the upper void, leaving a first zone of unfragmented formation extending horizontally across the retort site between the upper and lower voids, leaving a second zone of unfragmented formation below the lower void, and leaving at least a second pillar of unfragmented formation within the lower void for providing temporary support for the first zone of unfragmented formation, at least a portion of the second pillar being spaced vertically below at least an access portion of a floor of the upper void;
- drilling a plurality of horizontally spaced apart vertical blast holes in the first and second zones of unfragmented formation, the first pillar being offset horizontally relative to the second pillar such that any portion of the first pillar extending over the second pillar has a width not greater than the average spacing between the blast holes;
- drilling at least one vertical blast hole from said access portion of the floor of the upper void, through the first zone of unfragmented formation, through the second pillar, and into the second zone of unfragmented formation below the second pillar; and
- placing explosive in the blast holes and detonating such explosive for explosively expanding unfragmented formation within the retort site toward the upper and lower voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 8. The method according to claim 7 including placing explosive in the blast holes in the first and second zones of unfragmented formation, and detonating such explosive for explosively expanding formation from the first zone upwardly and downwardly toward the upper and lower voids, respectively, and for explosively expanding formation within the second zone upwardly toward the lower void.
- 9. The method according to claim 7 wherein each vertical blast hole drilled from said access portion in the upper void through the first zone, through the second pillar, and into the second zone below the second pillar contains a first explosive charge in the first zone of unfragmented formation and contains a second explosive charge spaced below the first explosive charge and located within the second zone below the second pillar.
- 10. The method according to claim 9 wherein a remaining portion of the vertical blast holes are drilled from the floor of the upper void and extend through a portion of the first zone and such vertical blast holes contain separate explosive charges each extending between elevations in the first zone corresponding to said first explosive charges.
- 11. The method according to claim 10 wherein a remaining portion of the vertical blast holes are drilled from the floor of the lower void and extend through a portion of the second zone and such vertical blast holes contain separate explosive charges each extending between elevations in the second zone corresponding to said second explosive charges.
- 12. A system of underground workings for forming an in situ oil shale retort in a retort site in a subterranean formation containing oil shale, wherein a portion of unfragmented formation within the retort site is excavated for forming at least a pair of voids within the tort site and a remaining portion of unfragmented formation within the retort site is explosively expanded toward the voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort, comprising:
- a plurality of vertically spaced apart voids formed within the retort site, each void extending horizontally across the retort site;
- a zone of unfragmented formation extending horizontally across the retort site below each void; and
- at least one pillar of unfragmented formation remaining within each void for providing temporary support for a zone of unfragmented formation above each void, at least a portion of such pillars being positioned horizontally within their corresponding voids such that at least a portion of the zone of unfragmented formation below such a pillar is accessible vertically from an open floor space in the void immediately above the void in which such a pillar is located for allowing a blast hole to be drilled downwardly from such an open floor space, through such a pillar, and into the zone of unfragmented formation below such a pillar.
- 13. A system of underground workings for forming an in situ oil shale retort in a retort site in a subterranean formation containing oil shale, comprising:
- an upper void extending horizontally across the retort site at an upper level;
- a lower void extending horizontally across the retort site at a lower level, the lower void being directly below the upper void;
- an intermediate zone of unfragmented formation between the upper and lower voids;
- a lower zone of unfragmented formation below the lower void;
- an upper pillar of unfragmented formation in the upper void for providing temporary roof support for unfragmented formation above the upper void;
- a lower pillar in the lower void for providing temporary roof support for the intermediate zone of unfragmented formation above the lower void, at least a portion of the upper pillar being offset horizontally from the lower pillar for providing an open floor space in the upper void above at least a portion of the lower pillar;
- a plurality of lower blast holes extending from the lower void into the lower zone of unfragmented formation;
- a plurality of first upper blast holes extending from the upper void into the intermediate zone of unfragmented formation;
- a plurality of second upper blast holes extending from the open floor space of the upper void through the intermediate zone of unfragmented formation, through the lower pillar, and into the lower zone of unfragmented formation; and
- explosive charges in the lower blast holes and in the first and second upper blast holes for use in explosively expanding formation from the intermediate and lower zones toward the upper and lower voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 14. A system of underground workings for forming a retort according to claim 13 wherein the blast holes are substantially equidistantly spaced apart and wherein any portion of such a lower pillar extending below such an upper pillar has a horizontal extent less than the spacing between the blast holes.
- 15. A system of underground workings for forming a retort according to claim 13 including:
- an air level void spaced directly above the upper void;
- an upper zone of unfragmented formation between the air level void and the upper void;
- an air level pillar in the air level void providing roof support for unfragmented formation above the air level void, the air level pillar being offset horizontally from at least a portion of the upper pillar for providing an open floor space in the air level void above the upper pillar;
- a plurality of first air level blast holes extending from the air level void into the upper zone of unfragmented formation;
- a plurality of second air level blast holes extending from said open floor space in the air level void through the upper zone of unfragmented formation, through the upper pillar, and into the intermediate zone of unfragmented formation below the upper pillar; and
- explosive charges in the first and second air level blast holes.
- 16. A system of underground workings for forming a retort according to claim 15 wherein the explosive charges in the first air level blast holes are in the upper zone of unfragmented formation, and a portion of the explosive charges in the second air level blast holes are in the upper zone of unfragmented formation and another portion of the explosive charges in the second air level blast holes are in the intermediate zone of unfragmented formation below the upper pillar; wherein the explosive charges in the first upper blast holes are in the intermediate zone of unfragmented formation, and a portion of the explosive charges in the second upper blast holes are in the intermediate zone of unfragmented formation and another portion of the explosive charges in the second upper blast holes are in the lower zone of unfragmented formation below the lower pillar; and wherein the explosive charges in the lower blast holes are in the lower zone of unfragmented formation.
- 17. A system of underground workings according to claim 13 wherein the explosive charges in the first upper blast holes are in the intermediate zone of unfragmented formation; wherein a portion of the explosive charges in the second upper blast holes are in the intermediate zone of unfragmented formation and another portion of the explosive charges in the second upper blast holes are in the lower zone of unfragmented formation below the lower pillar; and wherein the explosive charges in the lower blast holes are in the lower zone of unfragmented formation.
- 18. A system of underground working according to claim 17 including an explosive charge in the portion of such a second upper blast hole located in the lower pillar.
- 19. A method for forming an in situ oil shale retort in a subterranean formation containing oil shale, such an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming a first void extending horizontally across the retort site, leaving at least a first pillar of unfragmented formation within the first void for providing temporary roof support for a zone of unfragmented formation above the first void;
- excavating formation from within the retort site for forming a second void extending horizontally across the retort site and spaced directly below the first void, leaving a first zone of unfragmented formation extending horizontally across the retort site between the first and second voids, leaving a second zone of unfragmented formation below the second void, and leaving at least a second pillar of unfragmented formation within the second void for providing temporary roof support for the first zone of unfragmented formation, at least a portion of such a second pillar being spaced vertically below an access portion of the first void;
- placing explosive in the first and second zones of unfragmented formation, at least a portion of such explosive being placed in at least one vertical blast hole extending from said access portion of the first void through the first zone of unfragmented formation, through such a second pillar, and into the second zone of unfragmented formation below such a second pillar; and
- detonating explosive in the first and second zones for explosively expanding formation within such zones toward horizontal free faces provided by the first and second voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 20. The method according to claim 19 including explosively expanding the first and second pillars before explosively expanding formation within the first and second zones.
- 21. The method according to claim 19 including explosively expanding formation within the first zone upwardly toward the first void and downwardly toward the second void, and explosively expanding formation within the second zone upwardly toward the second void.
- 22. The method according to claim 19 including drilling an array of horizontally spaced apart vertical blast holes downwardly in the first zone of unfragmented formation from the access portion of the first void, a portion of such blast holes extending through such a second pillar and into the second zone of unfragmented formation, the first pillar being offset horizontally relative to the second pillar such that any portion of the first pillar extending over the second pillar has a width not greater than the average spacing between the blast holes.
- 23. The method according to claim 22 wherein the horizontal spacing between such blast holes is substantially uniform.
- 24. In a method for forming an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, wherein a plurality of vertically spaced apart voids are excavated from within a retort site, leaving a zone of unfragmented formation below each void, and leaving at least one pillar within each void for providing temporary support for unfragmented formation above such a void, the improvement comprising leaving a pillar in a first void offset horizontally from a pillar in a second void directly below the first void so that at least a portion of the zone of unfragmented formation below the second void that is occluded by the pillar in the second void is accessible from an open floor space in the first void.
- 25. The improvement according to claim 24 including drilling a plurality of short blast holes from the first void into the zone of unfragmented formation between the second void and the first void, and drilling a plurality of long blast holes from the open floor space in the first void through the zone of unfragmented formation between the second and first voids, through the pillar in the second void, and into the zone of unfragmented formation below the second void.
- 26. The improvement according to claim 25 wherein the long blast holes and the short blast holes are mutually spaced apart horizontally across the retort site; and wherein the horizontal spacing between such blast holes is greater than the horizontal extent of any overlap of the pillar in the first void above the pillar in the second void.
- 27. The improvement according to claim 25 wherein the long blast holes contain explosive placed in the zone of unfragmented formation between the first and second voids and in the zone of unfragmented formation below the second void.
- 28. The improvement according to claim 25 including drilling a plurality of second short blast holes from the second void into the zone of unfragmented formation below the second void; and wherein none of the blast holes drilled from within the first void or the second void extend through more than one pillar.
- 29. A method for forming an in situ oil shale retort in a retort site in a subterranean formation containing oil shale, such as in situ shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating first and second voids within the retort site, the first void being spaced vertically above the second void, each void extending horizontally across the retort site, leaving first and second zones of unfragmented formation extending across the retort site below the first and second voids, respectively, and leaving a first pillar within the first void and a second pillar within the second void for temporarily supporting unfragmented formation above the first and second voids, respectively;
- drilling a plurality of mutually spaced apart vertical blast holes in the first and second zones of unfragmented formation, the blast holes being substantially equidistantly spaced apart horizontally across their corresponding zones of unfragmented formation, a portion of the blast holes in the second zone of unfragmented formation being located in a portion of the second zone of unfragmented formation below the second pillar, the first pillar being offset horizontally relative to the second pillar for providing an open floor space in the first void spaced vertically above the second pillar for providing access for drilling said portion of blast holes located below the second pillar, at least a portion of such blast holes being drilled from the first void through the second pillar, the first pillar being positioned in the first void such that the horizontal extent of any portion of the first pillar located above the second pillar is not greater than the horizontal spacing between adjacent blast holes;
- loading explosive into such blast holes; and
- detonating such explosive for explosively expanding unfragmented formation within the retort site toward the voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 30. The method according to claim 29 wherein none of the blast holes which are drilled in the first and second zones and loaded with explosive extend through more than one pillar.
- 31. A system of underground workings for forming an in situ oil shale retort in a retort site in a subterranean formation containing oil shale, comprising:
- an upper void extending horizontally across the retort site at an upper level;
- an intermediate void extending horizontally across the retort site directly below the upper void;
- a lower void extending horizontally across the retort site directly below the intermediate void;
- an upper zone of unfragmented formation above the upper void;
- an upper intermediate zone of unfragmented formation between the upper void and the intermediate void;
- a lower intermediate zone of unfragmented formation between the intermediate void and the lower void;
- a lower zone of unfragmented formation below the lower void;
- at least one upper pillar in the upper void for providing temporary roof support for unfragmented formation above the upper void;
- at least one intermediate pillar in the intermediate void for providing temporary roof support for unfragmented formation above the intermediate void, at least a portion of such an upper pillar being offset horizontally from such an intermediate pillar for providing an open floor space in the upper void above at least a portion of the intermediate pillar;
- at least one lower pillar in the lower void for providing temporary roof support for unfragmented formation above the lower void, at least a portion of such an intermediate pillar being offset horizontally from such a lower pillar for providing an open floor space in the intermediate void above at least a portion of the lower pillar;
- a plurality of first upper blast holes extending from the upper void into the upper intermediate zone of unfragmented formation;
- a plurality of second upper blast holes extending from the open floor space of the upper void through the upper intermediate zone, through such an intermediate pillar, and into the lower intermediate zone of unfragmented formation;
- a plurality of first intermediate blast holes extending from the intermediate void into the lower intermediate zone of unfragmented formation;
- a plurality of second intermediate blast holes extending from the open floor space in the intermediate void through the lower intermediate zone, through such a lower pillar and into the lower zone of unfragmented formation;
- a plurality of lower blast holes extending from the lower void into the lower zone of unfragmented formation; and
- explosive charges in the first and second upper blast holes, in the first and second intermediate blast holes, and in the lower blast holes for use in explosively expanding formation from the zones of unfragmented formation within the retort site toward horizontal free faces provided by the upper, intermediate and lower voids, for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 32. A system of underground workings according to claim 31 wherein the horizontal spacing between the first and second upper blast holes is greater than the horizontal extent of the open floor space in the upper void directly above such an intermediate pillar; and wherein the horizontal spacing between the first and second intermediate blast holes is greater than the horizontal extent of the floor space in the intermediate void directly above such a lower pillar.
- 33. A system of underground workings for forming a retort according to claim 32 including:
- an air level void spaced directly above the upper void;
- the upper zone of unfragmented formation being between the air level void and the upper void;
- at least one air level pillar in the air level void providing roof support for unfragmented formation above the air level void, such an air level pillar being offset horizontally from at least a portion of such an upper pillar for providing an open floor space in the air level void above such an upper pillar;
- a plurality of first air level blast holes extending from the air level void into the upper zone of unfragmented formation;
- a plurality of second air level blast holes extending from said open floor space in the air level void through the upper zone of unfragmented formation, through such an upper pillar, and into the upper intermediate zone of unfragmented formation; and
- explosive charges in the first and second air level blast holes.
- 34. A system of underground workings according to claim 33 including an explosive charge in each first air level blast hole within the upper zone; an upper explosive charge in a portion of each second air level blast hole within the upper zone and a lower explosive charge in a portion of each second air level blast hole within the upper intermediate zone; an explosive charge in each first upper blast hole within the upper intermediate zone; an upper explosive charge in a portion of each second upper blast hole within the upper intermediate zone and a lower explosive charge in a portion of each second upper blast hole within the lower intermediate zone; an explosive charge in a portion of each first intermediate blast hole within the lower intermediate zone; an upper explosive charge in each second intermediate blast hole within the lower intermediate zone and a lower explosive charge in a portion of each second intermediate blast hole within the lower zone; and an explosive charge in each lower blast hole within the lower zone.
- 35. A system of underground workings according to claim 33 including an explosive charge in each first upper blast hole within the upper intermediate zone; an upper explosive charge in a portion of each second upper blast hole within the upper intermediate zone and a lower explosive charge in a portion of each second upper blast hole within the lower intermediate zone; an explosive charge in a portion of each first intermediate blast hole within the lower intermediate zone; an upper explosive charge in a portion of each second intermediate blast hole within the lower intermediate zone and a lower explosive charge in a portion of each second intermediate blast hole within the lower zone; and an explosive charge in each lower blast hole within the lower zone.
- 36. A system of underground workings according to claim 35 including an explosive charge in at least one second air level blast hole within such an upper pillar; an explosive charge in at least one second upper blast hole within such an intermediate pillar; and an explosive charge in at least one second intermediate blast hole within such a lower pillar.
- 37. A method for recovering liquid and gaseous products from an in situ oil shale retort formed in a retort site within a subterranean formation containing oil shale, such an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming an upper void extending horizontally across the retort site, leaving an upper zone of unfragmented formation above the upper void, and leaving at least a first pillar of unfragmented formation within the upper void for providing temporary support for the upper zone of unfragmented formation;
- excavating formation from within the retort site for forming a lower void extending horizontally across the retort site, the lower void being spaced immediately below the upper void, leaving an intermediate zone of unfragmented formation extending horizontally across the retort site between the upper and lower voids, and leaving at least a second pillar of unfragmented formation within the lower void for providing temporary support for the intermediate zone of unfragmented formation, the second pillar being offset horizontally from the first pillar so that at least a portion of the floor of the upper void lies vertically above at least a portion of the second pillar, and at least a portion of the roof of the lower void lies vertically below at least a portion of the first pillar;
- drilling a plurality of vertical blast holes downwardly from the floor of the upper void including at least one blast hole vertically above the second pillar;
- drilling at least one vertical blast hole upwardly from the roof of the lower void vertically below the first pillar;
- placing explosive in such blast holes;
- detonating such explosive in the intermediate zone of unfragmented formation for explosively expanding formation within such zone toward the upper and lower voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort;
- establishing a retorting zone in an upper portion of the fragmented mass;
- introducing a retorting gas into the fragmented mass for sustaining the retorting zone and for advancing the retorting zone through the fragmented mass; and
- withdrawing liquid and gaseous products of retorting from a lower portion of the fragmented mass on the advancing side of the retorting zone.
- 38. The method according to claim 37 including placing explosive in the first and second pillars, and detonating the explosive in the pillars for explosively expanding the pillars before explosively expanding the zone of unfragmented formation.
- 39. The method according to claim 37 wherein the vertical blast holes drilled down from the floor of the upper void have substantially uniform horizontal spacing; and wherein any portion of the second pillar extending below such a pillar in the upper void has a horizontal extent less than the spacing between the blast holes.
- 40. A method for forming an in situ oil shale retort in a subterranean formation containing oil shale, such an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming an upper void extending horizontally across the retort site, leaving at least a first pillar of unfragmented formation within the upper void for providing temporary support for an upper zone of unfragmented formation above the upper void;
- excavating formation from within the retort site for forming a lower void extending horizontally across the retort site and spaced directly below the upper void, leaving an intermediate zone of unfragmented formation extending horizontally across the retort site between the upper and lower voids, and leaving at least a second pillar of unfragmented formation within the lower void for providing temporary support for the intermediate zone of unfragmented formation;
- drilling a plurality of horizontally spaced apart vertical blast holes in the intermediate zone of unfragmented formation, the first pillar being offset horizontally relative to the second pillar such that any portion of the first pillar extending over the second pillar has a width not greater than the average spacing between the blast holes, at least a portion of the blast holes below the first pillar being drilled upwardly from the lower void and at least a portion of the blast holes above the second pillar being drilled downwardly from the upper void; and
- placing explosive in the blast holes and detonating such explosive for explosively expanding unfragmented formation within the retort site toward the upper and lower voids for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 41. A system of underground workings for forming an in situ oil shale retort in a retort site in a subterranean formation containing oil shale, comprising:
- an upper void extending horizontally across the retort site at an upper level;
- a lower void extending horizontally across the retort site at a lower level, the lower void being directly below the upper void;
- an intermediate zone of unfragmented formation between the upper and lower voids;
- an upper pillar of unfragmented formation in the upper void for providing temporary roof support for unfragmented formation above the upper void;
- a lower pillar in the lower void for providing temporary roof support for the intermediate zone of unfragmented formation above the lower void, at least a portion of the upper pillar being offset horizontally from the lower pillar for providing an open floor space in the upper void above at least a portion of the lower pillar, and an open roof space in the lower void below at least a portion of the upper pillar; and
- a plurality of blast holes extending upwardly from the open roof space in the lower void into the intermediate zone of unfragmented formation below the upper pillar;
- a plurality of blast holes extending downwardly from the open floor space upper void into the intermediate zone of unfragmented formation above at least a portion of the lower pillar.
- 42. A system of underground workings for forming a retort according to claim 41 wherein the horizontal spacing between the blast holes is less than the horizontal extent of the open floor space in the upper void above the lower pillar and less than the horizontal extent of the open roof space in the lower void below the upper pillar.
- 43. A system of underground workings for forming a retort according to claim 41 including:
- an air level void spaced directly above the upper void;
- an upper zone of unfragmented formation between the air level void and the upper void;
- an air level pillar in the air level void providing roof support for unfragmented formation above the air level void, the air level pillar being offset horizontally from at least a portion of the upper pillar
- a plurality of air level blast holes extending vertically downwardly from the air level void into the upper zone of unfragmented formation above the upper level pillar; and
- a plurality of upper blast holes extending vertically upwardly from the upper level void into the upper zone of unfragmented formation below the air level pillar.
- 44. In a method for forming an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, wherein a plurality of vertically spaced apart voids are excavated from within a retort site, leaving a zone of unfragmented formation between a pair of such voids, and leaving at least one pillar within each such void for providing temporary support for unfragmented formation above such void, the improvement comprising leaving a pillar in a first void offset horizontally from a pillar in a second void directly below the first void so that at least a portion of said zone of unfragmented formation that is occluded by the pillar in the second void is accessible from an open floor space in the first void and at least a portion of said zone of unfragmented formation that is occluded by the pillar in the first void is accessible from an open roof space in the second void.
- 45. The improvement according to claim 44 including drilling a plurality of vertical blast holes upwardly from the open roof space of the second void into the zone of unfragmented formation between the second void and the first void, and drilling a plurality of vertical blast holes downwardly from the open floor space in the first void into the zone of unfragmented formation between the second and first voids.
- 46. The improvement according to claim 44 wherein said blast holes are mutually spaced apart horizontally in a square array across the retort site; and wherein the average horizontal spacing between such blast holes is greater than the horizontal extent of any portion of the pillar in the first void above the pillar in the second void.
- 47. A method for forming an in situ oil shale retort in a retort site within a subterranean formation containing oil shale, such an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming at least one void extending horizontally across the retort site, leaving a zone of unfragmented formation above such a void and a zone of unfragmented formation below such a void, and leaving at least one pillar of unfragmented formation within the void for providing temporary support for the zone of unfragmented formation above the void;
- drilling a plurality of horizontally spaced apart vertical blastholes through at least one of the zones of unfragmented formation and into such a pillar;
- placing explosive into the blastholes; and
- detonating the explosive for explosively expanding the pillar toward the void and for explosively expanding such a zone of unfragmented formation toward the void for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 48. The method according to claim 47 comprising detonating the explosive in a single round to first explosively expand the pillar toward the void and thereafter to explosively expand such a zone of unfragmented formation toward the void.
- 49. The method according to claim 47 comprising drilling the horizontally spaced apart vertical blastholes downwardly through the zone of unfragmented formation above the void and into the pillar.
- 50. The method according to claim 47 comprising drilling the horizontally spaced apart vertical blastholes downwardly through the zone of unfragmented formation above the void, through the pillar, and into the zone of unfragmented formation below the pillar.
- 51. The method according to claim 47 or 50 comprising detonating the explosive for explosively expanding the pillar toward the void and for explosively expanding the zone of unfragmented formation above the void toward the void and the zone of unfragmented formation below the void toward the void to form a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 52. A system of underground workings for forming an in situ oil shale retort in a retort site within a subterranean formation containing oil shale, comprising:
- at least one void extending horizontally across the retort site;
- a zone of unfragmented formation above such a void and a zone of unfragmented formation below such a void;
- at least one pillar of unfragmented formation within such a void;
- at least one substantially vertical blasthole extending through at least one of the zones of unfragmented formation and into such a pillar;
- an explosive charge in such a substantially vertical blasthole within the pillar; and
- an explosive charge within such a zone of unfragmented formation.
- 53. A system of underground workings for forming an in situ oil shale retort according to claim 52 wherein such a substantially vertical blasthole extends through the zone of unfragmented formation above the void and into the pillar.
- 54. A system of underground workings for forming an in situ oil shale retort according to claim 52 wherein such a substantially vertical blasthole extends through the zone of unfragmented formation above the void, through the pillar, and into the zone of unfragmented formation below the void.
- 55. A system of underground workings for forming an in situ oil shale retort according to claim 52 comprising explosive charges in such a blasthole within the zone of unfragmented formation above the void, within the pillar, and within the zone of unfragmented formation below the void.
- 56. A method for forming an in situ oil shale retort in a retort site within a subterranean formation containing oil shale, such an in situ oil shale retort containing a fragmented permeable mass of formation particles containing oil shale, comprising the steps of:
- excavating formation from within the retort site for forming an upper void extending horizontally across the retort site, leaving an upper zone of unfragmented formation above the upper void;
- excavating formation from within the retort site for forming a lower void extending horizontally across the retort site, the lower void being spaced immediately below the upper void, leaving an intermediate zone of unfragmented formation extending horizontally across the retort site between the upper void and the lower void, leaving a lower zone of unfragmented formation below the lower void, and leaving at least one pillar of unfragmented formation within the lower void for providing temporary support for the intermediate zone of unfragmented formation;
- drilling a plurality of horizontally spaced apart vertical blastholes from the upper void through the intermediate zone of unfragmented formation and into such a pillar;
- placing explosive into the blastholes; and
- detonating the explosive for explosively expanding the pillar toward the lower void and for explosively expanding the intermediate zone of unfragmented formation toward at least the lower void for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
- 57. The method according to claim 56 comprising drilling the plurality of horizontally spaced apart vertical blastholes from the upper void through the intermediate zone of unfragmented formation, through the pillar, and into the lower zone of unfragmented formation.
- 58. The method according to claim 57 comprising detonating the explosive for explosively expanding the pillar toward the lower void and for explosively expanding the intermediate zone of unfragmented formation toward the lower void and the lower zone of unfragmented formation toward the lower void for forming a fragmented permeable mass of formation particles containing oil shale in an in situ oil shale retort.
Parent Case Info
This is a continuation of application Ser. No. 951,527, filed Oct. 16, 1978.
US Referenced Citations (3)
Foreign Referenced Citations (1)
Number |
Date |
Country |
535418 |
Nov 1976 |
SUX |
Continuations (1)
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Number |
Date |
Country |
Parent |
951527 |
Oct 1978 |
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