REMOTE COMMAND AND CONTROL CENTER FOR LONGWALL MINING SYSTEM
20180171622 ยท 2018-06-21
Assignee
Inventors
Cpc classification
F24F13/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21F11/00
FIXED CONSTRUCTIONS
F24F7/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21C35/24
FIXED CONSTRUCTIONS
International classification
E04B1/343
FIXED CONSTRUCTIONS
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
F24F7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E04B1/348
FIXED CONSTRUCTIONS
F24F13/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21F11/00
FIXED CONSTRUCTIONS
E04B1/92
FIXED CONSTRUCTIONS
Abstract
A remote command and control center for a longwall mining system that can be located away from the longwall face and belt line components such as the cutter, conveyor and roof supports is provided. The command and control center is comprised of two nested halves which allow for the height of the command and control module to be quickly and easily adjusted to allow the remote command and control module to be introduced into areas where clearance is an issue. The command and control center can be pressurized to push coal dust and other contaminants out of the command and control center to protect the operators from inhaling hazardous coal dust. A rack system for mounting video monitors within the command and control module is also provided.
Claims
1. A remote command and control center for a longwall mining machine comprising: an enclosure having a floor connected to a ceiling by at least one sidewall; means for adjusting the height of the enclosure by varying the distance between the floor and the ceiling of the enclosure; means for creating positive air pressure within said enclosure; visual display means located within said enclosure for displaying data and/or images from a remotely located longwall mining machine; control means located within said enclosure for controlling the operation of the remotely located long wall mining machine.
2. The remote command and control center according to claim 1 wherein the enclosure comprises: a first shell housing member having an end wall and at least one side wall extending therefrom to form an opening at a free end of the at least one sidewall; a second shell housing member having an end wall and at least one side wall extending therefrom to form an opening at a free end of the at least one sidewall, said second shell housing member configured to nest within said first shell housing member such that the end wall of the first shell housing member, the end wall of said second shell housing member and side walls of said first and second shell housing members form an enclosed space
3. The remote command and control center according to claim 2 wherein the height adjusting means comprises a jack lift system affixed to said first shell housing member and affixed to said second shell housing member for affecting relative movement therebetween.
4. The remote command and control center according to claim 3 wherein the jack lift system comprises a motor driving a primary gear box, said primary gear box connected to a plurality of worm gear screw jacks.
5. The remote command and control center according to claim 1 wherein said means for creating positive air pressure comprises an air handling unit affixed to the enclosure for transferring air from the outside to the interior of the enclosure.
6. The remote command and control center according to claim 5 wherein the air handling unit further comprising a filter for filtering the air as it is transferred from the outside to the inside.
7. The remote command and control center according to claim 1 wherein said visual display means comprises one or more video monitors removably attached to a rail system, affixed to the ceiling of the enclosure.
8. The remote command and control center according to claim 7 wherein the rail system comprises a plurality of vertical rail members extending downwardly from the ceiling and one or more horizontal rail members moveably affixed to said plurality of vertical rail members, said one or more video monitors being removably attached to said one or more horizontal rail members.
9. The remote command and control center according to claim 8 wherein the one or more horizontal rail members are adjustable relative to the plurality of vertical rail members.
10. The remote command and control center according to claim 7 further comprising a movable desktop positioned within the enclosure.
11. The remote command and control center according to claim 10 wherein said movable desktop is slidably affixed at a first end and at a second end to said at least one sidewall.
12. The remote command and control center according to claim 1 wherein the enclosure is positioned on a lowboy trailer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention can best be understood in connection with the accompanying drawings. It is noted that the invention is not limited to the precise embodiments shown in the drawings, in which:
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[0023]
DETAILED DESCRIPTION OF THE INVENTION
[0024] For purposes of promoting and understanding of the principles of the invention, reference will now be made to the embodiments illustrated in the drawings and specific language will be used to describe the same. It will nevertheless be understood that no limitation of the scope of the invention is thereby intended. The invention includes any alterations and further modifications in the illustrated devices and described methods and further applications of the principles of the invention that would normally occur to one skilled in the art to which the invention relates.
[0025] As best shown in
[0026] The lift system shown in
[0027] As shown in
[0028] Exposure to coal dust in an underground longwall mine presents both a hazard to workers and to sensitive electronics. Accordingly the remote command and control center 10 is provided with seals at joints thereof to prevent dirty air from entering inside. Specifically, a seal extends around the periphery of the command and control center where the upper half 14 and lower half 12 meet. The space between the door members 16a, 16b and the door jambs are also provided with seals to prevent the incursion of dirty air to the interior of the command and control center 10. An air handler unit 40 is preferably mounted on the upper half 14 of the command and control center 10. The air handler unit 40 includes a blower and filters 42. The air handler unit, through blower and filters 42 provides filtered air to the interior of the command and control center 10. The air handler unit 40 in conjunction with the aforementioned seals creates a pressurized chamber within the lower shell 12 and upper shell 14 thereby pushing any dust that gets inside the command and control center out. Thus, the command and control center 10 is fully enclosed and pressurized thereby providing a clean, safe environment for both the operators and the equipment located therein. A main electrical box 44 is also provided to connect the command and control center 10 to an external power source.
[0029] The interior features of the remote command and control center 10 according to a preferred embodiment of the invention are shown in
[0030] The monitors 60 are secured in place by a rail systems 70, which includes vertical rails 72a, 72b, 72c, 72d which have an upper end that is preferably mounted to the ceiling of the upper shell 14. Horizontal rail members 74a, 74b are movably secured to the vertical rails 72a, 72b, 72c, 72d by pinch bolts or other suitable fasteners on the rear surface thereof. The use of pinch bolts allow the positions of the horizontal rail members 74a, 74b to be adjusted along the longitudinal axes of the vertical rail members 72a, 72b, 72c, 72d, thus permitting different configurations of monitors as shown in
[0031] When in use, the remote command and control center 10 is preferably set up in the fully extended position as shown in
[0032] In operation, cameras can be strategically positioned on the longwall mining machine (shear or plow) at the face of the coal to be mined. The video from the cameras can then be transmitted to the monitors 60 in the remote command and control center 10, thereby removing the controllers from the mine face. The present invention removes the operators from the face of the mine near the plow or shear and relocates them to the secure environment of the command and control center. By removing the operators from the face, they are not exposed to the dust and dangerous moving parts of the longwall mining machine.
[0033] The detailed description, and particularly the specific details of the exemplary embodiment disclosed, is given primarily for clearness of understanding and no unnecessary limitations are to be understood therefrom, for modifications will become evident to those skilled in the art upon reading this disclosure and may be made without departing from the spirit or scope of the claimed invention.