CN208653999U - A kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform - Google Patents

A kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform Download PDF

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Publication number
CN208653999U
CN208653999U CN201821268922.0U CN201821268922U CN208653999U CN 208653999 U CN208653999 U CN 208653999U CN 201821268922 U CN201821268922 U CN 201821268922U CN 208653999 U CN208653999 U CN 208653999U
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support bar
mine
porphyry
inversion
aqueduct
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CN201821268922.0U
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Chinese (zh)
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刘小胡
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Lv Guohai
Xiao E
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Lv Guohai
Xiao E
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Abstract

The utility model discloses a kind of Porphyry-type Deposit geology into mine 3-d inversion Visualization Platform, including pedestal, sliding seat and second support bar, the pedestal is fixedly arranged above connecting column, and connection deck is connected with above connecting column, and connect the lower section that deck is fixed on stage body, the stage body is internally provided with ground end soil horizon, and water tank is installed in the first support bar, aqueduct is connected on the left of the water pump, the second support bar is fixed on the surface of sliding seat, and blower is installed in second support bar, and one end of blower is connected with guide duct, and air-exhausting duct is connected with above guide duct.The Porphyry-type Deposit geology is provided with fountain head at mine 3-d inversion Visualization Platform, the water in water tank can be imported into aqueduct by water pump, facilitate aqueduct that water is discharged in fountain head, facilitate the water spray natural imitation rainfall of the device, easy to operate, high degree of automation.

Description

A kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform
Technical field
The utility model relates to porphyry mine technical field, specially a kind of Porphyry-type Deposit geology is visual at mine 3-d inversion Change platform.
Background technique
Porphyry mine thready pulse dissemination type mineral deposit needs to use 3-d inversion visualization when studying Porphyry-type Deposit geology into mine Platform.For current geology is at mine 3-d inversion Visualization Platform, still there are problems that a big chunk, just such as study When, people usually require to add water natural imitation rainfall manually, and operation is cumbersome, while being inconvenient to dry, it is difficult to observe soil Ore weathering develop sign, the problem of visual effect difference, therefore it is proposed that a kind of Porphyry-type Deposit geology at mine 3-d inversion Visualization Platform, to solve the problems of among the above.
Utility model content
The purpose of this utility model is to provide a kind of Porphyry-type Deposit geology into mine 3-d inversion Visualization Platform, with solution Certainly above-mentioned background technique proposes that people usually require to add water natural imitation rainfall manually, and operation is cumbersome, while being inconvenient to blow Wind, it is difficult to observe soil ore weathering and develop sign, the problem of visual effect difference.
To achieve the above object, the utility model provides the following technical solutions: a kind of Porphyry-type Deposit geology is three-dimensional at mine Inverting Visualization Platform, including pedestal, sliding seat and second support bar, the pedestal is fixedly arranged above connecting column, and connects It is connected with connection deck above column, and connects the lower section that deck is fixed on stage body, the stage body is internally provided with ground end Soil horizon, and ore layer is equipped with above ground end soil horizon, and sandy soil layer is provided with above ore layer, the sliding seat Surface be fixed with first support bar, and be connected with stage body above first support bar, water be installed in the first support bar Case, and water pump is installed on the left of water tank, aqueduct is connected on the left of the water pump, and the surface of aqueduct is equipped with valve Door, and aqueduct upper extremity is connected with fountain head, and the second support bar is fixed on the surface of sliding seat, and the second support Blower is installed, and one end of blower is connected with guide duct, and air-exhausting duct is connected with above guide duct on bar.
Preferably, the top of the connecting column is in T-shaped structure, and connecting column is connected together with deck is connect, and And connecting column constitutes rotational structure with deck is connect.
Preferably, the sliding seat and connecting column are socket, and sliding seat is fixedly connected with first support bar, and the The L-shaped structure of one support rod.
Preferably, there are two the fountain head is symmetrical arranged about stage body, and fountain head passes through aqueduct and water pump and water Case is connected.
Preferably, there are two the second support bar settings, and 2 second support bars and first support bar mutual dislocation.
Preferably, the arc-shaped structure of the air-exhausting duct, and there are two air-exhausting duct settings.
Compared with prior art, the utility model has the beneficial effects that the Porphyry-type Deposit geology can at mine 3-d inversion Depending on changing platform,
(1) it is provided with fountain head, the water in water tank can be imported into aqueduct by water pump, facilitate aqueduct by water It is discharged in fountain head, facilitates the water spray natural imitation rainfall of the device, easy to operate, high degree of automation;
(2) be provided with blower, wind can be discharged from air-exhausting duct by guide duct, it is convenient to ore layer inside the device with And sandy soil layer is blowed, and accelerates the weathering of ore and sandy soil, more fitting natural imitation weathering facilitates the shape of Porphyry-type Deposit At;
(3) it is provided with sliding seat, sliding seat can be made to rotate on connecting column, facilitate and rotate this by rotating stage body Body facilitates the viewing of research, while the first support bar of movable seating face fixation and second support bar being capable of effective supporting tables Body improves the stability of the device.
Detailed description of the invention
Fig. 1 is the utility model positive structure diagram;
Fig. 2 is the utility model side structure schematic view;
Fig. 3 is the utility model overlooking structure diagram;
Fig. 4 is that the utility model sliding seat is bowed schematic cross-sectional view.
In figure: 1, pedestal;2, connecting column;3, stage body;4, ground end soil horizon;5, ore layer;6, sandy soil layer;7, connection card Seat;8, sliding seat;9, first support bar;10, water tank;11, water pump;12, aqueduct;13, valve;14, fountain head;15, second Support rod;16, blower;17, guide duct;18, air-exhausting duct.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Please refer to Fig. 1-4, the utility model provides a kind of technical solution: a kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform, including pedestal 1, connecting column 2, stage body 3, ground end soil horizon 4, ore layer 5, sandy soil layer 6, connection deck 7, activity Seat 8, water tank 10, water pump 11, aqueduct 12, valve 13, fountain head 14, second support bar 15, blower 16, is led first support bar 9 Air hose 17 and air-exhausting duct 18, pedestal 1 is fixedly arranged above connecting column 2, and the top of connecting column 2 is connected with connection deck 7, and Connection deck 7 is fixed on the lower section of stage body 3, and stage body 3 is internally provided with ground end soil horizon 4, and the top paving of ground end soil horizon 4 Top equipped with ore layer 5, and ore layer 5 is provided with sandy soil layer 6, and the surface of sliding seat 8 is fixed with first support bar 9, and The top of first support bar 9 is connected with stage body 3, water tank 10 is equipped in first support bar 9, and the left side of water tank 10 is equipped with water Pump 11, the left side of water pump 11 is connected with aqueduct 12, and the surface of aqueduct 12 is equipped with valve 13, and 12 top of aqueduct End is connected with fountain head 14, and second support bar 15 is fixed on the surface of sliding seat 8, and is equipped with blower in second support bar 15 16, and one end of blower 16 is connected with guide duct 17, and the top of guide duct 17 is connected with air-exhausting duct 18.
The top of the connecting column 2 of this example is in T-shaped structure, and connecting column 2 is connected together with deck 7 is connect, and Connecting column 2 constitutes rotational structure with deck 7 is connect, and the connection deck 7 of 3 lower section of stage body can be made to connect by rotating stage body 3 It is rotated on column 2, facilitates the rotation of stage body 3.
Sliding seat 8 and connecting column 2 are socket, and sliding seat 8 is to be fixedly connected, and first supports with first support bar 9 The L-shaped structure of bar 9 can support stage body 3 by the first support bar 9 and second support bar 15 on 8 surface of sliding seat, and improving should The stability of device.
There are two fountain head 14 is symmetrical arranged about stage body 3, and fountain head 14 passes through aqueduct 12 and water pump 11 and water tank 10 are connected, and can simulate natural precipitation by fountain head 14, facilitate geology at the research of mine.
There are two the settings of second support bar 15, and 2 second support bars 15 and 9 mutual dislocation of first support bar, Neng Goutong Second support bar 15 is crossed, the stability of the device is improved.
The arc-shaped structure of air-exhausting duct 18, and there are two the settings of air-exhausting duct 18, blower 16 can be generated by air-exhausting duct 18 Wind to the top of stage body 3, facilitate the weathering of observation geology.
Working principle: according to Fig. 1-3, when using the device, being first put into the device needs place to be used, then The device is connected with external power supply, when needing to simulate natural precipitation, water pump 11 can be made water tank by opening water pump 11 Natural Water in 10 is discharged in fountain head 14 by aqueduct 12, and is sprayed water from fountain head 14, is facilitated inside to stage body 3 Sandy soil layer 6 and ore layer 5 carry out rainfall, when needing to observe the weathering of sandstone and ore, open blower 16, make blower 16 by wind It is discharged to inside air-exhausting duct 18 by guide duct 17, and then facilitates air-exhausting duct 18 by wind to the upper surface of stage body 3, while air-exhausting duct 18 are a circular-arc structure, and improve the effect of blowing, and then facilitate the rate of decay of observation sandy soil and ore;
Further according to shown in Fig. 1, Fig. 2 and Fig. 4, when needing to rotate the stage body 3, stage body 3 is rotated, is made fixed below stage body 3 Connection deck 7 rotated on connecting column 2, while connecting column 2 rotates in sliding seat 8, and then facilitates 3 inside ore of stage body The viewing of layer 5 and sandy soil layer 6, the fixed first support bar 9 in 8 surface of sliding seat and second support bar 15 being capable of effective supporting tables Body 3 improves the stability of the device, and " weathering " described in this specification is not the weathering on practical significance, but The weathering of analog demenstration, it is convenient to geology at the research of mine, the content being not described in detail in this specification belongs to ability The prior art well known to the professional technician of domain.
Although the utility model is described in detail with reference to the foregoing embodiments, come for those skilled in the art Say, it is still possible to modify the technical solutions described in the foregoing embodiments, or to part of technical characteristic into Row equivalent replacement, within the spirit and principle of the utility model, any modification, equivalent replacement, improvement and so on should all It is included within the scope of protection of this utility model.

Claims (6)

1. a kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform, including pedestal (1), sliding seat (8) and second Strut (15), it is characterised in that: the pedestal (1) is fixedly arranged above connecting column (2), and is connected with above connecting column (2) It connects deck (7), and connects the lower section that deck (7) is fixed on stage body (3), the stage body (3) is internally provided with ground subsoil Earth layer (4), and ore layer (5) are equipped with above ground end soil horizon (4), and be provided with sandy soil layer above ore layer (5) (6), the surface of the sliding seat (8) is fixed with first support bar (9), and is connected with stage body above first support bar (9) (3), it is equipped with water tank (10) on the first support bar (9), and water pump (11), the water pump is installed on the left of water tank (10) (11) it is connected on the left of aqueduct (12), and the surface of aqueduct (12) is equipped with valve (13), and on aqueduct (12) Square end is connected with fountain head (14), and the second support bar (15) is fixed on the surface of sliding seat (8), and second support bar (15) it is equipped on blower (16), and one end of blower (16) is connected with guide duct (17), and connects above guide duct (17) It is connected to air-exhausting duct (18).
2. a kind of Porphyry-type Deposit geology according to claim 1 is at mine 3-d inversion Visualization Platform, it is characterised in that: The top of the connecting column (2) is in T-shaped structure, and connecting column (2) is to be connected together, and connect with deck (7) are connect Column (2) constitutes rotational structure with deck (7) are connect.
3. a kind of Porphyry-type Deposit geology according to claim 1 is at mine 3-d inversion Visualization Platform, it is characterised in that: The sliding seat (8) and connecting column (2) are socket, and sliding seat (8) is fixedly connected with first support bar (9), and first Support rod (9) L-shaped structure.
4. a kind of Porphyry-type Deposit geology according to claim 1 is at mine 3-d inversion Visualization Platform, it is characterised in that: The fountain head (14) about stage body (3) be symmetrical arranged there are two, and fountain head (14) pass through aqueduct (12) and water pump (11) It is connected with water tank (10).
5. a kind of Porphyry-type Deposit geology according to claim 1 is at mine 3-d inversion Visualization Platform, it is characterised in that: There are two second support bar (15) settings, and 2 second support bars (15) and first support bar (9) mutual dislocation.
6. a kind of Porphyry-type Deposit geology according to claim 1 is at mine 3-d inversion Visualization Platform, it is characterised in that: The arc-shaped structure of the air-exhausting duct (18), and there are two air-exhausting duct (18) settings.
CN201821268922.0U 2018-08-07 2018-08-07 A kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform Active CN208653999U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821268922.0U CN208653999U (en) 2018-08-07 2018-08-07 A kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821268922.0U CN208653999U (en) 2018-08-07 2018-08-07 A kind of Porphyry-type Deposit geology is at mine 3-d inversion Visualization Platform

Publications (1)

Publication Number Publication Date
CN208653999U true CN208653999U (en) 2019-03-26

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