CN214495489U - Rigid landfill operation system - Google Patents

Rigid landfill operation system Download PDF

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Publication number
CN214495489U
CN214495489U CN202120517594.9U CN202120517594U CN214495489U CN 214495489 U CN214495489 U CN 214495489U CN 202120517594 U CN202120517594 U CN 202120517594U CN 214495489 U CN214495489 U CN 214495489U
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China
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rail
rigid landfill
crane
landfill
rigid
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CN202120517594.9U
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刘涛
童琳
苏红玉
范晓平
董学光
葛彦辉
李富松
王雅静
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Henan Weihua Heavy Machinery Co Ltd
China Urban Construction Design and Research Institute Co Ltd
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Henan Weihua Heavy Machinery Co Ltd
China Urban Construction Design and Research Institute Co Ltd
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Abstract

The utility model provides a rigidity landfill operating system, including rigidity landfill and the hoist and mount operation device that has a plurality of unit ponds, wherein: the plurality of unit pools are arranged in a matrix form, the hoisting operation device is arranged on the top of the rigid landfill site in a crossing mode through a first rail and can move along the first rail, and the first rail is laid along the longitudinal extension of the rigid landfill site; the hoisting operation device comprises a crane, a second track and a canopy, wherein a hoisting mechanism of the crane can move to the outer side of the rigid landfill to hoist the wastes and move to the top of any unit pool in the row; the second rail is arranged along the moving direction of the lifting mechanism, and the canopy is arranged on the second rail and can move along the second rail to cover the top of any unit pool in one row. The system can realize side feeding through the hoisting operation device, and effectively improves the operation efficiency of the rigid landfill; simultaneously, with canopy and integrative setting of hoist, can more effectual realization distribution of rain and sewage.

Description

Rigid landfill operation system
Technical Field
The utility model relates to a rigidity landfill technical field especially relates to a rigidity landfill operating system.
Background
According to the implemented 'hazardous waste landfill pollution control standard' (GB18598-2019), when a site is located in a high-compressibility sludge, peat and soft soil area or the saturation permeability coefficient of a natural foundation layer does not meet the requirement, a rigid landfill with a visual inspection function needs to be constructed; other hazardous wastes, such as hazardous wastes with a total arsenic content of more than 5%, also enter the rigid landfill; the construction of rigid landfills will therefore be increasing.
At present, an end part feeding mode is generally adopted in the existing rigid landfill during operation, namely, each time of feeding is carried out, the materials need to be fed from an end part feeding platform of the rigid landfill, and then the materials are hoisted and transported by a gantry crane, and the wastes are moved to a unit pool for landfill. The operation length of the operation mode usually reaches more than 150-200 m, the maximum running speed of the gantry crane is only 20m/min, the transportation distance is long, the speed is slow, and the energy consumption for reciprocating is large. In addition, the existing gantry crane of the rigid landfill site and the movable canopy share one rail, so that the gantry crane and the movable canopy cannot be located on the same unit pool at the same time, and the gantry crane and the movable canopy are difficult to cooperate during rainfall.
SUMMERY OF THE UTILITY MODEL
The utility model provides a rigidity landfill operating system that the operation speed is fast and have rain-proof function, rigidity landfill operating system is including the rigidity landfill and the hoist and mount operating means that have a plurality of unit ponds, wherein:
the unit pools are arranged in a matrix form, the hoisting operation device is arranged on the top of the rigid landfill site in a crossing mode through a first rail and can move along the first rail, and the first rail is laid along the longitudinal extension of the rigid landfill site;
the hoisting operation device comprises a crane, a second rail and a canopy, wherein a hoisting mechanism of the crane can move to the outer side of the rigid landfill to hoist the wastes and move to the top of any unit pool in a row; the second rail is arranged along the moving direction of the lifting mechanism, the canopy is arranged on the second rail and can move along the second rail to cover the top of any unit pool in one row.
In specific implementation, the crane is a gantry crane, two upright posts of the gantry crane are respectively arranged on the first rail, and the hoisting mechanism is movably connected to a main beam of the gantry crane and can move along the main beam.
In a specific implementation, the main beam is provided with a cantilever beam extending out of the upright column, so that the hoisting mechanism can extend out of the rigid landfill site along the cantilever beam.
In specific implementation, the upright is an a-shaped upright, and two sub-uprights of the a-shaped upright are respectively connected with the second track.
In specific implementation, fences are arranged around the top of the canopy.
In specific implementation, the transverse movement range of the lifting device is 0-30 m.
In specific implementation, the rigid landfill operation system further comprises a monitoring room, and the monitoring room is arranged on the upright post of the crane.
The utility model provides a rigid landfill operation system, including rigid landfill and hoist and mount operation device, a plurality of unit ponds of this rigid landfill are arranged in the form of matrix, hoist and mount operation device span over through first track and set up in the top of rigid landfill, and can move along first track, first track is laid along the longitudinal extension of rigid landfill; the hoisting operation device comprises a crane, a second track and a canopy, wherein a hoisting mechanism of the crane can move to the outer side of the rigid landfill to hoist the wastes and move to the top of any unit pool in the row; the second rail is arranged along the moving direction of the lifting mechanism, and the canopy is arranged on the second rail and can move along the second rail to cover the top of any unit pool in a row. The system can realize lateral feeding through the hoisting operation device, improve the operation efficiency of a rigid landfill site, effectively save labor, and perform landfill operation more safely and quickly; simultaneously, with canopy and integrative setting of hoist, can more effectual realization distribution of rain and sewage, reduce filtration liquid and produce, the operation personnel of being convenient for manage.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without inventive efforts. In the drawings:
FIG. 1 is a schematic diagram of a rigid landfill work system according to one embodiment of the present invention;
fig. 2 is a schematic structural view of a hoisting operation device according to an embodiment of the present invention;
fig. 3 is a side view of a hoist operation device according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the embodiments of the present invention will be described in detail with reference to the accompanying drawings. The exemplary embodiments and descriptions of the present invention are provided to explain the present invention, but not to limit the present invention.
The applicant considers that the current rigid landfill has a per unit cell area of no more than 50m2When the storage capacity of the unit pool reaches 250m3In the case of a rigid landfill, since the minimum height of the pond depth is 5m and a landfill vehicle cannot be used, it is considered to perform work in a rigid landfill by using an integrated hoisting device in which a crane is combined with a canopy.
As shown in fig. 1, fig. 2 and fig. 3, the utility model provides a fast rigid landfill operation system with rainproof function, which comprises a rigid landfill 100 with a plurality of unit pools 110 and a hoisting operation device 200, wherein:
the unit pools 110 are arranged in a matrix form, the hoisting operation device 200 is arranged on the top of the rigid landfill site 100 in a crossing manner through a first rail 120 and can move along the first rail 120, and the first rail 120 is laid along the longitudinal extension of the rigid landfill site 100;
the lifting operation device 200 comprises a crane 210, a second rail 220 and a canopy 230, wherein a lifting mechanism 211 of the crane 210 can move to the outer side of the rigid landfill 100 to lift and move the waste to the top of any unit pool 110 in a row; the second rail 220 is disposed along the moving direction of the lifting mechanism 211, and the canopy 230 is disposed above the second rail 220 and can move along the second rail 220 to cover the top of any one of the unit cells 110 in a row.
In particular implementations, the crane 210 may be provided in a variety of embodiments. For example, as shown in fig. 1 and 2, the crane 210 may be a gantry crane, two columns 213 of the gantry crane are respectively disposed on one first rail 120, a moving device may be disposed at the bottom of the column 213, and the gantry crane moves along the longitudinal direction of the rigid landfill 100 through the moving device, after the gantry crane moves to the top of one row of unit cells 110, the waste outside the rigid landfill 100 may be moved to any one of the unit cells 110 in one row through the lifting mechanism 211, compared with the original end material loading, not only the operation speed may be greatly increased, but also the crane is prevented from repeatedly transporting the waste longitudinally, the energy consumption may also be greatly reduced, and after all the unit cells 110 in one row are completely operated, the gantry crane may move longitudinally along the first rail 120 to perform the operation on the next row of unit cells 110. The hoisting mechanism 211 may be connected to the main beam 212 of the gantry crane via a pulley and may move along the main beam 212.
In specific implementation, there are various schemes for extending the lifting mechanism 211 to the outside of the rigid landfill 100. For example, as shown in fig. 2, the main beam 212 may have a cantilever beam 214 extending outside the column 213, so that the hoisting mechanism 211 may extend along the cantilever beam 214 to the outside of the rigid landfill 100. In practice, as shown in fig. 1, when the transportation distance of the gantry crane is moved by loading the rigid landfill 100 with the road booms on both sides thereof, the truck 300 can be used instead, and the truck 300 has a high traveling speed and a large transportation volume. The truck 300 can transport the waste to below the outriggers 214 and then mechanically lift the waste by the lift mechanism 211 without human labor and without dumping.
In particular implementations, the arrangement of the posts 213 can have a variety of embodiments. For example, as shown in fig. 3, the upright 213 may be an a-shaped upright, and two sub-uprights of the a-shaped upright may be respectively connected with one of the second tracks 220. The bottom of the rain shed 230 is provided with pulleys to realize the movement at the second rail 220.
Further, as shown in fig. 2 and 3, a fence 231 may be further disposed around the top of the rain shelter 230. During the operation, personnel can stand on lateral shifting's canopy 230 and command the operation, therefore set up rail 231 around canopy 230, can effectively ensure personnel's operation safety.
In a specific implementation, the movement range of the lifting mechanism 211 can be set in various embodiments, for example, the lateral movement range of the lifting mechanism 211 can be 0-30 m. The longest working length is about 30m and the average working length is 15 m.
In a specific implementation, as shown in fig. 2 and 3, in order to facilitate a person to observe a working condition, the rigid landfill working system may further include a monitoring room 215, and the monitoring room 215 may be disposed on the column 213 of the crane 210.
To sum up, the utility model provides a rigid landfill operation system, including rigid landfill 100 and hoist and mount operation device 200, a plurality of unit pond 110 of this rigid landfill 100 are arranged in the matrix, and hoist and mount operation device 200 spanes through first track 120 and sets up in the top of rigid landfill 100 to can move along first track 120, first track 120 is laid along the longitudinal extension of rigid landfill 100; the lifting work device 200 includes a crane 210, a second rail 220 and a rain shed 230, and a lifting mechanism 211 of the crane 210 is movable to the outside of the rigid landfill 100 to lift and move the waste to the top of any one of the unit cells 110 in a row; the second rail 220 is disposed along the moving direction of the lifting mechanism 211, and the rain shed 230 is disposed on the second rail 220 and can move along the second rail 220 to cover the top of any unit pool 110 in a row. The system can realize lateral feeding through the hoisting operation device 200, improve the operation efficiency of the rigid landfill 100, effectively save labor, and perform landfill operation more safely and quickly; simultaneously, with canopy 230 and hoist 210 integrative setting, can more effectual realization distribution of rain and sewage, reduce filtration liquid and produce, the operating personnel of being convenient for manages.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above description is only the embodiments of the present invention, and is not intended to limit the scope of the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (7)

1. A rigid landfill yard work system comprising a rigid landfill yard (100) having a plurality of unit cells (110) and a hoist work apparatus (200), wherein:
the unit pools (110) are arranged in a matrix form, the hoisting operation device (200) is arranged on the top of the rigid landfill site (100) in a crossing mode through a first rail (120) and can move along the first rail (120), and the first rail (120) is laid along the longitudinal extension of the rigid landfill site (100);
the hoisting operation device (200) comprises a crane (210), a second rail (220) and a rain shed (230), wherein a hoisting mechanism (211) of the crane (210) can move to the outer side of the rigid landfill site (100) so as to hoist and move the wastes to the top of any unit pool (110) in a row; the second rail (220) is arranged along the moving direction of the lifting mechanism (211), and the rain shed (230) is arranged on the second rail (220) and can move along the second rail (220) to cover the top of any unit pool (110) in a row.
2. The rigid landfill work system of claim 1, wherein the crane (210) is a gantry crane, two columns (213) of the gantry crane are respectively disposed on the first rail (120), and the hoisting mechanism (211) is movably connected to a main beam (212) of the gantry crane and is movable along the main beam (212).
3. A rigid landfill operations system according to claim 2, wherein the main beam (212) has a cantilever beam (214) projecting outwardly of the column (213) such that the hoist (211) can project along the cantilever beam (214) outwardly of the rigid landfill (100).
4. The rigid landfill work system of claim 2, wherein the column (213) is an a-column, and two sub-columns of the a-column are each connected to one of the second tracks (220).
5. A rigid landfill operations system according to claim 1, wherein the canopy (230) is provided with a fence (231) around the top.
6. The rigid landfill work system of claim 1, wherein the hoist mechanism (211) has a lateral range of movement of 0-30 m.
7. The rigid landfill work system of claim 1, further comprising a monitoring room (215), the monitoring room (215) being provided to a column (213) of the crane (210).
CN202120517594.9U 2021-03-11 2021-03-11 Rigid landfill operation system Active CN214495489U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120517594.9U CN214495489U (en) 2021-03-11 2021-03-11 Rigid landfill operation system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120517594.9U CN214495489U (en) 2021-03-11 2021-03-11 Rigid landfill operation system

Publications (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115217352A (en) * 2022-05-09 2022-10-21 湖南中冶长天节能环保技术有限公司 Intelligent canopy system of rigid landfill and control method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115217352A (en) * 2022-05-09 2022-10-21 湖南中冶长天节能环保技术有限公司 Intelligent canopy system of rigid landfill and control method
CN115217352B (en) * 2022-05-09 2023-06-23 湖南中冶长天节能环保技术有限公司 Intelligent canopy system of rigid landfill and control method

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