CN211690402U - Bottom concrete caisson capable of self-weight forced landing - Google Patents

Bottom concrete caisson capable of self-weight forced landing Download PDF

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CN211690402U
CN211690402U CN201922376296.8U CN201922376296U CN211690402U CN 211690402 U CN211690402 U CN 211690402U CN 201922376296 U CN201922376296 U CN 201922376296U CN 211690402 U CN211690402 U CN 211690402U
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concrete caisson
caisson
concrete
pressure water
inlet pipe
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孙华章
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Abstract

The utility model discloses a can be from aggravating closed end formula concrete caisson of forced landing, concrete caisson and at least one reverse circulation slurry pumping drilling machine subassembly continue on a plurality of upper portions including the lower part, the lower part has the border of closed end concrete caisson bottom to be provided with round steel sheet sword foot, reverse circulation slurry pumping drilling machine subassembly includes the cavity drilling rod, main inlet tube and many first high pressure spray pipes, the lower part has closed end concrete caisson and upper portion the lateral wall inside of concrete caisson that continues is provided with many second high pressure spray pipes, die-cut caisson bottom silt in turn by main inlet tube intake and high pressure water injection system during the operation, the cavity drilling rod rotates and the mud pump combined work, constantly extract caisson bottom silt water mixed soil layer, inside pouring into the upper portion caisson, gravity is produced, it is from aggravating the forced landing technique to form the die-cut slurry pumping of high pressure water circulation. The technology ensures that the concrete caisson can be constructed under the geological condition of high underground water level without precipitation, and the construction method is safe, reliable, quick and simple, reduces the cost and the environmental pollution.

Description

Bottom concrete caisson capable of self-weight forced landing
Technical Field
The embodiment of the utility model provides a relate to the architectural equipment field, concretely relates to can be from aggravating bottom formula concrete caisson that compels to descend.
Background
With the technological progress and the increasing living standard of people, motor vehicles such as automobiles and electric vehicles have entered into thousands of households, and driving and traveling have become indispensable working and living habits of people. Although the number of motor vehicles in China is rapidly increased in recent years, the average increase speed of urban roads is only 2% -3%, particularly, the increase of the number of motor vehicles in large cities far exceeds the increase speed of traffic infrastructure, and the phenomenon that parking spaces in various cities are seriously insufficient is directly caused. Under the current situation that the space is limited and the parking spaces are lacked, people begin to build underground garages on a large scale.
Although underground garage has effectively solved the nervous problem of parking stall, there is following problem in the current underground garage construction process:
1. a part of existing underground garages are in the construction form of excavation foundation pit side wall support, the construction mode is large in capital investment, low in return rate, long in engineering construction period and large in surrounding environment influence.
2. At present, the construction technology is mainly applied to building caisson foundations under the condition of high soil quality of underground water level, the caisson process adopts a pneumatic closed type, manual or mechanical excavation is adopted, and in the building caisson construction process, the labor intensity of constructors is high, protective devices are complex, the construction mode is poor in safety and low in efficiency, and the peripheral environment can be seriously influenced.
3. The construction working area is large, and areas in unit houses, old community houses and small spaces cannot be constructed.
SUMMERY OF THE UTILITY MODEL
Therefore, the embodiment of the utility model provides a can be from aggravating bottom formula concrete caisson that compels to descend to there is capital investment big, construction cycle length, the security is poor and can the polluted environment's problem in solving current garage construction technology.
In order to achieve the above object, an embodiment of the present invention provides a bottom concrete caisson capable of self-weight forced landing, including a bottom concrete caisson at the lower part and a plurality of upper continuous concrete caissons, wherein the lower part is provided with a top opening of the bottom concrete caisson, the bottom of the bottom concrete caisson at the lower part is provided with a concrete caisson bottom plate, and the plurality of upper continuous concrete caissons are sequentially stacked on the top of the bottom concrete caisson at the lower part; the self-weighted forced-landing bottomed concrete caisson further comprises at least one reverse circulation slurry pumping drilling rig assembly, the concrete caisson bottom plate is provided with at least one through hole, the edge of the bottom of the concrete caisson with a bottom at the lower part is provided with a circle of steel plate edge feet, the reverse circulation slurry pumping drilling machine component comprises a hollow drill rod, a main water inlet pipe and a plurality of first high-pressure water spraying pipes, the upper end of the main water inlet pipe extends upwards, the lower end of the main water inlet pipe correspondingly penetrates through the through holes one by one and then extends downwards, the hollow drill rod can be rotatably inserted into the middle part of the main water inlet pipe, the lower end of the hollow drill rod is provided with a drill bit, an annular space is formed between the hollow drill rod and the inner wall of the main water inlet pipe, a plurality of first high-pressure water spray pipes are arranged on the outer peripheral surface of the main water inlet pipe at intervals, the lower end of the first high-pressure water spray pipe extends along the radial direction of the main water inlet pipe, and the upper end of the first high-pressure water spray pipe extends upwards; and a plurality of second high-pressure water spraying pipes are vertically arranged in the side walls of the lower bottom-containing concrete caisson and the upper continuous concrete caisson at intervals.
Furthermore, the lower bottom-containing concrete caisson and the upper connecting concrete caisson are both rectangular box bodies, the height of the lower bottom-containing concrete caisson is 2-3m, and the height of the upper connecting concrete caisson is 3-4 m.
Further, the steel plate edge foot is welded or connected with the concrete caisson with the bottom at the lower part through bolts.
The embodiment of the utility model provides a have following advantage:
1. the utility model discloses can self-aggravate bottom formula concrete caisson of forced landing adopts high-pressure circulating water to wash out the self-aggravation forced landing technique, makes the concrete caisson can be under the high geological conditions of ground water level quick construction, need not precipitation, construction method safe and reliable, and is swift simple, and the cost reduces by a wide margin, reduces polluted environment.
2. The utility model discloses can self-aggravate forced landing's closed end formula concrete caisson can make small-size sky parking market industrialization, when practical application promotes, can take the quantity demand that sets up a plurality of caissons in order to reach actual requirement in succession, if promote in batches and can carry out batch production, adopt prefabricated assembly form, form industrialization scale. The parking system can be built on two sides of a road, parking is convenient, the problem of road occupation parking is thoroughly solved, and the parking system has great popularization value.
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 description of the embodiments or the prior art will be briefly described below. It should be apparent that the drawings in the following description are merely exemplary, and that other embodiments can be derived from the drawings provided by those of ordinary skill in the art without inventive effort.
The structure, ratio, size and the like shown in the present specification are only used for matching with the content disclosed in the specification, so as to be known and read by people familiar with the technology, and are not used for limiting the limit conditions which can be implemented by the present invention, so that the present invention has no technical essential significance, and any structure modification, ratio relationship change or size adjustment should still fall within the scope which can be covered by the technical content disclosed by the present invention without affecting the efficacy and the achievable purpose of the present invention.
Fig. 1 is a schematic side view cross-sectional structure diagram of a bottom concrete caisson capable of self-weight forced lowering provided by the embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view taken along line A-A of FIG. 1;
fig. 3 is a flow chart of a construction method of a self-weighted forced-landing bottom concrete caisson provided by the embodiment of the invention.
Description of reference numerals: 1. the lower part is provided with a bottom concrete caisson; 2. the upper part is connected with a concrete caisson; 3. a concrete caisson bottom plate; 4. a steel plate edge leg; 5. a hollow drill rod; 6. a main water inlet pipe; 7. a first high pressure spray pipe; 8. a drill bit; 10. a second high pressure spray pipe; 11. a high pressure water pump; 12. and (5) circulating the slurry pump drilling machine.
Detailed Description
The present invention is described in terms of specific embodiments, and other advantages and benefits of the present invention will become apparent to those skilled in the art from the following disclosure. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in figure 1, the self-weighted forced-landing bottom concrete caisson comprises a bottom concrete caisson 1 at the lower part, a plurality of upper continuous concrete caissons 2 and at least one reverse circulation slurry pumping drilling machine assembly, wherein the bottom concrete caisson 1 at the lower part and the upper continuous concrete caisson 2 are both made of reinforced concrete structures poured by cement, the bottom concrete caisson 1 at the lower part and the upper continuous concrete caisson 2 at the upper part are both cuboid boxes, preferably square boxes, the height of the bottom concrete caisson 1 at the lower part is 2-3m, and the height of the concrete caisson 2 at the upper part is 3-4 m.
The bottom of the concrete caisson 1 with a bottom is provided with an opening, the bottom of the concrete caisson 1 with a bottom is provided with a concrete caisson bottom plate 3, the concrete caisson bottom plate 3 is provided with at least one through hole, the edge of the bottom of the concrete caisson 1 with a bottom is provided with a circle of steel plate edge feet 4, the steel plate edge feet 4 are made of metal, the steel plate edge feet 4 are welded or bolted with the concrete caisson 1 with a bottom, when the bottom of the concrete caisson 1 with a bottom descends, the steel plate edge feet 4 can control the water flow sprayed by the main water inlet pipe 6 and the first high-pressure water spraying pipe 7 to the inner sides of the steel plate edge feet 4, so that the sand and soil on the inner sides of the steel plate edge feet 4 can be effectively washed, the sinking speed of the concrete caisson 1 with a bottom is accelerated, and the operation efficiency is.
The top and the bottom of the upper continuous concrete caisson 2 are both provided with openings, a plurality of upper continuous concrete caissons 2 are sequentially overlapped on the top of the lower bottom-containing concrete caisson 1, the lower bottom-containing concrete caisson 1 sinks, the upper continuous concrete caisson 2 sinks along with the lower bottom-containing concrete caisson 1, the lower bottom-containing concrete caisson 1 and the inner side wall of the upper continuous concrete caisson 2 are vertically provided with a plurality of second high-pressure water spraying pipes 10 at intervals, and the upper ends of the second high-pressure water spraying pipes 10 are connected with the high-pressure water pump 11.
When the upper continuous concrete caisson 2 at the uppermost part sinks to a predetermined depth, the next upper continuous concrete caisson 2 is superposed on the upper part of the upper continuous concrete caisson 2, and the second high-pressure water spraying pipes 10 in the side walls of each caisson are sequentially connected end to end. The second high-pressure water spraying pipe 10 is used for washing sandy soil on the lower edge of the upper continuous concrete caisson 2, and the sandy soil at each angle below the lower bottom-containing concrete caisson 1 can be washed by spraying water flow together with the main water inlet pipe 6 and the first high-pressure water spraying pipe 7 through the second high-pressure water spraying pipe 10, so that the upper continuous concrete caisson 2 is ensured to descend in a balanced manner, inclination is prevented, and construction safety is improved; in the process of sinking the concrete caisson with the bottom, because the concrete caisson 1 with the bottom at the lower part and the continuous concrete caisson 2 at the upper part are used for supporting, the soil body on the side surface can not have collapse accidents, and the safety in construction is effectively improved.
As shown in fig. 2, the reverse circulation slurry pumping drilling machine assembly comprises a hollow drill rod 5, a main water inlet pipe 6 and a plurality of first high-pressure water spraying pipes 7, wherein the upper end of the main water inlet pipe 6 extends upwards, the lower end of the main water inlet pipe 6 penetrates through the through holes one to one and then extends downwards, when the liquid level of slurry in the caisson is higher than the upper port of the main water inlet pipe 6, the slurry can flow downwards along the main water inlet pipe 6, and the slurry can scour sandy soil below the bottom concrete caisson 1 under the action of gravity. The hollow drill rod 5 is rotatably inserted into the main water inlet pipe 6, a drill bit 8 is arranged at the lower end of the hollow drill rod 5, the height of the drill bit 8 is lower than that of the lower port of the main water inlet pipe 6, and the drill bit 8 is used for cutting sand and soil below the concrete caisson 1 with the bottom at the lower part.
The upper end of the hollow drill rod 5 extends upwards to form an upper port of the main water inlet pipe 6 and then is connected with the circulating slurry pumping pump drilling machine 12, the circulating slurry pumping pump drilling machine 12 is used for driving the hollow drill rod 5 to rotate, so that sandy soil is cut, meanwhile, the circulating slurry pumping pump drilling machine 12 can also pump slurry below the concrete caisson 1 with the bottom at the lower part through the hollow drill rod 5 and take away part of silt to be sent into the caisson, the dead weight of the caisson is increased, the sinking speed of the concrete caisson 1 with the bottom at the lower part is accelerated, and the operation efficiency is further improved.
An annular space is arranged between the hollow drill rod 5 and the inner wall of the main water inlet pipe 6, the annular space is used as a channel for downward flowing of water separated by mud in the caisson, a plurality of first high-pressure water spray pipes 7 are arranged on the outer circumferential surface of the main water inlet pipe 6 at intervals, the number of the first high-pressure water spray pipes 7 is four in the embodiment, the number of the first high-pressure water spray pipes 7 is not limited to the above, more first high-pressure water spray pipes 7 can be arranged according to the requirement, the lower ends of the first high-pressure water spray pipes 7 extend along the radial direction of the main water inlet pipe 6, the upper ends of the first high-pressure water spray pipes 7 extend upwards and are connected with the high-pressure water pump 11, as the washing area of the main water inlet pipe 6 is limited, sand and sand at some positions below the concrete caisson 1 with a bottom at the lower part can not be washed, the washing area is greatly increased by arranging the first high-pressure water, the first high-pressure water spray pipe 7 or the second high-pressure water spray pipe 10 sprays the water to the periphery, so that the scouring area is greatly increased, and the operation efficiency is improved. Because the length of the hollow drill rod 5, the main water inlet pipe 6 and the first high-pressure water spraying pipe 7 also needs the height matching of the caisson along with the increase of the number of the upper continuous concrete caissons 2, the hollow drill rod 5, the main water inlet pipe 6 and the first high-pressure water spraying pipe 7 can adopt a whole pipe with longer length or adopt a mode of sequentially connecting the pipes end to end. When the self-weighted forced landing device works, the main water inlet pipe 6 and the high-pressure water spraying system alternately scour the bottom silt soil body, the hollow drill rod 5 rotates and works together with the slurry pumping pump, so that the reverse circulation drilling machine system continuously pumps the silt and water mixed soil layer below the concrete caisson and injects the silt and water mixed soil layer into the upper well to generate gravity, silt and soil are naturally precipitated and separated in the well, silt is precipitated, water is recycled, and the high-pressure water scouring circulation slurry pumping self-weighted forced landing technology is formed. The self-weight forced-landing bottom concrete caisson can be used for industrialization of small three-dimensional parking markets, and when the caisson is popularized in practical application, a plurality of caissons can be continuously arranged to meet the quantity requirement of practical requirements. The parking system can be built on two sides of a road, parking is convenient, the problem of road occupation parking is thoroughly solved, and the parking system has great popularization value.
As shown in fig. 3, the construction method of the self-weighted forced-landing bottom concrete caisson comprises the following steps:
step a, a circulating slurry pumping pump drilling machine 12 drives a hollow drill rod 5 to rotate, a drill bit 8 cuts sandy soil on the lower part of a bottom concrete caisson at the lower part, a main water inlet pipe 6 and a first high-pressure water spraying pipe 7 spray high-pressure water to the lower part of the bottom concrete caisson 1 at the lower part to wash the sandy soil, and meanwhile, the hollow drill rod 5 is used for pumping slurry to form reverse circulation;
the high-pressure water pump 11 respectively conveys the pumped water to the lower part of the concrete caisson 1 with the bottom at the lower part through the first high-pressure water spray pipe 7 and the second high-pressure water spray pipe 10, the sand and the soil below the concrete caisson 1 with the bottom at the lower part are washed by high-pressure water flow,
the water pumped by the high-pressure water pump 11 is mainly derived from the slurry segregation water in the caisson, and if the water in the caisson is insufficient at the beginning, external water supply can be performed, and the water is pumped from the caisson after normal cycle construction operation.
Further, before performing step a, also performing step a 1: and pouring a concrete caisson 1 with a bottom at the lower part and a continuous concrete caisson 2 at the upper part on the ground surface, and installing a hollow drill rod 5, a main water inlet pipe 6 and a first high-pressure water spraying pipe 7.
Further, before performing step a1, also performing step a 0: and digging the surface sandy soil layer to a position 0.5m above the initial water level depth.
Before the step a1 is executed, the earth surface needs to be cleaned, the underground pipelines and the geological conditions are found out firstly, after the site conditions are clarified, the surface layer miscellaneous filling soil is cleaned to the original sandy soil layer, the surface layer miscellaneous filling soil is dug to be 0.5 meter above the initial water level, and the step a1 is executed on the cleaned site.
B, conveying the mud and the silt clamped in the mud into a concrete caisson 1 with a bottom at the lower part by using a hollow drill rod 5, and after the silt is precipitated, feeding separated water into a main water inlet pipe 6 and a first high-pressure water spraying pipe 7 for recycling;
the circulating slurry pump drilling machine 12 pumps the silt slurry of the soil layer at the bottom of the caisson into the concrete caisson 1 with the bottom at the lower part by using the hollow drill rod 5, under the action of gravity, silt and water are separated in the concrete caisson 1 with the bottom at the lower part, the silt is precipitated in the concrete caisson 1 with the bottom at the lower part, and the water stays at the upper part of the concrete caisson 1 for recycling, the hollow drill rod 5 pumps the silt slurry into the concrete caisson 1 with the bottom at the lower part, so that the self weight of the concrete caisson 1 with the bottom at the lower part is increased, the sinking speed of the concrete caisson 1 with the bottom at the lower part is accelerated, and the operation efficiency is further improved. When the liquid level in the caisson is higher than the upper port of the main water inlet pipe 6, water separated out from the slurry automatically flows downwards along the main water inlet pipe 6 to work together with the drill bit 8, and sand and soil below the concrete caisson 1 are punched.
The high-pressure water pump 11 pumps water separated from the upper part in the caisson, and the water is conveyed to the lower part of the concrete caisson 1 with the bottom through the first high-pressure water spraying pipe 7 to wash sand and soil below the concrete caisson 1 with the bottom, so that the water can be recycled, the concrete caisson 1 with the bottom is arranged at the lower part of the concrete caisson 1 with the bottom, the side wall of the concrete caisson 1 with the bottom is provided with the second high-pressure water spraying pipe 10, the high-pressure water pump 11 also conveys high-pressure water to the lower part of the concrete caisson 1 with the bottom through the second high-pressure water spraying pipe 10, and the sand and soil at the edge of the lower part of the concrete caisson 1 with the bottom can.
The second high-pressure water spraying pipe 10, the main water inlet pipe 6 and the first high-pressure water spraying pipe 7 spray water together, so that sand and soil at each angle below the concrete caisson 1 with the bottom can be washed, the upper continuous concrete caisson 2 is ensured to descend uniformly, the inclination is prevented, and the construction safety is improved; because the water is continuously recycled, the environmental pollution is less.
C, stacking an upper continuous concrete caisson 2 on the top of the lower bottom-containing concrete caisson 1 after the lower bottom-containing concrete caisson 1 descends to a preset height;
after the lower bottom concrete caisson 1 is descended to a preset height, the upper continuous concrete caisson 2 is superposed on the top of the lower bottom concrete caisson 1, the lower bottom concrete caisson 1 and the upper continuous concrete caisson 2 form a soil retaining, waterproof and horizontal supporting integrated structure, collapse, water seepage and the like are prevented, and because a horizontal supporting device is not needed, the cost is reduced, and the construction safety is improved.
D, repeating the step a, the step b and the step c in sequence until the bottom type concrete caisson descends to the designed depth;
by adopting a new self-weight forced landing and circular scouring construction process, the caisson can be sunk while digging, and the depth of 15-50 meters can be easily reached.
And e, plugging the through hole by using high-pressure cement paste.
After the bottom concrete caisson is lowered to the designed depth, the circulating slurry pumping pump drilling machine 12 utilizes the hollow drill rod 5 to inject the cement slurry under high pressure into the lower part of the upper continuous concrete caisson 2, and the through hole is blocked.
And executing step f while executing step e: and injecting cement slurry into the outer sides of the lower bottom-containing concrete caisson 1 and the upper continuous concrete caisson 2, and solidifying the side walls of the lower bottom-containing concrete caisson 1 and the upper continuous concrete caisson 2 with the ground layer.
In order to avoid that the buoyancy generated by underground water to the caisson affects the stability of the caisson, cement slurry is injected into the outer sides of the concrete caisson 1 with the bottom at the lower part and the concrete caisson 2 connected to the upper part, and the side walls of the concrete caisson 1 with the bottom at the lower part and the concrete caisson 2 connected to the upper part are fixedly connected with the ground layer, so that the friction force is greatly increased, an anti-floating structure is formed, and the anti-floating requirement is met. The concrete caisson can be constructed under the geological condition of high underground water level by the technology without precipitation operation, the construction method is safe and reliable, fast and simple, the cost is greatly reduced, the occupied area is small, and the environmental pollution is reduced.
Although the invention has been described in detail with respect to the general description and the specific embodiments, it will be apparent to those skilled in the art that modifications and improvements can be made based on the invention. Therefore, such modifications and improvements are intended to be within the scope of the invention as claimed.

Claims (3)

1. A kind of concrete caisson with bottom that can be forced to descend from aggravating, the concrete caisson with bottom that can be forced to descend from aggravating includes the concrete caisson with bottom of the inferior part and multiple upper portions continues the concrete caisson, the said inferior part has the top opening of the concrete caisson, the bottom of the concrete caisson with bottom of the said inferior part has concrete caisson floors, multiple said upper portions continue the concrete caisson to superpose on the top of the concrete caisson with bottom of the inferior part sequentially; the self-weighted forced-landing bottom-closed concrete caisson is characterized by further comprising at least one reverse circulation slurry pumping drilling machine assembly, wherein at least one through hole is formed in a bottom plate of the concrete caisson, a circle of steel plate blade legs are arranged at the edge of the bottom-closed concrete caisson at the lower part of the bottom of the concrete caisson, the reverse circulation slurry pumping drilling machine assembly comprises a hollow drill rod, a main water inlet pipe and a plurality of first high-pressure water spray pipes, the upper end of the main water inlet pipe extends upwards, the lower end of the main water inlet pipe correspondingly penetrates through the through hole one by one and then extends downwards, the hollow drill rod is rotatably inserted into the middle of the main water inlet pipe, a drill bit is arranged at the lower end of the hollow drill rod, an annular space gap is formed between the inner wall of the main water inlet pipe and the hollow drill rod, the plurality of first high-pressure water spray pipes are arranged on the, the upper end of the first high-pressure water spray pipe extends upwards; and a plurality of second high-pressure water spraying pipes are vertically arranged in the side walls of the lower bottom-containing concrete caisson and the upper continuous concrete caisson at intervals.
2. A self-weighted forced-landing bottom concrete caisson according to claim 1, wherein the lower bottom concrete caisson and the upper continuous concrete caisson are rectangular parallelepiped box bodies, the lower bottom concrete caisson has a height of 2-3m, and the upper continuous concrete caisson has a height of 3-4 m.
3. A self-weighted forced landing bottomed concrete caisson of claim 2, wherein the steel plate blade leg is welded or bolted to the lower bottomed concrete caisson.
CN201922376296.8U 2019-12-25 2019-12-25 Bottom concrete caisson capable of self-weight forced landing Active CN211690402U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111139855A (en) * 2019-12-25 2020-05-12 孙华章 Bottom concrete caisson capable of self-weight forced landing and construction method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111139855A (en) * 2019-12-25 2020-05-12 孙华章 Bottom concrete caisson capable of self-weight forced landing and construction method

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