CN1814918A - Earthwork construction method - Google Patents

Earthwork construction method Download PDF

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Publication number
CN1814918A
CN1814918A CN 200610017491 CN200610017491A CN1814918A CN 1814918 A CN1814918 A CN 1814918A CN 200610017491 CN200610017491 CN 200610017491 CN 200610017491 A CN200610017491 A CN 200610017491A CN 1814918 A CN1814918 A CN 1814918A
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Prior art keywords
cofferdam
muddy water
construction
water mixer
water
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CN 200610017491
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CN100383347C (en
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顾建华
顾国华
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Publication of CN100383347C publication Critical patent/CN100383347C/en
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  • Treatment Of Sludge (AREA)
  • Excavating Of Shafts Or Tunnels (AREA)

Abstract

This invention discloses a construction method for earthwork including: first of all, excavating a construction field of 0-10 deep, an grab digs the earth from top to bottom, in which, the dig earth is transported into a container mixed with water and mud at the point of discharge via a conveyer belt to be mixed to slurry then to be transported to a built cofferdam by a reinforcing pump and a pipeline, in which, the container is built at the discharging point to those with low ground water level, the dig earth is sent to the container to be mixed to slurry and sent to a cofferdam by a reinforcing pump and pipeline, the container is built in the construction site to those with high ground water level and the dig earth is sent to the container then to be transported into the cofferdam built at the discharging point.

Description

A kind of earthwork construction method
Technical field
The present invention relates to the earthwork construction method in the process such as dilatation, Tu Shan, harbour, harbour, highway earthwork construction of excavation, the lake and reservoir in river course.
Background technology
Traditional excavation of earthwork construction, the mining head of excavator are taked to reach make progress shoveling, lifting, digging arm of below ground and are rotated the soil in the mining head is put near the excavator haulage vehicle wagon box, are transported to by haulage vehicle and unload the soil point.The existing deficiency of this earthwork construction method mainly shows as: 1, excavator inefficiency, and what excavate that head mentions cubic metre of earth is limited, and the digging arm band and cubic metre of earth mentioned, rotates a large amount of energy of consumption; 2, adopt the vehicle transport earthwork, there is the difficult problem of back climbing of deep-cutting, especially when the construction area groundwater table is higher, the infiltration phenomenon will appear through a large-scale loader transporter vehicle road surface of rolling, have to transportation route is carried out cure process, this has not only taken the arable land, and has the problem of second ploughing difficulty after construction is finished; 3, vehicle transport easily causes traffic jam, run into speedway or massif need detour by, greatly reduce conevying efficiency and fuel consume height; 4, the tail gas pollution environment of haulage vehicle discharge.
Summary of the invention
The object of the invention is the earthwork construction method that a kind of earthwork construction efficient height is provided, can reduces construction cost greatly.
For achieving the above object, the present invention can take following technical proposals:
Earthwork construction method of the present invention is characterized in that: it carries out according to following step:
The first step is at first excavated a construction plant, and the degree of depth is a 0-10 rice, is advisable with 6 meters;
In second step, excavator drives in the described construction plant, excavates or dig digging side towards the working design direction;
The 3rd step, a, for groundwater table in construction region lower below 6 meters, cubic metre of earth being transported to by conveyer belt of digging, excavate unloaded the soil point, unloading soil point construction cofferdam and muddy water mixer, in the soil feeding muddy water mixer that conveyer belt is carried and in the muddy water mixer, add water, soil, water in the muddy water mixer is mixed into behind the mud by booster pump, line transportation in the cofferdam of being built;
B and for groundwater table in construction region higher more than 6 meters, build the muddy water mixer on construction ground, the earthwork of digging, excavating is transported in the muddy water mixer and in the muddy water mixer and adds water by conveyer belt or Other Engineering, Transport Machinery, muddy water mixer interior soil, water are mixed into behind the mud by booster pump, line transportation to being built in the cofferdam of unloading soil point.
For quickening the oozing of mud in the cofferdam, drainage efficiency, dig annular infiltration ditch around described cofferdam, be withdrawn in the described muddy water mixer with water pump and recycle infiltering water in the ditch.
Also the cofferdam can be built into fenestral fabric, precipitate step by step to reach the mud that makes in the cofferdam, the clear water in the final stage grid cofferdam is withdrawn in the described muddy water mixer with water pump and recycles.
For improving the utilization rate of excavating soil, unload places such as river levee that soil point can be selected in highway that need to build or reinforcing, reservoir dike, the cofferdam is built in this place, the slurry transportation that will transport in the muddy water mixer is in the cofferdam, then the mud in the cofferdam is adopted forced-ventilated water method, make the mud moisture in the cofferdam be reduced to the engineering design requirement; Carry out disposable shock compaction with impacting to grind then, make thickness native compactness in 6 meters scopes reach the standard-required of building highway roadbed, the still available water pump of the water of discharge is withdrawn in the described muddy water mixer and recycles.
Advantage of the present invention is mainly reflected in following several respects:
1, take mining head to dig digging side from top to bottom, because gravitate, the regolith that so not only contacts with mining head digs and digs, and near the soil that digs the pick head also has been with, excavator digs earthwork dig and is and take mining head to excavate 6 times of the earthwork from bottom to top under the equal power condition of output.
2, adopt conveyer belt to dig dig cubic metre of earth to be transported to the muddy water mixer of building the construction plant in interior or be transported to and build in the muddy water mixer that unloads soil point, then by booster pump, line transportation in the cofferdam of being built, transportation does not need load carrier for vehicles, therefore solved the existing deficiency of vehicle transport in traditional earthwork construction, improved earthwork construction efficient greatly, equal cubic metre of earth is constructed, duration shortened to by 1/4 of the conventional method construction period, and construction cost is reduced to by 40% of conventional construction method cost cost.
3, transportation route do not occupy cultivated land, highway, do not cause environment pollution, benefit the nation and the people, realized earthwork construction many, fast, good, economize.
4, if will unload places such as river levee that the soil point is selected in highway that need to build or reinforcing, reservoir dike, the cofferdam is built in this place,, makes the mud moisture in the cofferdam be reduced to the engineering design requirement then to the employing of the mud in cofferdam forced-ventilated water method; Carry out disposable shock compaction with impacting to grind then, make thickness native compactness in 6 meters scopes reach the standard-required of building highway roadbed, made full use of and excavated the soil resource of coming out.
5, according to this job practices, take the construction of segmentation, ladder, dig and can reach 50 meters deeply.
So earthwork construction method operating efficiency of the present invention and energy utilization rate height, construction cost is low and a cubic metre of earth transportation does not occupy cultivated land, road traffic, and environmentally safe has very big economic benefit and good social benefit.
The specific embodiment
Earthwork construction method of the present invention is to carry out according to following step:
The first step is at first excavated a construction plant, and the degree of depth stretches highly selection according to the digging arm of excavator, is generally 6 meters and is advisable;
In second step, excavator drives in the described construction plant earthwork is excavated, and mining head digs digging side or excavates the earthwork towards the working design direction from top to bottom;
The 3rd step, a, for groundwater table in construction region lower below 6 meters, cubic metre of earth being transported to by conveyer belt of digging, excavate unloaded the soil point, unloading soil point construction cofferdam and muddy water mixer, in the soil feeding muddy water mixer that conveyer belt is carried and in the muddy water mixer, add water, soil, water in the muddy water mixer is mixed into behind the mud by booster pump, line transportation in the cofferdam of being built; Booster pump can be selected slag stock pump, slush pump etc.;
B and for groundwater table in construction region higher more than 6 meters, build the muddy water mixer on construction ground, the earthwork of digging, excavating is transported in the muddy water mixer and in the muddy water mixer and adds water by conveyer belt or Other Engineering, Transport Machinery, muddy water mixer interior soil, water are mixed into behind the mud by booster pump, line transportation to being built in the cofferdam of unloading soil point.
For quickening the oozing of mud in the cofferdam, drainage efficiency, dig annular infiltration ditch around described cofferdam, be withdrawn in the described muddy water mixer with water pump and recycle infiltering water in the ditch.
Also the cofferdam can be built into fenestral fabric, precipitate step by step to reach the mud that makes in the cofferdam, the supernatant water in the final stage grid cofferdam is withdrawn in the described muddy water mixer with water pump and recycles.
For improving the utilization rate of excavating soil, unload places such as river levee that soil point can be selected in highway that need to build or reinforcing, reservoir dike, the cofferdam is built in this place, the slurry transportation that will transport in the muddy water mixer is in the cofferdam, then the mud in the cofferdam is adopted forced-ventilated water method, make the mud moisture in the cofferdam be reduced to the engineering design requirement; Carry out disposable shock compaction with impacting to grind then, make thickness native compactness in 6 meters scopes reach the standard-required of building highway roadbed, the still available water pump of the water of discharge is withdrawn in the described muddy water mixer and recycles.

Claims (4)

1, a kind of earthwork construction method, it is characterized in that: it carries out according to following step:
The first step is at first excavated a construction plant, and the degree of depth is a 0-10 rice, is advisable with 6 meters;
In second step, excavator drives in the described construction plant, excavates or dig digging side towards the working design direction;
The 3rd step, a, for groundwater table in construction region lower below 6 meters, cubic metre of earth being transported to by conveyer belt of digging, excavate unloaded the soil point, unloading soil point construction cofferdam and muddy water mixer, in the soil feeding muddy water mixer that conveyer belt is carried and in the muddy water mixer, add water, soil, water in the muddy water mixer is mixed into behind the mud by booster pump, line transportation in the cofferdam of being built;
B and for groundwater table in construction region higher more than 6 meters, build the muddy water mixer on construction ground, the earthwork of digging, excavating is transported in the muddy water mixer and in the muddy water mixer and adds water by conveyer belt or Other Engineering, Transport Machinery, muddy water mixer interior soil, water are mixed into behind the mud by booster pump, line transportation to being built in the cofferdam of unloading soil point.
2, earthwork construction method according to claim 1 is characterized in that: dig annular infiltration ditch around described cofferdam, be withdrawn in the described muddy water mixer with water pump and recycle infiltering water in the ditch.
3, earthwork construction method according to claim 1 is characterized in that: described cofferdam is a fenestral fabric, precipitates step by step to reach the mud that makes in the cofferdam, and the clear water in the final stage grid cofferdam is withdrawn in the described muddy water mixer with water pump and recycles.
4, earthwork construction method according to claim 1, it is characterized in that: the described places such as river levee that soil point can be selected in highway that needs build or reinforcing, reservoir dike of unloading, the cofferdam is built in this place, the slurry transportation that will transport in the muddy water mixer is in the cofferdam, then the mud in the cofferdam is adopted forced-ventilated water method, make the mud moisture in the cofferdam be reduced to the engineering design requirement; Carry out disposable shock compaction with impacting to grind then, make thickness native compactness in 6 meters scopes reach the standard-required of building highway roadbed, the still available water pump of the water of discharge is withdrawn in the described muddy water mixer and recycles.
CNB2006100174916A 2006-03-02 2006-03-02 Earthwork construction method Expired - Fee Related CN100383347C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2006100174916A CN100383347C (en) 2006-03-02 2006-03-02 Earthwork construction method

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Application Number Priority Date Filing Date Title
CNB2006100174916A CN100383347C (en) 2006-03-02 2006-03-02 Earthwork construction method

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CN1814918A true CN1814918A (en) 2006-08-09
CN100383347C CN100383347C (en) 2008-04-23

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101435197B (en) * 2007-11-13 2011-07-20 郑鸿彰 Method for implementing rapid construction of pit earthwork at raining season
CN102733431A (en) * 2012-06-27 2012-10-17 杨世新 Method for excavating brine trench by using rotary drill
CN103394500A (en) * 2013-08-05 2013-11-20 顾建华 Alkaline residue processing method using slurry
CN104695497A (en) * 2014-12-30 2015-06-10 无锡三和重工机械有限公司 Earthmoving machine construction technology for large earth and rock engineering

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL8600941A (en) * 1986-04-14 1987-11-02 Ir Reijer Nicolaas Van Weezenb DEVICE FOR MOVING SEDIMENT UNDER WATER AND METHOD FOR USING SUCH DEVICE
JPH07109884A (en) * 1993-10-13 1995-04-25 Taisei Corp Protecting method for excavated hole wall
FR2864843B1 (en) * 2004-01-06 2006-03-03 Lyonnaise Eaux France DEVICE FOR REPLACING TRENCH PIPES
CN1718944A (en) * 2005-08-04 2006-01-11 陈治彬 Method for cleaning reservoir sedimentation and remote transfering settled silt

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101435197B (en) * 2007-11-13 2011-07-20 郑鸿彰 Method for implementing rapid construction of pit earthwork at raining season
CN102733431A (en) * 2012-06-27 2012-10-17 杨世新 Method for excavating brine trench by using rotary drill
CN102733431B (en) * 2012-06-27 2014-07-30 杨世新 Method for excavating brine trench by using rotary drill
CN103394500A (en) * 2013-08-05 2013-11-20 顾建华 Alkaline residue processing method using slurry
CN104695497A (en) * 2014-12-30 2015-06-10 无锡三和重工机械有限公司 Earthmoving machine construction technology for large earth and rock engineering

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