JP2007191856A - Grouting method - Google Patents

Grouting method Download PDF

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JP2007191856A
JP2007191856A JP2006008276A JP2006008276A JP2007191856A JP 2007191856 A JP2007191856 A JP 2007191856A JP 2006008276 A JP2006008276 A JP 2006008276A JP 2006008276 A JP2006008276 A JP 2006008276A JP 2007191856 A JP2007191856 A JP 2007191856A
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injection
ground
bag
water
holding material
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JP4097671B2 (en
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Shunsuke Shimada
俊介 島田
Tsutomu Oya
勉 大矢
Koichi Inagawa
浩一 稲川
Toyoichiro Yoshida
豊一郎 吉田
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Kyokado Engineering Co Ltd
Nittoc Constructions Co Ltd
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Kyokado Engineering Co Ltd
Nittoc Constructions Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To inject grout into a place, based on a plan, in ground through a permeable hole wall retaining material with an upper part, partially subjected to impermeable working, in such a manner that the more grout is injected into a lower part. <P>SOLUTION: An injection pipe device X is inserted into a drilled hole 9; subsequently, a bag body 4 is filled with a curable suspension, and expanded to form a bag packer 3; and the grout is injected from an outer pipe exhaust port 5 between the bag packers 3 and 3, so that the ground 6 can be solidified. In this case, the permeable hole wall retaining material 8 partially subjected to the impermeable working is mounted between the bag packers 3 and 3. The more grout is injected in the lower part through the retaining material 8. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、例えば地盤の液状化防止に使用される地盤注入工法に係り、詳細には既設建造物直下の基礎地盤改良等、注入管を斜め方向、あるいは水平方向に挿入して削孔壁の崩壊を防止しながら、地盤を急速かつ確実に固結する地盤注入工法に係り、特に、注入管外壁に、上方に部分的に不透水加工の施された透水性孔壁保持材を装着し、この保持材を通して下方向への流線を多くし、これにより注入量を下方向に多くして地盤中の計画通りの場所に注入材を注入する地盤注入工法に関する。   The present invention relates to a ground injection method used for preventing ground liquefaction, for example, and more specifically, to improve the foundation ground directly under an existing building, and by inserting an injection pipe obliquely or horizontally, In connection with the ground injection construction method that quickly and surely consolidates the ground while preventing collapse, in particular, the outer wall of the injection pipe is fitted with a water-permeable hole wall holding material that is partially impervious to the upper part, The present invention relates to a ground injection construction method in which the flow line is increased downward through the holding material, thereby increasing the amount of injection downward and injecting the injection material into a planned place in the ground.

地盤の液状化防止等、既設建造物の基礎直下の地盤改良では、通常、大容量土の急速施工が望まれている。この種の技術として、従来、注入管外壁に袋体を間隔をあけて複数個取りつけ、かつ、袋体内部ならびに上下に隣接する袋体間に外管吐出口を開孔した注入管装置を地盤の削孔中に挿入し、次いで前記袋体内部に開孔する外管吐出口から袋体中に硬化性懸濁液を充填し、膨らませて袋パッカを形成するとともに、上下に隣接する袋パッカ間に開孔する外管吐出口から注入材を注入して前記地盤を固結する地盤注入工法であって、注入管外壁の上下に隣接する袋パッカ間に透水性孔壁保持材を装着し、この保持材を通して注入材を上下に隣接する袋パッカ間に開孔する外管吐出口から地盤中に注入する工法が知られている。   For ground improvement directly under the foundation of existing buildings, such as prevention of ground liquefaction, rapid construction of large-capacity soil is usually desired. As this type of technology, a conventional infusion tube device in which a plurality of bags are attached to the outer wall of the infusion tube at intervals and an outer tube discharge port is opened between the inside of the bag and between adjacent upper and lower bags. Then, the bag body is filled with a curable suspension through an outer tube discharge port that is opened in the bag body and then inflated to form a bag packer. A ground injection method in which an injection material is injected from an outer tube discharge port that is opened in between to consolidate the ground, and a water permeable hole wall holding material is attached between bag packers adjacent to the upper and lower sides of the outer wall of the injection tube. A method is known in which an injection material is injected into the ground through the holding material through an outer tube discharge port that is opened between adjacent bag packers.

さらに、この種の技術として、改良すべき地盤中に水平または斜めにボーリングし、得られたボーリング孔中に、注入管外壁に袋体を間隔をあけて複数個取りつけ、かつ袋体内部ならびに隣接する袋体間に外管吐出口を開孔した注入管装置を挿入し、次いで前記袋体内部に開孔する外管吐出口から袋体中に硬化性懸濁液を充填し、膨らませて袋パッカを形成するとともに、前記隣接するパッカ間に開孔する外管吐出口から注入材を注入して前記地盤を固結する地盤注入工法であって、前記注入管外壁の隣接する袋パッカ間に透水性孔壁保持材を装着し、この保持材を通して注入材を隣接する袋パッカ間に開孔する外管吐出口から地盤中に注入する工法が知られている。   Furthermore, as this kind of technology, boring is carried out horizontally or diagonally in the ground to be improved, and a plurality of bags are attached to the outer wall of the injection tube at intervals in the obtained boring hole, and inside and adjacent to the bag. An injection tube device having an outer tube discharge port opened between the bag bodies to be inserted, and then the bag body is filled with a curable suspension through the outer tube discharge port opened in the bag body, and the bag is inflated. A ground injection method for forming a packer and injecting an injection material from an outer tube discharge port opened between the adjacent packers to consolidate the ground, and between adjacent bag packers on the outer wall of the injection tube There is known a construction method in which a water-permeable hole wall holding material is mounted and an injection material is injected into the ground through the holding material through an outer tube discharge port that opens between adjacent bag packers.

しかし、上述の公知技術はいずれも注入管外壁の隣接する袋パッカ間に透水性孔壁保持材を装着し、この保持材を通して注入材を隣接する袋パッカ間に開孔する外管吐出口から地盤に注入するものであるから、削孔壁の崩壊を防止しながら、地盤を急速かつ確実に固結する。   However, all of the above-mentioned known techniques attach a water-permeable hole wall holding material between adjacent bag packers on the outer wall of the injection tube, and from the outer tube discharge port that opens the injection material between adjacent bag packers through this holding material. Since it is injected into the ground, the ground is quickly and reliably consolidated while preventing the drilling wall from collapsing.

しかし、地盤は通常、図2および図3に示されるように、深いほど水圧が大きく、浅くなるにつれて小さくなる。このため、注入材を図2に示すような計画範囲に注入し、固結しようとしても、深い場所で水圧が大きいため、下方からの流線が小さくなり、実際に固結された範囲は計画範囲とは異なり、やや上方が固結され、計画通りの固結は不可能である。
特願2004−124153号明細書
However, as shown in FIG. 2 and FIG. 3, the ground usually has a greater water pressure as it becomes deeper and becomes smaller as it becomes shallower. For this reason, even if the injection material is injected into the planned area as shown in FIG. Unlike the range, the upper part is consolidated slightly and cannot be consolidated as planned.
Japanese Patent Application No. 2004-124153

そこで、本発明の課題は注入管外壁に、上方に部分的に不透水加工の施された透水性孔壁保持材を装着し、この保持材を通して下方向への流線を多くし、注入量を下方向に多くして地盤中の計画通りの場所に注入材を注入し、上述の公知技術に存する欠点を改良した地盤注入工法を提供することにある。   Therefore, an object of the present invention is to attach a water-permeable hole wall holding material partially impervious to the upper part to the outer wall of the injection pipe, increase the flow line downward through this holding material, and An object of the present invention is to provide a ground injection construction method in which the injection material is injected at a planned location in the ground by increasing the amount of the downward direction, and the above-described disadvantages of the known technology are improved.

上述の課題を解決するため、本発明によれば、注入管外壁に袋体を間隔をあけて複数個取りつけ、かつ袋体内部ならびに隣接する袋体間に外管吐出口の開孔された注入管装置を地盤の削孔中に挿入し、次いで前記袋体内部に開孔された外管吐出口から袋体中に硬化性懸濁液を填充し、膨らませて袋パッカを形成するとともに、隣接する袋パッカ間に開孔された外管吐出口から注入材を注入して前記地盤を固結する地盤注入工法において、前記隣接する袋パッカ間の注入管外壁に部分的に不透水加工の施された透水性孔壁保持材を装着してなり、この保持材を通して注入材を、隣接する袋パッカ間の外管吐出口から地盤中に下方への流線を多くして注入量を下方に多く注入することを特徴とする。   In order to solve the above-described problems, according to the present invention, a plurality of bags are attached to the outer wall of the injection tube with a space therebetween, and an injection in which an outer tube discharge port is opened in the bag and between adjacent bags is provided. Insert the tube device into the ground drilling hole, then fill the bag body with the curable suspension from the outer tube discharge port opened inside the bag body, inflate to form the bag packer, and adjacent In a ground injection method in which an injection material is injected from an outer tube discharge port opened between the bag packers to be consolidated and the ground is consolidated, the outer wall of the injection tube between the adjacent bag packers is partially imperviously processed. The permeable hole wall holding material is attached, and the injection material is passed through this holding material, and the flow rate downwards from the outer tube discharge port between adjacent bag packers into the ground is increased to lower the injection amount. It is characterized by a large amount of injection.

上記注入管装置は地盤中に水平または斜めにボーリングされた削孔中に挿入される。また、隣接する袋パッカ間の注入管外壁には、上方に部分的に不透水加工の施された透水性孔壁保持材が装着される。そして、この保持材を通して下方向への流線を多くして注入量を下方向に多く注入する。   The injection tube device is inserted into a drilled hole drilled horizontally or obliquely in the ground. In addition, a water-permeable hole wall holding material that is partially impervious to the upper part is attached to the outer wall of the injection pipe between adjacent bag packers. Then, the number of flow lines in the downward direction is increased through the holding material to inject a large amount of injection in the downward direction.

本発明は上述のように、注入管外壁に、上方に部分的に不透水加工の施された透水性孔壁保持材が装着し、この保持材を通して下方向への流線を多くして注入量を下方向に多くしたから、地盤中の計画通りの場所に注入材を注入することができる。   In the present invention, as described above, a water-permeable hole wall holding material partially impervious to the upper part is attached to the outer wall of the injection pipe, and injection is performed by increasing the downward flow line through this holding material. Since the amount was increased downward, the injection material can be injected into the ground as planned.

以下、本発明を添付図面を用いて詳述する。   Hereinafter, the present invention will be described in detail with reference to the accompanying drawings.

図1は地盤を改良する際の標準的な注入管配置を表した説明図であって、地盤の改良範囲内に注入管を鉛直に配置する施工例および地盤の改良範囲内に注入管を水平に配置する施工例を示す。   FIG. 1 is an explanatory diagram showing a standard injection pipe arrangement for improving the ground, in which an injection pipe is arranged vertically within the ground improvement range, and the injection pipe is horizontally placed within the ground improvement range. An example of construction to be placed in is shown below.

図2は注入管配置を水平方向にした際の注入状況の説明図である。図2に示されるように、通常、地盤内では深くなるにつれて水圧が高く、浅い位置では水圧は小さいと推測される。この場合、注入管装置Xから図9に示される透水性孔壁保持材8を通して地盤6中に均一に注入すると、注入材の流線が均等にでてくる。しかし、水圧は下方が上方よりも大きいため、注入材は上方に向かいやすく、このため固結範囲は当初の計画範囲よりも実際には上方に改良される。   FIG. 2 is an explanatory view of the injection situation when the injection tube arrangement is in the horizontal direction. As shown in FIG. 2, it is generally estimated that the water pressure increases as the depth in the ground increases, and the water pressure decreases at a shallow position. In this case, if the injection pipe device X is uniformly injected into the ground 6 through the water-permeable hole wall holding material 8 shown in FIG. 9, the flow lines of the injection material appear evenly. However, since the water pressure is higher in the lower part than in the upper part, the injection material tends to go upward, so that the consolidation range is actually improved upward from the originally planned range.

図3は水平方向対応注入方式の概念図である。図2の現象を防ぐためには図3に示されるように、下方向に流線を多くして下方向の注入量を多くすることが必要である。   FIG. 3 is a conceptual diagram of an injection method corresponding to the horizontal direction. In order to prevent the phenomenon of FIG. 2, as shown in FIG. 3, it is necessary to increase the amount of downward injection by increasing the number of streamlines in the downward direction.

図4は下方向に流線を増やすための方式を表した説明図である。すなわち、図4に示されるように、注入浸透源に図9に示される透水性孔壁保持材8を装着し、保持材8の上部に部分的に不透水加工を施して不透水部分18を形成することにより下方への注入量を多くすることができる。   FIG. 4 is an explanatory diagram showing a method for increasing the streamlines in the downward direction. That is, as shown in FIG. 4, the water-permeable hole wall holding material 8 shown in FIG. 9 is attached to the injection permeation source, and the impermeable portion 18 is formed by partially impermeable to the upper portion of the holding material 8. By forming, the downward injection amount can be increased.

図5は下方向に流線を増やすための他の方式を表した説明図である。すなわち、図5に示されるように、図4と同様、注入浸透源に図9に示される透水性孔壁保持材8を装着し、この保持材8の上部に水膨張性ゴム16を張りつけて部分的に不透水部分18を形成する。この水膨張性ゴム16は給水により膨張して孔壁上部密着し、上部への注入量が小さくなる。   FIG. 5 is an explanatory diagram showing another method for increasing streamlines in the downward direction. That is, as shown in FIG. 5, the water-permeable hole wall holding material 8 shown in FIG. 9 is attached to the injection permeation source as in FIG. 4, and the water-expandable rubber 16 is attached to the upper portion of the holding material 8. Partially impermeable portions 18 are formed. The water-expandable rubber 16 expands by supplying water and adheres to the upper portion of the hole wall, so that the amount injected into the upper portion is reduced.

上述の本発明原理を具体的化すると、図6および図7のようになる。図6は本発明に用いられる鉛直施工の注入管装置の一具体例の断面図、図7は本発明に用いられる水平施工の注入管装置の一具体例の断面図である。まず、図6において、注入管1の外壁2には袋パッカ3を形成する袋体4を間隔をあけて複数個取りつけ、かつ、袋体4の内部ならびに上下に隣接する袋体4、4間に開孔する外管吐出口5、5・・・5を備えて注入管装置Xを構成する。   The above-described principle of the present invention is embodied as shown in FIGS. FIG. 6 is a cross-sectional view of a specific example of an injection pipe device for vertical construction used in the present invention, and FIG. 7 is a cross-sectional view of a specific example of an injection pipe device for horizontal construction used in the present invention. First, in FIG. 6, a plurality of bag bodies 4 forming a bag packer 3 are attached to the outer wall 2 of the injection tube 1 at intervals, and between the bag bodies 4 and 4 adjacent to each other inside and above and below the bag body 4. The outer tube discharge ports 5, 5,...

このようにして構成される注入管装置Xは本発明では地盤6中に設けられた削孔7中に挿入する。次いで、袋体4の内部に開孔する吐出口5から袋体4中に硬化性懸濁液を注入管1を通して填充し、膨らませて袋パッカ3を形成する。そして、上下に隣接する袋パッカ3、3間に開孔する外管吐出口5から注入管1を通して注入材を、削孔壁9から地盤6中に注入し、地盤6を固結する。   In the present invention, the injection tube device X configured as described above is inserted into a drilling hole 7 provided in the ground 6. Next, a curable suspension is filled into the bag body 4 through the injection tube 1 from the discharge port 5 that is opened in the bag body 4 and inflated to form the bag packer 3. And an injection material is inject | poured in the ground 6 from the drilling wall 9 from the outer tube discharge port 5 opened between the bag packers 3 and 3 adjacent on the upper and lower sides, and the ground 6 is solidified.

袋体4は硬化性懸濁液の一部を通過する透水性袋体で構成される。この種の透水性袋体として、織布、不織布、透水性合成樹脂、網体、ドレーン材等が用いられる。具体的には例えば、東レ(株)製のスパンボンド不織布G2040、G2050が用いられる。G2040は目付40(g/m)、厚み0.16(mm)、引張強度たて16(kgf/5cm)、よこ8(kgf/5cm)、透水係数2.13×10(cm/秒)の特性を有し、G2050目付50(g/m)、厚み0.21(mm)、引張強度たて20(kgf/5cm)、よこ10(kgf/5cm)、透水係数3.14×10(cm/秒)の特性を有する。その他、不透水性シートやゴム袋等も用いることができるが、透水性を有する方が懸濁液が加圧により密に詰まって強固なパッカとなるので好ましい。 The bag body 4 is composed of a water-permeable bag body that passes through a part of the curable suspension. As this type of water permeable bag, woven fabric, non-woven fabric, water permeable synthetic resin, net, drain material and the like are used. Specifically, for example, spunbond nonwoven fabrics G2040 and G2050 manufactured by Toray Industries, Inc. are used. G2040 has a basis weight of 40 (g / m 2 ), a thickness of 0.16 (mm), a tensile strength of 16 (kgf / 5 cm 2 ), a width of 8 (kgf / 5 cm 2 ), and a water permeability of 2.13 × 10 2 (cm G2050 weight per unit area (g / m 2 ), thickness 0.21 (mm), tensile strength 20 (kgf / 5 cm 2 ), weft 10 (kgf / 5 cm 2 ), water permeability coefficient 3.14 × 10 2 (cm / sec) characteristics. In addition, a water-impermeable sheet, a rubber bag, or the like can be used, but it is preferable to have water permeability because the suspension is tightly packed by pressurization and becomes a strong packer.

また、袋体4は削孔7の径よりも大きな直径を有する。具体的には、好ましくは袋体4は削孔径よりも1.2〜5.0倍の直径を有する。このような袋体4中に懸濁液を填充し、膨らませて袋パッカ3を形成すると、袋体4の直径が削孔7の径よりも大きいため、袋パッカ3周りの削孔壁9が圧密される。これにより袋パッカ3周りの地盤領域に注入材の浸透しにくい、密な地盤内パッカ10を形成する。   Further, the bag body 4 has a diameter larger than the diameter of the hole 7. Specifically, the bag body 4 preferably has a diameter that is 1.2 to 5.0 times the diameter of the hole. When the bag packer 3 is formed by filling the bag body 4 with the suspension and inflating the bag pack 4, the diameter of the bag body 4 is larger than the diameter of the hole 7. Consolidated. This forms a dense ground packer 10 in which the injected material is less likely to penetrate into the ground region around the bag packer 3.

袋体4の直径が1.2倍よりも小さいと、袋パッカ3周りの削孔壁9の圧密が少ない。また、5.0倍よりも大きいと、袋体4が填充圧力で破れやすくなる。すなわち、袋体4に張力が均等に生じず、周辺土層の弱い部分に接触する袋体部分が不均質に加圧されて袋体が破断されやすくなる。   When the diameter of the bag body 4 is smaller than 1.2 times, the hole wall 9 around the bag packer 3 is less compacted. Moreover, when larger than 5.0 times, the bag body 4 will be easily torn by the filling pressure. That is, the bag body 4 is not evenly tensioned, and the bag body portion that contacts the weak portion of the surrounding soil layer is pressurized non-uniformly and the bag body is likely to be broken.

本発明に用いられる硬化性懸濁液としてはセメント懸濁液等、任意の懸濁液が挙げられる。このような懸濁液を例えば平均0.05mmの目のあいた不織布からなる透水性袋体4に填充して膨らませ、袋パッカ3を形成すると、粒径0.05mmよりも細かい粒子を含む懸濁液が袋体4から外側に通過し、圧密された削孔壁に浸透硬化する。このとき、袋体4内は高濃度で硬化して高強度の袋パッカ3を形成するとともに、袋パッカ3周りの地盤領域に注入材が浸透しにくい、密で強固な地盤内パッカ10を形成する。すなわち、例えば、不織布からなる袋体4中の硬化性懸濁液が加圧されると、この一部が袋体4から外部の地盤に浸透して地盤を強固に固結し、地盤内パッカ10を形成する。   The curable suspension used in the present invention includes any suspension such as a cement suspension. When such a suspension is filled in a permeable bag 4 made of nonwoven fabric with an average of 0.05 mm, for example, and inflated to form a bag packer 3, a suspension containing particles finer than a particle size of 0.05 mm The liquid passes from the bag body 4 to the outside and penetrates and hardens on the compacted hole wall. At this time, the bag body 4 is hardened at a high concentration to form a high-strength bag packer 3 and a dense and strong ground packer 10 in which the injection material does not easily penetrate into the ground region around the bag packer 3. To do. That is, for example, when the curable suspension in the bag 4 made of non-woven fabric is pressurized, a part of this penetrates from the bag 4 to the external ground to firmly solidify the ground, and the ground packer 10 is formed.

この状態で、隣接する上下の袋パッカ3、3間の外管吐出口5から、ゴムスリーブ15を押し拡げて図9に示される透水性孔壁保持材8で保持された大きな柱状空間を通し、さらに削孔壁9を通して地盤6中に注入材を注入すると、注入材は地盤6中で地盤内パッカ10に遮断されて上下方向に逸脱せず、水平方向の注入対象土層に矢印方向に、より遠くに、広く浸透し、この結果、削孔間隔(注入孔間隔)を広くとって削孔数を少なくすることができ、注入操作が簡略化されるとともに、経済的にも有利である。   In this state, the rubber sleeve 15 is pushed out from the outer tube discharge port 5 between the adjacent upper and lower bag packers 3 and 3 to pass through a large columnar space held by the water-permeable hole wall holding material 8 shown in FIG. Further, when the injection material is injected into the ground 6 through the drilling wall 9, the injection material is blocked by the ground packer 10 in the ground 6 and does not deviate in the vertical direction, and in the direction of the arrow in the horizontal injection target soil layer. , It penetrates farther, and as a result, the number of holes can be reduced by widening the hole interval (injection hole interval), and the injection operation is simplified and economically advantageous. .

上述の本発明にかかる利点を一層増大させるためには、袋体4の長さをLとし、隣接する袋体4、4間の間隙をAとした場合、A≦2Lの関係にあることが好ましい。このような関係を維持することにより、本発明の上述利点は一層増大する。   In order to further increase the advantages of the present invention described above, when the length of the bag body 4 is L and the gap between the adjacent bag bodies 4 and 4 is A, there is a relationship of A ≦ 2L. preferable. By maintaining such a relationship, the above-described advantages of the present invention are further increased.

図7は本発明の地盤注入工法の水平施工に用いられる注入管装置の一例を表した説明図であって、注入管1の外壁2には袋体パッカ3を形成する上述と同様の袋体4を間隔をあけて複数個取りつけ、かつ、袋体4の内部に開孔する外管吐出口5、5・・・5ならびに隣接する袋体4、4間に開孔する外管吐出口5、5・・・5を備えて注入管装置Xを構成する。   FIG. 7 is an explanatory view showing an example of an injection pipe device used for horizontal construction of the ground injection method of the present invention. The same bag body as described above in which a bag body packer 3 is formed on the outer wall 2 of the injection pipe 1. .., And outer tube discharge ports 5, 5... 5 opened inside the bag body 4 and outer tube discharge ports 5 opened between adjacent bag bodies 4, 4. The injection tube device X is configured with 5.

このようにして構成される注入管装置Xは本発明では地盤6中に設けられた削孔7中に挿入する。次いで、袋体4の内部に開孔する吐出口5から袋体4中に上述と同様の硬化性懸濁液を注入管1を通して填充し、膨らませて袋パッカ3を形成する。そして、隣接する袋パッカ3、3間に開孔する外管吐出口5から注入管1、例えば後後述する図8の内管12を通して注入材を削孔壁9から地盤6中に注入し、地盤6を固結する。   In the present invention, the injection tube device X configured as described above is inserted into a drilling hole 7 provided in the ground 6. Next, a curable suspension similar to that described above is filled into the bag body 4 through the injection tube 1 from the discharge port 5 that opens in the bag body 4 and is inflated to form the bag packer 3. Then, an injection material is injected from the hole wall 9 into the ground 6 through the injection tube 1, for example, the inner tube 12 of FIG. 8 to be described later, from the outer tube discharge port 5 opened between the adjacent bag packers 3, 3. The ground 6 is consolidated.

本発明の特徴は注入管1の外壁2に隣接する袋体4、4間に部分的に不透水性加工の施された図9に示される透水性孔壁保持材8を装着したことに存する。注入材はこの保持材8を通じて、隣接する袋体4、4間の外管吐出口5、5・・・5から地盤6中に注入される。注入材としては、活性シリカ、コロイダルシリカ、シリカゾル等が用いられる。   A feature of the present invention resides in that a water-permeable hole wall holding material 8 shown in FIG. 9 is provided between the bags 4 and 4 adjacent to the outer wall 2 of the injection tube 1 and partially impervious to water. . The injection material is injected into the ground 6 through the holding material 8 from the outer tube discharge ports 5 between the adjacent bag bodies 4, 4. As the injection material, active silica, colloidal silica, silica sol or the like is used.

透水性孔壁保持材8に部分的に不透水性加工を施すには、透水性孔壁保持材の任意の個所、特に上方の個所に部分的に目づまりを起こすか、あるいは上方の個所に部分的に水膨張性ゴムを張りつけるか、さらには上方の個所に部分的にポリウレタンゴムシート等のシートを張りつけることにより不透水性加工の施す。   In order to partially impregnate the water-permeable hole wall holding material 8, the water-permeable hole wall holding material 8 is partially clogged at an arbitrary portion of the water-permeable hole wall holding material, particularly at an upper portion, or is partially formed at an upper portion. A water-expandable rubber is applied, or a sheet such as a polyurethane rubber sheet is partially attached to the upper portion to perform impermeable processing.

本発明では、このような不透水性部分18が部分的に上方に有する透水性孔壁保持材8を、隣接する袋パッカ3、3間に装着することにより、図3〜図5に示されるように下方向に流線を多くして下方向への注入量を多くし、この結果図2に示されるような計画範囲からはずれた改良範囲の固結を防止する。   In the present invention, the water-permeable hole wall holding material 8 which the water-impermeable portion 18 has partially above is mounted between the adjacent bag packers 3 and 3 to be shown in FIGS. Thus, the streamline is increased in the downward direction to increase the amount of injection in the downward direction, and as a result, the consolidation of the improved range deviating from the planned range as shown in FIG. 2 is prevented.

本発明では、この透水性孔壁保持材8を装着することにより、上下に隣接する袋パッカ3、3間を長くとっても削孔壁9は崩壊しない。このため、大きな柱状空間を保持でき、大きな吐出量で低圧注入が可能であり、しかも注入孔間隔を大きくとった広範囲の浸透注入が可能になる。   In the present invention, by mounting the water permeable hole wall holding member 8, the hole wall 9 does not collapse even if the gap between the upper and lower bag packers 3, 3 is long. Therefore, a large columnar space can be maintained, low-pressure injection can be performed with a large discharge amount, and a wide range of permeation injection with a large injection hole interval can be achieved.

なお、本発明に用いられる透水性孔壁保持材8は網体から製造されてもよいが、その他織布、不織布、透水性合成樹脂、各種ドレーン材、合成樹脂繊維や植物繊維をマット状に成形した材料等、透水性を有する種々の材料から図9に示される形状に製造することができる。   In addition, although the water-permeable hole wall holding material 8 used for this invention may be manufactured from a net | network body, other woven fabric, a nonwoven fabric, water-permeable synthetic resin, various drain materials, a synthetic resin fiber, and a vegetable fiber are made into mat shape. 9 can be manufactured from various materials having water permeability such as a molded material.

図8は注入管1として二重管ダブルパッカ1を用いた本発明に用いられる注入管装置Xを示す。図8において、二重管ダブルパッカ1は外管11と内管12から構成される。この内管12は先端の管壁に内管吐出口13を設け、かつ、この内管吐出口13を挟むように一対のパッカ14、14を備えて構成され、左右に移動自在である。   FIG. 8 shows an injection tube apparatus X used in the present invention using a double tube double packer 1 as the injection tube 1. In FIG. 8, the double tube double packer 1 includes an outer tube 11 and an inner tube 12. The inner tube 12 is provided with an inner tube discharge port 13 on the tube wall at the tip, and is provided with a pair of packers 14 and 14 so as to sandwich the inner tube discharge port 13, and is movable to the left and right.

そして、まず、内管12を移動して袋体4の各吐出口5に合わせ、これら各吐出口5、5・・・5からゴムスリーブ15を押し拡げて硬化性懸濁液を袋体中4に填充して膨らませ、袋パッカ3を形成する。このとき、袋体4の直径が削孔7の径よりも大きいため、袋パッカ3によってパッカの周りの削孔壁9が圧密される。しかも、袋体4が透水性袋体であるため、袋体4から通過した硬化性懸濁液が圧密された削孔壁9に浸透硬化し、これにより袋体4内を高濃度で硬化して高強度の袋パッカ3を形成するとともに、袋パッカ3周りの地盤6領域に注入材の浸透しにくい、密な土中パッカ10を形成する。   First, the inner tube 12 is moved so as to be aligned with each discharge port 5 of the bag body 4, and the rubber sleeve 15 is expanded from each of the discharge ports 5, 5,. 4 is filled and inflated to form a bag packer 3. At this time, since the diameter of the bag body 4 is larger than the diameter of the hole 7, the hole wall 9 around the packer is consolidated by the bag packer 3. In addition, since the bag body 4 is a water-permeable bag body, the curable suspension that has passed from the bag body 4 penetrates and cures into the compacted hole 9 and thereby hardens the interior of the bag body 4 at a high concentration. In addition to forming the high-strength bag packer 3, the dense underground packer 10 in which the injected material is difficult to penetrate into the ground 6 region around the bag packer 3 is formed.

地盤内パッカ10を形成してのち、内管12を隣接する袋パッカ3、3間の吐出口5に合わせ、ここから内管12および吐出口5を通し、さらに透水性孔壁保持材8で保持された柱状空間を通して注入材を削孔壁9から地盤6中に注入すると、注入材は左右方向に逸脱せず、上下方向の注入対象土層に矢印方向により遠くに広く浸透し、この結果、削孔間隔(注入孔間隔)を広くとって削孔数を少なくすることができ、注入操作が簡略化されるとともに経済的にも有利である。   After forming the ground inner packer 10, the inner tube 12 is aligned with the discharge port 5 between the adjacent bag packers 3, 3, and the inner tube 12 and the discharge port 5 are passed through the inner tube 12. When the injected material is injected from the drilling wall 9 into the ground 6 through the retained columnar space, the injected material does not deviate in the left-right direction, and penetrates widely into the soil layer to be injected in the vertical direction farther in the direction of the arrow. Further, it is possible to reduce the number of holes by widening the hole interval (injection hole interval), which simplifies the injection operation and is economically advantageous.

なお、図7および図8の注入管装置Xにおいて、隣接する袋パッカ3、3間の吐出口5は複数個設けてもよい。この場合、複数の吐出口5は内管12の一対のパッカ14、14内に位置するように設けられ、これにより、複数の吐出口5からの同時注入が可能となる。もちろん内管12の吐出口13を複数の吐出口13にそれぞれ順次に合わせて注入してもかまわない。また、本発明において、図7、図8に示される最も遠い個所の袋パッカ3は必ずしも必要としない。また、図8において、内管パッカ14は膨縮可能なパッカであって、内管に設けられたパッカ用流体流路(図示せず)からの流体圧によって膨張してパッカが形成されてもよい。   7 and 8, a plurality of discharge ports 5 between the adjacent bag packers 3 and 3 may be provided. In this case, the plurality of discharge ports 5 are provided so as to be positioned in the pair of packers 14 and 14 of the inner tube 12, thereby enabling simultaneous injection from the plurality of discharge ports 5. Of course, the discharge ports 13 of the inner tube 12 may be sequentially injected into the plurality of discharge ports 13 respectively. In the present invention, the farthest bag packer 3 shown in FIGS. 7 and 8 is not necessarily required. In FIG. 8, an inner tube packer 14 is an inflatable / shrinkable packer, and is expanded by a fluid pressure from a packer fluid passage (not shown) provided in the inner tube to form a packer. Good.

注入管を地盤の斜め方向、あるいは水平方向に挿入して長尺柱状空間から注入材を注入し、既設建造物直下の基礎地盤を液状化防止注入するに当り、注入管外壁の外管吐出口を有する上下に隣接する袋パッカ間に上方に部分的に不透水加工の施された透水性孔壁保持材を装着し、外管吐出口からの注入材を保持材を通して柱状空間から地盤中に注入するようにしたから、下方への流線が多くなって下方への注入量が多くなり、このため、所望の計画範囲に注入が可能である。また、外管吐出口は透水性孔壁保持材によって保護され、このため削孔壁が崩壊して柱状空間が埋まって、注入が困難になるようなことはなく、たとえ、注入管を斜め方向あるいは水平方向に挿入しても削孔壁が崩壊せずに注入が良好に達成される。このため、本発明は既設建造物直下の地盤の液状化防止に利用性が高い。   Inserting the injection pipe diagonally or horizontally into the ground to inject the injection material from the long columnar space, and injecting the foundation ground directly under the existing building to prevent liquefaction injection, the outer pipe discharge port on the outer wall of the injection pipe A water-permeable hole wall holding material partially impervious to the upper part is installed between the upper and lower adjacent bag packers, and the injection material from the outer pipe discharge port is passed through the holding material into the ground from the columnar space. Since injection is performed, the number of downward flow lines increases and the amount of downward injection increases, so that the injection can be performed in a desired planned range. Also, the outer tube discharge port is protected by the water-permeable hole wall holding material, so that the drilling wall does not collapse and the columnar space is buried, making it difficult to inject, even if the injection tube is inclined Or even if it inserts in a horizontal direction, injection | pouring is achieved satisfactorily, without a hole wall collapsing. For this reason, the present invention is highly useful for preventing liquefaction of the ground directly under an existing building.

地盤を改良する際の標準的な注入管配置を表した説明図である。It is explanatory drawing showing the standard injection pipe arrangement | positioning at the time of improving a ground. 注入管配置を水平方向にした際の注入状況の説明図である。It is explanatory drawing of the injection | pouring condition at the time of making an injection tube arrangement | positioning into a horizontal direction. 水平方向対応注入方式の概念図である。It is a conceptual diagram of the injection method corresponding to a horizontal direction. 下方向に流線を増やすための方式を表した説明図である。It is explanatory drawing showing the system for increasing a streamline to a downward direction. 下方向に流線を増やすための他の方式を表した説明図である。It is explanatory drawing showing the other system for increasing a streamline to a downward direction. 本発明に用いられる鉛直施工の注入管装置の一具体例の断面図である。It is sectional drawing of one specific example of the injection pipe apparatus of the perpendicular construction used for this invention. 本発明に用いられる水平施工の注入管装置の一具体例の断面図である。It is sectional drawing of one specific example of the horizontal construction injection pipe apparatus used for this invention. 二重管ダブルパッカを用いた本発明に用いられる注入管装置の断面図である。It is sectional drawing of the injection tube apparatus used for this invention using a double tube double packer. 本発明に用いられる透水性孔壁保持材の一具体例の斜視図である。It is a perspective view of one specific example of the water-permeable hole wall holding material used for this invention.

符号の説明Explanation of symbols

X 注入管装置
1 注入管
2 外壁
3 袋パッカ
4 袋体
5 外管吐出口
6 地盤
7 削孔
8 透水性孔壁保持材
9 削孔壁
10 土中パッカ
11 外管
12 内管
13 内管吐出口
14 パッカ
15 ゴムスリーブ
16 水膨張性ゴム
17 地表面
18 不透水性部分
X injection pipe device 1 injection pipe 2 outer wall 3 bag packer 4 bag body 5 outer pipe discharge port 6 ground 7 drilling hole 8 permeable hole wall holding material 9 drilling wall 10 soil packer 11 outer pipe 12 inner pipe 13 inner pipe discharge Exit 14 Packer 15 Rubber sleeve 16 Water-expandable rubber 17 Ground surface 18 Impervious part

Claims (6)

注入管外壁に袋体を間隔をあけて複数個取りつけ、かつ袋体内部ならびに隣接する袋体間に外管吐出口の開孔された注入管装置を地盤の削孔中に挿入し、次いで前記袋体内部に開孔された外管吐出口から袋体中に硬化性懸濁液を填充し、膨らませて袋パッカを形成するとともに、隣接する袋パッカ間に開孔された外管吐出口から注入材を注入して前記地盤を固結する地盤注入工法において、前記隣接する袋パッカ間の注入管外壁に部分的に不透水加工の施された透水性孔壁保持材を装着してなり、この保持材を通して注入材を、隣接する袋パッカ間の外管吐出口から地盤中に下方への流線を多くして注入量を下方に多く、注入することを特徴とする地盤注入工法。   A plurality of bags are attached to the outer wall of the injection tube at intervals, and an injection tube device having an outer tube discharge port opened between the bag body and between adjacent bag bodies is inserted into the ground drilling hole, and then The bag body is filled with a curable suspension from the outer tube discharge port opened in the bag body and inflated to form a bag packer, and from the outer tube discharge port opened between adjacent bag packers. In the ground injection method for injecting an injection material and consolidating the ground, it is equipped with a water-permeable hole wall holding material partially impervious to the injection pipe outer wall between the adjacent bag packers, A ground injection construction method characterized in that the injection material is injected through the holding material through the outer tube discharge port between adjacent bag packers into the ground by increasing the flow line downward to increase the injection amount. 請求項1において、前記注入管装置を地盤中に水平または斜めにボーリングされた削孔中に挿入し、かつ隣接する袋パッカ間の注入管外壁に、上方に部分的に不透水加工の施された透水性孔壁保持材を装着し、この保持材を通して下方向への流線を多くし、これにより注入量を下方向に多くして地盤中に注入することを特徴とする請求項1に記載の地盤注入工法。   2. The injection pipe device according to claim 1, wherein the injection pipe device is inserted into a drilled hole drilled horizontally or obliquely in the ground, and the outer wall of the injection pipe between adjacent bag packers is partially impregnated with water. The water permeable hole wall holding material is attached, and the flow line is increased downward through the holding material, thereby increasing the injection amount downward and injecting into the ground. The ground injection method described. 請求項1において、前記透水性孔壁保持材に樹脂により部分的に目づまりを起こして不透水加工を施す請求項1に記載の地盤注入工法。   The ground injection construction method according to claim 1, wherein the water-permeable hole wall holding material is partially clogged with a resin so as to be impermeable. 請求項1において、前記透水性孔壁保持材に部分的に水膨張性ゴムを張りつけて不透水加工を施す請求項1に記載の地盤注入工法。   The ground injection method according to claim 1, wherein the water-permeable hole wall holding material is partially pasted with a water-expandable rubber to perform impermeable processing. 請求項1において、前記透水性孔壁保持材に部分的にシートを張りつけて不透水加工を施す請求項1に記載の地盤注入工法。   The ground injection construction method according to claim 1, wherein a sheet is partially attached to the water-permeable hole wall holding material to perform impermeable processing. 請求項5において、シートがポリウレタンゴムシートである請求項5に記載の地盤注入工法。
The ground injection method according to claim 5, wherein the sheet is a polyurethane rubber sheet.
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JP2012117290A (en) * 2010-12-01 2012-06-21 Fudo Tetra Corp Injection material injection structure in ground improvement and injection material injection method using the same
JP4827109B1 (en) * 2011-03-09 2011-11-30 強化土株式会社 Injection pipe device and ground injection method
JP2011140872A (en) * 2011-04-18 2011-07-21 Kyokado Kk Ground improvement method and device
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