JP2006138197A - Permeation structure and its construction method - Google Patents

Permeation structure and its construction method Download PDF

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JP2006138197A
JP2006138197A JP2005108600A JP2005108600A JP2006138197A JP 2006138197 A JP2006138197 A JP 2006138197A JP 2005108600 A JP2005108600 A JP 2005108600A JP 2005108600 A JP2005108600 A JP 2005108600A JP 2006138197 A JP2006138197 A JP 2006138197A
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JP4032396B2 (en
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Kunio Togashi
邦男 富樫
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ERUDEKKU KK
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a construction method of a permeation structure to refurbish an existing drainage system draining the rainwater to a sewage line, etc. to be a permeation system allowing the rainwater to penetrate into the underground. <P>SOLUTION: A through hole 15 is formed in a bottom wall 11 of a water-collecting basin 10. A steel pipe is driven into the ground through the through hole 15 and the earth and sand are pumped out of the steel pipe. A PVC pipe wrapped with a water-permeable sheet 3 is inserted into the steel pipe. The PVC pipe is filled with crushed stones 2 to the level of the bottom wall 11 of the water-collecting basin 10. Only the PVC pipe is pulled out of the steel pipe, and then the steel pipe is pulled out of the through hole 15. When the level of the crushed stones 2 subsides below the level of the bottom wall 11 of the water-collecting facility 10, the crushed stones 2 corresponding to the shortfall is supplied through the through hole 15, and the upper surface of the crushed stones 2 undergoes light roll-compaction. Then, the PVC pipe 5 is erected in the water-collecting facility 10 upward from the through hole 15. A length of the PVC pipe 5 is determined according to whether the rainwater is treated by a peak-cut system or a base-cut system. A filter 6 is detachably mounted on an upper opening part of the PVC pipe 5. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、集水施設に集水された雨水、下水等を地中に浸透させるための浸透構造体、及びその施工方法に関するものである。   The present invention relates to an infiltration structure for infiltrating rainwater, sewage, and the like collected in a water collection facility into the ground, and a construction method thereof.

近年、都市化の進展により雨水が地下に浸透しない不浸透域が増加し、都市型洪水の多発、清流の枯渇、水質の悪化、地下水の減少等、水循環の変化に起因する問題が生じている。又、合流式の下水道が設置されている地域においても、多降雨時の流出に対する改善が求められていた。雨水を地下に浸透させることは、上記問題を解決する手段として奨励されており、様々な浸透施設が開発されている。   In recent years, with the progress of urbanization, the number of impervious areas where rainwater does not penetrate underground has increased, causing problems due to changes in the water cycle, such as frequent urban floods, depletion of clear streams, deterioration of water quality, and reduction of groundwater. . In areas where combined sewers are installed, improvements to runoff during heavy rainfall have been demanded. Infiltration of rainwater into the ground is encouraged as a means to solve the above problems, and various infiltration facilities have been developed.

図13は、通常使用されている一般的な浸透施設であり、浸透マスを使用した施設形式である。この浸透施設は、浸透マスの周辺を砕石で充填し、集水した雨水を浸透マスの側壁および底部に設けた貫通孔から地面へ浸透させる構造を有している。   FIG. 13 shows a general infiltration facility that is normally used, and is a facility type using an infiltration mass. This infiltration facility has a structure in which the periphery of the infiltration mass is filled with crushed stone and the collected rainwater is infiltrated into the ground from through holes provided in the side wall and bottom of the infiltration mass.

また、他の形態の浸透施設として、下記の特許文献1に開示されるものがある。この浸透施設は、図14に示すように、浸透マンホールまたは浸透管または浸透マス50の周壁に設けた貫通穴51に対応して、前記浸透マンホール50等の軸方向と直交する方向で、且つ、浸透マンホール50等の外部に向かって外筒、内筒及びフィルターエレメントからなるフィルター52を突設して設けることによりフィルター52の有効面積を大きくし、雨水の排水能力を向上させようとするものである。外筒の浸透マンホール50側の一端部は、貫通穴51に嵌合して固定され、外筒の他端部には、格子状の枠体が設けられたフィルター枠53が外枠に嵌入して着脱可能に固定されている。浸透マンホール50等の外側の地盤との間には図示しない複数の砕石からなる砕石エレメントが敷設されている。   Moreover, there exists what is disclosed by following patent document 1 as another form of infiltration facility. As shown in FIG. 14, the permeation facility corresponds to a perforation manhole, a permeation pipe, or a through hole 51 provided in the peripheral wall of the permeation mass 50, in a direction orthogonal to the axial direction of the permeation manhole 50 and the like, and It is intended to increase the effective area of the filter 52 and improve the drainage capacity of rainwater by providing a filter 52 comprising an outer cylinder, an inner cylinder and a filter element so as to project outward from the infiltration manhole 50 and the like. is there. One end portion of the outer cylinder on the permeation manhole 50 side is fitted and fixed to the through hole 51, and a filter frame 53 provided with a lattice-like frame body is fitted into the outer frame at the other end portion of the outer cylinder. And is detachably fixed. A crushed stone element made of a plurality of crushed stones (not shown) is laid between the outer ground such as the seepage manhole 50 and the like.

特開平11−200462号公報JP-A-11-200462

しかしながら、上記従来の浸透施設を新設して施工する場合、浸透マス、および充填砕石を設置するための掘削工、掘削内の透水シートの敷設工、掘削内の基礎部充填砕石工、浸透マスの据付工、浸透マスの側部充填砕石工、上面浸透シート工、埋め戻し工等の大掛かりな施工が必要であり、設置費用が高いことや、設置場所が確保できない等の問題が発生していた。   However, when constructing and constructing the conventional infiltration facility, the excavator for installing the infiltration mass and the filled crushed stone, the laying work of the permeable sheet in the excavation, the foundation filling crushed stone in the excavation, Major work such as installation work, side filling crushed stone work, top surface penetration sheet work, backfill work, etc. was necessary, and problems such as high installation costs and inability to secure the installation location occurred .

また、合流式の下水道において使用されている、側壁あるいは底部に貫通穴が形成されていない集水マス、排水マス等から構成される既設施設を、上記浸透マス等から構成されるような浸透施設に改良する場合にも、側溝の取り外し、掘削、マスの交換等の施工が必要であり、上記新設する場合と同様に問題が発生する。   In addition, the existing facilities that are used in the combined sewerage system and are composed of water collection masses, drainage masses, etc. that do not have through-holes in the side walls or bottoms, are constructed from the above-mentioned infiltration masses, etc. Even in the case of improvement, construction such as removal of side grooves, excavation, replacement of mass, etc. is necessary, and problems occur as in the case of the above-mentioned new installation.

従って、このような状況の下、より簡便で効果の高い浸透施設の開発が期待されている。とりわけ浸透機能を有しない排水施設が既に設置されている地域では、その既設施設の改良により簡便で効果の高い浸透施設の実現が期待されている。   Under such circumstances, therefore, development of a simpler and more effective infiltration facility is expected. In particular, in areas where drainage facilities that do not have an infiltration function are already installed, it is expected that simple and effective infiltration facilities will be realized by improving the existing facilities.

そこで、本願発明はこのような事情に鑑みてなされたものであり、雨水を下水道や水域に排除するための既設の集水施設あるいは排水施設を、雨水を地下に浸透させ得る簡便で効果の高い浸透施設に改良するための浸透構造体、及びその施工方法、あるいは雨水を地下に浸透させる浸透施設を新設する場合の浸透構造体、及びその施工方法の提供を目的とするものである。   Therefore, the present invention has been made in view of such circumstances, and it is simple and highly effective to allow rainwater to permeate underground into existing water collection facilities or drainage facilities for removing rainwater into sewers and water bodies. It is an object of the present invention to provide an infiltration structure for improving an infiltration facility and its construction method, or an infiltration structure in the case of newly establishing an infiltration facility for infiltrating rainwater into the underground, and its construction method.

上記課題を解決するために、請求項1に係る浸透構造体の施工方法の発明は、集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁にコア抜き手段によって貫通孔を形成するステップと、前記貫通孔と同じ形状を有する鋼管を、前記貫通孔から下向きへ地中に打ち込むステップと、前記打ち込んだ鋼管内の土砂を吸引装置により吸い出すステップと、前記土砂の吸い出された鋼管内に浸透シートを巻いた管を挿入するステップと、前記浸透シートを巻いた第1の管内に、前記集水施設の底壁よりも低い位置まで砕石を充填するステップと、前記浸透シートが巻かれ砕石が充填された管のうち、管のみを前記貫通孔から引き抜くステップと、前記鋼管を貫通孔から引き抜くステップと、前記貫通孔から上向きへ集水施設内に塩ビ管、土管、鉄管を含む第2の管を立設すると共に、該第2の管を集水施設に固定するステップと、前記第2の管の上口部にフィルターを設置するステップとからなることを特徴とするものである。   In order to solve the above-mentioned problem, the invention of the construction method of the osmotic structure according to claim 1 is characterized in that a coring means is provided on the bottom wall of a water collecting facility including a water collecting trough, a water collecting trench, a water collecting side groove, and a water collecting manhole. A step of forming a through-hole, a step of driving a steel pipe having the same shape as the through-hole into the ground downward from the through-hole, a step of sucking out the earth and sand in the driven-in steel pipe by a suction device, and the earth and sand Inserting a tube wound with an osmotic sheet into the sucked steel tube, filling a first tube wound with the osmotic sheet with a crushed stone to a position lower than the bottom wall of the water collection facility; Of the pipes wound with the permeation sheet and filled with crushed stone, a step of pulling out only the pipe from the through hole, a step of pulling out the steel pipe from the through hole, and upward from the through hole into the water collecting facility From the step of standing a second pipe including a bi-pipe, a clay pipe, and an iron pipe, fixing the second pipe to a water collection facility, and installing a filter at the upper opening of the second pipe It is characterized by.

また、請求項2に係る浸透構造体の施工方法の発明は、集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁にコア抜き手段によって貫通孔を形成するステップと、前記貫通孔と同じ形状を有する鋼管を、前記貫通孔から下向きへ地中に打ち込むステップと、前記打ち込んだ鋼管内の土砂を吸引装置により吸い出すステップと、
前記土砂の吸い出された鋼管内に浸透シートを巻いた管を挿入するステップと、
前記浸透シートを巻いた第1の管内に、前記集水施設の底壁よりも低い位置まで砕石を充填するステップと、前記浸透シートが巻かれ砕石が充填された管のうち、管のみを前記貫通孔から引き抜くステップと、前記鋼管を貫通孔から引き抜くステップと、前記浸透シートと該侵透シートに充填された砕石で形成される浸透部の開口部を覆うように格子状に配設される前記貫通孔の幅よりも長い金属部材から成る砕石浮上防止手段を取り付けるステップと、前記貫通孔から上向きへ集水施設内に塩ビ管、土管、鉄管を含む第2の管を立設すると共に、該第2の管を集水施設に固定するステップと、前記第2の管の上口部にフィルターを設置するステップとからなることを特徴とするものである。
Moreover, the invention of the construction method of the osmotic structure according to claim 2 forms a through-hole by a core removing means in the bottom wall of the water collection facility including the water collecting basin, the water collecting trench, the water collecting side groove, and the water collecting manhole. A step of driving a steel pipe having the same shape as the through-hole into the ground downward from the through-hole, and a step of sucking out the earth and sand in the driven steel pipe by a suction device;
Inserting a tube wound with a permeation sheet into the steel pipe from which the earth and sand have been sucked out;
In the first pipe wound with the permeation sheet, the step of filling crushed stone to a position lower than the bottom wall of the water collection facility, and among the pipes wound with the permeation sheet and filled with crushed stone, only the pipe is the A step of pulling out from the through hole, a step of pulling out the steel pipe from the through hole, and a grid-like arrangement so as to cover the permeation sheet and the opening of the permeation part formed of crushed stone filled in the permeation sheet. Attaching a crushed stone anti-floating means comprising a metal member longer than the width of the through hole, and standing up a second pipe including a PVC pipe, a clay pipe, and an iron pipe in the water collection facility upward from the through hole; The method includes a step of fixing the second pipe to a water collection facility and a step of installing a filter at an upper opening of the second pipe.

また、請求項3に係る浸透構造体の発明は、集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁に形成された貫通孔を介して地中から前記集水施設内にかけて上下方向へ設けられる浸透構造体であって、前記貫通孔から下向きに地中に形成された孔内に充填された砕石と、該砕石を覆うように配設された浸透シートとからなる浸透部と、前記貫通孔から上向きに前記集水施設内に立設されると共に集水施設の底壁に固定され、塩ビ管、土管、鉄管を含む筒状物からなる浸透筒と、該浸透筒の上口部を覆って配設される着脱可能なフィルタとから構成されることを特徴とするものである。   Further, the invention of the infiltration structure according to claim 3 is characterized in that the above described from the ground through a through hole formed in the bottom wall of the water collecting facility including the water collecting trough, the water collecting trench, the water collecting side groove, and the water collecting manhole. A osmotic structure provided vertically in the water collection facility, the crushed stone filled in the hole formed in the ground downward from the through hole, and the osmotic sheet disposed so as to cover the crushed stone A permeation part comprising: a permeation tube which is vertically installed in the water collection facility and is fixed to the bottom wall of the water collection facility, and is made of a cylindrical material including a PVC pipe, a clay pipe, and an iron pipe And a removable filter disposed so as to cover the upper mouth portion of the permeation tube.

また、請求項4に係る浸透構造体の発明は、集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁に形成された貫通孔を介して地中から前記集水施設内にかけて上下方向に設けられる浸透構造体であって、前記貫通孔から下向きに地中に形成された孔内に充填された砕石と、該砕石をくるむように配設された浸透シートとからなる浸透部と、前記貫通孔の下側に、前記浸透部の開口部を覆うように格子状に配設される前記貫通孔の幅よりも長い金属部材から成る砕石浮上防止手段と、前記貫通孔から上向きに前記集水施設内に立設されると共に集水施設の底壁に固定され、塩ビ管、土管、鉄管を含む筒状物からなる浸透筒と、該浸透筒の上口部を覆って配設される着脱可能なフィルタとから構成されることを特徴とするものである。   Further, the invention of the infiltration structure according to claim 4 is characterized in that the infiltration structure is formed from the ground through a through hole formed in a bottom wall of a water collection facility including a water collecting trough, a water collecting trench, a water collecting side groove, and a water collecting manhole. An infiltration structure provided vertically in the water collection facility, the crushed stone filled in a hole formed in the ground downward from the through hole, and an osmotic sheet disposed so as to surround the crushed stone A penetrating portion made of a metal member longer than the width of the through hole disposed in a lattice shape so as to cover the opening of the penetrating portion below the through hole, An infiltration cylinder that is erected upward from the through hole in the water collection facility and is fixed to the bottom wall of the water collection facility, and is made of a cylindrical material including a PVC pipe, a clay pipe, and an iron pipe, and an upper opening of the infiltration cylinder And a detachable filter disposed over the cover. It is.

また、請求項5に係る浸透構造体の発明は、請求項3または4の発明において、前記浸透部は、縦長形状であることを特徴とするものである。   The invention of a penetration structure according to claim 5 is characterized in that, in the invention of claim 3 or 4, the penetration portion has a vertically long shape.

また、請求項6に係る浸透構造体の発明は、請求項3から5のいずれかに記載の発明において、前記貫通孔の形状と、前記浸透部および前記浸透筒の水平断面形状とは同一形状を有し、その形状は円形状、または多角形状であることを特徴とするものである。   The invention of the osmotic structure according to claim 6 is the invention according to any one of claims 3 to 5, wherein the shape of the through hole and the horizontal cross-sectional shape of the osmotic portion and the osmotic cylinder are the same shape. The shape is a circular shape or a polygonal shape.

また、請求項7に係る浸透構造体の発明は、請求項3から5のいずれかに記載の発明において、前記貫通孔から下向きに地中に形成された孔の形状および前記浸透部の形状は、円筒状、円錐台形状、または四角推台形状を有していることを特徴とするものである。   The invention of the infiltration structure according to claim 7 is the invention according to any one of claims 3 to 5, wherein the shape of the hole formed in the ground downward from the through hole and the shape of the infiltration portion are It has a cylindrical shape, a truncated cone shape, or a quadrangular thrust trapezoidal shape.

本発明に係る浸透構造体の施工方法によれば、雨水を下水道等に排除する既設の排水施設を、施工コストの向上を抑制しつつ、短時間で容易に雨水を地下に浸透させ得る簡便で効果の高い浸透施設に改良することができる。   According to the method for constructing an osmotic structure according to the present invention, an existing drainage facility that excludes rainwater into sewers, etc. can be easily and easily infiltrated into the underground in a short time while suppressing an increase in construction cost. It can be improved to a highly effective infiltration facility.

また、本発明に係る浸透構造体によれば、浸透部は縦長形状であり、掘削の深さが大きく、設計水頭と浸透面積を大きくすることができ、地中への雨水の浸透量を大きくすることができる。また、浸透筒の上口部に配設されるフィルタの交換洗浄が容易であるため、浸透構造体のメンテナンス面において有利である。また、貫通孔から上向きに集水施設内に立設される浸透筒の長さを変えることにより、フィルタの配設される高さを調節することができるので、フィルタの目詰まりを防止することができる。さらに、立設される浸透筒の長さを容易に変えることができるので、雨水浸透のベースカット方式あるいはピークカット方式のいずれかの方式を容易に選択することができる。   Further, according to the infiltration structure according to the present invention, the infiltration part has a vertically long shape, the depth of excavation is large, the design head and the infiltration area can be increased, and the amount of rainwater infiltration into the ground is increased. can do. In addition, since the filter disposed at the upper opening of the permeation cylinder can be easily replaced and cleaned, it is advantageous in terms of maintenance of the permeation structure. In addition, by changing the length of the permeation cylinder standing in the water collection facility upward from the through hole, the height at which the filter is arranged can be adjusted, so that the filter can be prevented from being clogged. Can do. Furthermore, since the length of the standing permeation cylinder can be easily changed, either the rainwater permeation base cut method or the peak cut method can be easily selected.

以下、本発明に係る浸透構造体の実施の形態を添付図面に基づいて説明する。
図1は、浸透構造体の一形態を示す断面図である。浸透構造体1は、集水施設(排水施設ともいう)内に集められた水を地中に浸透させるための構造体であり、集水施設の底部壁11に設けられる。図1に示す形態では、集水施設として集水枡10を挙げて説明する。集水枡10は、図2に示されるように、主に道路排水または敷地からの雨水を集水する集水施設として使用されるものであり、底部を備えた構造を有する。集水枡10の上部には集水枡蓋12が配設され、集水枡蓋12には、道路上を流れてきた排水、隣の敷地から流れてきた雨水等が集水枡10内に流入する際に通過する流入孔13が設けられている。
DESCRIPTION OF EMBODIMENTS Hereinafter, embodiments of a osmotic structure according to the present invention will be described with reference to the accompanying drawings.
FIG. 1 is a cross-sectional view showing one embodiment of the osmotic structure. The infiltration structure 1 is a structure for allowing water collected in a water collection facility (also referred to as a drainage facility) to penetrate into the ground, and is provided on the bottom wall 11 of the water collection facility. In the embodiment shown in FIG. 1, a water collecting basin 10 will be described as a water collecting facility. As shown in FIG. 2, the water collecting basin 10 is mainly used as a water collecting facility for collecting road drainage or rainwater from a site, and has a structure with a bottom. A water collecting lid 12 is disposed on the upper side of the water collecting rod 10, and drainage water flowing on the road, rainwater flowing from the adjacent site, etc. are placed in the water collecting rod 10. An inflow hole 13 through which the air flows when it flows is provided.

集水枡10の底部壁11には、貫通孔15が形成されている。貫通孔15は本発明に係る浸透構造体1を設けるための孔であり、コア抜き用のドリル、コア抜きカッター等のコア抜き手段によって形成される。貫通孔15の形状は、製作の容易性を考慮して円形状に形成されている。但し、円形状に限定されるものではなく、三角形状、四角形状等の多角形状に形成されるものであってもよい。   A through hole 15 is formed in the bottom wall 11 of the water collecting basin 10. The through hole 15 is a hole for providing the osmotic structure 1 according to the present invention, and is formed by a core removal means such as a core removal drill or a core removal cutter. The shape of the through hole 15 is formed in a circular shape in consideration of ease of manufacture. However, the shape is not limited to a circular shape, and may be a polygonal shape such as a triangular shape or a quadrangular shape.

浸透構造体1は、貫通孔15を通過し地中から集水枡10内に延びて上下方向に設けられている。浸透構造体1は、貫通孔15から下向きに地中に形成された孔16内に設けられる浸透部4と、貫通孔15の下側に、貫通孔15とクロスして配設され、浸透部4の浮上を防止する砕石浮上防止手段7と、貫通孔15から上向きへ集水枡10内に立設される浸透筒5と、浸透筒5の上口部を覆って配設されるフィルタ6とから構成されている。そして、貫通孔15の形状と、浸透部4および浸透筒5の水平断面形状とは同一形状を有している。   The osmotic structure 1 passes through the through-hole 15 and extends from the ground into the water collecting basin 10 and is provided in the vertical direction. The osmotic structure 1 is disposed in the hole 16 formed in the ground downward from the through-hole 15, and disposed below the through-hole 15 so as to cross the through-hole 15. 4, the crushed stone ascent prevention means 7 for preventing the ascent of the oscillating member 4, the permeation cylinder 5 erected in the catchment 10 upward from the through-hole 15, and the filter 6 disposed so as to cover the upper opening of the permeation cylinder 5. It consists of and. And the shape of the through-hole 15 and the horizontal cross-sectional shape of the penetration part 4 and the penetration cylinder 5 have the same shape.

浸透部4は孔16内に充填される砕石2と、該砕石2をくるむように配設されている浸透シート3から構成されている。孔16は貫通孔15の真下に、鉛直下向へ縦長状に形成されている。孔16は、例えば、貫通孔15と同形状の鋼管を貫通孔15を通して地中に打ち込み、鋼管内の土砂を吸引機等によって吸い出して形成することができる。縦長状に形成した孔16内に浸透部4を設けることにより、設計水頭と浸透面積を大きくすることができるので、地中への水の浸透量を多くすることができる。浸透部4の浮上、即ち、浸透部を構成する砕石2及び侵透シート3の浮上を防止するために砕石浮上防止手段7が設けられている。砕石浮上防止手段7は、例えば、貫通孔15の径よりも大きい長さを有する金属棒(金属部材)7からなり、貫通孔15の下側、即ち、浸透部4の上側(上面部)に、金属棒7の両端部分が貫通孔15の外周部分である低部壁11に掛かるように、貫通孔15とクロスして配設される。また、金属棒7は複数本が格子状に配設され、この金属棒の格子によって充填した砕石2の浮上、即ち、貫通孔15内への砕石の進入を防止する。尚、砕石浮上防止手段7としては、メッシュ格子状に形成された部材を浸透部4の開口部を覆うように配設するものであってもよい。   The permeation section 4 includes a crushed stone 2 filled in the hole 16 and a permeation sheet 3 disposed so as to surround the crushed stone 2. The hole 16 is formed vertically below the through hole 15 vertically downward. The hole 16 can be formed by, for example, driving a steel pipe having the same shape as the through hole 15 into the ground through the through hole 15 and sucking out the earth and sand in the steel pipe with a suction machine or the like. By providing the permeation part 4 in the vertically formed hole 16, the design head and permeation area can be increased, so that the amount of water permeation into the ground can be increased. In order to prevent the osmotic part 4 from floating, that is, the crushed stone 2 and the permeable sheet 3 constituting the osmotic part, crushed stone floating prevention means 7 is provided. The crushed stone levitation preventing means 7 is composed of, for example, a metal rod (metal member) 7 having a length larger than the diameter of the through hole 15, and below the through hole 15, that is, on the upper side (upper surface portion) of the infiltration portion 4. The metal rod 7 is arranged so as to cross the through hole 15 so that both end portions of the metal rod 7 are hooked on the lower wall 11 which is the outer peripheral portion of the through hole 15. Further, a plurality of metal bars 7 are arranged in a lattice shape, and the floating of the crushed stone 2 filled with the lattice of the metal bars, that is, the entry of the crushed stone into the through hole 15 is prevented. In addition, as the crushed stone levitation preventing means 7, a member formed in a mesh lattice shape may be disposed so as to cover the opening of the infiltration portion 4.

孔16内に充填される砕石2は、空隙率の高いものを選定することが望ましく、一般的に単粒度砕石20〜40mmのものを使用する。浸透シート3は、浸透層である地中(土砂地)と砕石2との境界面に砕石2をくるむように敷設され、浸透層からの土砂が砕石2内に流入することを防ぐと共に、路面や浸透層の陥没、沈下を防ぐ。浸透シート3としては、十分な引っ張り強度を有し、腐食等の面で長期間の使用に耐えると共に、水をよく通し砂と同等以上の透水係数を有するものを使用する。具体的には、幅5cmあたりの引っ張り強度が30kgf以上で、透水係数が10-1〜10-2cm/sec以上、厚さ0.1〜0.2mm以上のものを使用する。また、浸透シート3の材質は、ポリエステル、ポリプロピレン等を使用する。 As the crushed stone 2 filled in the holes 16, it is desirable to select a crushed stone having a high porosity, and generally a single-grain crushed stone of 20 to 40 mm is used. The infiltration sheet 3 is laid so as to surround the crushed stone 2 at the boundary surface between the underground (earth and sand) and the crushed stone 2 as the infiltration layer, and prevents the earth and sand from the osmotic layer from flowing into the crushed stone 2 as well as the road surface and Prevent sinking and sinking of the seepage layer. As the osmotic sheet 3, a sheet having sufficient tensile strength, withstanding long-term use in terms of corrosion and the like, and having a water permeability coefficient equal to or greater than that of sand through which water passes well. Specifically, a material having a tensile strength per width of 5 cm of 30 kgf or more, a water permeability of 10 −1 to 10 −2 cm / sec or more, and a thickness of 0.1 to 0.2 mm or more is used. The material of the permeation sheet 3 is polyester, polypropylene, or the like.

貫通孔15から上向きに集水枡10内に立設される浸透筒5は、図1における浸透筒5の下側の端部が貫通孔15に嵌入され、集水枡10の底部壁11にモルタルで固定されている。浸透筒5の形状は、集水枡10の底部壁11に形成した貫通孔15と同形状を有している。例えば、塩ビ管、土管、鉄管等の筒状物から構成されている。浸透筒5の長さ、即ち、底部壁11から上方向へ集水枡10内に延びている部分の高さは、集水枡10内に流入した雨水等をピークカット方式により処理するか、あるいはベースカット方式により処理するかによって決定する。つまり、流入した雨水等をピークカット方式により処理するか、ベースカット方式により処理するかは、浸透筒5の長さを調節することによって選択することができる。   The permeation cylinder 5 erected in the water collecting basin 10 upward from the through hole 15 is fitted into the through hole 15 at the lower end of the permeation cylinder 5 in FIG. It is fixed with mortar. The shape of the permeation cylinder 5 has the same shape as the through hole 15 formed in the bottom wall 11 of the water collecting basin 10. For example, it is comprised from cylindrical objects, such as a vinyl chloride pipe, a clay pipe, and an iron pipe. The length of the permeation cylinder 5, that is, the height of the portion extending upward from the bottom wall 11 into the catchment basin 10 is obtained by treating rainwater flowing into the catchment basin 10 by a peak cut method, Or it determines by processing by a base cut system. That is, whether the rainwater that has flowed in is processed by the peak cut method or the base cut method can be selected by adjusting the length of the permeation tube 5.

ここで、ピークカット方式とは、図1に示す施設でいうと、降雨初期や雨水流入量の少ないときは、取付管17を通して雨水等を下水道管へと排出し、流入量が増加してある水位を超えると、即ち、フィルタ6の高さを超えるとフィルタ6を通って初めて浸透部4に雨水等が流入する方式である。これにより初期流入水に多く含まれる汚濁物は、泥溜め部18に沈殿、あるいは取付管17を通して下水道管へと排出される。図1は、フィルタ6の高さ(矢印Aの位置)が取付管17の底面の位置(矢印Bの位置)よりも高くなるように設定されており、ピークカット方式の一形態を示している。   Here, the peak cut method refers to the facility shown in FIG. 1. When the amount of inflow is increased at the beginning of rainfall or when the amount of inflow of rainwater is small, rainwater is discharged to the sewer pipe through the attachment pipe 17. When the water level is exceeded, that is, when the height of the filter 6 is exceeded, rainwater or the like flows into the infiltration portion 4 only after passing through the filter 6. As a result, a large amount of contaminants contained in the initial inflow water settles in the mud reservoir 18 or is discharged to the sewer pipe through the attachment pipe 17. FIG. 1 shows an embodiment of the peak cut method in which the height of the filter 6 (position of arrow A) is set to be higher than the position of the bottom surface of the mounting tube 17 (position of arrow B). .

また、ベースカット方式とは、降雨初期からの流入水を、その施設が持っている浸透能力の範囲で浸透させる方式で、浸透能力を超えた分は下水等へ越流させる。ベースカット方式では、集水枡10に流入した雨水等は、フィルタ6を通過して浸透部4に流入し地中へと浸透処理される。集水枡10に流入する水量が増加し、集水枡10内の水位が上昇してくると取付管17を通して下水道管へと雨水が流出する。   In addition, the base cut method is a method in which the inflow water from the beginning of rainfall is infiltrated within the range of the infiltration capacity of the facility, and the portion exceeding the infiltration capacity is overflowed into sewage. In the base cut method, rainwater or the like that has flowed into the water collecting basin 10 passes through the filter 6 and flows into the infiltration portion 4 to be infiltrated into the ground. When the amount of water flowing into the catchment basin 10 increases and the water level in the catchment basin 10 rises, rainwater flows out to the sewer pipe through the attachment pipe 17.

フィルタ6は、図3(a)に示されるような網目状に形成されたフィルタ枠6aと、図3(b)に示されるようにフィルタ枠6a内に配設された細目フィルタ6bから構成されている。フィルタ枠6aは、網目状の浸透孔を形成し、その中に細目フィルタ6bを固定している。また、網目状の浸透孔によってフィルタ枠6a内に大きなゴミが流入することを防ぐ機能を有している。細目フィルタ6bは、雨水に含まれた固形物、例えば、ゴミ、砂利、砂等が浸透部4へ流入するのを防ぎ、砕石2の目詰まりを防ぐ機能を有している。また、集水枡10に流入する雨水に含まれた道路上の油分等を吸着し、侵透による地下水汚染を防止する機能を有した素材の細目フィルタ6bを使用してもよい。フィルタ6は、浸透筒5の上口部に着脱可能に取り付けられており、細目フィルタ6bの洗浄や取り替え等のメンテナンスを容易に行なうことできる。   The filter 6 includes a filter frame 6a formed in a mesh shape as shown in FIG. 3A and a fine filter 6b disposed in the filter frame 6a as shown in FIG. 3B. ing. The filter frame 6a has a mesh-shaped penetration hole, and a fine filter 6b is fixed therein. Moreover, it has the function which prevents that big refuse flows in into the filter frame 6a by the mesh-shaped penetration hole. The fine filter 6b has a function of preventing solid matter, for example, dust, gravel, sand, and the like contained in rainwater from flowing into the infiltration portion 4 and preventing crushing of the crushed stone 2. Moreover, you may use the fine filter 6b of the raw material which has the function to adsorb | suck the oil etc. on the road contained in the rainwater which flows in into the catchment tank 10, and to prevent the groundwater contamination by permeation. The filter 6 is detachably attached to the upper opening portion of the permeation cylinder 5, and maintenance such as cleaning and replacement of the fine filter 6b can be easily performed.

図1において、集水枡10の流入孔13から集水枡内に流入した雨水等は、先ず、泥溜め部18に貯留され、貯留水位が高くなると取付管17を通して下水道に排出される。流入量が増加して貯留水位がフィルタ6の高さを超えると、雨水等はフィルタ6を通過して浸透筒5から浸透部4へ流入する、浸透部4に流入した雨水等は、砕石2及び浸透シート3を通して地中に浸透される。   In FIG. 1, rainwater or the like flowing into the catchment basin from the inflow hole 13 of the catchment basin 10 is first stored in the mud reservoir 18 and discharged to the sewer through the attachment pipe 17 when the stored water level becomes high. When the amount of inflow increases and the stored water level exceeds the height of the filter 6, rainwater or the like passes through the filter 6 and flows into the infiltration portion 4 from the infiltration cylinder 5. And penetrates into the ground through the permeation sheet 3.

浸透構造体1は、既に地中等の所定の場所に設置されている集水枡10に設けるようにしても、あるいは新設しようとする集水枡10に設けるようにしてもよい。そして、新設する集水枡10に浸透構造体1を設ける場合、集水枡10の底部壁11に設ける貫通孔15は、集水枡10を掘削した場所に据え付ける前に、予め形成しておくようにしてもよい。この場合、浸透構造体1の浸透部4を配設する孔16も集水枡10を据え付ける前に、予め集水枡10の貫通孔15に対応した位置に形成しておくことができる。   The osmotic structure 1 may be provided in a water collecting basin 10 already installed in a predetermined place such as underground or may be provided in a water collecting basin 10 to be newly installed. And when providing the percolation structure 1 in the newly constructed water collecting basin 10, the through-hole 15 provided in the bottom wall 11 of the water collecting basin 10 is formed in advance before installing the water collecting basin 10 in the excavated place. You may do it. In this case, the hole 16 in which the infiltration portion 4 of the infiltration structure 1 is disposed can also be formed in advance at a position corresponding to the through hole 15 of the water collection tank 10 before installing the water collection tank 10.

集水枡10を据え付ける前であるため、予め形成することができる孔16の形状は、集水枡10に形成されている貫通孔15の形状によって制約されず、例えば、円柱形状、多角柱形状の他、円錐台形状、あるいは四角推台形状等の孔16を形成することが可能である。また、この孔16内に設けられる浸透部4の形状は、孔16の形状に応じて形成されるものであるから、孔16の形状と同様に、例えば、円柱形状、多角柱形状の他、円錐台形状、あるいは四角推台形状等の浸透部4に形成することができる。これにより、さらに浸透部4の設計水頭と浸透面積を大きくすることができ、地中への雨水の浸透量を大きくすることができる。   The shape of the hole 16 that can be formed in advance is not limited by the shape of the through-hole 15 formed in the water collecting basin 10 because it is before the water collecting basin 10 is installed. In addition, it is possible to form a hole 16 having a truncated cone shape or a quadrangular thrust trapezoidal shape. Moreover, since the shape of the permeation | transmission part 4 provided in this hole 16 is formed according to the shape of the hole 16, similarly to the shape of the hole 16, for example other than cylindrical shape and polygonal column shape, It can be formed in the permeation part 4 having a truncated cone shape or a quadrangular thrust trapezoidal shape. Thereby, the design head of the infiltration portion 4 and the infiltration area can be further increased, and the amount of rainwater infiltration into the ground can be increased.

集水施設の形態としては、上述した集水枡の他、集水トレンチ、集水側溝、集水マンホール等も挙げることができ、これらの底部壁に貫通孔を形成し浸透構造体を設けることにより、集水枡の場合と同様の作用効果を得ることができる。   As the form of the water collection facility, in addition to the water collection tank described above, a water collection trench, a water collection side ditch, a water collection manhole, etc. can be cited, and a through hole is formed in these bottom walls to provide an infiltration structure. As a result, the same effect as in the case of the catchment can be obtained.

また、上述した形態では、浸透構造体1を集水枡10の底部壁11に設けるものであったが、この形態に限定されるものではなく、例えば、集水枡10の側壁に浸透構造体1を設けるようにしてもよい。側壁に設ける場合には、浸透筒5部分を集水枡10内に延ばす必要がない為、側壁に貫通孔15を形成し、その貫通孔から水平方向へ延びる浸透部4と、貫通孔15に取り付けられるフィルタ6によって浸透構造体1を構成することができる。浸透部4およびフィルタ6の構成は上述した形態のものと同様である。   Moreover, in the form mentioned above, although the osmosis | permeation structure 1 was provided in the bottom wall 11 of the catchment basin 10, it is not limited to this form, For example, the osmosis | permeation structure is provided in the side wall of the catchment basin 10 1 may be provided. When it is provided on the side wall, it is not necessary to extend the permeation cylinder 5 into the water collecting basin 10, so a through hole 15 is formed in the side wall, and the permeation part 4 extending in the horizontal direction from the through hole and the through hole 15 are formed. The osmotic structure 1 can be constituted by the filter 6 to be attached. The configurations of the permeation unit 4 and the filter 6 are the same as those described above.

以下に、浸透構造体1の施工方法の一形態について説明する。
この形態では、浸透構造体1が施工される集水施設は、既に設置されている施設が対象である。また、集水施設として集水枡10を使用する。
図4(a)は、集水枡10を上側から見たものであり、(b)は(a)のE―E線における断面図である。集水枡10の底部壁11に、コア抜きカッターによって直径R1(180mm)の貫通孔15を形成する。尚、かっこ内の数字は、浸透構造体1を構成する部材同士の大きさを比較するために一例を挙げたものであり、この数字に限定されるものではない(以下同じ)。また、貫通孔15の形状は円形状に限定されず、多角形状であってもよい。(以上、第1ステップ)
Below, one form of the construction method of the osmotic structure 1 is demonstrated.
In this form, the water collection facility where the osmotic structure 1 is constructed is a facility already installed. Moreover, the water collecting basin 10 is used as a water collecting facility.
FIG. 4A is a view of the water collecting tank 10 as viewed from above, and FIG. 4B is a cross-sectional view taken along line EE of FIG. A through hole 15 having a diameter R1 (180 mm) is formed in the bottom wall 11 of the water collecting basin 10 by a core cutter. The numbers in parentheses are examples for comparing the sizes of members constituting the osmotic structure 1, and are not limited to these numbers (the same applies hereinafter). Further, the shape of the through hole 15 is not limited to a circular shape, and may be a polygonal shape. (End of step 1)

次に、貫通孔15を通して、貫通孔15と同形状で直径R2(165mm)の鋼管20を、鉛直下向きへ地中に深さH1(例えば、80cm)まで打ち込む(図5参照)。(以上、第2ステップ)
そして、打ち込んだ鋼管20内の深さH2(例えば、50cm)までの土砂を吸引装置により吸い出す(図6参照)。(以上、第3ステップ)
Next, a steel pipe 20 having the same shape as the through-hole 15 and having a diameter R2 (165 mm) is driven through the through-hole 15 into the ground vertically to a depth H1 (for example, 80 cm) (see FIG. 5). (End of step 2)
And the earth and sand to the depth H2 (for example, 50 cm) in the driven steel pipe 20 is sucked out with a suction device (see FIG. 6). (End of step 3)

次に、土砂の吸い出された鋼管20内に、浸水シート3を挿入方向の端部から長さH2(50cm)巻いた直径R3(125mm)の塩ビ管21を挿入する。浸水シート3は塩ビ管21をくるむように塩ビ管21の側面だけでなく挿入方向の口側も覆って巻かれている(図7参照)。(以上、第4ステップ)
浸透シート3を巻いた塩ビ管21の中に、砕石2を塩ビ管21の挿入先端部から長さH2(50cm)分、即ち、集水枡10の底部壁11の底面位置まで充填する(図8参照)。(以上、第5ステップ)
Next, a PVC pipe 21 having a diameter R3 (125 mm) obtained by winding the submerged sheet 3 from the end in the insertion direction by a length H2 (50 cm) is inserted into the steel pipe 20 from which the earth and sand have been sucked out. The water-immersed sheet 3 is wound around the PVC pipe 21 so as to cover not only the side surface of the PVC pipe 21 but also the mouth side in the insertion direction (see FIG. 7). (Fourth step)
The crushed stone 2 is filled into the PVC pipe 21 around which the osmotic sheet 3 is wound from the insertion tip of the PVC pipe 21 to the length H2 (50 cm), that is, to the bottom surface position of the bottom wall 11 of the water collecting basin 10 (FIG. 8). (End of 5th step)

次に、鋼管20内に挿入されており、浸透シート3が巻かれ砕石2が充填されている塩ビ管21の、塩ビ管21のみを鋼管20から、即ち、貫通孔15から引き抜く(図9参照)。そして、鋼管20の上口から砕石2の上面を転圧する。(以上、第5ステップ)   Next, only the PVC pipe 21 of the PVC pipe 21 inserted into the steel pipe 20 and wound with the osmotic sheet 3 and filled with the crushed stone 2 is pulled out from the steel pipe 20, that is, the through hole 15 (see FIG. 9). ). And the upper surface of the crushed stone 2 is rolled from the upper opening of the steel pipe 20. (End of 5th step)

次に、地中に打ち込まれている鋼管20を貫通孔15から引き抜く(図10参照)。砕石2の上面の位置が、集水枡10の底部壁11の底面位置よりも沈下している場合には、その不足分の砕石2を貫通孔15から充填し、砕石2の上面を充分に締め固める。ここで、例えば、地盤の弱い場所等のように、充填した砕石2の浮上が起きる可能性の高い所では、集水枡10内に砕石が進入しないように砕石浮上止めとして、金属性の部材からなる砕石浮上防止手段7を、浸透部4の開口部の上面部分、即ち、充填した砕石2の上面部分に取り付ける。具体的には、砕石浮上防止手段としての金属棒7を、貫通孔15の下側に、金属棒7の両端部分が貫通孔15の外周部分である低部壁11に掛かるように配設する。金属棒7は貫通孔15の径の大きさよりも長く形成されており、貫通孔15とクロスするように配設される。複数本の金属棒7が格子状に配設され、この金属棒の格子によって充填した砕石2の浮上、即ち、貫通孔15内への砕石の進入を防止する。(以上、第6ステップ)   Next, the steel pipe 20 driven into the ground is pulled out from the through hole 15 (see FIG. 10). When the position of the upper surface of the crushed stone 2 is sinking below the position of the bottom surface of the bottom wall 11 of the catchment basin 10, the insufficient amount of crushed stone 2 is filled from the through hole 15 and the upper surface of the crushed stone 2 is sufficiently covered. Compact. Here, for example, in a place where there is a high possibility that the filled crushed stone 2 will float up, such as a place where the ground is weak, a metallic member is used as a crushed stone levitation stop so that the crushed stone does not enter the water collecting basin 10. The crushed stone floating prevention means 7 is attached to the upper surface portion of the opening of the infiltration portion 4, that is, the upper surface portion of the filled crushed stone 2. Specifically, the metal rod 7 as a crushed stone rising prevention means is arranged below the through hole 15 so that both end portions of the metal rod 7 are hooked on the lower wall 11 which is the outer peripheral portion of the through hole 15. . The metal rod 7 is formed longer than the diameter of the through hole 15 and is disposed so as to cross the through hole 15. A plurality of metal rods 7 are arranged in a lattice shape, and the floating of the crushed stone 2 filled by the lattice of the metal rods, that is, the entry of the crushed stone into the through hole 15 is prevented. (End of step 6)

また次に、貫通孔15から上向きへ集水枡10内に直径R4(150mm)の浸透筒としての塩ビ管5'を立設する。塩ビ管5'の下側の端部を貫通孔15内に嵌入して立設させ、モルタル等の接着手段23で塩ビ管5'を集水枡10に固定する(図11参照)。塩ビ管5'は、貫通孔15と同形状のものを使用する。また、立設する管は塩ビ管に限定されず、例えば、土管、鉄管等であってもよい。塩ビ管5'の長さH3、即ち、集水枡10内上方に延びている塩ビ管5の高さは、集水枡10内に流入した雨水の処理方式によって設定される。つまり、雨水をピークカット方式により処理するか、ベースカット方式により処理するかで決定され、その詳細は前記図1の説明において記載した通りである。(以上、第7ステップ)
そして、塩ビ管5'の上口部にフィルタ6を設置する。フィルタ6は塩ビ管5'に対して着脱可能に取り付けられている(図12参照)。(以上、第8ステップ)
Next, a PVC pipe 5 ′ as an osmotic cylinder having a diameter R 4 (150 mm) is erected in the water collecting bowl 10 upward from the through hole 15. The lower end portion of the PVC pipe 5 ′ is fitted into the through hole 15 and is erected, and the PVC pipe 5 ′ is fixed to the water collecting bowl 10 by an adhesive means 23 such as mortar (see FIG. 11). A PVC pipe 5 ′ having the same shape as the through hole 15 is used. Moreover, the pipe to stand up is not limited to a PVC pipe, For example, a clay pipe, an iron pipe, etc. may be sufficient. The length H 3 of the PVC pipe 5 ′, that is, the height of the PVC pipe 5 extending upward in the water collecting tank 10 is set by the treatment method of the rainwater flowing into the water collecting pot 10. That is, it is determined whether rainwater is processed by the peak cut method or the base cut method, and the details thereof are as described in the explanation of FIG. (End of step 7)
And the filter 6 is installed in the upper opening part of the polyvinyl chloride pipe | tube 5 '. The filter 6 is detachably attached to the PVC pipe 5 ′ (see FIG. 12). (End of step 8)

浸透構造体1の施工方法の他の形態としては、集水施設を新設する場合の形態が挙げられる。この場合、集水施設を据え付けるための掘削工は従来と同様に人力または掘削機械により行なう。
次に、上述した形態の第1のステップにおける集水枡10の底部壁11への貫通孔15の形成は、集水枡10を据え付ける前に、予め行なっておく。その他の具体的施工内容は、上述した形態の第1のステップと同様である。(以上、第1'ステップ)
As another form of the construction method of osmotic structure 1, the form in the case of newly installing a water collection facility is mentioned. In this case, the excavator for installing the water collection facility is performed manually or by an excavating machine as in the past.
Next, the formation of the through hole 15 in the bottom wall 11 of the water collecting basin 10 in the first step of the above-described form is performed in advance before the water collecting basin 10 is installed. Other specific construction contents are the same as those in the first step of the above-described embodiment. (End of step 1 ')

次に、上述した形態の第2ステップから第6ステップの施工内容は以下のようになる。
集水枡10を据え付ける前に、集水枡10の底部壁11に形成した貫通孔15に対応する位置に、砕石2と浸透シート3によって構成される浸透部4(図1で説明した浸透部4と同様の構成)を設けるための孔16'を形成する。(以上、第2'ステップ)
Next, the construction contents from the second step to the sixth step in the above-described form are as follows.
Before installing the catchment basin 10, the permeation part 4 (the permeation part described in FIG. 1) composed of the crushed stone 2 and the permeation sheet 3 at a position corresponding to the through hole 15 formed in the bottom wall 11 of the catchment basin 10. Hole 16 ′ for providing the same structure as that of FIG. (End of step 2 ')

次に、孔16'内に浸透部4を据え付ける。浸透部4の形状は、例えば、円柱形状、多角柱形状の他、円錐台形状、あるいは四角推台形状等に形成することができる。従って、上記第2'ステップにおいて、孔16'は、設ける浸透部4の大きさに合わせて形成すればよい。但し、集水枡10の貫通孔15の直下に配置される浸透部4の上端部の形状および大きさは、貫通孔15から流出される水を浸透させることができるように、貫通孔15と略同じ形状および大きさ、または貫通孔15よりも大きいことが望ましい。これにより、さらに浸透部4の設計水頭と浸透面積を大きくすることができ、地中への雨水の浸透量を大きくすることができる。浸透部4の開口部の上面部分に、砕石浮上防止部材7を配設することは上述した形態を同様である。(以上、第3'ステップ)   Next, the penetration part 4 is installed in the hole 16 '. The shape of the permeation part 4 can be formed in, for example, a circular truncated cone shape, a quadrangular prism shape, a truncated cone shape, or a quadrangular thrust trapezoidal shape. Accordingly, in the second 2 ′ step, the hole 16 ′ may be formed in accordance with the size of the permeation portion 4 to be provided. However, the shape and size of the upper end portion of the permeation portion 4 disposed immediately below the through hole 15 of the water collecting basin 10 are the same as those of the through hole 15 so that water flowing out of the through hole 15 can permeate. It is desirable that they are substantially the same shape and size, or larger than the through hole 15. Thereby, the design head of the infiltration portion 4 and the infiltration area can be further increased, and the amount of rainwater infiltration into the ground can be increased. Arranging the crushed stone levitation preventing member 7 on the upper surface portion of the opening of the infiltration portion 4 is the same as the above-described embodiment. (End of step 3 ')

次に、貫通孔15から上向きへ浸透筒としての塩ビ管5'等を立設すること、塩ビ管5'等の上口部にフィルタ6を設置することは、上記形態の第7ステップおよび第8ステップと同様である。   Next, erecting the PVC pipe 5 ′ or the like as the permeation cylinder upward from the through hole 15 and installing the filter 6 at the upper opening of the PVC pipe 5 ′ or the like includes the seventh step and the The same as 8 steps.

本発明に係る浸透構造体の一形態を示す図であり、集水枡に取り付けられている状態の断面図を示す。It is a figure which shows one form of the osmosis | permeation structure which concerns on this invention, and shows sectional drawing of the state attached to the catchment basin. 本発明に係る浸透構造体が取り付けられる集水施設の一形態を示す図である。It is a figure which shows one form of the water collection facility where the osmosis | permeation structure which concerns on this invention is attached. (a)は浸透構造体を構成するフィルタの枠を示す図であり、(b)はフィルタ内に設けられる細目フィルタを示す図である。(A) is a figure which shows the frame of the filter which comprises an osmosis | permeation structure, (b) is a figure which shows the fine filter provided in a filter. (a)は集水枡の上面図、(b)は(a)のE―E線における断面図であり、浸透構造体の施工方法の1ステップを示す図である。(A) is a top view of a catchment basin, (b) is a sectional view taken along line EE of (a), and is a diagram showing one step of the construction method of the seepage structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 集水枡の断面図であり、浸透構造体の施工方法の1ステップを示す図である。It is sectional drawing of a catchment basin, and is a figure which shows 1 step of the construction method of an osmotic structure. 従来の浸透施設の一形態を示す図である。It is a figure showing one form of conventional penetration facilities. 従来の浸透施設の一形態を示す図である。It is a figure showing one form of conventional penetration facilities.

符号の説明Explanation of symbols

1 浸透構造体
2 砕石
3 浸透シート
4 浸透部
5 浸透筒
5' 塩ビ管
6 フィルタ
7 砕石浮上防止手段
10 集水枡
11 底部壁
15 貫通孔
16 孔
20 鋼管
21 塩ビ管
DESCRIPTION OF SYMBOLS 1 Penetration structure 2 Crushed stone 3 Penetration sheet 4 Penetration part 5 Penetration pipe | tube 5 'PVC pipe 6 Filter 7 Crushed stone levitation prevention means 10 Catchment 11 Bottom wall 15 Through-hole 16 Hole 20 Steel pipe 21 PVC pipe

Claims (7)

集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁にコア抜き手段によって貫通孔を形成するステップと、
前記貫通孔と同じ形状を有する鋼管を、前記貫通孔から下向きへ地中に打ち込むステップと、
前記打ち込んだ鋼管内の土砂を吸引装置により吸い出すステップと、
前記土砂の吸い出された鋼管内に浸透シートを巻いた管を挿入するステップと、
前記浸透シートを巻いた第1の管内に、前記集水施設の底壁よりも低い位置まで砕石を充填するステップと、
前記浸透シートが巻かれ砕石が充填された管のうち、管のみを前記貫通孔から引き抜くステップと、
前記鋼管を貫通孔から引き抜くステップと、
前記貫通孔から上向きへ集水施設内に塩ビ管、土管、鉄管を含む第2の管を立設すると共に、該第2の管を集水施設に固定するステップと、
前記第2の管の上口部にフィルターを設置するステップとからなることを特徴とする浸透構造体の施工方法。
Forming a through-hole by a coring means on a bottom wall of a water collection facility including a water collecting trough, a water collecting trench, a water collecting side ditch, and a water collecting manhole;
Driving a steel pipe having the same shape as the through hole into the ground downward from the through hole;
Sucking out the earth and sand in the driven steel pipe with a suction device;
Inserting a tube wound with a permeation sheet into the steel pipe from which the earth and sand have been sucked out;
Filling the crushed stone into the first pipe wound with the permeation sheet to a position lower than the bottom wall of the water collection facility;
Of the tubes wound with the osmotic sheet and filled with crushed stone, the step of pulling out only the tubes from the through holes;
Extracting the steel pipe from the through hole;
Establishing a second pipe including a PVC pipe, a clay pipe, and an iron pipe in the water collection facility upward from the through hole, and fixing the second pipe to the water collection facility;
And a step of installing a filter at the upper opening of the second pipe.
集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁にコア抜き手段によって貫通孔を形成するステップと、
前記貫通孔と同じ形状を有する鋼管を、前記貫通孔から下向きへ地中に打ち込むステップと、
前記打ち込んだ鋼管内の土砂を吸引装置により吸い出すステップと、
前記土砂の吸い出された鋼管内に浸透シートを巻いた管を挿入するステップと、
前記浸透シートを巻いた第1の管内に、前記集水施設の底壁よりも低い位置まで砕石を充填するステップと、
前記浸透シートが巻かれ砕石が充填された管のうち、管のみを前記貫通孔から引き抜くステップと、
前記鋼管を貫通孔から引き抜くステップと、
前記浸透シートと該侵透シートに充填された砕石で形成される浸透部の開口部を覆うように格子状に配設される前記貫通孔の幅よりも長い金属部材から成る砕石浮上防止手段を取り付けるステップと、
前記貫通孔から上向きへ集水施設内に塩ビ管、土管、鉄管を含む第2の管を立設すると共に、該第2の管を集水施設に固定するステップと、
前記第2の管の上口部にフィルターを設置するステップとからなることを特徴とする浸透構造体の施工方法。
Forming a through-hole by a coring means on a bottom wall of a water collection facility including a water collecting trough, a water collecting trench, a water collecting side ditch, and a water collecting manhole;
Driving a steel pipe having the same shape as the through hole into the ground downward from the through hole;
Sucking out the earth and sand in the driven steel pipe with a suction device;
Inserting a tube wound with a permeation sheet into the steel pipe from which the earth and sand have been sucked out;
Filling the crushed stone into the first pipe wound with the permeation sheet to a position lower than the bottom wall of the water collection facility;
Of the tubes wound with the osmotic sheet and filled with crushed stone, the step of pulling out only the tubes from the through holes;
Extracting the steel pipe from the through hole;
A crushed stone anti-floating means comprising a metal member longer than the width of the through-holes arranged in a grid so as to cover the permeation sheet and the opening of the permeation portion formed of crushed stone filled in the permeation sheet. Installation step;
Establishing a second pipe including a PVC pipe, a clay pipe, and an iron pipe in the water collection facility upward from the through hole, and fixing the second pipe to the water collection facility;
And a step of installing a filter at the upper opening of the second pipe.
集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁に形成された貫通孔を介して地中から前記集水施設内にかけて上下方向に設けられる浸透構造体であって、
前記貫通孔から下向きに地中に形成された孔内に充填された砕石と、該砕石をくるむように配設された浸透シートとからなる浸透部と、
前記貫通孔から上向きに前記集水施設内に立設されると共に集水施設の底壁に固定され、塩ビ管、土管、鉄管を含む筒状物からなる浸透筒と、
該浸透筒の上口部を覆って配設される着脱可能なフィルタとから構成されることを特徴とする浸透構造体。
An osmotic structure provided vertically from the ground to the inside of the water collection facility through a through hole formed in the bottom wall of the water collection facility including a water collection trough, a water collection trench, a water collection side ditch, and a water collection manhole. There,
A penetrating portion comprising a crushed stone filled in a hole formed in the ground downward from the through hole, and a penetrating sheet disposed so as to surround the crushed stone;
A permeation cylinder which is erected upward in the water collection facility from the through-hole and fixed to the bottom wall of the water collection facility, and is made of a cylindrical material including a PVC pipe, a clay pipe, and an iron pipe;
An osmotic structure comprising: a detachable filter disposed so as to cover an upper opening of the osmotic tube.
集水枡、集水トレンチ、集水側溝、集水マンホールを含む集水施設の底壁に形成された貫通孔を介して地中から前記集水施設内にかけて上下方向に設けられる浸透構造体であって、
前記貫通孔から下向きに地中に形成された孔内に充填された砕石と、該砕石をくるむように配設された浸透シートとからなる浸透部と、
前記貫通孔の下側に、前記浸透部の開口部を覆うように格子状に配設される前記貫通孔の幅よりも長い金属部材から成る砕石浮上防止手段と、
前記貫通孔から上向きに前記集水施設内に立設されると共に集水施設の底壁に固定され、塩ビ管、土管、鉄管を含む筒状物からなる浸透筒と、
該浸透筒の上口部を覆って配設される着脱可能なフィルタとから構成されることを特徴とする浸透構造体。
An osmotic structure provided vertically from the ground to the inside of the water collection facility through a through hole formed in the bottom wall of the water collection facility including a water collection trough, a water collection trench, a water collection side ditch, and a water collection manhole. There,
A penetrating portion comprising a crushed stone filled in a hole formed in the ground downward from the through hole, and a penetrating sheet disposed so as to surround the crushed stone;
A crushed stone levitation preventing means made of a metal member longer than the width of the through hole disposed in a lattice shape so as to cover the opening of the permeation part below the through hole,
A permeation cylinder which is erected upward in the water collection facility from the through-hole and fixed to the bottom wall of the water collection facility, and is made of a cylindrical material including a PVC pipe, a clay pipe, and an iron pipe;
An osmotic structure comprising: a detachable filter disposed so as to cover an upper opening of the osmotic tube.
前記浸透部は、縦長形状であることを特徴とする請求項3または4に記載の浸透構造体。   The infiltration structure according to claim 3 or 4, wherein the infiltration portion has a vertically long shape. 前記貫通孔の形状と、前記浸透部および前記浸透筒の水平断面形状とは同一形状を有し、その形状は円形状、または多角形状であることを特徴とする請求項3から5のいずれかに記載の浸透構造体。   The shape of the through-hole and the horizontal cross-sectional shape of the permeation portion and the permeation cylinder have the same shape, and the shape is a circular shape or a polygonal shape. The osmotic structure described in 1. 前記貫通孔から下向きに地中に形成された孔の形状および前記浸透部の形状は、円筒状、円錐台形状、または四角推台形状を有していることを特徴とする請求項3から5のいずれかに記載の浸透構造体。
6. The shape of the hole formed in the ground downward from the through hole and the shape of the permeation part have a cylindrical shape, a truncated cone shape, or a quadrangular thrust trapezoidal shape. The osmotic structure according to any one of the above.
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WO2008142879A1 (en) * 2007-05-17 2008-11-27 Totetu Mfg. Co. Ltd. Pit for managing dust removal
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JP2010090598A (en) * 2008-10-07 2010-04-22 Nippon Koatsu Concrete Kk Infiltration manhole
KR100930723B1 (en) 2009-02-02 2009-12-09 배석동 A manhole structure for change from drained water to ground water
JP2011012432A (en) * 2009-07-01 2011-01-20 Hanex Co Ltd Infiltration filter structure
KR100952192B1 (en) 2010-01-07 2010-04-09 임철웅 Water pocket well for infiltrating a rainwater
JP2012001973A (en) * 2010-06-17 2012-01-05 Houshou Eg:Kk Drainage filter for rainwater permeation pipe
JP4926291B1 (en) * 2011-08-31 2012-05-09 株式会社ホウショウEg Drain filter for rainwater infiltration pipe
JP2015113655A (en) * 2013-12-13 2015-06-22 株式会社オーイケ Drainage device and infiltration system
JP2015229862A (en) * 2014-06-05 2015-12-21 三山工業株式会社 Filter structure for rainwater permeating basin, and rainwater permeating basin and rainwater permeating structure provided with the filter structure
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JP2022129132A (en) * 2021-02-24 2022-09-05 藤林コンクリート工業株式会社 Catchment basin water quantity adjustment structure and catchment basin
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