JP2019099151A - Bag type storage tank - Google Patents

Bag type storage tank Download PDF

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JP2019099151A
JP2019099151A JP2017227858A JP2017227858A JP2019099151A JP 2019099151 A JP2019099151 A JP 2019099151A JP 2017227858 A JP2017227858 A JP 2017227858A JP 2017227858 A JP2017227858 A JP 2017227858A JP 2019099151 A JP2019099151 A JP 2019099151A
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flat bag
bag body
storage tank
flat
bag
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JP6346704B1 (en
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勝 岡村
Masaru Okamura
勝 岡村
彰二 須藤
Shoji Sudo
彰二 須藤
祐司 酒井
Yuji Sakai
祐司 酒井
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MIRAI TECHNO CO Ltd
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MIRAI TECHNO CO Ltd
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Abstract

To provide a bag type storage tank capable of realizing both large capacity and seismic resistance without using a frame body of high rigidity.SOLUTION: A bag type storage tank comprises a foldable bottomed flat bag body 20, multiple radial partition parts 30 radially arranged inside the flat bag body 20 and partitioning the inner space of the flat bag body 20 into multiple compartments 26, and multiple spacers 31 arranged inside the flat bag body 20. The multiple radial partition parts 30 and the multiple spacers 31 restrict extension of the flat bag body 20, so that the flat bag body 20 forms a circular plane and a three-dimensional flat shape.SELECTED DRAWING: Figure 1

Description

本発明は防災や緊急時の使用に適した袋型貯留槽に関し、特に数万リットルもの大容量化と耐震化の両立が図れる袋型貯留槽に関する。   The present invention relates to a bag-type storage tank suitable for disaster prevention and emergency use, and more particularly to a bag-type storage tank capable of achieving both a large capacity of several tens of thousands of liters and earthquake resistance.

一般に貯留液の種類や貯留量により貯留槽の素材や形状が異なる。
防水シートを円筒形や方形に形成したシート容器と、シート容器を収容する枠体とからなる簡易型貯留槽が特許文献1〜3により知られている。
この種の簡易型貯留槽はコンパクトに保管でき、使用現場で立体形状に組立てて使用している。
Generally, the material and shape of the storage tank differ depending on the type and storage volume of the storage fluid.
The simple type storage tank which consists of a sheet container which formed the waterproof sheet in a cylindrical shape or a rectangle, and a frame which accommodates a sheet container is known by patent documents 1-3.
This type of simple reservoir can be stored compactly, and is assembled and used in a three-dimensional form at the use site.

特開平9−110087号公報Japanese Patent Application Laid-Open No. 9-110087 登録実用新案第3054943号公報Registered Utility Model No. 3054943 特開2012−25399号公報JP 2012-25399 A

従来の簡易型貯留槽には次の幾つかの問題点がある。
<1>従来の簡易型貯留槽は貯留可能な容量が数百リットル程度と小さい。
<2>簡易型貯留槽を単純に大型化すると、重量が増して貯留槽の運搬性や現場での組立性が悪くなる。
<3>例えば1万リットル以上の大量水を貯留し得るように、従来の簡易型貯留槽の寸法比を維持したまま大型化した場合には、円筒形または方形を呈するシート容器に巨大水圧が作用する。さらに地震時の揺れに対しても耐え得るだけの高い強度が求められる。
そのため、従来の簡易型貯留槽を単純に大型化することができず、大型化するにはシート容器および枠体の耐震耐圧構造を新たに開発しなければならない。
The conventional simplified reservoir has the following problems.
<1> The conventional simple type storage tank has a small storage capacity of about several hundred liters.
If the <2> simple type storage tank is simply enlarged, the weight increases and the transportability of the storage tank and the assemblability at the site deteriorate.
<3> When the size is increased while maintaining the dimensional ratio of the conventional simple type storage tank so that a large amount of water, for example, 10,000 liters or more can be stored, huge water pressure is generated in the sheet container exhibiting a cylindrical or square shape. Works. In addition, a high strength that can withstand earthquake shaking is required.
Therefore, it is not possible to simply increase the size of the conventional simplified storage tank, and in order to increase the size, it is necessary to newly develop a seismic pressure resistant structure of the sheet container and the frame.

本発明は以上の点に鑑みて成されたもので、その目的とするところは貯留容積の大容量化と耐震化の両立が可能な袋型貯留槽を提供することにある。   The present invention has been made in view of the above points, and an object of the present invention is to provide a bag-type storage tank capable of achieving both a large storage capacity and earthquake resistance.

本発明は、貯留液を給排可能な袋型貯留槽であって、平面形状が円形を呈する折畳可能な有底構造の扁平袋体を具備する。扁平袋体は平面形状が円形を呈する底面と、平面形状が円形を呈し、その一部に中央口を有する上面と、底面と上面の間を接続し、環状を呈する側面とを有する。
扁平袋体はその内部に放射状に配設され、扁平袋体の内空を複数の区画室に画成する複数の放射仕切帯と、前記扁平袋体の内部に配設され、扁平袋体の高さ方向の変位を一定に規制する複数のスペーサとを具備する。
前記扁平袋体は複数の放射仕切帯と複数のスペーサを組み合せることで、貯留液を充満させたときに扁平袋体が貯留液の液圧を利用して平面円形で立体的な扁平形状を保持することができる。
本発明の他の形態において、前記複数の区画室の両端開口部が扁平袋体の中心部と外周部の空間にそれぞれ連通した構造となっている。
本発明の他の形態において、扁平袋体の一部には貯留液の給排を行うための単数または複数の給排設備(バルブ)が配備してある。
本発明の他の形態において、扁平袋体の上面に複数のフロートを付設しておいてもよい。
本発明の他の形態において、扁平袋体は複数の分割シート片を接合して袋状に形成してもよい。
The present invention is a bag-type storage tank capable of supplying and discharging a storage liquid, and is provided with a flat bag body having a foldable bottomed structure having a circular planar shape. The flat bag has a bottom having a circular planar shape, a top having a central opening at a part of the circular shape, and a side surface having an annular shape connecting the bottom and the top.
The flat bag body is radially disposed inside the flat bag body, and a plurality of radiation partition bands that define the inner space of the flat bag body into a plurality of compartments, and is disposed inside the flat bag body And a plurality of spacers for restricting the displacement in the height direction.
The flat bag is a combination of a plurality of radiation partitions and a plurality of spacers, so that when filled with the storage liquid, the flat bag has a planar circular three-dimensional flat shape using the liquid pressure of the storage liquid. Can be held.
In another aspect of the present invention, the openings at both ends of the plurality of compartments communicate with the space of the central portion and the outer peripheral portion of the flat bag.
In another aspect of the present invention, a part of the flat bag body is provided with one or more supply / discharge facilities (valves) for supplying / discharging the storage fluid.
In another embodiment of the present invention, a plurality of floats may be attached to the upper surface of the flat bag.
In another embodiment of the present invention, the flat bag may be formed into a bag shape by joining a plurality of divided sheet pieces.

本発明は次の効果の少なくともひとつを得ることができる。
<1>扁平袋体と複数の放射仕切帯と複数のスペーサとを組み合せることで、貯留容積の大容量化と耐震化の両立が可能となる。
<2>扁平袋体のみで安定した立体形状を保持できるので、従来のような高剛性の枠体が不要となって、袋型貯留槽を経済的に製作できるうえに、袋型貯留槽の保管や現場への設置が容易となる。
<3>扁平袋体の全面および複数の放射仕切帯と複数のスペーサを通じて、貯留液の液圧が分散支持されるので、数万リットル単位で袋型貯留槽の大容量化を実現できる。
<4>貯留時に地震が生じても、放射仕切帯が貯留液の揺れの伝播を抑制し、さらに複数の放射仕切帯とスペーサが扁平袋体の変形を拘束するので、袋型貯留槽の耐震性が格段に向上する。
<5>扁平袋体内の区画室の両端開口が扁平袋体の中心部と外周部の空間にそれぞれ連通しているので、扁平袋体の内空を完全区画した場合と比べて貯留液の給排性がよくなる。
<6>扁平袋体を複数の分割シート片に分割し、これらの分割シート片を接合すれば、任意の容量の扁平袋体を簡易に製作することができる。
<7>袋型貯留槽は数万リットル単位での大容量化を実現できるため、大量液体の供給、または大量液体の貯留を必要とする各種の現場で使用できて汎用性に富む。
The present invention can obtain at least one of the following effects.
By combining the <1> flat bag body, the plurality of radiation partition bands, and the plurality of spacers, it is possible to achieve both a large storage capacity and earthquake resistance.
<2> Since a stable three-dimensional shape can be maintained only by the flat bag body, a conventional rigid frame body is not required, and the bag type storage tank can be economically manufactured. Storage and installation on site become easy.
Since the liquid pressure of the stored liquid is dispersedly supported through the entire surface of the flat bag and the plurality of radiation partitions and the plurality of spacers, the capacity of the bag-shaped storage tank can be increased in units of several tens of thousands of liters.
<4> Even if an earthquake occurs at the time of storage, the radiation partition suppresses the propagation of the shaking of the reservoir liquid, and the plurality of radiation partitions and spacers restrain the deformation of the flat bag body, so that the earthquake resistance of the bag type storage tank Sex will be greatly improved.
<5> Since the openings at both ends of the compartment in the flat bag body are respectively in communication with the space at the center and the outer periphery of the flat bag body, the supply of the storage fluid is more complete than in the case where the inner space of the flat bag body is completely partitioned. Exclusivity improves.
If the <6> flat bag body is divided into a plurality of divided sheet pieces and these divided sheet pieces are joined, a flat bag body of any capacity can be easily manufactured.
The <7> bag-type storage tank can realize a large capacity in units of several tens of thousands of liters, and thus can be used at various sites requiring supply of a large amount of liquid or storage of a large amount of liquid, and is versatile.

一部を省略した本発明に係る袋型貯留槽の全体斜視図Whole perspective view of the bag type storage tank which concerns on this invention which abbreviate | omitted one part 一部を省略した袋型貯留槽の平面図Top view of bag type storage tank which omitted a part 放射仕切帯の一部を省略した扁平袋体の説明図Explanatory drawing of the flat bag body which abbreviate | omitted a part of radiation partition zone 一部を省略した扁平袋体の説明図An illustration of a flat bag with a part omitted

以下に図面を参照しながら本発明について説明する。   The invention will now be described with reference to the drawings.

<1>袋型貯留槽の概要
図1,2を参照して説明すると、袋型貯留槽10(以下「貯留槽10」という)は、平面形状が円形を呈する有底構造の扁平袋体20と、扁平袋体20の内部に放射状に配設され、扁平袋体20の内空を複数の区画室26に画成する複数の放射仕切帯30と、扁平袋体20の内部に配設され、扁平袋体20の高さ方向の変位を一定に規制するスペーサ31と、を少なくとも具備する。
<1> Outline of bag-type storage tank Referring to FIGS. 1 and 2, the bag-type storage tank 10 (hereinafter referred to as "storage tank 10") is a flat bag body 20 with a bottomed structure having a circular planar shape. And a plurality of radiation partition bands 30 radially disposed inside the flat bag body 20 and defining the inner space of the flat bag body 20 into a plurality of compartments 26, and disposed inside the flat bag body 20. And at least a spacer 31 for restricting the displacement of the flat bag body 20 in the height direction.

<2>貯留液
貯留液には水、油、薬液等の各種流動性の液体を含む。
<2> Reservoir Liquid Reservoir liquid includes various fluid liquids such as water, oil, and chemical solutions.

<3>扁平袋体
扁平袋体20は平面形状が円形を呈する底面21と、底面21と相対向して位置し、平面形状が円形を呈する上面22と、両面21,12の間を結ぶ環状の側面23とを有する。
扁平袋体20の立体形状は、底面21が平らで上面22がやや丸くふくらんだ饅頭形(または半球形)を呈する。
扁平袋体20はコンパクトに折り畳みが可能であり、その外表面の複数箇所に取手を付設しておくと扁平袋体20の折り畳みや展開がし易くなる。
<3> Flat bag body The flat bag body 20 is positioned to face the bottom surface 21 having a circular planar shape and the bottom surface 21, and is an annular shape connecting the upper surface 22 having a circular planar shape and both surfaces 21 and 12. And the side surface 23 of the
The three-dimensional shape of the flat bag body 20 exhibits a truncated (or hemispherical) shape in which the bottom surface 21 is flat and the top surface 22 is slightly rounded.
The flat bag body 20 can be folded compactly, and if the handle is attached to a plurality of places on the outer surface, the flat bag body 20 can be easily folded and unfolded.

<3.1>扁平袋体の素材
扁平袋体20は少なくとも防水性(遮水性)のシート状物からなる。扁平袋体20の素材としては引張強度にくわえて耐久性、耐候性、耐熱性、耐薬品性等に優れた単層シートまたは積層シートを使用できる。
具体的には、塩ビ系シート、ゴム系シート等の公知の素材を適用できる。扁平袋体20の素材は経済性、取扱性、製作性を考慮して適宜の素材を選択すればよい。
<3.1> Material of Flat Bag Body The flat bag body 20 is made of at least a waterproof (waterproof) sheet. As the material of the flat bag body 20, it is possible to use a single layer sheet or a laminated sheet which is excellent in durability, weather resistance, heat resistance, chemical resistance and the like in addition to tensile strength.
Specifically, known materials such as polyvinyl chloride sheets and rubber sheets can be applied. As a material of the flat bag body 20, an appropriate material may be selected in consideration of the economy, the handling property, and the manufacturing property.

<3.2>扁平袋体の形成方法
扁平袋体20を一枚もののシート状物で形成することも可能であるが、複数の分割シート片を接合して袋状に形成することも可能である。
後者の形成方法の場合、扁平袋体20を複数の分割シート片に分割し、これらの分割シート片を縫製や接着等の接合手段により接合して袋状に形成する。
各シート片の分割形状や分割数は扁平袋体20の容積に応じて適宜選択する。
<3.2> Method of Forming Flat Bag Body Although it is possible to form the flat bag body 20 with a single sheet, it is also possible to form a bag shape by joining a plurality of divided sheet pieces. is there.
In the case of the latter formation method, the flat bag body 20 is divided into a plurality of divided sheet pieces, and these divided sheet pieces are joined by joining means such as sewing or bonding to form a bag.
The division shape and the number of divisions of each sheet piece are appropriately selected according to the volume of the flat bag body 20.

<3.3>貯留液の給排設備
扁平袋体20の上面22には貯留液の給排を行うための中央口24が形成してあり、中央口24は蓋25により開閉できる。
蓋25により中央口24を閉じたとき、中央口24を通じた貯留液の漏出を規制し得るように封止可能になっている。
<3.3> Supply and Discharge System of Reservoir Liquid The central port 24 for supplying and discharging the reservoir liquid is formed on the upper surface 22 of the flat bag body 20, and the central port 24 can be opened and closed by the lid 25.
When the central port 24 is closed by the lid 25, the lid 25 can be sealed so as to restrict the leakage of the reservoir liquid through the central port 24.

側面23の一部には単数または複数のバルブ27が設けてあり、バルブ27を通じて貯留液の給排が可能である。   One or more valves 27 are provided in a part of the side surface 23, through which the stored liquid can be supplied and discharged.

<3.4>扁平袋体を扁平に形成した理由
例えば袋体の立体形状が円柱状または角柱状であると、袋体の側面に大きな液圧が作用して立体形状を維持することが困難になるだけでなく、地震時における安定性が悪い。
<3.4> The reason why the flat bag is formed to be flat For example, when the three-dimensional shape of the bag is cylindrical or prismatic, it is difficult to maintain a three-dimensional shape by a large hydraulic pressure acting on the side surface of the bag. Not only that, but also the stability during earthquakes is bad.

そこで本発明では貯留槽10の自立性と安定性を両立し得るように、扁平袋体20の立体形状を略饅頭形の扁平形状とした。
本発明における「扁平形状」とは、満水時における扁平袋体20の底面径に対して高さが小さい寸法関係を指していて、実用的には扁平袋体20の高さは底面径に対して1/10〜1/3の範囲が望ましい。
例えば、扁平袋体20の容積を30万リットルとした場合、扁平袋体20の底面径が19m、高さが2m弱程度となる。
Therefore, in the present invention, the three-dimensional shape of the flat bag body 20 is made to be a substantially frusto-conical flat shape so that the self-supporting property and the stability of the storage tank 10 can be compatible.
The “flat shape” in the present invention refers to a dimensional relationship in which the height is smaller than the bottom diameter of the flat bag 20 at the time of full water, and practically, the height of the flat bag 20 is smaller than the bottom diameter. The range of 1/10 to 1/3 is desirable.
For example, when the flat bag body 20 has a volume of 300,000 liters, the bottom face diameter of the flat bag body 20 is about 19 m and the height is about 2 m or less.

<4>放射仕切帯
放射仕切帯30は扁平袋体20内に放射状に配置した帯状のシート片であり、その上下辺が底面21と上面22にそれぞれ縫合または接着等により固着してある。
放射仕切帯30の内端は中央口24の付近に位置し、放射仕切帯30の外端は側面23から離隔した位置にある。
図3に拡大して示すように、放射仕切帯30の外端辺は扁平袋体20の側面23に固着されていない。
<4> Radiation partition zone The radiation partition zone 30 is a strip-shaped sheet piece radially arranged in the flat bag body 20, and the upper and lower sides thereof are fixed to the bottom surface 21 and the top surface 22 by stitching or adhesion.
The inner end of the radiation partition 30 is located near the central opening 24, and the outer end of the radiation partition 30 is located at a distance from the side surface 23.
As shown in an enlarged manner in FIG. 3, the outer end side of the radiation partition band 30 is not fixed to the side surface 23 of the flat bag body 20.

<4.1>放射仕切帯の機能
放射仕切帯30は扁平袋体20の内部に複数の区画室26を形成するための仕切材であるだけでなく、底面21に対する上面22の離隔を一定範囲に規制するスペーサ材として機能し、さらに扁平袋体20の上面22および側面23が拡径方向へ向けて展張するのを一定範囲に抑える補強部材としても機能する。
<4.1> Function of Radiation Partition Zone The radiation partition zone 30 is not only a partition material for forming a plurality of compartments 26 inside the flat bag body 20, but also the separation of the top surface 22 with respect to the bottom surface 21 is a certain range In addition, it functions as a spacer material that restricts, and also functions as a reinforcing member that limits expansion of the upper surface 22 and the side surface 23 of the flat bag body 20 in the radial direction to a certain range.

<4.2>区画室
扁平袋体20の内部には、隣り合う2枚の放射仕切帯30と底面21と上面22とにより平面形状が略扇状を呈する複数の区画室26を形成している。
扁平袋体20の内空の中心部と外周部は放射仕切帯30で区画されておらず、複数の区画室26の両端開口が扁平袋体20の中心部の空間と外周部の環状空間にそれぞれ連通している。
扁平袋体20の内空を複数の放射仕切帯30で仕切るようにしたのは、地震時における貯留液の揺れの伝播を抑制するためである。
扁平袋体20の内空を完全に区画せずに複数の区画室26の両端開口を扁平袋体20の中心部の空間と外周部の環状空間にそれぞれ連通させたのは、貯留液の給排をし易くするためである。
<4.2> Compartments Within the flat bag body 20, a plurality of compartments 26 having a substantially fan-like planar shape are formed by the two adjacent radiation partitions 30, the bottom face 21 and the top face 22. .
The central portion and the outer peripheral portion of the flat bag body 20 are not divided by the radiation partition band 30, and both ends of the plurality of compartments 26 are in the space of the central portion of the flat bag body 20 and the annular space of the outer peripheral portion They are in communication with each other.
The reason why the inner space of the flat bag body 20 is partitioned by the plurality of radiation partition bands 30 is to suppress the propagation of the shaking of the storage liquid at the time of an earthquake.
The reason why the openings at both ends of the plurality of compartments 26 are communicated with the space at the central portion of the flat bag body 20 and the annular space at the outer peripheral portion without completely dividing the inner space of the flat bag body 20 is This is to make it easy to discharge.

<5>スペーサ
図4を参照して説明すると、スペーサ31は扁平袋体20内に縦向きに配置した帯状片または紐体であり、その上下端が扁平袋体20の底面21と上面22にそれぞれ縫合または接着等により固着してある。
スペーサ31は放射仕切帯30と協働して底面21と上面22の対向距離を一定範囲に規制する間隔保持材であり、放射仕切帯30と干渉しない位置に適宜の間隔を隔てて配設してある。
放射仕切帯30やスペーサ31の設置数は扁平袋体20の容積等を考慮して適宜選択する。
<5> Spacer Referring to FIG. 4, the spacer 31 is a strip or a string placed longitudinally in the flat bag 20, and the upper and lower ends thereof are on the bottom 21 and the top 22 of the flat bag 20. Each is fixed by suturing or adhesion.
The spacer 31 is a spacing member which regulates the opposing distance between the bottom surface 21 and the top surface 22 within a certain range in cooperation with the radiation partitioning band 30, and is disposed at a suitable interval not to interfere with the radiation partitioning band 30. It is
The number of the radiation partition strips 30 and the number of the spacers 31 are appropriately selected in consideration of the volume of the flat bag body 20 and the like.

<6>貯留槽の素材強度について
貯留槽10を構成する扁平袋体20のシート材、放射仕切帯30およびスペーサ31には、地震時に扁平袋体20の立体形状を維持し得るだけの強度が付与されている。
<6> Material Strength of Storage Tank The sheet material of the flat bag body 20 constituting the storage tank 10, the radiation partition zone 30 and the spacer 31 have a strength sufficient to maintain the three-dimensional shape of the flat bag body 20 at the time of an earthquake. It has been granted.

<7>フロート
扁平袋体20の上面22の内面(下面)には複数のフロート40が取り付けてある。
フロート40は貯留液の液面上昇を利用して扁平袋体20の上面22を浮上させるための浮力体である。
フロート40としては発泡スチロールや中空構造体等の公知の浮力構造体を適用できる。
フロート40の形状は特に制約はなく、例えば球体、柱体、板体等を適用でき、またその付設手段としては係留式または固着式の何れでもよい。
<7> Floats A plurality of floats 40 are attached to the inner surface (lower surface) of the upper surface 22 of the flat bag body 20.
The float 40 is a buoyant body for floating the upper surface 22 of the flat bag body 20 by utilizing the rise in the liquid level of the storage liquid.
As the float 40, a known buoyant structure such as expanded polystyrene or a hollow structure can be applied.
The shape of the float 40 is not particularly limited, and, for example, a sphere, a cylinder, a plate or the like can be applied, and the attachment means may be either of a mooring type or a fixation type.

[貯留槽の使用方法]
つぎに貯留槽10の使用方法について説明する。
[How to use the storage tank]
Below, the usage method of the storage tank 10 is demonstrated.

1.貯留液の貯留
貯留槽10内に貯留液を貯留する方法について説明する。
1. Reservoir of Reservoir The method of storing the reservoir in the reservoir 10 will be described.

<1>扁平袋体の展開
折り畳んだ状態で搬入した扁平袋体20を設置現場で展開し、扁平袋体20の底面21を平らな水平支持面に着底させる。
扁平袋体20はシート材のみで形成されているから、設置現場で扁平袋体20を簡単に展開することができる。
<1> Expansion of Flat Bag Body The flat bag body 20 carried in in a folded state is expanded at an installation site, and the bottom surface 21 of the flat bag body 20 is placed on a flat horizontal support surface.
Since the flat bag body 20 is formed only of the sheet material, the flat bag body 20 can be easily deployed at the installation site.

<2>貯留液の供給
扁平袋体20の中央口24内に供給ホースを挿し込み貯留液の注入を開始する。
扁平袋体20の内空は複数の放射仕切帯30で仕切られているが、各区画室26の両端が開放されているので、扁平袋体20の中心部から注入された貯留液は扁平袋体20の全体へ向けて拡散する。
<2> Supply of Reservoir Solution A supply hose is inserted into the central opening 24 of the flat bag body 20 to start infusion of the reservoir solution.
The inner space of the flat bag body 20 is partitioned by a plurality of radiation partition zones 30, but since both ends of each compartment 26 are open, the reservoir liquid injected from the central portion of the flat bag body 20 is a flat bag body Spread towards the whole of twenty.

<2.1>底面の展張
扁平袋体20の底面21を円形に展張する。
注入初期において、貯留液の液圧を利用することで扁平袋体20の底面21を皺のない状態まで容易に展張することができる。
<2.1> Expansion of Bottom The bottom 21 of the flat bag body 20 is expanded in a circle.
In the initial stage of injection, the bottom surface 21 of the flat bag body 20 can be easily expanded to a wrinkle-free state by utilizing the liquid pressure of the reservoir liquid.

<2.2>側面の展張
液位の上昇に伴い、萎んだ状態の扁平袋体20の側面23が拡径方向に向けて徐々に膨らんでいく。
扁平袋体20の側面23が環状形状に膨らむと、側面23自身の引張強度と複数の放射仕切帯30の引張強度により側面23の膨張が規制される。
<2.2> Expansion of the Side As the liquid level rises, the side 23 of the flat bag body 20 in a deflated state gradually expands in the radial direction.
When the side surface 23 of the flat bag body 20 expands in an annular shape, the expansion of the side surface 23 is restricted by the tensile strength of the side surface 23 itself and the tensile strength of the plurality of radiation partition bands 30.

<2.3>上面の展張と上昇
扁平袋体20の側面23が膨張する際に上面22が拡張方向へ向けて展張される。
フロート40が浮力を受けると液位の上昇に伴って上面22が上昇する。
扁平袋体20の側面23の膨張と上面22の上昇は並行して進行し、扁平袋体20の立体形状が饅頭形に膨らんでいく。
扁平袋体20が満杯に達したら貯留液の注入を停止し、中央口24を蓋25で閉じて貯留液の貯留作業を終了する。
When the side surface 23 of the flat bag body 20 is expanded, the upper surface 22 is expanded in the expansion direction.
When the float 40 receives buoyancy, the upper surface 22 rises as the liquid level rises.
The expansion of the side surface 23 of the flat bag 20 and the elevation of the upper surface 22 proceed in parallel, and the three-dimensional shape of the flat bag 20 expands in a truncated shape.
When the flat bag body 20 reaches full, the pouring of the reservoir liquid is stopped, the central opening 24 is closed by the lid 25, and the storage operation of the reservoir liquid is finished.

貯留された貯留液は扁平袋体20と同形の饅頭形を呈し、着床面積に対して表面積が大きくなり、貯留液の表面に表面張力がはたらく。
そのため、作業員が乗っても扁平袋体20の上面22が陥没したり、中央口24から貯留液が溢れ出たりすることがない。そのため、作業員が上面22に乗りながら中央口24を蓋25で閉じることができる。
The stored liquid has a frusto-conical shape similar to that of the flat bag body 20, and the surface area is larger than the landing area, and surface tension acts on the surface of the stored liquid.
Therefore, the upper surface 22 of the flat bag body 20 does not sink or the reservoir liquid overflows from the central opening 24 even if a worker gets on. Therefore, the operator can close the central opening 24 with the lid 25 while riding on the upper surface 22.

なお、以上は扁平袋体20の中央口24を通じて貯留液を供給する形態について説明したが、側面23の一部に設けたバルブ27と併用するか、またはバルブ27単独で貯留液を供給するようにしてもよい。   In the above, the embodiment has been described in which the reservoir liquid is supplied through the central opening 24 of the flat bag body 20, but the reservoir liquid may be supplied in combination with the valve 27 provided in part of the side 23 or by the valve 27 alone. You may

2.貯留液の保管
貯留液の保管について説明する。
2. Storage of Reservoir Solution Storage of reservoir solution is explained.

<1>通常時
揺れが生じない通常時、貯留槽10を構成する扁平袋体20のシート面全面に深度に応じた液圧が作用している。
扁平袋体20の底面21に作用する貯留液の重量は水平支持面で支持される。
扁平袋体20の側面23や上面22には液圧が展張方向へ向けた引張力として作用するが、これらの引張力は扁平袋体20を構成する底面21、側面23、上面22に分散して支持され、さらに複数の放射仕切帯30および複数のスペーサ31によっても分散して支持される。
したがって、扁平袋体20は底面21が平らで上面22がやや丸くふくらみ、貯留槽10の全体が饅頭形を呈する扁平形状を維持することができる。
<1> Normal time In normal times, the hydraulic pressure according to the depth is acting on the entire sheet surface of the flat bag body 20 constituting the storage tank 10 at the normal time.
The weight of the storage fluid acting on the bottom surface 21 of the flat bag body 20 is supported by the horizontal support surface.
The hydraulic pressure acts on the side surface 23 and the upper surface 22 of the flat bag body 20 as a tensile force directed in the spreading direction, but these tensile forces are dispersed on the bottom surface 21, the side surface 23 and the upper surface 22 of the flat bag body 20. It is supported in a distributed manner by the plurality of radiation partitions 30 and the plurality of spacers 31.
Accordingly, the flat bag body 20 can maintain a flat shape in which the bottom surface 21 is flat and the upper surface 22 is slightly rounded and the entire storage tank 10 has a truncated shape.

<2>地震時
扁平袋体20の内空が複数の放射仕切帯30により放射状に仕切されているため、貯留槽10に横揺れが生じても、複数の放射仕切帯30が貯留液の横揺れの伝播を抑制して貯留液の変位を小さく抑制することができる。
さらに扁平袋体20の底面21と上面22との間に張設された複数の放射仕切帯30とスペーサ31が上面22の変形を抑制するため、貯留液の縦揺れを効果的に抑制することができる。
したがって、貯留液の保管中に地震が生じても、扁平袋体20の破裂を未然防止できるだけでなく、貯留槽10の転動や貯留液の漏出を効果的に抑止できる。
<2> At the time of earthquake Because the inner space of the flat bag body 20 is radially partitioned by the plurality of radiation partitioning zones 30, the plurality of radiation partitioning zones 30 are sideways of the storage fluid even if the storage tank 10 sways. It is possible to reduce the displacement of the reservoir liquid by suppressing the propagation of shaking.
Furthermore, since the plurality of radiation partitioning zones 30 and the spacers 31 provided between the bottom surface 21 and the top surface 22 of the flat bag body 20 suppress the deformation of the top surface 22, the pitching of the stored liquid is effectively suppressed. Can.
Therefore, even if an earthquake occurs during storage of the reservoir liquid, not only can bursting of the flat bag body 20 be prevented, but also rolling of the storage tank 10 and leakage of the reservoir liquid can be effectively suppressed.

3.貯留液の排出
貯留液の排出について説明する。
3. Discharge of Reservoir Liquid Discharge of the reservoir liquid is explained.

<1>バルブを通じた排出
貯留液の供給が必要なときは、バルブ27を開弁することで、貯留槽10内の貯留液を排出して所望の使途に提供することができる。
扁平袋体20内の複数の区画室26の両端開口が扁平袋体20の中心部と外周部の空間にそれぞれ連通しているので、貯留液のすべてを排出することができる。
<1> Discharge via a Valve When the supply of the storage liquid is required, the storage liquid in the storage tank 10 can be discharged and provided to a desired use by opening the valve 27.
Since the openings at both ends of the plurality of compartments 26 in the flat bag body 20 communicate with the space of the central portion and the outer peripheral portion of the flat bag body 20, it is possible to discharge all of the reservoir liquid.

<2>中央口を通じた排出
中央口24を通じて貯留槽10内の貯留液を排出することも可能である。
さらにバルブ27と中央口24を通じて貯留液を排出することも可能であり、使途や供給量を考慮して適宜供給ルートの使い分けが可能である。
<2> Discharge through Central Port It is also possible to discharge the reservoir liquid in the storage tank 10 through the central port 24.
Furthermore, it is possible to discharge the reservoir liquid through the valve 27 and the central opening 24, and it is possible to properly use the supply route in consideration of usage and supply amount.

4.使途例
本発明に係る貯留槽10は、例えば各種大型発電施設等における大量の冷却水の供給や大量排水の暫定的貯蔵に用いることができる。
貯留槽10の使途は上記の例示に限定されず、各種の大量液体の供給、または大量液体の貯蔵を必要とする屋内外の現場で使用することができる。
4. Use example The storage tank 10 according to the present invention can be used, for example, for supply of a large amount of cooling water in various large power generation facilities or the like, or for provisional storage of a large amount of drainage water.
The use of the storage tank 10 is not limited to the above-mentioned example, and can be used in indoor and outdoor sites requiring supply of various types of large amounts of liquid or storage of large amounts of liquid.

10・・・・貯留槽
20・・・・扁平袋体
21・・・・扁平袋体の底面
22・・・・扁平袋体の上面
23・・・・扁平袋体の側面
24・・・・中央口
25・・・・蓋
26・・・・区画室
27・・・・バルブ
30・・・・放射仕切帯
31・・・・スペーサ
40・・・・フロート
10 · · · Storage tank 20 · · · Flat bag body 21 · · · Bottom surface 22 of the flat bag body · · · · Top surface 23 of the flat bag body · · · · · Side 24 of the flat bag body · · · Central mouth 25 ... Lid 26 ... ... Compartment 27 ... ... Valve 30 ... ... Radiation partition 31 ... ... Spacer 40 ... ... Float

Claims (5)

貯留液を給排可能な袋型貯留槽であって、
平面形状が円形を呈する底面と、平面形状が円形を呈し、その一部に中央口を有する上面と、底面と上面の間を接続し、環状を呈する側面とを有する扁平袋体と、
前記扁平袋体の内部に放射状に配設され、扁平袋体の内空を複数の区画室に画成する複数の放射仕切帯と、
前記扁平袋体の内部に配設され、扁平袋体の高さ方向の変位を一定に規制する複数のスペーサと、を少なくとも具備し、
貯留液を充満させたときに、前記扁平袋体が平面円形で立体的な扁平形状を呈するように、前記複数の放射仕切帯および複数のスペーサにより扁平袋体の展張が規制されることを特徴とする、
袋型貯留槽。
A bag type storage tank capable of supplying and discharging storage fluid,
A flat bag having a bottom surface having a circular planar shape, a top surface having a central surface in a plan view having a central opening, and a side surface having an annular shape and connecting the bottom surface and the upper surface;
A plurality of radiation dividers disposed radially inside the flat bag and defining an inner space of the flat bag into a plurality of compartments;
At least a plurality of spacers disposed inside the flat bag body and regulating the displacement of the flat bag body in the height direction at a constant level;
It is characterized in that the expansion of the flat bag is restricted by the plurality of radiation partitions and the plurality of spacers such that the flat bag has a three-dimensional flat shape having a circular shape when filled with the storage liquid. And
Bag type storage tank.
前記複数の区画室の両端開口部が扁平袋体の中心部の空間と外周部の空間にそれぞれ連通していることを特徴とする、請求項1に記載の袋型貯留槽。   The bag-type storage tank according to claim 1, wherein the openings at both ends of the plurality of compartments communicate with the space at the center of the flat bag and the space at the outer periphery. 前記扁平袋体の側面の一部に貯留液の給排を行うための単数または複数の給排設備が配設してあることを特徴とする、請求項1または2に記載の袋型貯留槽。   The bag-type storage tank according to claim 1 or 2, wherein one or more supply / discharge facilities for supplying / discharging a reservoir liquid are disposed on a part of the side surface of the flat bag body. . 前記扁平袋体の上面に複数のフロートが付設してあることを特徴とする、請求項1乃至3の何れか一項に記載の袋型貯留槽。   The bag type storage tank according to any one of claims 1 to 3, wherein a plurality of floats are attached to the upper surface of the flat bag body. 前記扁平袋体が複数の分割シート片からなり、前記複数の分割シート片が接合されて袋状に形成されていることを特徴とする、請求項1乃至4の何れか一項に記載の袋型貯留槽。   The bag according to any one of claims 1 to 4, wherein the flat bag body comprises a plurality of divided sheet pieces, and the plurality of divided sheet pieces are joined to form a bag shape. Type storage tank.
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