JP2016099226A - Static water cylinder for oil leakage detection device - Google Patents

Static water cylinder for oil leakage detection device Download PDF

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JP2016099226A
JP2016099226A JP2014236315A JP2014236315A JP2016099226A JP 2016099226 A JP2016099226 A JP 2016099226A JP 2014236315 A JP2014236315 A JP 2014236315A JP 2014236315 A JP2014236315 A JP 2014236315A JP 2016099226 A JP2016099226 A JP 2016099226A
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oil
cylindrical body
cylinder
liquid
leak detector
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JP6252443B2 (en
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高橋 正
Tadashi Takahashi
正 高橋
浩之 北出
Hiroyuki Kitade
浩之 北出
浩和 大田
Hirokazu Ota
浩和 大田
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Sumitomo Metal Mining Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a static water cylinder for an oil leakage detection device, which is capable of suppressing rippling on a liquid surface and reducing error detection of the oil leakage detection device.SOLUTION: A static water cylinder A comprises a cylindrical body 20 that is provided in a pit P and has an oil leakage detection device D inserted therein. On a side surface of the cylindrical body 20, a liquid passage hole 21 is formed longitudinally. The liquid passage hole consists of a plurality of small holes arranged at intervals. At least one hole is provided in a horizontal plane of any height from the upper end to the lower end in a range of formation of the liquid passage hole. Oil floating on a liquid surface can penetrate into the cylindrical body 20 through the liquid passage hole, and oil leakage can be detected by the oil leakage detection device D inserted in the cylindrical body 20. Rippling on a liquid surface in the cylindrical body 20 can be suppressed to allow an oil layer to be a stationary state, and thus error detection of the oil leakage detection device D can be reduced.SELECTED DRAWING: Figure 1

Description

本発明は、油漏れ検知器用の静水筒に関する。   The present invention relates to a hydrostatic cylinder for an oil leak detector.

湿式製錬プロセスの溶媒抽出工程では、有機溶媒と水とを混合攪拌したのち静置する処理を行い、有機溶媒と水との溶解度差を利用して目的金属を濃縮している。工業的な溶媒抽出装置においては、数百リットル〜数百キロリットルといった大量の有機溶媒が装置内に保有されている。   In the solvent extraction step of the hydrometallurgical process, the organic solvent and water are mixed and stirred and then left to stand, and the target metal is concentrated using the difference in solubility between the organic solvent and water. In an industrial solvent extraction apparatus, a large amount of organic solvent such as several hundred liters to several hundred kiloliters is held in the apparatus.

有機溶媒はそれ自体が危険物であり、また、重金属が担持されている場合が多いので、有機溶媒が装置から漏洩してプラント外に流出すると環境被害や火災被害を与える恐れがある。そのため装置の破損などによる有機溶媒の漏洩に備えて、溶媒抽出装置は防液堤内に設置される。防液堤は少なくとも溶媒抽出装置内に保有される有機溶媒を貯留できる容積を有している。防液堤により、装置から有機溶媒が漏洩したとしてもプラント外に流出することを防止できる。   The organic solvent itself is a dangerous substance, and heavy metals are often carried on it. If the organic solvent leaks from the apparatus and flows out of the plant, it may cause environmental damage or fire damage. Therefore, the solvent extraction device is installed in the breakwater in preparation for leakage of the organic solvent due to damage to the device. The liquid breakwater has a volume capable of storing at least the organic solvent held in the solvent extraction device. The breakwater can prevent the organic solvent from leaking out of the plant even if it leaks from the device.

防液堤内の数カ所にはピットが設置されており、防液堤内に流出した液体がピット内に集まるよう構成されている。ピットには、ピット内から液体を排出するための水中ポンプや、pHなどの液性を監視するセンサーのほか、ピット内の油(有機溶媒)の存在を検知する油漏れ検知器(例えば、特許文献1)が設けられる。油漏れ検知器により有機溶媒の漏洩が検知された場合には、溶媒抽出工程の操業を停止して溶媒抽出装置の破損の有無の確認や補修が行われる。   There are several pits in the breakwater, and the liquid that has flowed into the breakwater is collected in the pit. In the pit, an underwater pump for discharging liquid from the pit, a sensor for monitoring liquidity such as pH, and an oil leak detector for detecting the presence of oil (organic solvent) in the pit (for example, patents) Reference 1) is provided. When the leakage of the organic solvent is detected by the oil leak detector, the operation of the solvent extraction process is stopped, and the presence or absence of damage to the solvent extraction apparatus is confirmed or repaired.

一般的な油漏れ検知器は、油膜(厚み0.1mm以下)程度であっても検知できるように精度が高められており、微量の油漏れでも検知できる能力を有している。しかし、溶媒抽出装置の場合、ピット内には装置の機械油などに由来する油層が存在するのが通常であり、その厚みは数mm〜十数mm程度である。そのため、一般的な油漏れ検知器では機械油などに由来する油層を検知してしまい、誤検知となる。そこで、有機溶媒の漏洩を検知するために、油漏れ検知器を、油層の厚みが数mm程度の場合には検知せず、基準値(例えば50mm)に達したときに検知するよう設定することが行われる。   General oil leak detectors have improved accuracy so that even oil films (thickness of 0.1 mm or less) can be detected, and have the ability to detect even small amounts of oil leaks. However, in the case of a solvent extraction device, an oil layer derived from the machine oil of the device is usually present in the pit, and the thickness thereof is about several mm to several tens of mm. Therefore, a general oil leak detector detects an oil layer derived from machine oil or the like, resulting in false detection. Therefore, in order to detect the leakage of organic solvent, the oil leak detector should be set not to detect when the oil layer thickness is about several millimeters, but to detect when the reference value (eg 50 mm) is reached. Is done.

油層の厚みは液面の波立ちにより局所的に変化するが、この変化は油層が厚くなるほど大きくなる。そのため、油層がある程度厚くなると、静置状態では油層の厚みが基準値に達していないにも関わらず油漏れ検知器が油漏れを検知し、誤検知となるという問題がある。誤検知のたびに溶媒抽出工程の操業を停止したのでは、操業効率が低下してしまう。   The thickness of the oil layer changes locally due to the undulation of the liquid level, but this change increases as the oil layer becomes thicker. Therefore, when the oil layer becomes thick to some extent, there is a problem that the oil leak detector detects an oil leak even though the thickness of the oil layer does not reach the reference value in a stationary state, resulting in a false detection. If the operation of the solvent extraction process is stopped each time an erroneous detection is made, the operation efficiency is lowered.

特開2001−174317号公報JP 2001-174317 A

本発明は上記事情に鑑み、液面の波立ちを抑制して、油漏れ検知器の誤検知を低減できる油漏れ検知器用の静水筒を提供することを目的とする。   In view of the above circumstances, an object of the present invention is to provide a still water cylinder for an oil leak detector that can suppress the undulation of the liquid level and reduce erroneous detection of the oil leak detector.

第1発明の油漏れ検知器用の静水筒は、ピット内に設けられ、内部に油漏れ検知器が挿入される筒体を備え、前記筒体の側面には、通液孔が上下にわたって形成されていることを特徴とする。
第2発明の油漏れ検知器用の静水筒は、第1発明において、前記通液孔は、間隔を有して配置された複数の小孔からなり、前記筒体の側面には、前記通液孔の形成範囲の上端から下端にかけていずれの高さの水平面内においても少なくとも一の前記小孔が配置されていることを特徴とする。
第3発明の油漏れ検知器用の静水筒は、第1または第2発明において、前記通液孔は、前記筒体の側面のうち前記ピットの壁面に対向する範囲に形成されていることを特徴とする。
The hydrostatic cylinder for an oil leak detector according to the first aspect of the present invention includes a cylinder body that is provided in a pit and into which an oil leak detector is inserted. A liquid passage hole is formed on the side surface of the cylinder body. It is characterized by.
The hydrostatic cylinder for an oil leak detector according to a second aspect of the present invention is the first aspect of the present invention, wherein the liquid passage hole is composed of a plurality of small holes arranged at intervals, and the liquid passage is provided on a side surface of the cylinder body. At least one small hole is arranged in a horizontal plane at any height from the upper end to the lower end of the hole formation range.
The hydrostatic cylinder for an oil leak detector according to a third aspect of the present invention is characterized in that, in the first or second aspect, the liquid passage hole is formed in a range facing the wall surface of the pit in the side surface of the cylindrical body. And

第1発明によれば、筒体の側面に通液孔が形成されているので、液面に浮遊する油が通液孔を通して筒体の内部に浸入でき、筒体の内部に挿入された油漏れ検知器で油漏れを検知できる。また、筒体内部の液面は波立ちが抑制されるので、油層を静置状態にすることができ、油漏れ検知器の誤検知を低減できる。
第2発明によれば、通液孔が間隔を有して配置された複数の小孔からなるので、通液孔を長尺の孔とする場合よりも筒体の強度を高くすることができる。
第3発明によれば、通液孔がピットの壁面に対向する範囲に形成されているので、波が筒体の内部に進入することを抑制でき、筒体内部の液面の波立ちをより抑制できる。
According to the first invention, since the liquid passage hole is formed in the side surface of the cylindrical body, the oil floating on the liquid surface can enter the inside of the cylindrical body through the liquid passage hole and is inserted into the cylindrical body. A leak detector can detect oil leaks. Further, since the liquid level inside the cylinder is suppressed, the oil layer can be kept stationary, and erroneous detection of the oil leak detector can be reduced.
According to the second invention, since the liquid passing hole is composed of a plurality of small holes arranged at intervals, the strength of the cylindrical body can be increased as compared with the case where the liquid passing hole is a long hole. .
According to the third invention, since the liquid passage hole is formed in a range facing the wall surface of the pit, the wave can be prevented from entering the inside of the cylindrical body, and the ripple of the liquid level inside the cylindrical body can be further suppressed. it can.

本発明の一実施形態に係る静水筒の側面図である。It is a side view of the still water pipe concerning one embodiment of the present invention. 同静水筒の平面図である。It is a top view of the still water cylinder. 油漏れ検知器の検知方法の説明図であって、(A)は油層が薄い場合、(B)油層が厚い場合を示す。It is explanatory drawing of the detection method of an oil leak detector, Comprising: (A) shows the case where an oil layer is thin, (B) The case where an oil layer is thick. 同静水筒の筒体の側面図である。It is a side view of the cylinder of the still water cylinder. 図4におけるV−V線矢視断面図である。FIG. 5 is a cross-sectional view taken along line VV in FIG. 4. その他の実施形態に係る静水筒の筒体の側面図である。It is a side view of the cylinder of the hydrostatic cylinder which concerns on other embodiment.

つぎに、本発明の実施形態を図面に基づき説明する。
図1および図2に示すように、本発明の一実施形態に係る静水筒Aは、溶媒抽出装置からの有機溶媒の漏洩を検知する油漏れ検知器Dに用いられる。溶媒抽出装置は防液堤内に設置され、防液堤内にはピットPが設置されている。ピットPは防液堤内の他の部分よりも窪んだ槽となっており、溶媒抽出装置から流出した液体のほか、雨水や場面洗浄用の散水に使用した工水などがピットP内に集まるよう構成されている。このピットP内に油漏れ検知器Dが設けられ、ピットP内の油の存在を検知することで、有機溶媒の漏洩を検知している。
Next, an embodiment of the present invention will be described with reference to the drawings.
As shown in FIGS. 1 and 2, the hydrostatic cylinder A according to an embodiment of the present invention is used in an oil leak detector D that detects leakage of an organic solvent from a solvent extraction device. The solvent extraction device is installed in the breakwater, and a pit P is installed in the breakwater. The pit P is a tank that is recessed from the rest of the breakwater, so that the liquid that flows out of the solvent extraction device, as well as industrial water used for rainwater and water for scene cleaning, etc. gather in the pit P. It is configured. An oil leak detector D is provided in the pit P, and by detecting the presence of oil in the pit P, leakage of the organic solvent is detected.

なお、ピットPは油漏れ検知器Dの検知対象の液体が貯留される槽であればよい。検知対象の液体は溶媒抽出装置に用いられる有機溶媒に限定されず、あらゆる液が含まれる。すなわち、防液堤内に設置される装置は溶媒抽出装置に限定されない。また、一般にピットPは防液堤内に設置されるが、この構成に限定されない。   In addition, the pit P should just be a tank in which the liquid of the detection target of the oil leak detector D is stored. The liquid to be detected is not limited to the organic solvent used in the solvent extraction device, and includes any liquid. In other words, the device installed in the liquid barrier is not limited to the solvent extraction device. In general, the pits P are installed in the breakwater, but are not limited to this configuration.

(油漏れ検知器D)
つぎに、油漏れ検知器Dを説明する。
油漏れ検知器Dの種類は液面に浮くタイプの検知器であれば特に限定されないが、静電容量方式の油漏れ検知器Dが好適に用いられる。静電容量方式の油漏れ検知器Dは、水と油の静電容量の相違を利用して油の存在を検知する。
(Oil leak detector D)
Next, the oil leak detector D will be described.
The type of the oil leak detector D is not particularly limited as long as it is a detector that floats on the liquid surface, but a capacitive oil leak detector D is preferably used. Capacitance type oil leak detector D detects the presence of oil using the difference in capacitance between water and oil.

図3に示すように、油漏れ検知器Dは、液面に浮揚するフロート11と、静電容量を検知するためのプローブ12とを備えている。フロート11は略円盤形であり、その周囲3箇所に3本のプローブ12(図3ではそのうち2本を示す。)が取り付けられている。プローブ12は棒状の電極であり、その先端を鉛直下方に向けてフロート11に固定されている。なお、プローブ12の数は3本に限らず、1本でもよいし、2本以上でもよい。   As shown in FIG. 3, the oil leak detector D includes a float 11 that floats on the liquid surface and a probe 12 for detecting capacitance. The float 11 has a substantially disk shape, and three probes 12 (two of which are shown in FIG. 3) are attached to three places around the float 11. The probe 12 is a rod-shaped electrode, and is fixed to the float 11 with the tip thereof directed vertically downward. The number of probes 12 is not limited to three, but may be one or two or more.

図3(A)に示すように、ピットP内の水層wの上に薄い油層o(油膜)が形成されている場合、またはピットP内の液体が水のみの場合、プローブ12の先端は水層wに位置しており、油漏れ検知器Dは水の静電容量を測定する。   As shown in FIG. 3A, when a thin oil layer o (oil film) is formed on the water layer w in the pit P, or when the liquid in the pit P is only water, the tip of the probe 12 is Located in the water layer w, the oil leak detector D measures the capacitance of water.

図3(B)に示すように、有機溶媒の漏洩などによりピットP内に油が流れ込み油層oが厚くなると、フロート11は油層oの表面に浮き上がり、プローブ12が水層wから引き抜かれてその先端が油層oに位置する。そうすると、油漏れ検知器Dで測定される静電容量が減少する。この静電容量の変化が電気信号としてケーブルを介して遠隔の変換器に伝えられ、リレーを作動させて油漏れが検知される。   As shown in FIG. 3 (B), when oil flows into the pit P due to leakage of an organic solvent and the oil layer o becomes thick, the float 11 floats on the surface of the oil layer o, and the probe 12 is pulled out from the water layer w. The tip is located in the oil layer o. If it does so, the electrostatic capacitance measured with the oil leak detector D will decrease. This change in capacitance is transmitted as an electrical signal to the remote converter via the cable, and the relay is activated to detect oil leakage.

前述のごとく、溶媒抽出装置の場合、ピットP内には装置の機械油などに由来する油層oが存在するのが通常であり、その厚みは数mm〜十数mm程度である。有機溶媒の漏洩を検知するために、油漏れ検知器Dは、油層oの厚みが数mm程度の場合には検知せず、基準値に達したときに検知するよう設定される。例えば、防液堤の平面積が100m2、ピットPの平面積が1m2であり、有機溶媒漏洩の検知基準を50リットルとした場合、前記基準値は50mmとなる。油漏れ検知器Dの設定は、プローブ12を前記基準値に適した長さを有するものに付け換えることで行われる。 As described above, in the case of the solvent extraction apparatus, the oil layer o derived from the machine oil of the apparatus is usually present in the pit P, and the thickness thereof is about several mm to several tens of mm. In order to detect the leakage of the organic solvent, the oil leak detector D is set so as not to detect when the thickness of the oil layer o is about several mm but to detect when the reference value is reached. For example, when the flat area of the breakwater is 100 m 2 and the flat area of the pit P is 1 m 2 and the detection standard of organic solvent leakage is 50 liters, the reference value is 50 mm. The oil leak detector D is set by replacing the probe 12 with one having a length suitable for the reference value.

ところが、油層oがある程度厚くなると、静置状態では油層oの厚みが基準値に達していないにも関わらず油漏れ検知器Dが油漏れを検知する場合がある。これは、油層oの厚みは液面の波立ちにより局所的に変化するが、この変化は油層oが厚くなるほど大きくなるからである。そこで、油漏れ検知器Dを静水筒A内に設置することで、液面の波立ちを抑制し、誤検知を低減する。   However, when the oil layer o becomes thick to some extent, the oil leak detector D may detect the oil leak even though the thickness of the oil layer o has not reached the reference value in the stationary state. This is because the thickness of the oil layer o locally changes due to the undulation of the liquid level, but this change increases as the oil layer o becomes thicker. Therefore, by installing the oil leak detector D in the still water cylinder A, the liquid level is suppressed and the false detection is reduced.

(静水筒A)
つぎに、静水筒Aを説明する。
図1および図2に示すように、静水筒Aは静水筒Aの本体である筒体20と、筒体20を支持する支持部材30とからなる。筒体20は両端が開口した円筒状の部材であり、上端にはフランジが形成されている。筒体20の内部に油漏れ検知器Dが挿入される。筒体20は油漏れ検知器Dが液位の変動に追従して昇降するのに十分な内径を有している。
(Still water cylinder A)
Next, the hydrostatic cylinder A will be described.
As shown in FIGS. 1 and 2, the hydrostatic cylinder A includes a cylindrical body 20 that is a main body of the static water cylinder A and a support member 30 that supports the cylindrical body 20. The cylinder 20 is a cylindrical member having both ends opened, and a flange is formed at the upper end. An oil leak detector D is inserted into the cylindrical body 20. The cylinder 20 has an inner diameter sufficient for the oil leak detector D to move up and down following the fluctuation of the liquid level.

支持部材30はピットP外に立設された支柱31と、支柱31に固定され先端がピットPの上部に張り出したアーム32とを備えている。ピットPの上部に位置するアーム32の自由端には円形の開口部を有する支持板33が固定されている。支持板33の開口部に上から筒体20を挿入することで、筒体20のフランジが支持板33に係止され、筒体20が支持部材30に固定される。筒体20はピットP内においてその中心軸が鉛直方向に沿うように設けられる。また、筒体20はピットPの壁面の近傍に配置され、かつ、壁面からは少し離間して配置される。   The support member 30 includes a support column 31 standing outside the pit P and an arm 32 that is fixed to the support column 31 and has a tip projecting above the pit P. A support plate 33 having a circular opening is fixed to the free end of the arm 32 located above the pit P. By inserting the cylinder 20 into the opening of the support plate 33 from above, the flange of the cylinder 20 is locked to the support plate 33 and the cylinder 20 is fixed to the support member 30. The cylindrical body 20 is provided in the pit P so that its central axis is along the vertical direction. Moreover, the cylinder 20 is arrange | positioned in the vicinity of the wall surface of the pit P, and is arrange | positioned a little apart from the wall surface.

ところで、一般的な静水筒は下端が開口しており、その開口部を通じて静水筒内外の液が行き来する構造である。しかし、油(有機溶媒)は水より比重が軽く液面に浮遊するため、一般的な静水筒では油が静水筒の内部に浸入できず、静水筒の内部に油漏れ検知器Dを挿入すると油漏れを検知することができない。本実施形態の静水筒Aは、その側面に通液孔を形成することで、内部への油の浸入を許容している所に特徴を有する。   By the way, a general still water cylinder has a structure in which a lower end is opened, and liquid inside and outside the still water cylinder passes back and forth through the opening. However, since oil (organic solvent) has a specific gravity lighter than water and floats on the liquid surface, in a general still water cylinder, oil cannot enter the still water cylinder, and if the oil leak detector D is inserted into the still water cylinder, Oil leak cannot be detected. The hydrostatic cylinder A of the present embodiment is characterized in that a liquid passage hole is formed on a side surface thereof to allow oil to enter the inside.

図4に示すように、筒体20の側面には、通液孔21が上下にわたって形成されている。通液孔21の形成範囲は、ピットP内の液位の変動範囲が含まれるように定められる。通液孔21は、間隔を有して配置された複数の小孔22からなる。各小孔22は縦長の孔である。小孔22の寸法は、検知対象の油(有機溶媒)が通過できる寸法であり、油(有機溶媒)の粘性などを考慮して定められる。また、小孔22の寸法は、波が筒体20の内部に進入しにくい寸法に定められる。   As shown in FIG. 4, a liquid passage hole 21 is formed on the side surface of the cylindrical body 20 in the vertical direction. The formation range of the liquid passage hole 21 is determined so as to include the fluctuation range of the liquid level in the pit P. The liquid passage hole 21 is composed of a plurality of small holes 22 arranged at intervals. Each small hole 22 is a vertically long hole. The size of the small hole 22 is a size through which oil (organic solvent) to be detected can pass, and is determined in consideration of the viscosity of the oil (organic solvent) and the like. The dimension of the small hole 22 is determined to be a dimension that makes it difficult for the wave to enter the inside of the cylindrical body 20.

複数の小孔22が間隔を有して直線状に配置されることで孔列23(23a、23b)を構成している。筒体20の側面には、2つの孔列23a、23bが鉛直方向に沿って平行に配置されている。また、2つの孔列23a、23bを構成する小孔22は互い違いに配置されている。   A plurality of small holes 22 are arranged in a straight line with intervals to form a hole row 23 (23a, 23b). On the side surface of the cylindrical body 20, two hole rows 23a and 23b are arranged in parallel along the vertical direction. Further, the small holes 22 constituting the two hole rows 23a and 23b are alternately arranged.

図5に示すように、一方の孔列23aを構成する小孔22と他方の孔列23bを構成する小孔22とは、一部が同じ高さとなるように配置されている。これにより、筒体20の側面には、通液孔21の形成範囲の上端から下端にかけていずれの高さの水平面内においても少なくとも一の小孔22が配置されている。そのため、液位によらず、液面に浮遊する油を筒体20の内部に浸入させることができる。   As shown in FIG. 5, the small holes 22 constituting one hole row 23a and the small holes 22 constituting the other hole row 23b are arranged so that a part thereof has the same height. Thus, at least one small hole 22 is arranged on the side surface of the cylindrical body 20 in any horizontal plane from the upper end to the lower end of the formation range of the liquid passage hole 21. Therefore, oil floating on the liquid surface can be infiltrated into the cylindrical body 20 regardless of the liquid level.

また、2つの孔列23a、23bの間隔は、筒体20の中心を基準とする角度が直交する位置に配置されている。なお、通液孔21を構成する小孔22は、筒体20が円筒形である場合には、片側半分の側面に形成されていればよい。筒体20は通液孔21がピットPの壁面Wに対向するように、ピットP内に設けられる。換言すれば、通液孔21は、筒体20の側面のうちピットPの壁面Wに対向する範囲に形成されている。   In addition, the interval between the two hole rows 23 a and 23 b is arranged at a position where the angles with respect to the center of the cylindrical body 20 are orthogonal. In addition, the small hole 22 which comprises the liquid flow hole 21 should just be formed in the side surface of the half of one side, when the cylinder 20 is a cylindrical shape. The cylindrical body 20 is provided in the pit P so that the liquid passage hole 21 faces the wall surface W of the pit P. In other words, the liquid passage hole 21 is formed in a range facing the wall surface W of the pit P on the side surface of the cylindrical body 20.

以上のように、筒体20の側面に通液孔21が形成されているので、液面に浮遊する油が通液孔21を通して筒体20の内部に浸入でき、筒体20の内部に挿入された油漏れ検知器Dで油漏れを検知できる。   As described above, since the liquid passage hole 21 is formed on the side surface of the cylindrical body 20, the oil floating on the liquid surface can enter the cylindrical body 20 through the liquid passage hole 21 and is inserted into the cylindrical body 20. The oil leak detector D thus detected can detect the oil leak.

また、ピットP内の液面は水中ポンプの起動、停止により生じる液流や、風などの作用により波立ちが発生するが、筒体20の内部の液面は波立ちが抑制される。しかも、通液孔21はピットPの壁面Wに対向する範囲に形成されており、波が直接進入しにくい位置であるので、筒体20の外部の波が内部に進入することを抑制でき、筒体20内部の液面の波立ちをより抑制できる。そのため、筒体20の内部の油層oを静置状態にすることができ、油漏れ検知器Dの誤検知を低減できる。   Further, the liquid level in the pit P is generated by the action of a liquid flow generated by the start and stop of the submersible pump or the wind, but the liquid level inside the cylinder 20 is suppressed. Moreover, since the liquid passage hole 21 is formed in a range facing the wall surface W of the pit P and is a position where the wave does not easily enter directly, it is possible to suppress the wave outside the cylindrical body 20 from entering the inside, The wave of the liquid surface inside the cylinder 20 can be further suppressed. Therefore, the oil layer o inside the cylindrical body 20 can be set in a stationary state, and erroneous detection of the oil leak detector D can be reduced.

(その他の実施形態)
上記実施形態では、通液孔21を構成する小孔22が整列して孔列23を形成しているが、小孔22は間隔を有して配置されていればよく、整列していなくてもよい。また、小孔22の形や寸法は、統一されていなくてもよい。通液孔21の形成範囲の上端から下端にかけていずれの高さの水平面内においても少なくとも一の小孔22が配置されていれば、液位によらず、液面に浮遊する油を筒体20の内部に浸入させることができる。
(Other embodiments)
In the above embodiment, the small holes 22 constituting the liquid passage holes 21 are aligned to form the hole row 23. However, the small holes 22 may be arranged at intervals, and are not aligned. Also good. Further, the shape and dimensions of the small holes 22 may not be unified. If at least one small hole 22 is arranged in the horizontal plane at any height from the upper end to the lower end of the formation range of the liquid passage hole 21, oil that floats on the liquid surface regardless of the liquid level. Can be infiltrated inside.

図6に示すように、通液孔21を小孔22からなる構成に代えて、1つの直線状の長尺の孔としてもよい。このような構成としても前記実施形態と同様の効果を奏することができる。ただし、前記実施形態のように、通液孔21を複数の小孔22からなる構成とした方が、通液孔21を長尺の孔とする場合よりも筒体20の強度を高くすることができる。   As shown in FIG. 6, the liquid passage hole 21 may be replaced with a configuration including the small holes 22 and may be one linear long hole. Even with such a configuration, the same effects as those of the above-described embodiment can be obtained. However, the strength of the cylindrical body 20 is higher when the liquid passage hole 21 is composed of a plurality of small holes 22 than in the case where the liquid passage hole 21 is a long hole. Can do.

図4に示す孔列23および、図6に示す通液孔21は、筒体20の中心軸に沿って形成されているが、これに限らず、筒体20の中心軸に対して傾斜して形成されてもよい。
また、筒体20は円筒形に限らず、角筒形など他の形状でもよい。
The hole row 23 shown in FIG. 4 and the liquid passage hole 21 shown in FIG. 6 are formed along the central axis of the cylindrical body 20, but are not limited to this, and are inclined with respect to the central axis of the cylindrical body 20. May be formed.
Further, the cylindrical body 20 is not limited to a cylindrical shape, and may have other shapes such as a rectangular cylindrical shape.

A 静水筒
D 油漏れ検知器
P ピット
20 筒体
21 通液孔
22 小孔
23 孔列
30 支持部材
31 支柱
32 アーム
33 支持板
A Still water cylinder D Oil leak detector P Pit 20 Cylinder 21 Fluid passage hole 22 Small hole 23 Hole row 30 Support member 31 Support column 31 Arm 33 Support plate

Claims (3)

ピット内に設けられ、内部に油漏れ検知器が挿入される筒体を備え、
前記筒体の側面には、通液孔が上下にわたって形成されている
ことを特徴とする油漏れ検知器用の静水筒。
Provided in the pit, with a cylinder body into which the oil leak detector is inserted,
A hydrostatic cylinder for an oil leak detector, wherein a liquid passage hole is formed on a side surface of the cylinder body in a vertical direction.
前記通液孔は、間隔を有して配置された複数の小孔からなり、
前記筒体の側面には、前記通液孔の形成範囲の上端から下端にかけていずれの高さの水平面内においても少なくとも一の前記小孔が配置されている
ことを特徴とする請求項1記載の油漏れ検知器用の静水筒。
The liquid passage hole is composed of a plurality of small holes arranged at intervals,
The at least one said small hole is arrange | positioned in the horizontal surface of any height from the upper end to the lower end of the formation range of the said liquid flow hole in the side surface of the said cylinder. Hydrostatic cylinder for oil leak detector.
前記通液孔は、前記筒体の側面のうち前記ピットの壁面に対向する範囲に形成されている
ことを特徴とする請求項1または2記載の油漏れ検知器用の静水筒。
3. The hydrostatic cylinder for an oil leak detector according to claim 1, wherein the liquid passage hole is formed in a range facing a wall surface of the pit in a side surface of the cylindrical body.
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* Cited by examiner, † Cited by third party
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JPS615426U (en) * 1984-06-14 1986-01-13 東京電力株式会社 Float type level detector for oil detection
JPS62159018A (en) * 1986-01-08 1987-07-15 Hitachi Ltd Electrostatic capacity type water gauge device
JP2002122463A (en) * 2000-10-03 2002-04-26 Applied Materials Inc Liquid level sensor and liquid storage vessel
JP2006200902A (en) * 2005-01-18 2006-08-03 Tatsuno Corp Device for detecting leaked liquid
JP2008128688A (en) * 2006-11-17 2008-06-05 Meidensha Corp Breakwater pipe

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Publication number Priority date Publication date Assignee Title
JPS52154699A (en) * 1976-06-18 1977-12-22 Asahi Chemical Ind Liquid detector
FR2560167A1 (en) * 1983-11-30 1985-08-30 Peugeot Device for mounting a piece of equipment inside a tank and tank thus equipped
JPS615426U (en) * 1984-06-14 1986-01-13 東京電力株式会社 Float type level detector for oil detection
JPS62159018A (en) * 1986-01-08 1987-07-15 Hitachi Ltd Electrostatic capacity type water gauge device
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JP2006200902A (en) * 2005-01-18 2006-08-03 Tatsuno Corp Device for detecting leaked liquid
JP2008128688A (en) * 2006-11-17 2008-06-05 Meidensha Corp Breakwater pipe

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020025677A1 (en) * 2018-08-02 2020-02-06 Suez Groupe Grease trap monitoring system and method of operation

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