JP4006757B2 - Sand removal system - Google Patents

Sand removal system Download PDF

Info

Publication number
JP4006757B2
JP4006757B2 JP2003186201A JP2003186201A JP4006757B2 JP 4006757 B2 JP4006757 B2 JP 4006757B2 JP 2003186201 A JP2003186201 A JP 2003186201A JP 2003186201 A JP2003186201 A JP 2003186201A JP 4006757 B2 JP4006757 B2 JP 4006757B2
Authority
JP
Japan
Prior art keywords
sand
pump
basin
water tank
pump water
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2003186201A
Other languages
Japanese (ja)
Other versions
JP2005013959A (en
Inventor
繁樹 安藤
智紀 吉田
正樹 安倍
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ishigaki Co Ltd
Original Assignee
Ishigaki Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ishigaki Co Ltd filed Critical Ishigaki Co Ltd
Priority to JP2003186201A priority Critical patent/JP4006757B2/en
Publication of JP2005013959A publication Critical patent/JP2005013959A/en
Application granted granted Critical
Publication of JP4006757B2 publication Critical patent/JP4006757B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Description

【0001】
【発明の属する技術分野】
本発明は、下水処理設備等の沈砂池に沈殿した土砂が流入する除砂システムに関するものである。
【0002】
【従来の技術】
従来から、下水処理設備の沈砂池に沈殿した土砂を沈砂池の底部に設けた集砂ピットに集める装置に関しての提案はいくつかなされている。例えば、特許文献1には、集砂ピットを備えた沈砂池の底部に設置した複数の給水ノズルで、沈砂池に堆積した土砂を集砂ピットに集める沈砂池の集砂方法において、給水ノズルから水を流出させるのと同時にその給水ノズルから流出した水を集砂ピットからくみ出すことで、沈砂池の水面を一定に維持し、沈砂池に堆積した土砂を撹乱することなく集砂ピットに流出させることを特徴とした集砂方法が記載されている。
【0003】
【特許文献1】
特許3315489号公報
【0004】
【発明が解決しようとする課題】
しかしながら、特許文献1の発明に記載された集砂装置は沈砂池の集砂、排砂に関するものであり、沈砂池に沈殿した土砂はポンプ吸水槽に設けたピットではなく沈砂池の底部に設けた集砂ピットに集めている。また、この方法は沈砂池の洗浄方法としては有効であるが、液位を比較的高位置に設定しているため、集砂には大容量のポンプが要求される。ところが近年のポンプ場では十分な大きさの沈砂池を設けることが立地条件および諸条件等から困難になってきており、集砂効率の面から沈殿池のみで流入してきた土砂を分離することは不可能になっている。そのため、ポンプ吸水槽にも粒子の比較的小さな砂、ヘドロが堆積しやすく、また、堆積したヘドロから発生する悪臭が環境問題にもなっている。
【0005】
そこで本発明は、沈砂池に堆積した土砂をポンプ吸水槽に形成したピットに集め、集砂した土砂を揚砂ポンプで効率的にピットから排出することができる除砂システムを提供することを目的としている。
【0006】
【課題を解決するための手段】
上記目的を達成するため本発明の除砂システムは、沈砂池とポンプ吸水槽を中央トラフで連結し、沈砂池の中央部底面からポンプ吸水槽の中央部底面に向かって傾斜させた流路を形成し、揚砂ポンプを配設したピットをポンプ吸水槽の中央部底面に設けると共に、沈砂池とポンプ吸水槽の間に設けたゲートを中央トラフに垂設して、ゲートを閉じて沈砂池に土砂を堆積させ、沈砂池の洗浄時にゲートを開けて沈砂池に堆積した土砂を中央トラフからポンプ吸水槽に流し、ポンプ吸水槽の中央部底面に配設したピットに流入させたのち、該ピットから揚砂ポンプで土砂を排出すること、および、上記揚砂ポンプの吐出配管に沈砂池およびポンプ吸水槽の集砂をするための集砂ノズルを連結したこと、さらに、上記揚砂ポンプの吐出配管に密閉型の除塵機とオートストレーナを配設したことを、特徴としている。
【0007】
【発明の実施の形態】
図1は本発明に係わる除砂システムの断面図であり、図2は同じく本発明に係わる除砂システムの平面図である。また図3は本発明に係わる除砂システムのフローシートである。
【0008】
図1および図2に示すように本発明に係わる除砂システムは、沈砂池1の長手方向の中央部底面とポンプ吸水槽2の長手方向の中央部底面を連結するように沈砂池1に堆積した土砂等をポンプ吸水槽2に流入させるための流路である中央トラフ3が設けられている。そして、ポンプ吸水槽2の中央部底面には内部に揚砂ポンプ7を配設したピット8が設けられ、ポンプ吸水槽2の後段部下部には沈砂池1で集砂処理された処理水を次設備に送る主ポンプ9が配設されている。また、中央トラフ3には沈砂池1に堆積した土砂がポンプ吸水槽2に流入するのを防止するためのゲート4が配設されている。さらに、し渣の流入を防止するために沈砂池1の後端部には沈砂池スクリーン5が、ポンプ吸水槽2の前段部の上部にはポンプ吸水槽スクリーン6が配設されている。
【0009】
図3に示すように揚砂ポンプ7の吐出ラインには、ポンプ吸水槽2に流入したし渣を取り除く除塵機11とポンプ吸水槽2に流入した土砂を回収するオートストレーナ10が設けられている。また、揚砂ポンプ7と集砂ノズル17の間には沈砂池1に堆積した土砂の集砂および洗浄をするための沈砂池洗浄バルブ20と、ポンプ吸水槽2に流入した土砂の集砂および洗浄をするための吸水槽洗浄バルブ21と、揚砂ポンプ7の電動機を冷却するために使用するポンプ冷却バルブ22が、接続されている。オートストレーナ10の排水ラインは沈砂洗浄機12に接続され、除塵機11と沈砂洗浄機12の排出ラインには、それぞれ沈砂コンテナ14とし渣コンテナ15が設けられている。また、揚砂ポンプ7の余剰水の流出先としてポンプ吐出水槽18が設けられている。
【0010】
このように形成した本発明の除砂システムは、以下に示す洗浄運転を行うことにより、沈砂池1の底面に堆積した土砂をポンプ吸水槽2に設けたピット8に集め、効率的に除去することができるものである。
【0011】
通常運転時は、沈砂池1の中央トラフ2に垂設したゲート4を閉じているため、原水とともに沈砂池1に流入して沈砂池1の底に堆積した土砂は中央トラフ3からポンプ吸水槽2に流出することはない。また、原水中に含まれたし渣等は、沈砂池1からポンプ吸水槽2に流入する際に沈砂池スクリーン5とポンプ吸水槽スクリーン6により捕捉される。そして、土砂およびし渣が取り除かれた原水はポンプ吸水槽2に配設された主ポンプ9から次設備に送られる。なお、ポンプ吸水槽2の主ポンプ9を設置した吸込口付近は図1及び図2に示すように底面部を円形構造としコーナ部を曲面構造とすると主ポンプ9が運転時において流速がダウンしても、し渣等が沈降しなくなる。
【0012】
以上のような通常運転を行っていると、徐々に土砂が沈砂池1に堆積する。したがって、安定した処理運転を継続するためには定期的な沈砂池1の洗浄を実施する必要がある。以下に沈砂池1の洗浄方法を図1乃至図3にもとづいて説明する。洗浄運転の最初は沈砂池1の液位を通常レベルAから洗浄レベルBまで主ポンプ9を運転して下げる。沈砂池1の液位を下げるのは、揚砂ポンプ7の送水量を少なくするとともに、土砂濃度を上げて揚砂ポンプ7の効率的な運転を行うためである。なお、洗浄運転時は流入水の沈砂池1への供給は停止状態とする。次に中央トラフ3に設けたゲート4を開けて中央トラフ3から沈砂池1に堆積した土砂をポンプ吸水槽2に流す通路を形成する。なお、沈砂池1の底面は堆積した土砂が中央トラフ3に流入しやすいように中央トラフ3に向かって傾斜させている。また、中央トラフ3自体も中央トラフ3に流入してきた土砂をポンプ吸水槽2に流出させやすいように沈砂池1からポンプ吸水槽2に向かって傾斜させている。中央トラフ3およびポンプ吸水槽2から土砂等が流入するピット8は土砂が流れやすいような形状とし好ましくはFRPでコーティングするのが良い。このように土砂の流路を形成した状態で沈砂池洗浄バルブ20を開にするとともに揚砂ポンプ7の運転を開始すると、揚砂ポンプ7からの吐出水が沈砂池1に配設した集砂ノズル17まで達し、集砂ノズル17からの噴出流により沈砂池1に堆積した土砂を中央トラフ3に流し込むことができる。さらに、水位を下げて吸水槽洗浄バルブ21を開にするとともに揚砂ポンプ7の運転を開始すると揚砂ポンプ7からの吐出水がポンプ吸水槽2に配設した集砂ノズル17まで達し、集砂ノズル17からの噴出流によりポンプ吸水槽2に堆積した土砂を中央トラフ3およびピット8に流し込むことができる。揚砂ポンプ7と集砂ノズル17の間にはオートストレーナ10と除塵機11を設けているので、洗浄水に含まれるし渣および土砂を取り除くことができる。したがって、集砂ノズル17が目詰まりすることはない。また、除塵機11を密閉構造にしているため、揚砂ポンプ7の吐出圧力が集砂ノズル17まで確保でき、従来方式であると、集砂用のポンプと洗浄用のポンプの2台が必要なところ本発明の除砂システムは揚砂ポンプ7の1台で可能となる。このように、洗浄運転を継続していると集砂用の洗浄水は循環しているが余剰水をポンプ吐出水槽18に送水しているためポンプ吸水槽2の水位は徐々に低下する。ポンプ吸水槽2の水位が低下するとポンプの電動機が冷却不足気味になる。この時はポンプ冷却バルブ22を開にすると洗浄水での冷却が可能となるものであるが、揚砂ポンプ7には気中運転が可能なポンプを選定することが好ましい。
【0013】
【発明の効果】
以上説明したように、本願の請求項1に記載の発明によれば、沈殿池およびポンプ吸水槽に堆積した土砂を効率よくポンプ吸水槽から排砂処理設備に排出することが可能となり、ポンプ吸水槽に堆積したヘドロが原因で発生する悪臭も抑えられる。また、従来方式であると沈砂池に流入する土砂等を完全に回収するためには集砂設備を沈殿池とポンプ吸水槽の双方に設ける必要があるが本願の請求項1の発明によれば、沈砂池とポンプ吸水槽の集砂がポンプ吸水槽で一括処理が可能となり設備コストも削減できる。そして、本願の請求項2に記載の発明によれば、沈殿池およびポンプ吸水槽の集砂が揚砂ポンプの吐出配管に連結した集砂ノズルからの噴出流で容易になる。さらに、本願の請求項3に記載の発明によれば上記揚砂ポンプの吐出配管に密閉型の除塵機とオートストレーナを配設したことで集砂ノズルに揚砂ポンプの圧力が生じ通常は揚砂ポンプと洗浄用ポンプの2台が必要なものを一台の揚砂ポンプで揚砂並びに集砂が可能となる。
【図面の簡単な説明】
【図1】 本発明に係わる除砂システムの断面図である。
【図2】 本発明に係わる除砂システムの平面図である
【図3】 本発明に係わる除砂システムのフローシートである。
【符号の説明】
1 沈砂池
2 ポンプ吸水槽
3 中央トラフ
4 ゲート
7 揚砂ポンプ
8 ピット
10 オートストレーナ
11 除塵機
17 集砂ノズル
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a sand removal system in which sediment deposited in a sand basin such as a sewage treatment facility flows.
[0002]
[Prior art]
Conventionally, several proposals have been made regarding an apparatus for collecting earth and sand deposited in a sand basin of a sewage treatment facility in a sand collecting pit provided at the bottom of the sand basin. For example, in Patent Document 1, in a sand collection method for a sand basin that collects earth and sand accumulated in the sand basin in a sand collection pit with a plurality of water supply nozzles installed at the bottom of a sand basin equipped with a sand collection pit, At the same time as the water flows out, the water flowing out from the water supply nozzle is pumped out from the sand collection pit, so that the water level of the sedimentation basin is kept constant and the sediment deposited in the sand basin flows into the sand collection pit without being disturbed. A sand collecting method characterized in that it is made to occur is described.
[0003]
[Patent Document 1]
Japanese Patent No. 3315489 [0004]
[Problems to be solved by the invention]
However, the sand collecting device described in the invention of Patent Document 1 relates to sand collection and sand discharge in a sand basin, and the earth and sand settled in the sand basin is provided not at the pit provided in the pump water absorption tank but at the bottom of the sand basin. Collected in the sand collection pit. Although this method is effective as a method for cleaning a sand basin, since the liquid level is set to a relatively high position, a large capacity pump is required for sand collection. However, in recent pumping stations, it has become difficult to provide a sufficiently large sand basin due to the location and various conditions, and it is difficult to separate the sediment flowing in only the sedimentation basin from the viewpoint of sand collection efficiency. It is impossible. For this reason, sand and sludge with relatively small particles are likely to accumulate in the pump water absorption tank, and the bad odor generated from the accumulated sludge has become an environmental problem.
[0005]
SUMMARY OF THE INVENTION An object of the present invention is to provide a sand removal system capable of collecting earth and sand accumulated in a sand basin in a pit formed in a pump water absorption tank and efficiently discharging the collected earth and sand from the pit with a sand pump. It is said.
[0006]
[Means for Solving the Problems]
In order to achieve the above object, the sand removal system of the present invention connects a sand basin and a pump water tank with a central trough, and has a flow path inclined from the bottom surface of the central part of the sand basin toward the bottom surface of the pump water tank. A pit with a sand pump is formed on the bottom of the center of the pump water tank, and a gate between the sand basin and the pump water tank is suspended from the central trough, and the gate is closed to close the sand basin Sediment is deposited on the sedimentation basin, the gate is opened when the sedimentation basin is washed, and the sediment deposited in the sedimentation basin is flowed from the central trough to the pump suction tank, and then flows into the pit arranged at the bottom of the center of the pump suction tank. Discharging sediment from the pit with a sand pump, and connecting a sand collecting nozzle for collecting sand from a sand basin and a pump water tank to the discharge pipe of the sand pump; Sealed discharge piping That were provided with dust collector and auto strainer is characterized.
[0007]
DETAILED DESCRIPTION OF THE INVENTION
FIG. 1 is a sectional view of a sand removal system according to the present invention, and FIG. 2 is a plan view of the sand removal system according to the present invention. FIG. 3 is a flow sheet of the sand removal system according to the present invention.
[0008]
As shown in FIGS. 1 and 2, the sand removal system according to the present invention accumulates in the sand basin 1 so as to connect the bottom surface of the center portion of the sand basin 1 and the bottom surface of the center portion of the pump suction tank 2 in the longitudinal direction. A central trough 3 is provided as a flow path for allowing the earth and sand, etc., to flow into the pump water tank 2. A pit 8 having a sand pump 7 disposed therein is provided at the bottom of the central portion of the pump suction tank 2, and the treated water collected in the sand settling basin 1 is disposed below the pump suction tank 2. A main pump 9 to be sent to the next facility is arranged. The central trough 3 is provided with a gate 4 for preventing earth and sand accumulated in the sand basin 1 from flowing into the pump water tank 2. Further, a sand basin screen 5 is disposed at the rear end of the sand basin 1 and a pump water tank screen 6 is disposed at the upper part of the front stage of the pump water tank 2 in order to prevent inflow of residue.
[0009]
As shown in FIG. 3, the discharge line of the sand pump 7 is provided with a dust remover 11 that flows into the pump water tank 2 and removes residue and an auto strainer 10 that collects the earth and sand that flows into the pump water tank 2. . Also, between the sand pump 7 and the sand collecting nozzle 17, the sand collecting basin washing valve 20 for collecting and washing the earth and sand accumulated in the sand basin 1, and the sand collecting and sand collecting flowing into the pump suction tank 2, and A water absorption tank cleaning valve 21 for cleaning and a pump cooling valve 22 used for cooling the electric motor of the sand pump 7 are connected. The drain line of the auto strainer 10 is connected to a sand settling machine 12, and a sand set container 14 and a residue container 15 are provided on the discharge lines of the dust remover 11 and the sand set washing machine 12, respectively. In addition, a pump discharge water tank 18 is provided as a surplus water discharge destination of the sand pump 7.
[0010]
The sand removal system of the present invention thus formed collects the earth and sand accumulated on the bottom surface of the settling basin 1 in the pit 8 provided in the pump water tank 2 and efficiently removes it by performing the following cleaning operation. It is something that can be done.
[0011]
During normal operation, since the gate 4 suspended from the central trough 2 of the sand basin 1 is closed, the earth and sand that flows into the sand basin 1 together with the raw water and accumulates at the bottom of the sand basin 1 is pumped from the central trough 3 2 will not flow out. Further, the residue contained in the raw water is captured by the sand basin screen 5 and the pump water tank screen 6 when flowing from the sand basin 1 into the pump water tank 2. The raw water from which the earth and sand and sediment have been removed is sent from the main pump 9 disposed in the pump water absorption tank 2 to the next equipment. As shown in FIGS. 1 and 2, when the main pump 9 of the pump water tank 2 is provided with a circular bottom surface and a curved surface, the flow velocity is reduced when the main pump 9 is in operation. Even so, the residue will not settle.
[0012]
During the normal operation as described above, earth and sand gradually accumulate in the sand basin 1. Therefore, it is necessary to periodically clean the sand basin 1 in order to continue the stable treatment operation. Below, the washing | cleaning method of the sand basin 1 is demonstrated based on FIG. 1 thru | or FIG. At the beginning of the washing operation, the liquid level in the sand basin 1 is lowered by operating the main pump 9 from the normal level A to the washing level B. The reason why the liquid level in the sand basin 1 is lowered is to reduce the amount of water supplied by the sand pump 7 and increase the earth and sand concentration so that the sand pump 7 can be operated efficiently. During the cleaning operation, the supply of inflow water to the sand basin 1 is stopped. Next, the gate 4 provided in the central trough 3 is opened to form a passage through which the earth and sand accumulated in the sand basin 1 from the central trough 3 flows into the pump water absorption tank 2. The bottom surface of the sand basin 1 is inclined toward the central trough 3 so that the accumulated earth and sand can easily flow into the central trough 3. Further, the central trough 3 itself is also inclined from the sand basin 1 toward the pump water tank 2 so that the earth and sand flowing into the central trough 3 can be easily discharged to the pump water tank 2. The pit 8 into which earth and sand flows from the central trough 3 and the pump water absorption tank 2 is shaped so that earth and sand can easily flow, and is preferably coated with FRP. When the sedimentation basin washing valve 20 is opened while the sediment passage is formed in this manner and the operation of the sand pump 7 is started, the discharged water from the sand pump 7 is collected in the sand collection basin 1. The earth and sand accumulated in the settling basin 1 by the jet flow from the sand collecting nozzle 17 can be poured into the central trough 3. Further, when the water level is lowered to open the suction tank cleaning valve 21 and the operation of the sand pump 7 is started, the discharged water from the sand pump 7 reaches the sand collection nozzle 17 disposed in the pump suction tank 2 and is collected. The earth and sand accumulated in the pump water absorption tank 2 by the jet flow from the sand nozzle 17 can be poured into the central trough 3 and the pit 8. Since the autostrainer 10 and the dust remover 11 are provided between the sand pump 7 and the sand collecting nozzle 17, sediments and earth and sand contained in the washing water can be removed. Therefore, the sand collecting nozzle 17 is not clogged. Moreover, since the dust remover 11 has a sealed structure, the discharge pressure of the sand pump 7 can be secured up to the sand collecting nozzle 17, and the conventional system requires two units, a sand collecting pump and a cleaning pump. However, the sand removal system of the present invention can be achieved with one of the sand pumps 7. As described above, when the cleaning operation is continued, the sand collecting water is circulated, but the surplus water is sent to the pump discharge water tank 18 and the water level of the pump water absorption tank 2 gradually decreases. When the water level of the pump water tank 2 decreases, the electric motor of the pump becomes undercooled. At this time, if the pump cooling valve 22 is opened, cooling with washing water becomes possible. However, it is preferable to select a pump capable of operating in the air as the sand pump 7.
[0013]
【The invention's effect】
As described above, according to the invention described in claim 1 of the present application, it is possible to efficiently discharge sediment accumulated in the sedimentation basin and the pump water absorption tank from the pump water absorption tank to the sand removal treatment facility. The bad odor caused by sludge accumulated in the water tank is also suppressed. In addition, in the conventional method, in order to completely collect sediment and the like flowing into the sand basin, it is necessary to provide sand collecting facilities in both the sedimentation basin and the pump water absorption tank. In addition, sand collection in the sand basin and pump water tank can be performed in a batch in the pump water tank, reducing equipment costs. And according to invention of Claim 2 of this application, the sand collection of a sedimentation basin and a pump water absorption tank becomes easy by the jet flow from the sand collection nozzle connected with the discharge piping of the sand pump. Further, according to the invention described in claim 3 of the present application, since the closed dust remover and the auto strainer are disposed in the discharge pipe of the sand pump, the pressure of the sand pump is generated in the sand collecting nozzle, and normally Sand pumping and sand collection can be carried out with one sand pump for what requires two sand pumps and washing pumps.
[Brief description of the drawings]
FIG. 1 is a sectional view of a sand removal system according to the present invention.
FIG. 2 is a plan view of the sand removal system according to the present invention. FIG. 3 is a flow sheet of the sand removal system according to the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Sand basin 2 Pump water tank 3 Central trough 4 Gate 7 Sand pump 8 Pit 10 Auto strainer 11 Dust remover 17 Sand collecting nozzle

Claims (3)

沈砂池(1)とポンプ吸水槽(2)を中央トラフ(3)で連結し、沈砂池(1)の中央部底面からポンプ吸水槽(2)の中央部底面に向かって傾斜させた流路を形成し、揚砂ポンプ(7)を配設したピット(8)をポンプ吸水槽(2)の中央部底面に設けると共に、沈砂池(1)とポンプ吸水槽(2)の間に設けたゲート(4)を中央トラフ(3)に垂設して、ゲート(4)を閉じて沈砂池(1)に土砂を堆積させ、沈砂池(1)の洗浄時にゲート(4)を開けて沈砂池(1)に堆積した土砂を中央トラフ(3)からポンプ吸水槽(2)に流し、ポンプ吸水槽(2)の中央部底面に配設したピット(8)に流入させたのち、該ピット(8)から揚砂ポンプ(7)で土砂を排出することを特徴とする除砂システム A flow path in which a sand basin (1) and a pump water tank (2) are connected by a central trough (3) and inclined from the bottom of the center of the sand basin (1) toward the bottom of the center of the pump water tank (2). And a pit (8) provided with a sand pump (7) is provided at the bottom of the central portion of the pump water tank (2) and between the sand basin (1) and the pump water tank (2). The gate (4) is suspended from the central trough (3), the gate (4) is closed and sediment is deposited in the sand basin (1), and when the sand basin (1) is washed, the gate (4) is opened and the sand is sedimented. Sediment deposited in the pond (1) flows from the central trough (3) to the pump water tank (2) and flows into the pit (8) arranged at the bottom of the central part of the pump water tank (2). A sand removal system characterized in that earth and sand are discharged from the sand pump (7) from (8). 上記揚砂ポンプ(7)の吐出配管に連結した集砂ノズル(17)を沈砂池(1)およびポンプ吸水槽(2)に配設したことを特徴とする請求項1に記載の除砂システムThe sand removal system according to claim 1, characterized in that a sand collecting nozzle (17) connected to a discharge pipe of the sand pump (7) is disposed in the settling basin (1) and the pump water tank (2). . 上記揚砂ポンプ(7)の吐出配管に密閉型の除塵機(11)とオートストレーナ(10)を配設したことを特徴とする請求項1及び請求項2に記載の除砂システムThe sand removal system according to claim 1 or 2, wherein a closed type dust remover (11) and an auto strainer (10) are arranged in a discharge pipe of the sand pump (7).
JP2003186201A 2003-06-30 2003-06-30 Sand removal system Expired - Fee Related JP4006757B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2003186201A JP4006757B2 (en) 2003-06-30 2003-06-30 Sand removal system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2003186201A JP4006757B2 (en) 2003-06-30 2003-06-30 Sand removal system

Publications (2)

Publication Number Publication Date
JP2005013959A JP2005013959A (en) 2005-01-20
JP4006757B2 true JP4006757B2 (en) 2007-11-14

Family

ID=34185397

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2003186201A Expired - Fee Related JP4006757B2 (en) 2003-06-30 2003-06-30 Sand removal system

Country Status (1)

Country Link
JP (1) JP4006757B2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005111383A (en) * 2003-10-08 2005-04-28 Nishihara Environment Technology Inc Sand collecting tank

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6362508A (en) * 1986-09-01 1988-03-18 Maezawa Ind Inc Method and device for transferring settled sand in sedimentation basin
JP2915475B2 (en) * 1990-03-26 1999-07-05 日立金属株式会社 Settling discharge method and apparatus
JP3315489B2 (en) * 1993-10-01 2002-08-19 東京都 Sand collection method and device for sand basin
JPH08229310A (en) * 1995-02-24 1996-09-10 Mitsubishi Kakoki Kaisha Ltd Grit collecting device and grip collecting method for grit chamber
JP3248052B2 (en) * 1995-11-30 2002-01-21 株式会社クボタ How to remove sediment at pumping station
JP2000288312A (en) * 1999-04-05 2000-10-17 Asahi Tec Corp Sand pumping-up equipment
JP4380842B2 (en) * 1999-05-26 2009-12-09 旭テック環境ソリューション株式会社 Sand lifting equipment
JP3708442B2 (en) * 2001-03-05 2005-10-19 東京都 Sand collection device for sand basin
JP4002095B2 (en) * 2001-11-20 2007-10-31 前澤工業株式会社 Sand collection device for sand basin
JP2004305836A (en) * 2003-04-03 2004-11-04 Hitachi Plant Eng & Constr Co Ltd Sand gathering device of sand sedimentation basin

Also Published As

Publication number Publication date
JP2005013959A (en) 2005-01-20

Similar Documents

Publication Publication Date Title
JP3315489B2 (en) Sand collection method and device for sand basin
CN101773915B (en) Multilevel circulating cleaning equipment for solar cell silicon wafers
KR101214553B1 (en) Combined sewer overflow treatment system
CN2910324Y (en) Micro solid/liquid separator
JP3288823B2 (en) Sand removal method and device for sand basin
CN108379885A (en) A kind of detention tank and its combined-flow are from clear method
JP6316156B2 (en) Sedimentation pond
CN205709989U (en) A kind of oilfield sewage oil removal sand removal sedimenting system
JP2004268005A (en) Waste water treating equipment
US6451270B1 (en) Brine maker with removable hopper
KR100894646B1 (en) Dissolved air floatation tank
GB2275210A (en) Regenerating of degreasing liquid
CN111013207B (en) Inclined plate horizontal flow sedimentation tank for back flush dredging
CN1950015B (en) Dishwasher
JP4006757B2 (en) Sand removal system
KR20020084569A (en) A waterjet cleaning apparatus for pulling up & washing sinked sand
JP2004141724A (en) Solid-liquid separator and washing method therefor
CN110917668A (en) Precipitation device for sewage treatment
CN1238246A (en) Technology and apparatus for cleaning oil tank
CN210559719U (en) Self-circulation water treatment facilities of electrophoresis application
JP3786376B2 (en) Water level fluctuation scum removal device
JP4277589B2 (en) Upflow filter
CN212575906U (en) Circulating oil fume purification device with oil-water separation function
CN219423929U (en) Metallurgical wastewater filtering device
KR102336640B1 (en) Rrainwater storage tank cleaning device

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20050525

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20070514

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20070522

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20070713

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20070806

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20070819

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20100907

Year of fee payment: 3

R150 Certificate of patent or registration of utility model

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20110907

Year of fee payment: 4

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20110907

Year of fee payment: 4

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20120907

Year of fee payment: 5

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20120907

Year of fee payment: 5

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20130907

Year of fee payment: 6

LAPS Cancellation because of no payment of annual fees