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WATER QUALITY MANAGEMENT SYSTEM AND METHOD
PROBLEM TO BE SOLVED: To provide a method of automating water discard work to lower a human cost, and to provide a relationship between an amount of water discard and an effect of water quality for a consumer to users.SOLUTION: The water quality control method is used in a water distribution pipe network that supplies water to consumers and comprises a water supply source, a chlorine injection facility for injecting chlorine into water at the water supply source, a main pipe for distributing water from the water supply source, an end of a pipe network connected to the main pipe, and a water quality meter and a drainage facility connected to the end of the pipe network, by utilizing a water quality control apparatus which is an information processing device capable of communicating with the water quality meter and the drainage facility. The water quality control apparatus is capable of accessing a database for simulating a residual chlorine concentration distribution of the water distribution pipe network. A water discard plan satisfying the prescribed conditions for the residual chlorine concentration distribution at the end of the pipe network and satisfying the prescribed conditions for water discard amount is extracted as an optimum water discard plan from multiple water discharge plans applied to each of chlorine injection plans by applying the multiple water discard plans to each chlorine injection plans and calculating the residual chlorine concentration distribution at the end of the pipe network based on the database.SELECTED DRAWING: Figure 2
【課題】捨水作業を自動化し人的コストを下げるとともに、捨水量と消費者への水質の影響との関係をユーザに提供する。【解決手段】水供給源と、水供給源において水に塩素を注入する塩素注入設備と、水供給源から水を配水する本管と、本管に接続される管網末端と、管網末端に接続される水質計および排水設備を備え、消費者に水の供給を行う配水管網において、水質計および排水設備と交信可能な情報処理装置である水質管理装置による水質管理方法である。水質管理装置は、配水管網の残留塩素濃度分布をシミュレートするためのデータベースをアクセス可能であり、複数の捨水計画を適用し、データベースに基づいて、管網末端の残留塩素濃度分布を算出し、塩素注入計画の其々について適用した複数の捨水計画のなかから、管網末端の残留塩素濃度分布が規定の条件を満足し、かつ、捨水量が既定の条件を満たす捨水計画を最適捨水計画として抽出する。【選択図】図2
WATER QUALITY MANAGEMENT SYSTEM AND METHOD
PROBLEM TO BE SOLVED: To provide a method of automating water discard work to lower a human cost, and to provide a relationship between an amount of water discard and an effect of water quality for a consumer to users.SOLUTION: The water quality control method is used in a water distribution pipe network that supplies water to consumers and comprises a water supply source, a chlorine injection facility for injecting chlorine into water at the water supply source, a main pipe for distributing water from the water supply source, an end of a pipe network connected to the main pipe, and a water quality meter and a drainage facility connected to the end of the pipe network, by utilizing a water quality control apparatus which is an information processing device capable of communicating with the water quality meter and the drainage facility. The water quality control apparatus is capable of accessing a database for simulating a residual chlorine concentration distribution of the water distribution pipe network. A water discard plan satisfying the prescribed conditions for the residual chlorine concentration distribution at the end of the pipe network and satisfying the prescribed conditions for water discard amount is extracted as an optimum water discard plan from multiple water discharge plans applied to each of chlorine injection plans by applying the multiple water discard plans to each chlorine injection plans and calculating the residual chlorine concentration distribution at the end of the pipe network based on the database.SELECTED DRAWING: Figure 2
【課題】捨水作業を自動化し人的コストを下げるとともに、捨水量と消費者への水質の影響との関係をユーザに提供する。【解決手段】水供給源と、水供給源において水に塩素を注入する塩素注入設備と、水供給源から水を配水する本管と、本管に接続される管網末端と、管網末端に接続される水質計および排水設備を備え、消費者に水の供給を行う配水管網において、水質計および排水設備と交信可能な情報処理装置である水質管理装置による水質管理方法である。水質管理装置は、配水管網の残留塩素濃度分布をシミュレートするためのデータベースをアクセス可能であり、複数の捨水計画を適用し、データベースに基づいて、管網末端の残留塩素濃度分布を算出し、塩素注入計画の其々について適用した複数の捨水計画のなかから、管網末端の残留塩素濃度分布が規定の条件を満足し、かつ、捨水量が既定の条件を満たす捨水計画を最適捨水計画として抽出する。【選択図】図2
WATER QUALITY MANAGEMENT SYSTEM AND METHOD
水質管理システムおよび方法
ISHITOBI TAICHI (Autor:in) / KOIZUMI KENJI (Autor:in) / ADACHI SHINGO (Autor:in) / TAKAHASHI SHINSUKE (Autor:in) / SATO TATSUHIRO (Autor:in) / TAKEMOTO TAKESHI (Autor:in)
05.04.2018
Patent
Elektronische Ressource
Japanisch
IPC:
E03B
Anlagen oder Verfahren zum Gewinnen, Sammeln oder Verteilen von Wasser
,
INSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
/
C02F
Behandlung von Wasser, Schmutzwasser, Abwasser oder von Abwasserschlamm
,
TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
/
G06Q
Datenverarbeitungssysteme oder -verfahren, besonders angepasst an verwaltungstechnische, geschäftliche, finanzielle oder betriebswirtschaftliche Zwecke, sowie an geschäftsbezogene Überwachungs- oder Voraussagezwecke
,
DATA PROCESSING SYSTEMS OR METHODS, SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL, SUPERVISORY OR FORECASTING PURPOSES
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