KR101390005B1 - Systematic process system for effective operation of nuclear power plants - Google Patents

Systematic process system for effective operation of nuclear power plants Download PDF

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KR101390005B1
KR101390005B1 KR1020120121913A KR20120121913A KR101390005B1 KR 101390005 B1 KR101390005 B1 KR 101390005B1 KR 1020120121913 A KR1020120121913 A KR 1020120121913A KR 20120121913 A KR20120121913 A KR 20120121913A KR 101390005 B1 KR101390005 B1 KR 101390005B1
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module
information
details
equipment
management module
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KR1020120121913A
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Korean (ko)
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장희승
염동운
송태영
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한국수력원자력 주식회사
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    • GPHYSICS
    • G21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
    • G21CNUCLEAR REACTORS
    • G21C17/00Monitoring; Testing ; Maintaining
    • GPHYSICS
    • G21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
    • G21DNUCLEAR POWER PLANT
    • G21D3/00Control of nuclear power plant
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin
    • Y02E30/30Nuclear fission reactors

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  • Engineering & Computer Science (AREA)
  • Plasma & Fusion (AREA)
  • General Engineering & Computer Science (AREA)
  • High Energy & Nuclear Physics (AREA)
  • Monitoring And Testing Of Nuclear Reactors (AREA)
  • Testing And Monitoring For Control Systems (AREA)

Abstract

The present invention relates to a systematic process system for an effective operation of nuclear power plants which includes: an equipment credibility module (110) that generates information about equipment credibility by planning for performance monitor and preventive maintenance according to the criticality of the power plants; a configuration management module (120) which receives documents for design change, generates information for configuration management and transfers them to the equipment credibility module (110); a material management module (130) which saves material records and generates information about the material management containing record of the material purchases necessary to implement tasks; a work management module (140) which controls the operation of the power plants according to the work schedule after selecting works, saves and controls information about equipment credibility, configuration management and material management, and which conducts performance monitoring by classifying the criticality of the changed design; a risk monitoring module (150) which selects tasks, sets up work schedule and monitors risks created according to the implemented works based on the probabilistic safety assessment (PSA) and defense in depth. According to the present invention, the process required to operate nuclear power plants structuralizes a model, module and a statement process by composition level so that management as well as practical level personnel can easily understand based on the position, and development and operation of a systematic process is possible.

Description

원전의 효율적 운영을 위한 체계적인 프로세스 시스템{SYSTEMATIC PROCESS SYSTEM FOR EFFECTIVE OPERATION OF NUCLEAR POWER PLANTS}BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a process system for efficiently operating a nuclear power plant,

본 발명은 원전의 효율적 운영을 위한 체계적인 프로세스 시스템에 관한 것으로 더욱 상세하게는, 원전 운영을 안전하고 효율적으로 수행하기 위한 프로세스를 정의하고 프로세스를 구성하고 있는 각각의 모듈을 정의하여 개별 모듈을 연계하여 원전운영의 효율성을 증대시키는 기술에 관한 것이다.The present invention relates to a systematic process system for efficiently operating a nuclear power plant, and more particularly, to a system for defining a process for safely and efficiently performing a nuclear power plant operation and defining each module constituting a process, And technology that increases the efficiency of nuclear power plant operation.

원자력발전소를 운영하기 위해서 효율적으로 운영하기 위해 다양한 프로세스와 모듈들이 개발되어 운영되고 있다. 그러나 프로세스들이 개별적으로 개발 운영되고 있으므로 상호 연계성이 부족하며, 프로세스가 효과적으로 운영되고 있는 지 확인하는 것이 어렵다.Various processes and modules have been developed and operated to operate efficiently in order to operate nuclear power plants. However, since the processes are developed and operated individually, they are not interconnected and it is difficult to confirm that the processes are operating effectively.

아울러, 도 1에 도시된 바와 같이, 현재 NEI에서 개발한 원전운영 표준모델 (Standard Nuclear Performance Model, SNPM)은 리더십, 비용 등을 포함한 운영 모델이나 리스크를 반영하지 않은 모델이다.Also, as shown in FIG. 1, the SNPM model developed by NEI is a model that does not reflect operational models or risks including leadership, cost, and the like.

따라서, 다른 모델과의 연계 없이 단일모델로 운영되고 있어, 각 모듈의 세부 프로세스에 대하여 명확하게 정의되어 있지 않았으며, 회사의 정책과 그에 따른 프로세스 운영을 반영하지 않아 적용하는 데 어려움이 있다.Therefore, it is operated as a single model without linking with other models. Therefore, the detailed process of each module is not clearly defined, and it is difficult to apply it because it does not reflect the company's policy and process operation.

대한민국 공개특허 제10-2008-0013153호(디지털 원자로 보호 시스템)에는 운영체계를 사용하는 디지털 원자로 보호 시스템에서 발생하는 소프트웨어 공통 유형 고장 발생을 방지하는 기술이 개시되어 있다.Korean Patent Laid-Open No. 10-2008-0013153 (Digital Reactor Protection System) discloses a technique for preventing occurrence of a common-type software failure occurring in a digital reactor protection system using an operating system.

그러나, 프로세스를 효율적으로 운영하기 위해서는 입력되는 요소가 어느 프로세스에서 생성되는 지 연계하는 것이 필요하며, 프로세스 수행결과를 후속 프로세스 어디에서 활용하는 지 연계관계를 보여주지 못하고 있어 효과적인 프로세스의 연계성이 필요하다. 또한 프로세스가 효과적으로 운영되고 있는 지 확인하는 성능지표 개발이 필요하다.However, in order to efficiently operate a process, it is necessary to associate a process with which an input element is generated, and it is not possible to show a linkage in which a process execution result is used in a subsequent process, . There is also a need to develop performance indicators to ensure that processes are operating effectively.

본 발명은 상기와 같은 문제점을 해결하고자 안출된 것으로, 원전 운영을 위한 프로세스에 대한 정의 및 프로세스의 입/출력 프로세스를 정의함으로써, 프로세스간의 연계성을 강화하고, 모델, 모듈 및 프로세스를 수준별로 구분하여 경영진 및 실무자까지 전체 프로세스에 대한 이해도를 제고시킴에 그 목적이 있다.SUMMARY OF THE INVENTION The present invention has been devised to solve the problems as described above, and it is an object of the present invention to define a process for operating a nuclear power plant and define input / output processes of the process, It is aimed at enhancing the understanding of the whole process from management and practitioner.

또한, 본 발명은 확률론적안전성평가 및 심층방호에 근거하여 발전소의 기기 및 기능이 이용 불가능한 경우 그에 따른 리스크의 증가를 정량적 또는 정성적으로 평가함으로써, 작업관리를 수행하는 데 있어 리스크 평가를 기반으로 작업대상을 선정하고 작업일정을 수립하며, 작업을 수행하는 과정에서 리스크를 감시하는데 그 목적이 있다.Further, the present invention is based on a risk assessment for performing work management by quantitatively or qualitatively evaluating the increase in risk when the equipment and functions of the plant are unavailable based on probabilistic safety assessment and in-depth protection The purpose of the task is to select tasks, schedule work, and monitor risks in the course of work.

그리고, 본 발명은 프로세스 연계성을 강화함으로써, 현재 운영 중인 프로세스의 문제점을 도출하고 개선함으로써, 원전운영의 효율성을 증대하는데 그 목적이 있다.Further, the present invention aims at enhancing the efficiency of the nuclear power plant operation by enhancing the process linkage, thereby deriving and improving the problem of the currently operating process.

이러한 기술적 과제를 달성하기 위한 본 발명에 따른 원전의 효율적 운영을 위한 체계적인 프로세스 시스템은, 발전소기기의 중요도에 따라 성능감시 및 예방정비 계획을 수립하여 설비신뢰도정보를 생성하는 설비신뢰도모듈(110); 설계변경을 위한 문서들을 입력받고 변경된 설계내역을 포함하는 형상관리정보를 생성하여 설비신뢰도모듈(110)로 인가하는 형상관리모듈(120); 자재내역을 저장하고 작업수행에 필요한 자재들의 구매내역을 포함하는 자재관리정보를 생성하는 자재관리모듈(130); 작업을 선정하여 작업일정에 따라 발전소의 운영을 제어하되, 설비신뢰도정보, 형상관리정보 및 자재관리정보를 저장 및 관리하고, 변경된 설계내역에 대한 중요도를 선별하여 성능감시를 수행하는 작업관리모듈(140); 및 작업대상 선정 및 작업일정을 수립하고, 확률론적안전성평가 및 심층방호에 근거하여 작업 수행에 따라 발생하는 리스크를 감시하는 리스크감시모듈(150);을 포함한다.To achieve these and other advantages and in accordance with the purpose of the present invention, as embodied and broadly described herein, a systematic process system for efficiently operating nuclear power plants according to the present invention includes: a facility reliability module 110 for establishing performance monitoring and preventive maintenance plans according to importance of plant equipment to generate facility reliability information; A configuration management module 120 receiving documents for design change and generating configuration management information including the changed design details and applying the generated configuration management information to the facility reliability module 110; A material management module (130) for storing material details and generating material management information including a purchase history of materials necessary for performing a work; A task management module that controls the operation of the power plant according to the work schedule and stores and manages the equipment reliability information, the configuration management information and the material management information, performs the performance monitoring by sorting the importance of the changed design details 140); And a risk monitoring module 150 for establishing task selection and work schedules, and for monitoring risks occurring according to probabilistic safety evaluation and work execution based on in-depth protection.

상기와 같은 본 발명에 따르면, 원자력발전소 설비운영에 필요한 프로세스를 구성 수준별로 모델, 모듈 및 프로세스기술서로 구조화하여 경영진 및 실무자 모두 해당직위에 따라 쉽게 이해할 수 있으며, 체계적인 프로세스 개발 및 운영이 가능한 효과가 있다.According to the present invention as described above, the processes necessary for the operation of nuclear power plant facilities can be structured by model, module, and process technology at each level of construction, so that both management and practitioner can easily understand according to their respective positions. have.

그리고, 본 발명에 따르면, 전 운영을 위한 세부 프로세스에 대한 정의, 프로세스 맵 및 프로세스의 입/출력 프로세스를 정의함으로써, 향후 비용, 경영관리, 인력활용 등을 반영하여 원전 경영관리 모델을 개발을 위한 기반으로도 활용할 수 있는 효과가 있다.According to the present invention, by defining the detailed process for the entire operation, defining the process map and the input / output process of the process, it is possible to develop a nuclear management management model reflecting future costs, management, It can also be used as a base.

도 1은 종래에 운영중인 NEI 원전운영 표준모델(Standard Nuclear Performance Model, SNPM)을 도시한 도면.
도 2는 본 발명에 따른 원전의 효율적 운영을 위한 체계적인 프로세스 시스템을 도시한 구성도.
도 3은 본 발명에 따른 원전의 효율적 운영을 위한 체계적인 프로세스 시스템의 부가 구성요소들을 도시한 도면.
BRIEF DESCRIPTION OF THE DRAWINGS Figure 1 is a diagram of a conventional Nuclear Performance Model (SNPM) operating in the past.
2 is a block diagram illustrating a systematic process system for efficient operation of a nuclear power plant according to the present invention.
3 illustrates additional components of a systematic process system for efficient operation of a nuclear power plant according to the present invention;

본 발명의 구체적인 특징 및 이점들은 첨부도면에 의거한 다음의 상세한 설명으로 더욱 명백해질 것이다. 이에 앞서, 본 명세서 및 청구범위에 사용된 용어나 단어는 발명자가 그 자신의 발명을 가장 최선의 방법으로 설명하기 위해 용어의 개념을 적절하게 정의할 수 있다는 원칙에 입각하여 본 발명의 기술적 사상에 부합하는 의미와 개념으로 해석되어야 할 것이다. 또한, 본 발명에 관련된 공지 기능 및 그 구성에 대한 구체적인 설명이 본 발명의 요지를 불필요하게 흐릴 수 있다고 판단되는 경우에는, 그 구체적인 설명을 생략하였음에 유의해야 할 것이다.Specific features and advantages of the present invention will become more apparent from the following detailed description based on the accompanying drawings. Prior to this, terms and words used in the present specification and claims are to be interpreted in accordance with the technical idea of the present invention based on the principle that the inventor can properly define the concept of the term in order to explain his invention in the best way. It should be interpreted in terms of meaning and concept. It is to be noted that the detailed description of known functions and constructions related to the present invention is omitted when it is determined that the gist of the present invention may be unnecessarily blurred.

도 2에 도시된 바와 같이 본 발명에 따른 원전의 효율적 운영을 위한 체계적인 프로세스 시스템(100)은, 발전소기기의 중요도에 따라 성능감시 및 예방정비 계획을 수립하여 설비신뢰도정보를 생성하는 설비신뢰도모듈(110), 설계변경을 위한 문서들을 입력받고 변경된 설계내역을 포함하는 형상관리정보를 생성하여 설비신뢰도모듈(110)로 인가하는 형상관리모듈(120), 자재내역을 저장하고 작업수행에 필요한 자재들의 구매내역을 포함하는 자재관리정보를 생성하는 자재관리모듈(130), 작업을 선정하여 작업일정에 따라 발전소의 운영을 제어하되, 상기 설비신뢰도정보, 형상관리정보 및 자재관리정보를 저장 및 관리하고, 변경된 설계내역에 대한 중요도를 선별하여 성능감시를 수행하는 작업관리모듈(140), 및 작업대상 선정 및 작업일정을 수립하고, 확률론적안전성평가 및 심층방호에 근거하여 작업 수행에 따라 발생하는 리스크를 감시(모니터링)하는 리스크감시모듈(150)을 포함하여 구성된다.
2, a systematic process system 100 for efficient operation of a nuclear power plant according to the present invention includes a facility reliability module (hereinafter referred to as " equipment reliability module ") that generates facility reliability information by establishing a performance monitoring and preventive maintenance plan according to the importance of a plant equipment 110, a configuration management module 120 for inputting documents for design change and generating configuration management information including the changed design details and applying the generated configuration management information to the facility reliability module 110, A material management module 130 for generating material management information including a purchase history, and a management server 130 for managing operations of the power plant according to a job schedule by selecting jobs, storing and managing the facility reliability information, configuration management information and material management information A task management module 140 for performing performance monitoring by selecting importance of changed design details, and a task selection and task schedule, Based on a holistic safety assessment and in-depth protection and is configured to include a risk monitoring module (150) for risk surveillance (monitoring) occurs according to the work performed.

구체적으로, 본 발명에 따른 원전의 효율적 운영을 위한 체계적인 프로세스 시스템(100)의 세부구성에 대해 살피면 아래와 같다.In detail, a detailed configuration of a systematic process system 100 for efficient operation of a nuclear power plant according to the present invention will be described below.

먼저, 설비신뢰도모듈(110)은 발전소기기의 중요도에 따라 성능감시 및 예방정비 계획을 수립하여 설비신뢰도정보를 생성하되, 성능감시 결과 기준에 만족하지 못하는 기기내역 및 설비내역을 작업관리모듈(140)로 인가하고, 발전정지유발기기 내역, 단종품 내역 및 노후화설비 내역을 형상관리모듈(120)로 인가한다.First, the equipment reliability module 110 establishes a performance monitoring and preventive maintenance plan according to the importance of the power plant equipment to generate facility reliability information, and transmits the equipment details and equipment details that are not satisfied with the performance monitoring result to the job management module 140 ), And applies the power generation stopping device details, the discontinued product details and the aging equipment details to the configuration management module 120.

또한, 형상관리모듈(120)은 설계변경을 위한 문서들을 입력받고 변경된 설계내역을 포함하는 형상관리정보를 생성하여 설비신뢰도모듈(110)로 인가하되, 설비신뢰도모듈(110)로부터 인가받은 발전정지유발기기 내역, 단종품 내역 및 노후화설비 내역을 설계변경 대상으로 선정하여 관리한다.The configuration management module 120 receives the documents for design change and generates configuration management information including the changed design details and applies the configuration management information to the facility reliability module 110, The details of the induced device, the discontinued product, and the aged equipment are selected and controlled for design change.

또한, 자재관리모듈(130)은 자재내역을 저장하고 작업수행에 필요한 자재들의 구매내역을 포함하도록 생성한 자재관리정보를 작업관리모듈(140)로 인가한다.In addition, the material management module 130 stores the material details and applies the material management information generated to include the purchase details of the materials necessary for performing the work to the job management module 140. [

또한, 작업관리모듈(140)은 작업을 선정하여 작업일정에 따라 발전소의 운영을 제어하되, 설비신뢰도모듈(110)로부터 인가받은 설비신뢰도정보에 따라 예방정비계획을 관리하고, 형상관리모듈(120)로부터 형상관리정보를 인가받아 변경된 설계내역에 대한 중요도를 선별하여 성능감시를 수행하며, 자재관리모듈(130)로부터 인가받은 자재관리정보를 관리한다.The job management module 140 manages the operation of the power plant according to the job schedule and manages the preventive maintenance plan according to the facility reliability information received from the facility reliability module 110. The configuration management module 120 And performs the performance monitoring, and manages the material management information received from the material management module 130.

그리고, 리스크감시모듈(150)은 작업대상 선정 및 작업일정을 수립하고, 확률론적안전성 및 심층방호에 근거하여 작업 수행에 따라 발생하는 리스크를 감시하되, 발전소의 특정 기기 및 기능이 이용 불가능한 상태인 경우, 그에 따른 리스크 증가여부를 포함하는 리스크정보를 생성하여 작업관리모듈(140)로 인가한다.
In addition, the risk monitoring module 150 establishes a task selection and work schedule, and monitors the risks that arise as a result of performing tasks based on probabilistic safety and in-depth protection, And generates risk information including whether the risk is increased or not, and applies the generated risk information to the job management module 140.

아울러, 본 발명에 따른 원전의 효율적 운영을 위한 체계적인 프로세스 시스템(100)은 도 3에 도시된 바와 같이 발전소운영모듈(160), 성능개선모듈(170), 정보기술/정보관리모듈(180) 및 교육훈련모듈(190)을 더 포함하여 구성된다.3, the power plant operation module 160, the performance improvement module 170, the information technology / information management module 180, And an education and training module (190).

먼저, 발전소운영모듈(160)은 발전소의 기동, 정지 또는 운전을 제어하여 전력을 생산한다.First, the power plant operation module 160 controls the start, stop, or operation of the power plant to produce electric power.

또한, 성능개선모듈(170)은 작업관리모듈(140)로부터 성능감시 결과 기준에 만족하지 못하는 기기내역 및 설비내역을 인가받고, 해당 기기 및 설비 사용연한과 규정수명을 분석하여 생성한 성능개선정보를 저장 및 관리한다.The performance improvement module 170 receives device history and equipment details that are not satisfied with the performance monitoring result criteria from the job management module 140, and analyzes the performance improvement information .

또한, 정보기술/정보관리모듈(180)은 원전설비에 구비되는 각종 기기에 대한 유지보수 매뉴얼과 계통간의 정보전송 내역을 모니터링하는 기능을 수행한다.In addition, the information technology / information management module 180 monitors maintenance manuals for various devices installed in the nuclear installation and information transmission history between the systems.

그리고, 교육훈련모듈(190)은 발전소 설비의 운전을 위한 매뉴얼과 발전소 설비의 가상운전을 제공하는 시뮬레이션정보를 저장 및 관리한다.The education and training module 190 stores and manages simulation information that provides a manual for operating the plant facilities and a virtual operation of the plant facilities.

이상으로 본 발명의 기술적 사상을 예시하기 위한 바람직한 실시예와 관련하여 설명하고 도시하였지만, 본 발명은 이와 같이 도시되고 설명된 그대로의 구성 및 작용에만 국한되는 것이 아니며, 기술적 사상의 범주를 일탈함이 없이 본 발명에 대해 다수의 변경 및 수정이 가능함을 당업자들은 잘 이해할 수 있을 것이다. 따라서 그러한 모든 적절한 변경 및 수정과 균등 물들도 본 발명의 범위에 속하는 것으로 간주되어야 할 것이다.While the present invention has been particularly shown and described with reference to preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims. It will be appreciated by those skilled in the art that numerous changes and modifications may be made without departing from the invention. And all such modifications and changes as fall within the scope of the present invention are therefore to be regarded as being within the scope of the present invention.

100: 원전의 효율적 운영을 위한 체계적인 프로세스 시스템
110: 설비신뢰도모듈 120: 형상관리모듈
130: 자재관리모듈 140: 작업관리모듈
150: 리스크감시모듈 160: 발전소운영모듈
170: 성능개선모듈 180: 정보기술/정보관리모듈
190: 교육훈련모듈
100: Systematic process system for efficient operation of nuclear power plants
110: Equipment reliability module 120: Configuration management module
130: Material management module 140: Task management module
150: Risk monitoring module 160: Power station operation module
170: performance improvement module 180: information technology / information management module
190: Training Module

Claims (6)

발전소기기의 중요도에 따라 성능감시 및 예방정비 계획을 수립하여 설비신뢰도정보를 생성하는 설비신뢰도모듈(110);
설계변경을 위한 문서들을 입력받고 변경된 설계내역을 포함하는 형상관리정보를 생성하여 상기 설비신뢰도모듈(110)로 인가하는 형상관리모듈(120);
자재내역을 저장하고 작업수행에 필요한 자재들의 구매내역을 포함하는 자재관리정보를 생성하는 자재관리모듈(130);
작업을 선정하여 작업일정에 따라 발전소의 운영을 제어하되, 상기 설비신뢰도정보, 형상관리정보 및 자재관리정보를 저장 및 관리하고, 변경된 설계내역에 대한 중요도를 선별하여 성능감시를 수행하는 작업관리모듈(140); 및
작업대상 선정 및 작업일정을 수립하고, 확률론적안전성평가 및 심층방호에 근거하여 작업 수행에 따라 발생하는 리스크를 감시하는 리스크감시모듈(150);을 포함하되,
상기 설비신뢰도모듈(110)은, 발전소기기의 중요도에 따라 성능감시 및 예방정비 계획을 수립하여 설비신뢰도정보를 생성하되, 성능감시 결과 기준에 만족하지 못하는 기기내역 및 설비내역을 상기 작업관리모듈(140)로 인가하고, 발전정지유발기기 내역, 단종품 내역 및 노후화설비 내역을 상기 형상관리모듈(120)로 인가하고,
상기 형상관리모듈(120)은, 설계변경을 위한 문서들을 입력받고 변경된 설계내역을 포함하는 형상관리정보를 생성하여 상기 설비신뢰도모듈(110)로 인가하되, 상기 설비신뢰도모듈(110)로부터 인가받은 발전정지유발기기 내역, 단종품 내역 및 노후화설비 내역을 설계변경 대상으로 선정하여 관리하며,
상기 자재관리모듈(130)은, 자재내역을 저장하고 작업수행에 필요한 자재들의 구매내역을 포함하도록 생성한 자재관리정보를 작업관리모듈(140)로 인가하고,
상기 작업관리모듈(140)은, 작업을 선정하여 작업일정에 따라 발전소의 운영을 제어하되, 상기 설비신뢰도모듈(110)로부터 인가받은 설비신뢰도정보에 따라 예방정비계획을 관리하고, 상기 형상관리모듈(120)로부터 형상관리정보를 인가받아 변경된 설계내역에 대한 중요도를 선별하여 성능감시를 수행하며, 상기 자재관리모듈(130)로부터 인가받은 자재관리정보를 관리하고,
상기 리스크감시모듈(150)은, 작업대상 선정 및 작업일정을 수립하고, 확률론적안전성평가 및 심층방호에 근거하여 작업 수행에 따라 발생하는 리스크를 감시하되, 발전소의 특정 기기 및 기능이 이용 불가능한 상태인 경우, 그에 따른 리스크 증가여부를 포함하는 리스크정보를 생성하는 것을 특징으로 하는 원전의 효율적 운영을 위한 체계적인 프로세스 시스템.
A facility reliability module 110 for establishing a performance monitoring and preventive maintenance plan according to the importance of the plant equipment and generating facility reliability information;
A configuration management module 120 receiving documents for design change and generating configuration management information including the changed design details and applying the generated configuration management information to the facility reliability module 110;
A material management module (130) for storing material details and generating material management information including a purchase history of materials necessary for performing a work;
A task management module for managing the operation of the power plant according to a job schedule and storing and managing the facility reliability information, the configuration management information and the material management information, and selecting the importance of the changed design details and performing performance monitoring (140); And
And a risk monitoring module (150) for establishing a job target selection and work schedule, and monitoring a risk occurring based on probabilistic safety evaluation and in-depth protection based on job performance,
The equipment reliability module 110 establishes a performance monitoring and preventive maintenance plan according to the importance of the power plant equipment to generate facility reliability information and stores the equipment details and facility details that are not satisfied with the performance monitoring result as the operation management module 140, and applies the details of the power generation stopping device, the discontinued product, and the aging equipment to the shape management module 120,
The configuration management module 120 receives the documents for design change and generates configuration management information including the changed design details and applies the configuration management information to the facility reliability module 110, The designation of the equipment for stopping the generation of power generation, the details of the discontinued products and the details of the aging facilities,
The material management module 130 stores the material details and applies the material management information generated to include the purchase details of the materials necessary for performing the job to the job management module 140,
The task management module 140 manages the preventive maintenance plan according to the facility reliability information received from the facility reliability module 110 by controlling the operation of the power plant according to the job schedule by selecting the job, And performs performance monitoring by selecting the importance of the changed design history by receiving the configuration management information from the configuration management unit 120, manages the material management information received from the material management module 130,
The risk monitoring module 150 establishes a task selection and work schedule, monitors the risk occurring according to the probabilistic safety evaluation and the in-depth protection based on the performance of the task, The risk information including the risk increase is generated based on the risk information, and a systematic process system for efficient operation of the nuclear power plant.
삭제delete 삭제delete 삭제delete 삭제delete 제 1 항에 있어서,
발전소의 기동, 정지 또는 운전을 제어하여 전력을 생산하는 발전소운영모듈(160);
작업관리모듈(140)로부터 성능감시 결과 기준에 만족하지 못하는 기기내역 및 설비내역을 인가받고, 해당 기기 및 설비 사용연한과 규정수명을 분석하여 생성한 성능개선정보를 저장 및 관리하는 성능개선모듈(170);
원전설비에 구비되는 각종 기기에 대한 유지보수 매뉴얼과 계통간의 정보전송 내역을 모니터링하는 정보기술/정보관리모듈(180); 및
발전소 설비의 운전을 위한 매뉴얼과 발전소 설비의 가상운전을 제공하는 시뮬레이션정보를 저장 및 관리하는 교육훈련모듈(190);을 더 포함하는 것을 특징으로 하는 원전의 효율적 운영을 위한 체계적인 프로세스 시스템.
The method according to claim 1,
A power plant operation module 160 for controlling the start, stop or operation of the power plant to generate power;
A performance enhancement module for storing and managing the performance improvement information generated by analyzing the device and equipment usage life and the life span of the device and equipment, receiving the device details and equipment details that do not satisfy the performance monitoring result criteria from the job management module 140 170);
An information technology / information management module 180 for monitoring a maintenance manual for various devices installed in the nuclear installation and information transmission history between the systems; And
And a training module 190 for storing and managing simulation information for providing a manual operation of the plant facility and a virtual operation of the plant facility.
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