Integrated Model for Optimizing Strategic Overhaul Planning of Distributed Pump Stations
An important part of the lifecycle costs for pump stations are the support costs associated with energy and preventive maintenance of the pumps. Both cost terms are interrelated because a trade-off exists between maintaining pumps frequently (with increased pump efficiency, reduced energy costs and...
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Published in | Journal of computing in civil engineering Vol. 25; no. 4; pp. 275 - 282 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Reston, VA
American Society of Civil Engineers
01.07.2011
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Subjects | |
Online Access | Get full text |
ISSN | 0887-3801 1943-5487 |
DOI | 10.1061/(ASCE)CP.1943-5487.0000085 |
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Abstract | An important part of the lifecycle costs for pump stations are the support costs associated with energy and preventive maintenance of the pumps. Both cost terms are interrelated because a trade-off exists between maintaining pumps frequently (with increased pump efficiency, reduced energy costs and increasing maintenance costs, and pump unavailability) and extending the intervals between the overhauls (increased loss of efficiency, increased energy costs, and decreased maintenance costs). The planner needs to forecast pump overhaul demands to determine budget levels because economic resources are limited. This process is assisted by using mathematical programming methods to prioritize funding for equipment requiring renewal in consideration of limited resources in a strategic time horizon (several years). This work proposes an efficient model to define an overhaul maintenance program for a pump network with a large number of pumps (a few hundred in the case study). The model minimizes the discounted total (energy+overhaul) cost by selecting and scheduling pumps for overhaul subject to budget constraints. The formulation uses 0–1 integer programming. |
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AbstractList | An important part of the lifecycle costs for pump stations are the support costs associated with energy and preventive maintenance of the pumps. Both cost terms are interrelated because a trade-off exists between maintaining pumps frequently (with increased pump efficiency, reduced energy costs and increasing maintenance costs, and pump unavailability) and extending the intervals between the overhauls (increased loss of efficiency, increased energy costs, and decreased maintenance costs). The planner needs to forecast pump overhaul demands to determine budget levels because economic resources are limited. This process is assisted by using mathematical programming methods to prioritize funding for equipment requiring renewal in consideration of limited resources in a strategic time horizon (several years). This work proposes an efficient model to define an overhaul maintenance program for a pump network with a large number of pumps (a few hundred in the case study). The model minimizes the discounted total (energy+overhaul) cost by selecting and scheduling pumps for overhaul subject to budget constraints. The formulation uses 0-1 integer programming. |
Author | Rey, P. A Hodkiewicz, M Cruz, C Pascual, R |
Author_xml | – sequence: 1 givenname: R surname: Pascual fullname: Pascual, R email: rpascual@ing.puc.cl organization: Pontifícia Universidad Católica de Chile, Av. Vicuña Mackenna 4860 , , Santiago, (corresponding author). E-mail – sequence: 2 givenname: P. A surname: Rey fullname: Rey, P. A email: prey@udp.cl organization: Universidad Diego Portales, Ejercito 441 Escuela de Ingeniería Industrial, , Santiago, . E-mail – sequence: 3 givenname: M surname: Hodkiewicz fullname: Hodkiewicz, M email: melinda.hodkiewicz@uwa.edu.au organization: Univ. of Western Australia School of Mechanical Engineering, , 35 Stirling Highway, Perth, . E-mail – sequence: 4 givenname: C surname: Cruz fullname: Cruz, C email: ccruz@ing.uchile.cl organization: Universidad de Chile Dept. of Mechanical Engineering, , Beauchef 850, Santiago, . E-mail |
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Keywords | Degrading operational efficiency Sensitivity analysis Life cycle (environment) Water distribution systems Ageing Aging (material) Shop maintenance Pumping station Overhaul Water distribution Maintenance Aging water networks Pumping stations Modeling Optimization Case study Efficiency Finite time horizon Formulation Planning Mathematical model Life cycles |
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SubjectTerms | Applied sciences Budgeting Buildings. Public works Computation methods. Tables. Charts Costs Distribution. Storage Economics Energy costs Exact sciences and technology Maintenance costs Mathematical models Pump stations Pumps Structural analysis. Stresses TECHNICAL PAPERS Water collecting, well, pumping Water supply. Pipings. Water treatment |
Title | Integrated Model for Optimizing Strategic Overhaul Planning of Distributed Pump Stations |
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