Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach

In this study, a model is developed to assess risk to a municipal water supply system under the influence of population growth and climate change. To incorporate the uncertainly in water use, a model which combines time series Monte Carlo simulations and a deterministic artificial neural network (A...

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Main Author: Yung, Beatrice Biau
Language:en
Published: 2008
Subjects:
Online Access:http://hdl.handle.net/10012/3562
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-35622013-10-04T04:08:13ZYung, Beatrice Biau2008-01-28T19:50:45Z2008-01-28T19:50:45Z2008-01-28T19:50:45Z2008-01-22http://hdl.handle.net/10012/3562In this study, a model is developed to assess risk to a municipal water supply system under the influence of population growth and climate change. To incorporate the uncertainly in water use, a model which combines time series Monte Carlo simulations and a deterministic artificial neural network (ANN) is developed to simulate the daily water demand under climate variability. The model is then expanded in two directions. One direction is to estimate the effects of demand management programs and system expansion on the reliability, resiliency, and vulnerability of the water supply system. Another direction is to capture the possible impacts of climate change on the risk of a water supply system. Twenty-six scenarios generated from different combinations of demand management programs, system expansions and Global Climate Model (GCM) scenarios were set to illustrate the risk indices: reliability, resiliency, and vulnerability. To illustrate the effects of a change of precipitation frequency and a higher population growth, twenty-five additional scenarios were evaluated.enRisk AssessmentClimate VariabilityWater Supply SystemRisk Assessment of a Water Supply System under Climate Variability: A Stochastic ApproachThesis or DissertationCivil and Environmental EngineeringMaster of Applied ScienceCivil Engineering
collection NDLTD
language en
sources NDLTD
topic Risk Assessment
Climate Variability
Water Supply System
Civil Engineering
spellingShingle Risk Assessment
Climate Variability
Water Supply System
Civil Engineering
Yung, Beatrice Biau
Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach
description In this study, a model is developed to assess risk to a municipal water supply system under the influence of population growth and climate change. To incorporate the uncertainly in water use, a model which combines time series Monte Carlo simulations and a deterministic artificial neural network (ANN) is developed to simulate the daily water demand under climate variability. The model is then expanded in two directions. One direction is to estimate the effects of demand management programs and system expansion on the reliability, resiliency, and vulnerability of the water supply system. Another direction is to capture the possible impacts of climate change on the risk of a water supply system. Twenty-six scenarios generated from different combinations of demand management programs, system expansions and Global Climate Model (GCM) scenarios were set to illustrate the risk indices: reliability, resiliency, and vulnerability. To illustrate the effects of a change of precipitation frequency and a higher population growth, twenty-five additional scenarios were evaluated.
author Yung, Beatrice Biau
author_facet Yung, Beatrice Biau
author_sort Yung, Beatrice Biau
title Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach
title_short Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach
title_full Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach
title_fullStr Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach
title_full_unstemmed Risk Assessment of a Water Supply System under Climate Variability: A Stochastic Approach
title_sort risk assessment of a water supply system under climate variability: a stochastic approach
publishDate 2008
url http://hdl.handle.net/10012/3562
work_keys_str_mv AT yungbeatricebiau riskassessmentofawatersupplysystemunderclimatevariabilityastochasticapproach
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