设计和校准一个基于agent的平台来评估气候变量对居民用水需求的影响

IF 1.7 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Water and Environment Journal Pub Date : 2023-03-30 DOI:10.1111/wej.12864
S. F. Moosavi, N. Salehnia, Ahmad Seifi, Ahmadreza Asgharpourmasouleh, N. Salehnia
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引用次数: 0

摘要

包括设拉子在内的许多伊朗大都市都位于干旱和半干旱地区,缺乏足够的可再生水资源。近年来,包括干旱和气温上升在内的气候变化导致了水供应和需求的变化。鉴于城市供水的必要性和重要性,本研究调查了不同气候情景对居民用水需求的影响。许多研究在其模型中没有考虑家庭用水者之间的社会互动和他们消费行为的变化,这是一个根本的缺点。因此,本研究试图提出一个基于主体的框架,通过扩散过程对社会互动进行建模,以有效地调查用水行为。根据2006年至2019年的数据,该模型被校准并应用于伊朗设拉子市,并用于模拟接下来几年直到2032年的每一种情况。研究结果表明,温度对居民用水量有积极而显著的影响;然而,降雨对用水量产生了负面影响。对温度升高或降低和降雨量变化的这些情景的模拟结果进行了估计。此外,开发的基于代理的平台可以根据任何其他城市的数据轻松校准和调整,以模拟不同气候甚至经济情景下的需水量估计。城市水资源管理者可以从这些估计中受益,以规划未来的基础设施发展,并在潜在气候变化的压力下积极管理季节性水资源,因为了解季节性用水量对气候条件的敏感性对于应对需求变化至关重要。
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Designing and calibrating an agent‐based platform to evaluate the effect of climate variables on residential water demand
Many Iranian metropolises, including Shiraz, are situated in arid and semi‐arid regions, lacking sufficient renewable water resources. In recent years, climate changes, including drought and rising temperatures, have led to changes in water supply and demand. Given the necessity and importance of urban water supply, this study investigates the impact of different climate scenarios on residential water demand. Many studies, in their models, do not consider the social interactions between household water consumers and the change in their consumption behaviour, which serves as a fundamental drawback. Thus, the present research attempts to propose an agent‐based framework by modelling social interactions via the diffusion process to investigate water consumption behaviour efficiently. The model is calibrated and applied to Shiraz City in Iran, according to the data from 2006 to 2019, and it is used to simulate each scenario for the following years until 2032. The findings show that temperature has a positive and significant effect on residential water consumption; yet, rainfall negatively affects water consumption. The simulation results of these scenarios for temperature increase or decrease and rainfall changes are estimated. In addition, the developed agent‐based platform can be easily calibrated and adjusted based on the data of any other city to simulate water demand estimation under different climatic and even economic scenarios. Urban water managers can benefit from such estimates to plan future infrastructure development and proactive management of seasonal water resources under the growing pressure of potential climate change because construing the sensitivity of seasonal water consumption to climate conditions is essential to respond to variations in demand.
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来源期刊
Water and Environment Journal
Water and Environment Journal 环境科学-湖沼学
CiteScore
4.80
自引率
0.00%
发文量
67
审稿时长
18-36 weeks
期刊介绍: Water and Environment Journal is an internationally recognised peer reviewed Journal for the dissemination of innovations and solutions focussed on enhancing water management best practice. Water and Environment Journal is available to over 12,000 institutions with a further 7,000 copies physically distributed to the Chartered Institution of Water and Environmental Management (CIWEM) membership, comprised of environment sector professionals based across the value chain (utilities, consultancy, technology suppliers, regulators, government and NGOs). As such, the journal provides a conduit between academics and practitioners. We therefore particularly encourage contributions focussed at the interface between academia and industry, which deliver industrially impactful applied research underpinned by scientific evidence. We are keen to attract papers on a broad range of subjects including: -Water and wastewater treatment for agricultural, municipal and industrial applications -Sludge treatment including processing, storage and management -Water recycling -Urban and stormwater management -Integrated water management strategies -Water infrastructure and distribution -Climate change mitigation including management of impacts on agriculture, urban areas and infrastructure
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