水敏感型城市设计的非市场价值:以雨水花园为例

IF 2.3 3区 经济学 Q2 ECONOMICS
Md Sayed Iftekhar , Fan Zhang , Maksym Polyakov , James Fogarty , Michael Burton
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引用次数: 9

摘要

雨水花园是水敏感型城市基础设施的一个既定元素。然而,关于人们对这种系统的偏好的信息是缺乏的。为了了解人们是否愿意为这样的系统付费,以及评估是否在不同地点之间可转移,我们在悉尼和墨尔本进行了选择实验。我们发现人们愿意为雨水花园买单。两个地点对不同特征的边际支付意愿相似,但补偿剩余价值在地点之间的转移仍然会产生转移误差。通过对雨园装置的效益-成本分析,对转移误差的影响进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-market values of water sensitive urban designs: A case study on rain gardens

Rain gardens are an established element of water sensitive urban infrastructure. However, information on people's preferences for such systems is lacking. To understand whether people express willingness to pay for such systems and whether estimates are transferable between locations, we conducted choice experiments in Sydney and Melbourne. We found that people are willing to pay for rain gardens. The marginal willingness to pay for different features is similar in both locations, but the transfer of compensating surplus values between locations still generates transfer errors. The implications of transfer errors are investigated using a benefit-cost analysis of a rain garden installation.

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来源期刊
Water Resources and Economics
Water Resources and Economics Environmental Science-Water Science and Technology
CiteScore
5.00
自引率
0.00%
发文量
17
审稿时长
51 days
期刊介绍: Water Resources and Economics is one of a series of specialist titles launched by the highly-regarded Water Research. For the purpose of sustainable water resources management, understanding the multiple connections and feedback mechanisms between water resources and the economy is crucial. Water Resources and Economics addresses the financial and economic dimensions associated with water resources use and governance, across different economic sectors like agriculture, energy, industry, shipping, recreation and urban and rural water supply, at local, regional and transboundary scale. Topics of interest include (but are not restricted to) the economics of: Aquatic ecosystem services- Blue economy- Climate change and flood risk management- Climate smart agriculture- Coastal management- Droughts and water scarcity- Environmental flows- Eutrophication- Food, water, energy nexus- Groundwater management- Hydropower generation- Hydrological risks and uncertainties- Marine resources- Nature-based solutions- Resource recovery- River restoration- Storm water harvesting- Transboundary water allocation- Urban water management- Wastewater treatment- Watershed management- Water health risks- Water pollution- Water quality management- Water security- Water stress- Water technology innovation.
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