Life-cycle cost-benefit analysis of extensive vegetated roof systems

被引:226
|
作者
Carter, Timothy [1 ]
Keeler, Andrew [2 ]
机构
[1] Univ Georgia, Inst Ecol, River Basin Ctr, Athens, GA 30602 USA
[2] Ohio State Univ, John Glenn Sch Publ Affairs, Columbus, OH 43210 USA
关键词
green roof; green building; cost benefit analysis; best management practices;
D O I
10.1016/j.jenvman.2007.01.024
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The built environment has been a significant cause of environmental degradation in the previously undeveloped landscape. As public and private interest in restoring the environmental integrity of urban areas continues to increase, new construction practices are being developed that explicitly value beneficial environmental characteristics. The use of vegetation on a rooftop-commonly called a green roof-as an alternative to traditional roofing materials is an increasingly utilized example of such practices. The vegetation and growing media perform a number of functions that improve environmental performance, including: absorption of rainfall, reduction of roof temperatures, improvement in ambient air quality, and provision of urban habitat. A better accounting of the green roots total costs and benefits to society and to the private sector will aid in the design of policy instruments and educational materials that affect individual decisions about green roof construction. This study uses data collected from an experimental green roof plot to develop a benefit cost analysis (BCA) for the life cycle of extensive (thin layer) green roof systems in an urban watershed. The results from this analysis are compared with a traditional roofing scenario. The net present value (NPV) of this type of green roof currently ranges from 10% to 14% more expensive than its conventional counterpart. A reduction of 20% in green roof construction cost would make the social NPV of the practice less than traditional roof NPV. Considering the positive social benefits and relatively novel nature of the practice, incentives encouraging the use of this practice in highly urbanized watersheds are strongly recommended. (C) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:350 / 363
页数:14
相关论文
共 50 条
  • [21] COST-BENEFIT ANALYSIS OF FIRST-AND SECOND-GENERATION BIOFUELS BASED ON AN ECONOMIC VALUATION OF LIFE-CYCLE IMPACTS
    Gabrielle, Benoit
    Zhu, Yuanzao
    Marette, Stephan
    Martinet, Vincent
    [J]. PAPERS OF THE 24TH EUROPEAN BIOMASS CONFERENCE: SETTING THE COURSE FOR A BIOBASED ECONOMY, 2016, : 1338 - 1344
  • [22] Effectiveness and life-cycle cost-benefit analysis of active cold storages for building demand management for smart grid applications
    Cui, Borui
    Gao, Dian-ce
    Wang, Shengwei
    Xue, Xue
    [J]. APPLIED ENERGY, 2015, 147 : 523 - 535
  • [23] The life cycle assessment and cost-benefit analysis for nature friendly river works
    Kobayashi, K
    Chonan, M
    Matsuzaki, H
    Shirakawa, N
    [J]. DEVELOPMENT, PLANNING AND MANAGEMENT OF SURFACE AND GROUND WATER RESOURCES, THEME A, PROCEEDINGS, 2001, : 215 - 220
  • [24] How the inclusion of life cycle impacts affects transport cost-benefit analysis
    Manzo, Stefano
    Dong, Yan
    Miraglia, Simona
    Salling, Kim Bang
    [J]. EUROPEAN JOURNAL OF TRANSPORT AND INFRASTRUCTURE RESEARCH, 2018, 18 (04): : 372 - 388
  • [25] Life-Cycle Cost-Benefit Measurement Model of Electric Vehicle AC Charging Piles in Residential Communities
    Liang Yanni
    Wu Liangzheng
    Zhang Jigang
    Wen Shangyong
    Wang Ran
    [J]. 2021 11TH INTERNATIONAL CONFERENCE ON POWER AND ENERGY SYSTEMS (ICPES 2021), 2021, : 603 - 607
  • [26] Life-cycle cost analysis for infrastructure systems: Life-Cycle Cost vs. safety level vs. service life
    Furuta, H
    Kameda, T
    Fukuda, Y
    Frangopol, DM
    [J]. LIFE-CYCLE PERFORMANCE OF DETERIORATING STRUCTURES: ASSESSMENT, DESIGN, AND MANAGEMENT, 2004, : 19 - 25
  • [27] Life-Cycle Benefit-Cost Analysis Framework for Ramp Metering Deployments
    Chen, Xifan
    Salem, Ossama
    Salman, Baris
    [J]. TRANSPORTATION RESEARCH RECORD, 2016, (2554) : 69 - 76
  • [28] Cost-benefit analysis of sustainable energy development using life-cycle co-benefits assessment and the system dynamics approach
    Shih, Yi-Hsuan
    Tseng, Chao-Heng
    [J]. APPLIED ENERGY, 2014, 119 : 57 - 66
  • [29] Knowing the facts of life: a cost-benefit analysis
    Davies, CE
    [J]. JOURNAL OF REPRODUCTIVE AND INFANT PSYCHOLOGY, 2005, 23 (03) : 265 - 265
  • [30] Model of life cycle benefit-cost analysis for systems
    Su, Bao-He
    [J]. Xitong Gongcheng Lilun yu Shijian/System Engineering Theory and Practice, 2010, 30 (12): : 2228 - 2236