Probabilistic private cost-benefit analysis for green roof installation: A Monte Carlo simulation approach
暂无分享,去创建一个
Sanaz Tabatabaee | Aidin Nobahar Sadeghifam | Mahdi Moharrami Meynagh | Saeed Reza Mohandes | Arham Abdullah | Amir Mahdiyar | A. Abdullah | A. N. Sadeghifam | Amir Mahdiyar | S. R. Mohandes | S. Tabatabaee
[1] J. J. Martínez-Sánchez,et al. The composition and depth of green roof substrates affect the growth of Silene vulgaris and Lagurus ovatus species and the C and N sequestration under two irrigation conditions. , 2016, Journal of environmental management.
[2] T. Bauerle,et al. Potential benefits of plant diversity on vegetated roofs: a literature review. , 2012, Journal of environmental management.
[3] Abdul Malek Abdul Rahman,et al. Cooling Potentials and CO2 Uptake of Ipomoea Pes-caprae Installed on the Flat Roof of a Single Storey Residential Building in Malaysia , 2012 .
[4] Haitao Liu,et al. Anisotropies in Mechanical Behaviour, Thermal Expansion and P-Wave Velocity of Sandstone with Bedding Planes , 2016, Rock Mechanics and Rock Engineering.
[5] Bruce Dvorak. Green roofs in sustainable landscape design by Steven L. Cantor , 2009 .
[6] D. Botteldooren,et al. Influence of rainfall on the noise shielding by a green roof , 2014 .
[7] N. Dunnett,et al. Influence of vegetation composition on runoff in two simulated green roof experiments , 2008, Urban Ecosystems.
[8] R. Belarbi,et al. A comprehensive study of the impact of green roofs on building energy performance , 2012 .
[9] G. Vita. Is the Discount Rate Relevant in Explaining the Environmental Kuznets Curve , 2008 .
[10] Alias Abdullah,et al. Sustainable Urban Regeneration: GIS and Hedonic Pricing Method in Determining the Value of Green Space in Housing Area , 2015 .
[11] Virginia Stovin,et al. Green roofs; building energy savings and the potential for retrofit , 2010 .
[12] A. Nardini,et al. Influence of substrate depth and vegetation type on temperature and water runoff mitigation by extensive green roofs: shrubs versus herbaceous plants , 2011, Urban Ecosystems.
[13] N. Wong,et al. Life cycle cost analysis of rooftop gardens in Singapore , 2003 .
[14] Murray Hodgson,et al. SOUND TRANSMISSION LOSS OF GREEN ROOFS , 2008 .
[15] Hao Niu,et al. Scaling of economic benefits from green roof implementation in Washington, DC. , 2010, Environmental science & technology.
[16] S. Gaffin,et al. Positive effects of vegetation: urban heat island and green roofs. , 2011, Environmental pollution.
[17] Timothy Carter,et al. Life-cycle cost-benefit analysis of extensive vegetated roof systems. , 2008, Journal of environmental management.
[18] Cigdem Z. Gurgur,et al. Capacity factor prediction and planning in the wind power generation industry , 2010 .
[19] N. Wong,et al. The effects of rooftop garden on energy consumption of a commercial building in Singapore , 2003 .
[20] F. B. Talbot,et al. Green roof valuation: a probabilistic economic analysis of environmental benefits. , 2008, Environmental science & technology.
[21] Sanaz Tabatabaee,et al. INVESTIGATING THE ENVIRONMENTAL IMPACTS OF GREEN ROOF INSTALLATION , 2015 .
[22] Yacine Rezgui,et al. Developing sustainable building assessment scheme for Saudi Arabia: Delphi consultation approach , 2013 .
[23] Mattheos Santamouris,et al. Experimental and numerical analysis of the energy performance of a large scale intensive green roof system installed on an office building in Athens , 2016 .
[24] Muhamad Solehin Fitry Rosley,et al. Green Roof: Its Awareness Among Professionals and Potential in Malaysian Market☆ , 2013 .
[25] Soe W. Myint,et al. Enhancing Hydrologic Modelling in the Coupled Weather Research and Forecasting–Urban Modelling System , 2015, Boundary-Layer Meteorology.
[26] D. Bradley Rowe,et al. Media depth influences Sedum green roof establishment , 2008, Urban Ecosystems.
[27] Ngian Chung Wong,et al. Acoustics evaluation of vertical greenery systems for building walls , 2010 .
[28] Min Liu. Probabilistic prediction of green roof energy performance under parameter uncertainty , 2014 .
[29] Elias Salleh,et al. Thermal comfort conditions of shaded outdoor spaces in hot and humid climate of Malaysia , 2012 .
[30] Mohammad Ataei,et al. Development of an empirical model for predicting the effects of controllable blasting parameters on flyrock distance in surface mines , 2012 .
[31] Jiachuan Yang,et al. Physical parameterization and sensitivity of urban hydrological models: Application to green roof systems , 2014 .
[32] H. S. Matthews,et al. Cost-Effectiveness of Green Roofs , 2010 .
[33] D. Botteldooren,et al. Numerical evaluation of sound propagating over green roofs , 2008 .
[34] J. C. Berndtsson. Green roof performance towards management of runoff water quantity and quality: A review , 2010 .
[35] Robert Ries,et al. Comparative environmental life cycle assessment of green roofs , 2007 .
[36] Jiyun Song,et al. Evaluating the impact of built environment characteristics on urban boundary layer dynamics using an advanced stochastic approach , 2016 .
[37] Muhammad Ashraf Fauzi,et al. Evaluation of Green Roof System for Green Building Projects in Malaysia , 2013 .
[38] C.Y. Jim,et al. Theoretical evaluation of thermal and energy performance of tropical green roofs , 2011 .
[39] C.Y. Jim,et al. Weather effect on thermal and energy performance of an extensive tropical green roof , 2012 .
[40] Mahdi Hasanipanah,et al. Risk Assessment and Prediction of Flyrock Distance by Combined Multiple Regression Analysis and Monte Carlo Simulation of Quarry Blasting , 2016, Rock Mechanics and Rock Engineering.
[41] M. Simmons,et al. Green roofs are not created equal: the hydrologic and thermal performance of six different extensive green roofs and reflective and non-reflective roofs in a sub-tropical climate , 2008, Urban Ecosystems.
[42] Wong Nyuk Hien,et al. Performance of greenery systems in Zero Energy Building of Singapore , 2012 .
[43] N. S. Williams,et al. Green roofs for a wide brown land: Opportunities and barriers for rooftop greening in Australia , 2010 .
[44] D. Botteldooren,et al. Reducing the acoustical façade load from road traffic with green roofs , 2009 .
[45] E. Pyrgioti,et al. Optimal placement of wind turbines in a wind park using Monte Carlo simulation , 2008 .
[46] Murray Hodgson,et al. Experimental investigation of the sound transmission of vegetated roofs , 2013 .
[47] Umberto Berardi,et al. Comfort and energy savings with active green roofs , 2014 .
[48] U. Berardi,et al. Thermal performance characteristics of unshaded courtyards in hot and humid climates , 2015 .
[49] Zulkifli Mohd Nopiah,et al. The Perception of Malaysian Architects towards the Implementation of Green Roofs: A Review of Practices, Methodologies and Future Research , 2014 .
[50] S. Çelik,et al. Green Roof Storm-Water Runoff Quantity and Quality , 2013 .
[51] Muhamad Solehin Fitry Rosley,et al. Perception of Green Roof as a Tool for Urban Regeneration in a Commercial Environment: The Secret Garden, Malaysia , 2015 .
[52] Kasun Hewage,et al. Probabilistic social cost-benefit analysis for green roofs: A lifecycle approach , 2012 .
[53] C.Y. Jim,et al. Economic evaluation of green-roof environmental benefits in the context of climate change: The case of Hong Kong , 2015 .
[54] A. Refahi,et al. Investigating the effective factors on the reduction of energy consumption in residential buildings with green roofs , 2015 .
[55] J. Smith,et al. Analyzing the Sensitivity of WRF's Single-Layer Urban Canopy Model to Parameter Uncertainty Using Advanced Monte Carlo Simulation , 2011 .
[56] B. Bass,et al. Roof–envelope ratio impact on green roof energy performance , 2008, Urban Ecosystems.
[57] Johann F. Görgens,et al. Economic risk assessment of advanced process technologies for bioethanol production in South Africa: Monte Carlo analysis , 2011 .
[58] Benjamin H. Mandel,et al. Economic comparison of white, green, and black flat roofs in the United States , 2014 .
[59] Liyin Shen,et al. Barriers to implement extensive green roof systems: A Hong Kong study , 2012 .
[60] G. Vanoli,et al. Green roofs in European climates. Are effective solutions for the energy savings in air-conditioning? , 2013 .
[61] U. Berardi,et al. State-of-the-art analysis of the environmental benefits of green roofs , 2014 .
[62] Jelena Srebric,et al. Influence of plant coverage on the total green roof energy balance and building energy consumption , 2015 .
[63] D. Botteldooren,et al. In-situ measurements of sound propagating over extensive green roofs , 2011 .
[64] Umberto Berardi,et al. The outdoor microclimate benefits and energy saving resulting from green roofs retrofits , 2016 .
[65] Matthias Finkbeiner,et al. The cost of green roofs disposal in a life cycle perspective: Covering the gap , 2012 .
[66] Steven W. Peck,et al. Introduction: Frontiers of green roof ecology , 2008, Urban Ecosystems.
[67] Kasun Hewage,et al. How “green” are the green roofs? Lifecycle analysis of green roof materials , 2012 .
[68] Zhi-hua Wang. Monte Carlo simulations of radiative heat exchange in a street canyon with trees , 2014 .
[69] Ezekiel Chinyio,et al. Multi-criteria evaluation model for the selection of sustainable materials for building projects , 2013 .
[70] Hong-Seok Yang,et al. Acoustic effects of green roof systems on a low-profiled structure at street level , 2012 .
[71] S. Hallegatte. Methodologies for Disaster Risk Management in a Changing Environment , 2014 .