Academic literature on the topic 'Bioretention swales'

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Journal articles on the topic "Bioretention swales"

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Liu, An, Prasanna Egodawatta, and Ashantha Goonetilleke. "Ranking Three Water Sensitive Urban Design (WSUD) Practices Based on Hydraulic and Water Quality Treatment Performance: Implications for Effective Stormwater Treatment Design." Water 14, no. 8 (2022): 1296. http://dx.doi.org/10.3390/w14081296.

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Bioretention basins, constructed wetlands and roadside swales are among the most common Water-Sensitive Urban Design (WSUD) or stormwater quality treatment systems. Although these systems can reduce stormwater quantity and improve quality, their hydraulic and water quality treatment performances are different. The aim of this study was to investigate the hydraulic and water quality performance of a bioretention basin, a constructed wetland and a roadside swale by analyzing monitored water quantity and quality data from a range of rainfall events using a ranking approach. The study outcomes sho
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Gülbaz, Sezar, and Cevza Melek Kazezyılmaz-Alhan. "An evaluation of hydrologic modeling performance of EPA SWMM for bioretention." Water Science and Technology 76, no. 11 (2017): 3035–43. http://dx.doi.org/10.2166/wst.2017.464.

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Abstract Recent techniques should be investigated in detail to avoid present and future problems of urbanization like flood, drought and water pollution. Low Impact Development (LID) Best Management Practices (BMPs) such as bioretentions, green roofs, rain barrels, vegetative swales, and permeable pavements have been implemented to diminish the adverse effects of urbanization. In this study, a hydrological model for a Rainfall-Watershed-Bioretention (RWB) system is developed by using the Environmental Protection Agency Storm Water Management Model (EPA SWMM). RWB system is an experimental setu
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Ristianti, Novia Sari, Nurhadi Bashit, Desyta Ulfiana, and Yudi Eko Windarto. "Bioretention Basin, Rain Garden, and Swales Track Concepts through Vegetated-WSUD: Sustainable Rural Stormwater Management in Klaten Regency." IOP Conference Series: Earth and Environmental Science 1082, no. 1 (2022): 012029. http://dx.doi.org/10.1088/1755-1315/1082/1/012029.

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Abstract The rural area is one area with a vital function as a food producer towards food security which urgently needs sustainable stormwater management. However, the challenge of sustainable stormwater management is climate change. WSUD is one of the most influential sustainable stormwater because WSUD can control the hydrological cycle and water quality through local facilities. Vegetated WSUD is a practical application of WSUD in regulating stormwater management because it is easy to apply. Vegetated-WSUD consists of a bioretention basin, rain garden, and swales track. Klaten Regency is an
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Li, Junqi, Yongwei Gong, Xiaojing Li, Dingkun Yin, and Honghong Shi. "Urban stormwater runoff thermal characteristics and mitigation effect of low impact development measures." Journal of Water and Climate Change 10, no. 1 (2018): 53–62. http://dx.doi.org/10.2166/wcc.2018.145.

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Abstract Thermal pollution has become a severe environmental problem in China, but studies on thermal characteristics of urban stormwater runoff are scarce. The thermal enrichment of runoff from typical land surfaces was assessed during 2012–2014 in Beijing and Shenzhen, China. The temperature of stormwater runoff from rooftops, grass surfaces and different types of road surfaces was investigated under different rainfall conditions. The mitigation effects of low impact development (LID) measures were also evaluated. Impervious asphalt or concrete surfaces store and transfer heat, and were foun
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Friedlich, Brian J., William C. Lucas, and James F. Cosgrove. "Bioretention Swales: A Nonstructural BMP Approach to Achieve New Standards." Proceedings of the Water Environment Federation 2007, no. 19 (2007): 632–53. http://dx.doi.org/10.2175/193864707786831453.

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Larson, Rebecca A., and Steven I. Safferman. "Storm Water Best Management Practices that Maximize Aquifer Recharge." Journal of Green Building 3, no. 1 (2008): 126–38. http://dx.doi.org/10.3992/jgb.3.1.126.

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This article reviews and provides evaluation guidelines for six major storm water best management practices including bioretention areas, grassed swales/filter strips, infiltration trenches, porous pavement, rain barrels and wet detention ponds. A detailed table allows for quick and easy design comparisons, including a separate table which allows for site specific cost comparisons. A logic diagram is provided as a basic tool for screening the most feasible management practice.
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Lestari, Endah. "Pemanfaatan Elektrik Bioretensi dalam Menurunkan Kadar Escherichia coli dan Total Bakteri Koliform Sebagai Upaya Peningkatan Kualitas Air pada Drainase Perkotaan." KILAT 10, no. 2 (2021): 249–60. http://dx.doi.org/10.33322/kilat.v10i2.1384.

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Rapid development in a watershed affects surface and ground water sources. Urbanization results in increased environmental pollution and groundwater pollution. Best water resource management practices are Low Impact Development (LID) such as bioretention, vegetative swales, permeable pavements, and rainwater wetlands have been implemented to reduce the adverse effects of urbanization such as flooding by reducing peak runoff on the surface and thereby managing rainwater runoff. The purpose of this study was to analyze microbial contamination in wastewater originating from city drainage channels
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Kazemi, Fatemeh, Simon Beecham, and Joan Gibbs. "Streetscape biodiversity and the role of bioretention swales in an Australian urban environment." Landscape and Urban Planning 101, no. 2 (2011): 139–48. http://dx.doi.org/10.1016/j.landurbplan.2011.02.006.

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Shafique, Muhammad, and Reeho Kim. "Low Impact Development Practices: A Review of Current Research and Recommendations for Future Directions." Ecological Chemistry and Engineering S 22, no. 4 (2015): 543–63. http://dx.doi.org/10.1515/eces-2015-0032.

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AbstractA low impact development (LID) is an alternative land development approach for managing stormwater that has been recommended instead of the traditional stormwater design. The main purpose of LID is to reduce the impact of development on water related problems through the use of stormwater management practices that infiltrate, evaporate, or harvest and use stormwater on the site where it falls. In recent years, more research has been carried out on the individual practice of LID such as bioretention, pervious pavements, rain garden and grassed swales. Nowadays LID practices have been su
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Bach, Peter M., David T. McCarthy, Christian Urich, et al. "A planning algorithm for quantifying decentralised water management opportunities in urban environments." Water Science and Technology 68, no. 8 (2013): 1857–65. http://dx.doi.org/10.2166/wst.2013.437.

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With global change bringing about greater challenges for the resilient planning and management of urban water infrastructure, research has been invested in the development of a strategic planning tool, DAnCE4Water. The tool models how urban and societal changes impact the development of centralised and decentralised (distributed) water infrastructure. An algorithm for rigorous assessment of suitable decentralised stormwater management options in the model is presented and tested on a local Melbourne catchment. Following detailed spatial representation algorithms (defined by planning rules), th
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Dissertations / Theses on the topic "Bioretention swales"

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Parker, Nathaniel Ryan. "Assessing the effectiveness of water sensitive urban design in Southeast Queensland." Thesis, Queensland University of Technology, 2010. https://eprints.qut.edu.au/34119/1/Nathaniel_Parker_Thesis.pdf.

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Water Sensitive Urban Design (WSUD) systems have the potential mitigate the hydrologic disturbance and water quality concerns associated with stormwater runoff from urban development. In the last few years WSUD has been strongly promoted in South East Queensland (SEQ) and new developments are now required to use WSUD systems to manage stormwater runoff. However, there has been limited field evaluation of WSUD systems in SEQ and consequently knowledge of their effectiveness in the field, under storm events, is limited. The objective of this research project was to assess the effectiveness of WS
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Hood, Andrew Charles. "Evaluation of Biosorption Activated Media Under Roadside Swales for Stormwater Quality Improvement and Harvesting." Master's thesis, University of Central Florida, 2012. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/5304.

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Stormwater runoff from highways is a source of pollution to surface water bodies and groundwater. This project develops a bio-detention treatment and harvesting system that is incorporated into roadside swales. The bio-detention system uses Bold & Gold™, a type of biosorption activated media (BAM), to remove nutrients from simulated highway runoff and then store the water in underground vaults for infiltration, controlled discharge, and/or irrigation and other non-potable applications. In order to design a bio-detention system, media characteristics and media/water quality relationships are
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Book chapters on the topic "Bioretention swales"

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Fletcher, Tim D., Jean-Luc Bertrand-Krajewski, Jérémie Bonneau, Matthew J. Burns, Peter J. Poelsma, and Jasmine K. Thom. "Measuring the water balance in stormwater control measures." In Metrology in Urban Drainage and Stormwater Management: Plug and Pray. IWA Publishing, 2021. http://dx.doi.org/10.2166/9781789060119_0105.

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Abstract Stormwater control measures (SCMs), also frequently referred to as sustainable urban drainage systems (SUDS), are of growing importance in cities, as part of a global move towards mitigating the impacts of stormwater on receiving environments. They need to be monitored as parts of UDSM systems but require specific and sometimes innovative methods and sensors. This is particularly the case for SCMs such as swales, rain-gardens, bioretention filters, infiltration trenches, green roofs, etc., which have complex and varied configurations and hydrologic behaviour. This chapter deals with measuring the water balance in SCMs by accounting for its various components: inflows, outflows, overflows, storage, infiltration, exfiltration, intrusion, evaporation, and evapotranspiration. It presents a range of suitable methods and tools, indicates key points to consider, and discusses possible difficulties in obtaining accurate monitoring data. Routine monitoring of decentralized and diversified SCMs is still an emerging field for both researchers and practitioners. A significant evolution is therefore expected with its generalization in the next years.
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Conference papers on the topic "Bioretention swales"

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Fassman, Elizabeth, and Karen Stokes. "Media Moisture Content to Determine Evapotranspiration from Swales and Bioretention Cells." In World Environmental and Water Resources Congress 2011. American Society of Civil Engineers, 2011. http://dx.doi.org/10.1061/41173(414)79.

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GOH, Sin Zhi, Say Leong ONG, Jiangyong HU, Cui Xian LIOU, and Geok Suat ONG. "Environmental Influences on Pollutants Removal in Modular Bioretention Swale." In Annual International Conference on Sustainable Energy and Environmental Sciences. Global Science & technology Forum ( GSTF ), 2016. http://dx.doi.org/10.5176/2251-189x_sees16.42.

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Luell, S. K., W. F. Hunt, and R. J. Winston. "Treating Highway Bridge Deck Runoff Using Bioretention and a Swale." In World Environmental and Water Resources Congress 2011. American Society of Civil Engineers, 2011. http://dx.doi.org/10.1061/41173(414)40.

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Stacy K Luell, William F Hunt, and Ryan J Winston. "Improving Water Quality and Hydrology Associated with Highway Bridge Deck Runoff Using Bioretention and a Swale." In 2010 Pittsburgh, Pennsylvania, June 20 - June 23, 2010. American Society of Agricultural and Biological Engineers, 2010. http://dx.doi.org/10.13031/2013.29784.

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Reports on the topic "Bioretention swales"

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Looper, Erin. Scenes from the Swale: Investigating Spatial and Temporal Dimensions of Nitrogen Cycling in Urban Stormwater Bioretention Facilities. Portland State University Library, 2000. http://dx.doi.org/10.15760/etd.7372.

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