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1

Bäckström, M. "Sediment transport in grassed swales during simulated runoff events." Water Science and Technology 45, no. 7 (April 1, 2002): 41–49. http://dx.doi.org/10.2166/wst.2002.0115.

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Particle trapping in nine different grassed swales was measured successfully with a standardised runoff event simulation procedure. The percentage of total suspended solids removed ranged from 79 to 98%. It was found that sedimentation processes, rather than grass filtration governed the overall particle trapping efficiency. The highest particle trapping efficiency was observed in the field swales with dense, fully developed turf. A high infiltration rate was beneficial for the particle trapping and an increased swale length made it possible for smaller particles to be captured. A densely vege
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Bäckström, M. "Grassed swales for stormwater pollution control during rain and snowmelt." Water Science and Technology 48, no. 9 (November 1, 2003): 123–32. http://dx.doi.org/10.2166/wst.2003.0508.

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The retention of suspended solids, particles and heavy metals in different grassed swales during rain events and snowmelt is discussed. The experimental results derived from investigations performed in existing grassed swales in the Luleå region, Northern Sweden. During high pollutant loading rates, grassed swales retain significant amounts of pollutants, mainly due to sedimentation of particulate matter. Low to moderate removal efficiencies could be expected for heavy metals, especially metals in solution (i.e. the dissolved phase). When grassed swales receive urban runoff with low pollutant
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Hutchcraft, Allison. "Swale." Missouri Review 42, no. 2 (2019): 29–31. http://dx.doi.org/10.1353/mis.2019.0031.

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Andrés-Valeri, Valerio C., Luis A. Sañudo-Fontaneda, Carlos Rey-Mahía, Stephen J. Coupe, and Felipe P. Alvarez-Rabanal. "Thermal Performance of Wet Swales Designed as Multifunctional Green Infrastructure Systems for Water Management and Energy Saving." Proceedings 2, no. 23 (November 5, 2018): 1433. http://dx.doi.org/10.3390/proceedings2231433.

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Lack of city space and conventional drainage systems failures have derived in the need to implement Green Stormwater Infrastructure (GSI) techniques which provide multifunctional areas capable of managing stormwater, treating the pollutants present in the runoff, bringing back biodiversity to the urban environment, and providing amenity whilst improving livability. In this context, swales were studied as a potential multifunctional GSI for water management and energy saving. This research successfully proposed the combination of a wet swale with a Ground Source Heat Pump (GSHP) system. The mat
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Rech, Aline, Elisa Pacheco, Jakcemara Caprario, Julio Cesar Rech, and Alexandra Rodrigues Finotti. "Low-Impact Development (LID) in Coastal Watersheds: Infiltration Swale Pollutant Transfer in Transitional Tropical/Subtropical Climates." Water 14, no. 2 (January 14, 2022): 238. http://dx.doi.org/10.3390/w14020238.

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The control of runoff pollution is one of the advantages of low-impact development (LID) or sustainable drainage systems (SUDs), such as infiltration swales. Coastal areas may have characteristics that make the implementation of drainage systems difficult, such as sandy soils, shallow aquifers and flat terrains. The presence of contaminants was investigated through sampling and analysis of runoff, soil, and groundwater from a coastal region served by an infiltration swale located in southern Brazil. The swale proved to be very efficient in controlling the site’s urban drainage volumes even und
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Fach, Stefan, Carolina Engelhard, Nina Wittke, and Wolfgang Rauch. "Performance of infiltration swales with regard to operation in winter times in an Alpine region." Water Science and Technology 63, no. 11 (June 1, 2011): 2658–65. http://dx.doi.org/10.2166/wst.2011.153.

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In cold climate regions winter conditions significantly influence the performance of stormwater infiltration devices. Frozen soil and water storage by snow changes their operation. In this paper winter operation of a grassed infiltration swale was investigated using on-site and laboratory measurements. The field investigation of a grassed swale at a parking place in an Alpine region showed that the swale fulfilled its function properly. Although the top layer was frozen for some time, the storage capacity of the swale was sufficient to store the precipitation until the conditions improved. The
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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 (April 15, 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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Fardel, Alexandre, Pierre-Emmanuel Peyneau, Béatrice Béchet, Abdelkader Lakel, and Fabrice Rodriguez. "Analysis of swale factors implicated in pollutant removal efficiency using a swale database." Environmental Science and Pollution Research 26, no. 2 (November 7, 2018): 1287–302. http://dx.doi.org/10.1007/s11356-018-3522-9.

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Li, James, Robert Orland, and Tom Hogenbirk. "Environmental road and lot drainage designs: alternatives to the curb-gutter-sewer system." Canadian Journal of Civil Engineering 25, no. 1 (January 1, 1998): 26–39. http://dx.doi.org/10.1139/l97-044.

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Traditionally, road and lot drainage systems have been designed to convey storm runoff away as quickly as possible to reduce localized ponding. This drainage concept, using curb-gutter-sewer systems, has led to downstream flooding, erosion, water-quality degradation, reduced groundwater recharge and stream baseflow, and aquatic habitat destruction. This paper examines the pros and cons of curb-gutter-sewer systems and qualitatively compares various forms of open ditch - swale drainage alternatives with the conventional curb-gutter-sewer drainage system. These open ditch - swale drainage altern
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Swale, Simon. "Fashion Design Process - Simon Swale." Scope: Contemporary Research Topics (Art and Design), no. 21 (2021): 46–47. http://dx.doi.org/10.34074/scop.1021007.

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11

Craig, Heidi. "Nell Gwynn by Jessica Swale." Early Modern Women 14, no. 1 (2019): 164–67. http://dx.doi.org/10.1353/emw.2019.0071.

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Ahmad, Noor Aliza, Nurhazirah Mustaffa, Mohd Adib Mohammad Razi, Azra Munirah Mat Daud, Sabariah Musa, and Nurfarehan Zamanhuri. "The Study on Effectiveness and Flow Characteristic of Grassed Swale Drainage System in UTHM." Applied Mechanics and Materials 773-774 (July 2015): 1251–55. http://dx.doi.org/10.4028/www.scientific.net/amm.773-774.1251.

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The drainage system is an infrastructure that requires systematic planning of construction which can function properly to reduce the risk of flooding. Flooding occurs due to the rapid development resulting in lack of permeable surfaces. This will lead to increase the surface runoff, where the flow velocity and flow discharge also will be increased. Therefore, grassed swale is one of the sustainable drainage systems that can be applied to solve this problem. This study aims to identify the effectiveness of the grassed swale drainage system at Universiti Tun Hussein Onn Malaysia (UTHM), to deter
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13

Smith, Lauren A., David M. Eissenstat, and Margot W. Kaye. "Variability in aboveground carbon driven by slope aspect and curvature in an eastern deciduous forest, USA." Canadian Journal of Forest Research 47, no. 2 (February 2017): 149–58. http://dx.doi.org/10.1139/cjfr-2016-0147.

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In forested ecosystems, topography and tree species contribute to spatial variability in carbon (C) dynamics through differential rates of C uptake and storage; therefore, estimates of species-specific and spatial variability in C can strengthen ecosystem budgets. To produce such estimates, we deconstructed watershed-scale C and component pools (e.g., wood biomass, litter) and fluxes at a fine scale using a small mixed deciduous forest catchment to determine the variation due to topographic position and species. Factors affecting fluxes included aspect, slope curvature, tree species contributi
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14

Peng, Jing, Xiang Zhong, Lei Yu, and Qianqian Wang. "Simulating rainfall runoff and assessing low impact development (LID) facilities in sponge airport." Water Science and Technology 82, no. 5 (August 24, 2020): 918–26. http://dx.doi.org/10.2166/wst.2020.400.

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Abstract The appearance of extreme weather causes frequent airport flooding, which has a serious impact on the normal operation of an airport. In this study, three simulation scenarios are set in order to study the effect of low impact development (LID) facilities (green roof and vegetative swale) on the water depth of overflow junctions and total inflow to the study area outlet in an airport at different rainfall return periods (2 a, 5 a, 20 a and 50 a). Vegetative swale has better reduction effect on water depth of overflow junctions than has green roof. The reduction rate of vegetative swal
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15

Sieker, F. "On-site stormwater management as an alternative to conventional sewer systems: a new concept spreading in Germany." Water Science and Technology 38, no. 10 (November 1, 1998): 65–71. http://dx.doi.org/10.2166/wst.1998.0378.

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In Germany a new stormwater management system is spreading across the country – the so called “Mulden-Rigolen-System” (MR-System), which may be translated as the ‘Swale-Infiltration Trench System’. The overall applicable system consists of on-site located swale-trench-elements which are connected by throttled sewers to a decentralized stormwater management system. The elements are designed and dimensioned in order to allow the highest possible infiltration of stormwater runoff. This is obtained by a short-term storage in the grassed swale and a long-term storage provided by the trench. The lat
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16

Fardel, Alexandre, Pierre-Emmanuel Peyneau, Béatrice Béchet, Abdelkader Lakel, and Fabrice Rodriguez. "Correction to: Analysis of swale factors implicated in pollutant removal efficiency using a swale database." Environmental Science and Pollution Research 26, no. 2 (December 1, 2018): 1303. http://dx.doi.org/10.1007/s11356-018-3846-5.

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Flanagan, Kelsey, Philippe Branchu, David Ramier, and Marie-Christine Gromaire. "Evaluation of the relative roles of a vegetative filter strip and a biofiltration swale in a treatment train for road runoff." Water Science and Technology 75, no. 4 (December 14, 2016): 987–97. http://dx.doi.org/10.2166/wst.2016.578.

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In order to determine the relative importance of a vegetative filter strip and a biofiltration swale in a treatment train for road runoff, US EPA Storm Water Management Model was used to model infiltration and runoff from the filter strip. The model consisted of a series of subcatchments representing the road, the filter strip and the side-slopes of the swale. Simulations were carried out for different rain scenarios representing a variety of climatic conditions. In addition, a sensitivity analysis was conducted for the model's different parameters (soil characteristics and initial humidity, r
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Adamson, Julia. "Afforestation: Ecology in the West Swale." Blue Jay 78, no. 2 (August 25, 2020): 38–41. http://dx.doi.org/10.29173/bluejay6292.

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Wicke, D., P. Rouault, B. Krause Camilo, C. Pagotto, M. Dechesne, and E. Soyeux. "Nitrate reduction in reactive swales at low temperatures: full-size field system vs. technical scale." Water Supply 15, no. 3 (February 6, 2015): 642–48. http://dx.doi.org/10.2166/ws.2015.008.

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Diffuse nitrate (NO3) contamination from intense agriculture adversely impacts freshwater ecosystems, and can also result in nitrate concentrations exceeding limits set in drinking water regulation, when receiving surface waters are used for drinking water production. Implementation of near-natural mitigation zones such as reactive swales or wetlands have been proven to be promising measures to reduce nitrate loads in agricultural drainage waters. However, the behavior of these systems at low temperatures and its dependence on system design has not been well known until now. In this study, the
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20

Sañudo-Fontaneda, Luis A., Jorge Roces-García, Stephen J. Coupe, Esther Barrios-Crespo, Carlos Rey-Mahía, Felipe P. Álvarez-Rabanal, and Craig Lashford. "Descriptive Analysis of the Performance of a Vegetated Swale through Long-Term Hydrological Monitoring: A Case Study from Coventry, UK." Water 12, no. 10 (October 6, 2020): 2781. http://dx.doi.org/10.3390/w12102781.

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Vegetated swales are a popular sustainable drainage system (SuDS) used in a wide range of environments from urban areas and transport infrastructure, to rural environments, sub-urban and natural catchments. Despite the fact that vegetated swales, also known as grassed swales, have received scientific attention over recent years, especially from a hydrological perspective, there is a need for further research in the field, with long-term monitoring. In addition, vegetated swales introduce further difficulties, such as the biological growth occurring in their surface layer, as well as the biolog
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Kachchu Mohamed, M. A., T. Lucke, and F. Boogaard. "Preliminary investigation into the pollution reduction performance of swales used in a stormwater treatment train." Water Science and Technology 69, no. 5 (December 30, 2013): 1014–20. http://dx.doi.org/10.2166/wst.2013.822.

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Permeable pavements have been shown to be effective stormwater treatment devices that can greatly reduce surface runoff and significantly improve the quality of stormwater runoff in urban areas. However, the potential problems with sediment clogging and consequent maintenance requirements have been identified as the main barriers to more widespread adoption of permeable pavements in urban developments. This Australian study investigates the effectiveness of using grass swales as pre-treatment devices for permeable pavements in order to reduce clogging and extend the life span of these systems.
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AlYousif, Ahmad, Arnoldo Valle-Levinson, Peter N. Adams, and Jorge A. Laurel-Castillo. "Tidal and subtidal hydrodynamics over ridge-swale bathymetry." Continental Shelf Research 219 (April 2021): 104392. http://dx.doi.org/10.1016/j.csr.2021.104392.

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Abida, H., and J. F. Sabourin. "Grass Swale-Perforated Pipe Systems for Stormwater Management." Journal of Irrigation and Drainage Engineering 132, no. 1 (February 2006): 55–63. http://dx.doi.org/10.1061/(asce)0733-9437(2006)132:1(55).

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Demchenko, E. N., and G. G. Lilitskaya. "Green flagellate alga Myochloris J.H.Belcher & Swale: prey or predator?" Algologia 30, no. 3 (September 2020): 233–49. http://dx.doi.org/10.15407/alg30.03.233.

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Coelho, Arnaldo T., Gustavo B. Menezes, Terezinha C. de Brito Galvão, and Joaquim F. T. Coelho. "Performance of Rolled Erosion Control Products (RECPs) as Bioswale Revetments." Sustainability 13, no. 14 (July 11, 2021): 7731. http://dx.doi.org/10.3390/su13147731.

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Vegetated swales, or bioswales, are among the most commonly used type of green infrastructure (GI) for managing stormwater in temperate climate regions. However, performance data on bioswale drainage technology applied to highly weathered soils (low fertility, high acidity, and erosion prone) in tropical and subtropical climates are still limited. Aimed at closing this gap, this research investigated the performance—assessed in terms of vegetation biomass, biodiversity and coverage of swale, the structural integrity of revetments, and erosion control potential—and cost effectiveness of five ro
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Steinberger, Yosef, and Walter G. Whitford. "Microarthropods of a Desert Tabosa Grass (Hilaria mutica) Swale." American Midland Naturalist 114, no. 2 (October 1985): 225. http://dx.doi.org/10.2307/2425598.

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Paek, Seoungbong, and Kyungik Gil. "Analysis of Factors Affecting Retention Time in Grassed Swale." Journal of Wetlands Research 17, no. 3 (August 31, 2015): 303–10. http://dx.doi.org/10.17663/jwr.2015.17.3.303.

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Bäckström, M., M. Viklander, and P. A. Malmqvist. "Transport of stormwater pollutants through a roadside grassed swale." Urban Water Journal 3, no. 2 (June 2006): 55–67. http://dx.doi.org/10.1080/15730620600855985.

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HOUSE, W., and M. WARWICK. "Intensive measurements of nutrient dynamics in the River Swale." Science of The Total Environment 210-211 (March 24, 1998): 111–37. http://dx.doi.org/10.1016/s0048-9697(98)00046-1.

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Wheaton, S. R., and W. J. Rice. "Siting, design and operational controls for snow disposal sites." Water Science and Technology 48, no. 9 (November 1, 2003): 81–92. http://dx.doi.org/10.2166/wst.2003.0498.

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The Municipality of Anchorage (MOA), at 61° north latitude, ploughs and hauls snow from urban streets throughout the winter, incorporating grit and chloride applied to street surfaces for traffic safety. Hauled snow is stored at snow disposal facilities, where it melts at ambient spring temperatures. MOA studies performed from 1998 through 2001 show that disposal site melt processes can be manipulated, through site design and operation practices, to control chloride and turbidity in meltwater. An experimental passive “V-swale” pad configuration tested by MOA investigators reduced site meltwate
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Yusoff, Mohd Azlan B. Mohd, Adel Al Gheethi, and Daniel Aizat B. Dzain. "Assessment of Storm Water Quality in Grass Swale by Using Sand Filter Media: a Case Study at UTHM Campus." International Journal of Engineering & Technology 7, no. 4.30 (November 30, 2018): 176. http://dx.doi.org/10.14419/ijet.v7i4.30.22105.

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Urbanization in Malaysia has contributed to the increased of volume runoff to the drainage system. SUDS (Sustainable Urban Drainage System) / MSMA (Manual Saliran Mesra Alam) has been implement in Malaysia within several of components. Hence, swale is one of the designed and suggested by SUDS or MSMA in order to control the quantity and quality storm water runoff. The present study aimed to determine the quality of storm water runoff in swale and to analyse storm water runoff treatment using sand column as a part of filtration process. Water quality parameters tested included COD, BOD5, DO and
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Young, Bailee, Jon Hathaway, Whitney Lisenbee, and Qiang He. "Assessing the Runoff Reduction Potential of Highway Swales and WinSLAMM as a Predictive Tool." Sustainability 10, no. 8 (August 13, 2018): 2871. http://dx.doi.org/10.3390/su10082871.

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Across the United States, the impacts of stormwater runoff are being managed through the National Pollutant Discharge Elimination System (NPDES) in an effort to restore and/or maintain the quality of surface waters. State transportation authorities fall within this regulatory framework, being tasked with managing runoff leaving their impervious surfaces. Opportunely, the highway environment also has substantial amounts of green space that may be leveraged for this purpose. However, there are questions as to how much runoff reduction is provided by these spaces, a question that may have a drama
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Demchenko, E. N., and G. G. Lilitskaya. "Green Flagellate Alga Myochloris J.H.Belcher & Swale: Prey or Predator?" International Journal on Algae 22, no. 3 (2020): 201–14. http://dx.doi.org/10.1615/interjalgae.v22.i3.10.

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Kang, Taeuk, Youngmin Koo, and Sangjin Lee. "Design of Stormwater Pipe Considering Vegetative Swale with Water Conveyance." Journal of Korean Society of Hazard Mitigation 15, no. 1 (February 28, 2015): 335–43. http://dx.doi.org/10.9798/kosham.2015.15.1.335.

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Mustaffa, Nurhazirah, Noor Aliza Ahmad, and Mohd Adib Mohammad Razi. "Evaluation on Flow Discharge of Grassed Swale in Lowland Area." MATEC Web of Conferences 103 (2017): 04017. http://dx.doi.org/10.1051/matecconf/201710304017.

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Mustaffa, N., N. A. Ahmad, and M. A. M. Razi. "Variations of Roughness Coefficients with Flow Depth of Grassed Swale." IOP Conference Series: Materials Science and Engineering 136 (July 2016): 012082. http://dx.doi.org/10.1088/1757-899x/136/1/012082.

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STOCKLEY, R., G. OXFORD, and R. ORMOND. "Do invertebrates matter? Detrital processing in the River Swale–Ouse." Science of The Total Environment 210-211 (March 24, 1998): 427–35. http://dx.doi.org/10.1016/s0048-9697(98)00029-1.

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Winston, Ryan J., Jacob T. Powell, and William F. Hunt. "Retrofitting a grass swale with rock check dams: hydrologic impacts." Urban Water Journal 16, no. 6 (May 3, 2018): 404–11. http://dx.doi.org/10.1080/1573062x.2018.1455881.

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Yu, Shaw L., Jan-Tai Kuo, Elizabeth A. Fassman, and Henry Pan. "Field Test of Grassed-Swale Performance in Removing Runoff Pollution." Journal of Water Resources Planning and Management 127, no. 3 (June 2001): 168–71. http://dx.doi.org/10.1061/(asce)0733-9496(2001)127:3(168).

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Lee, Eun Yeob, Kyoung hak Hyun, and Jong Suk Jung. "Analysis on Appropriate Plants of Infiltration Swale for Road Runoff." Journal of the Korea Society of Environmental Restoration Technology 19, no. 5 (October 31, 2016): 19–27. http://dx.doi.org/10.13087/kosert.2016.19.5.19.

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Moseby, K. E., S. De Jong, N. Munro, and A. Pieck. "Home range, activity and habitat use of European rabbits (Oryctolagus cuniculus) in arid Australia: implications for control." Wildlife Research 32, no. 4 (2005): 305. http://dx.doi.org/10.1071/wr04013.

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The home range, activity and habitat use of wild European rabbits in northern South Australia were compared during winter and summer, and results used to suggest improvements to control techniques. Average home range was significantly smaller in summer (2.1 ha) than winter (4.2 ha) and there was no significant difference between the sexes. Rabbits used both dune and swale habitat but most warrens and more surface fixes were recorded in dune habitat in both seasons. Proportionally more surface fixes were found in swale habitat at night than during the day. The proportion of diurnal fixes on the
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Williams, AJ, and CR Dickman. "The ecology of insectivorous bats in the Simpson Desert central Australia: habitat use." Australian Mammalogy 26, no. 2 (2004): 205. http://dx.doi.org/10.1071/am04205.

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Seven species of insectivorous bats were positively identified within a regional study area in the Simpson Desert in south-western Queensland. This paper describes habitat use by this bat assemblage and the degree to which presence of water, food availability and roosting potential impact on bat activity. Bats predominantly utilised water sources, rock outcrops, dune/swale areas near woodland, dry creek lines and coolibah woodland habitats. However, they rarely used open habitats (open plain and dune/swale), acacia scrub and gidgee woodland. The bats foraged most often over water and on calmer
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Bosede, Ariyo Adenike, and Obire Omokaro. "Polycyclic Aromatic Hydrocarbons (PAHs) and Heavy Metal content of Abattoir Wastewater in Bayelsa and Rivers States." International Journal of Scientific and Management Research 05, no. 05 (2022): 25–33. http://dx.doi.org/10.37502/ijsmr.2022.5503.

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The polycyclic aromatic hydrocarbons and heavy metals in wastewater generated from abattoir were analyzed. Wastewater samples were collected from four abattoirs in Yenagoa Local Government Area of Bayelsa State and an abattoir in Obio/Akpor Local Government Area of Rivers State, respectively using standard methods. The polycyclic aromatic hydrocarbons (PAHs) were determined using Gas chromatographic method, while the heavy metals were determined using spectrophotometer. Results showed that Acenaphthene, Acenaphthylene and Naphthalene recorded its highest value of 123.77µg/ml, 199.64µg/ml and 6
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SHUMWAY, SCOTT W., and CATHERINE R. BANKS. "Species Distributions in Interdunal Swale Communities: The Effects of Soil Waterlogging." American Midland Naturalist 145, no. 1 (January 2001): 137–46. http://dx.doi.org/10.1674/0003-0031(2001)145[0137:sdiisc]2.0.co;2.

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Abida, Habib, Jean Francois Sabourin, and Manel Ellouze. "ANSWAPPS: Model for the Analysis of Grass Swale-Perforated Pipe Systems." Journal of Irrigation and Drainage Engineering 133, no. 3 (June 2007): 211–21. http://dx.doi.org/10.1061/(asce)0733-9437(2007)133:3(211).

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Paek, Seoungbong, and Kyungik Gil. "Effect of Retention Time on the Removal Efficiency in Grassed Swale." Journal of Wetlands Research 16, no. 3 (August 31, 2014): 371–81. http://dx.doi.org/10.17663/jwr.2014.16.3.371.

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García-Ruiz, R., S. N. Pattinson, and B. A. Whitton. "Nitrous oxide production in the river Swale–Ouse, North–East England." Water Research 33, no. 5 (April 1999): 1231–37. http://dx.doi.org/10.1016/s0043-1354(98)00324-8.

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Eatherall, A., M. S. Warwick, and S. Tolchard. "Identifying sources of dissolved organic carbon on the River Swale, Yorkshire." Science of The Total Environment 251-252 (May 2000): 173–90. http://dx.doi.org/10.1016/s0048-9697(00)00381-8.

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Dines, R. A., and J. R. Wharfe. "The environmental impact of paper mill waste discharges to the Swale." Environmental Pollution Series A, Ecological and Biological 38, no. 3 (January 1985): 245–60. http://dx.doi.org/10.1016/0143-1471(85)90130-8.

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Rujner, Hendrik, Günther Leonhardt, Jiri Marsalek, Anna-Maria Perttu, and Maria Viklander. "The effects of initial soil moisture conditions on swale flow hydrographs." Hydrological Processes 32, no. 5 (February 12, 2018): 644–54. http://dx.doi.org/10.1002/hyp.11446.

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