Auswahl der wissenschaftlichen Literatur zum Thema „Ruoff“

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Zeitschriftenartikel zum Thema "Ruoff"

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Krupat, Arnold. „Honoring LaVonne Ruoff“. Studies in American Indian Literatures 17, Nr. 2 (2005): 96–97. http://dx.doi.org/10.1353/ail.2005.0052.

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Regier, Willis Goth. „Rough Ruoff, Pirate Fighter“. Studies in American Indian Literatures 17, Nr. 2 (2005): 100. http://dx.doi.org/10.1353/ail.2005.0057.

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Lippit, Akira. „: The Emperor's Naked Army Marches on: Yukiyukite shingun . Jeffrey Ruoff, Kenneth Ruoff.“ Film Quarterly 53, Nr. 3 (April 2000): 58. http://dx.doi.org/10.1525/fq.2000.53.3.04a00130.

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Marks, Laura U. „The Emperor’s Naked Army Marches on (Yukiyukite Shingun) Jeffrey Ruoff and Kenneth Ruoff“. Canadian Journal of Film Studies 9, Nr. 1 (März 2000): 134–36. http://dx.doi.org/10.3138/cjfs.9.1.134.

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Savage, Neil. „A Conversation with Rodney Ruoff“. ACS Central Science 5, Nr. 3 (12.03.2019): 374–75. http://dx.doi.org/10.1021/acscentsci.9b00239.

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Bataille, Gretchen M. „Tribute to LaVonne Brown Ruoff“. Studies in American Indian Literatures 17, Nr. 2 (2005): 75–76. http://dx.doi.org/10.1353/ail.2005.0042.

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Bosma, Peter. „Ruoff (ed.), Programming Film Festivals“. TMG Journal for Media History 15, Nr. 1 (05.10.2012): 141. http://dx.doi.org/10.18146/tmg.424.

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Lippit, Akira. „Review: The Emperor's Naked Army Marches on: Yukiyukite shingun by Jeffrey Ruoff, Kenneth Ruoff“. Film Quarterly 53, Nr. 3 (2000): 58. http://dx.doi.org/10.2307/1213742.

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Nornes, Abé Markus. „The Emperor's Naked Army Marches On: Yukiyukite shingun. By Jeffrey Ruoff and Kenneth Ruoff. England: Flicks Books, 1998. 57 pp.“ Journal of Asian Studies 58, Nr. 2 (Mai 1999): 531–32. http://dx.doi.org/10.2307/2659455.

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Blümcke, Martin, und Gerhard W. Baur. „Rezension von: Baur, Gerhard W., Bibliographie zur Mundartforschung in Baden-Württemberg, Vorarlberg und Liechtenstein“. Württembergisch Franken 67 (14.02.2024): 231. http://dx.doi.org/10.53458/wfr.v67i.10318.

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Gerhard W. Baur: Bibliographie zur Mundartforschung in Baden-Württemberg, Vorarlberg und Liechtenstein (= Idiomatica, Veröffentlichungen der Tübinger Arbeitsstelle »Sprache in Südwestdeutschland«, 7, hrsg. von Arno Ruoff). Tübingen: Niemeyer 1978. 250 S., 9 Ktn.
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Dissertationen zum Thema "Ruoff"

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Ruoff, Fabian [Verfasser], und F. [Akademischer Betreuer] Herrlich. „The Moduli Space of Algebraic Translation Surfaces / Fabian Ruoff ; Betreuer: F. Herrlich“. Karlsruhe : KIT-Bibliothek, 2021. http://nbn-resolving.de/urn:nbn:de:101:1-2021091505002271869645.

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Ruoff, Matthias [Verfasser], und Dieter [Akademischer Betreuer] Kern. „Transportuntersuchungen an Einzelelektronentransistoren auf Basis CMOS-kompatibler Silizium-MOSFETs / Matthias Ruoff ; Betreuer: Dieter Kern“. Tübingen : Universitätsbibliothek Tübingen, 2016. http://d-nb.info/1165235803/34.

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Ruoff, Tobias [Verfasser], und Ulrike [Akademischer Betreuer] Leiter-Stöppke. „Einfluss der Tumorlokalisation auf die Prognose beim malignen Melanom / Tobias Ruoff ; Betreuer: Ulrike Leiter-Stöppke“. Tübingen : Universitätsbibliothek Tübingen, 2012. http://d-nb.info/1160600694/34.

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Ruoff, Christin Verfasser], Angelika [Akademischer Betreuer] [Schnieke und Roland M. [Akademischer Betreuer] Schmid. „Role of Sod2 in Pancreatic Carcinogenesis / Christin Ruoff. Gutachter: Roland M. Schmid ; Angelika Schnieke. Betreuer: Angelika Schnieke“. München : Universitätsbibliothek der TU München, 2015. http://d-nb.info/1071948067/34.

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Ruoff, Heike [Verfasser], Norbert [Gutachter] Schütze und Torsten [Gutachter] Blunk. „Wirkung von WISP-3 auf dedifferenzierte Chondrozyten und mesenchymale Stammzellen / Heike Ruoff ; Gutachter: Norbert Schütze, Torsten Blunk“. Würzburg : Universität Würzburg, 2020. http://d-nb.info/1209476126/34.

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Ruoff, Kerstin [Verfasser], und Martin [Akademischer Betreuer] Müller. „Analysis of synthetic compounds and natural extracts as potential antivirals against human Noroviruses / Kerstin Ruoff ; Betreuer: Martin Müller“. Heidelberg : Universitätsbibliothek Heidelberg, 2020. http://d-nb.info/1226428541/34.

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Ruoff, Julia [Verfasser]. „On-farm diagnosis and effects of subclinical ketosis on milk production and reproductive performance in dairy cows / Julia Ruoff“. Berlin : Freie Universität Berlin, 2018. http://d-nb.info/1153769808/34.

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Bodenstein, Christian [Verfasser], Stefan [Akademischer Betreuer] Schuster, Thomas [Akademischer Betreuer] Hinze und Peter [Akademischer Betreuer] Ruoff. „Theoretical analysis of cyclic processes in biology in the context of Ca+ oscillations, circadian rhythms and synthetic oscillators / Christian Bodenstein. Gutachter: Stefan Schuster ; Thomas Hinze ; Peter Ruoff“. Jena : Thüringer Universitäts- und Landesbibliothek Jena, 2014. http://d-nb.info/1060717212/34.

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Yong, Iparraguirre Cristian Alfredo, Pajar Giovanna Leonidas Palacios, Ríos Magaly Paola Peña und Vellon Juan Pablo Baldeon. „Ruta Ruff“. Bachelor's thesis, Universidad Peruana de Ciencias Aplicadas (UPC), 2020. http://hdl.handle.net/10757/653804.

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En el presente trabajo se detectó una problemática para los dueños de los canes que no tenían tiempo para pasear a sus mascotas y/o no tener con quien dejarlos cuando ellos salían por periodos largos de tiempo, para el cual presentamos esta solución un medio de intermediación digital Ruta Ruff. Este medio digital pone a disposición una cartera amplia de paseadores en donde podrán escoger al paseador que más se asemeja a sus necesidades. Las instalaciones se encontrarán en Calle Los Guacamayos 197 Of. 102 Urb. Limatambo Surquillo, Lima – Perú. Para iniciar las opresiones la empresa Ruta Ruff necesitara una inversión de S/. 60,201.00 para la implementación de los activos fijos y S/. 16,256 para la publicidad del primer mes, obteniendo utilidades a partir del octavo mes de haber iniciado sus operaciones y con una tasa de crecimiento de usuarios de 100% en el primer año, para lo cual contamos dentro de los miembros un equipo con experiencia en el campo de la administración, marketing y contabilidad. Este proyecto tiene mucho potencial debido al crecimiento de la población que cuenta con una mascota en casa, asimismo muchas de ellas cada vez más y con más frecuencias usan aplicativos móviles para adquirir productos y servicios, entonces esta propuesta de negocio encaja muy bien con el nuevo estilo de consumo del ciudadano de Lima Metropolitana.
In this work, a problem was detected for the owners of the dogs who did not have time to walk their pets and / or have no one to leave them with when they went out for long periods of time, for which we present this solution as a means of intermediation. Ruff Route digital. This digital medium offers a wide portfolio of walkers where they can choose the walker that most closely matches their needs. The facilities will be located at Calle Los Guacamayos 197 Of. 102 Urb. Limatambo Surquillo, Lima - Peru. To start the oppressions, the Ruta Ruff company will need an investment of S /. 60,201.00 for the implementation of fixed assets and S /. 16,256 for the advertising of the first month, obtaining profits from the eighth month of starting operations and with a growth rate of 100% users in the first year, for which we have within the team a team with experience in field of administration, marketing and accounting. This project has a lot of potential due to the growth of the population that has a pet at home, also many of them more and more and more frequently use mobile applications to acquire products and services, so this business proposal fits very well with the new consumption style of the citizen of Metropolitan Lima.
Trabajo de investigación
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Grabau, Matthew R., Richard H. Hawkins, Kevin E. Verweire und Donald C. Slack. „Variety of Antecedent Runoff Conditions for Rainfall-Runoff with the Curve Number Method“. Arizona-Nevada Academy of Science, 2009. http://hdl.handle.net/10150/296695.

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Bücher zum Thema "Ruoff"

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Piacentini, Amy Loraine Ruff. Ruff/Ruoff, Shewmake, Shumake, Essary/Esrey and Williamson families: By Amy Loraine Ruff Piacentini. Fresno, Calif: A.L. Ruff Piacentini, 2000.

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Roper, Robert B. Ruoff & Roper on the law and practice of registered conveyancing. 7. Aufl. London: Sweet & Maxwell, 2003.

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Ruoff, Theodore B. F. Ruoff & Roper on the law and practice of registered conveyancing. 5. Aufl. London: Stevens & Sons, 1989.

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F, Ruoff Theodore B., und Roper Robert B, Hrsg. Ruoff & Roper on the law and practice of registered conveyancing. 7. Aufl. London: Sweet & Maxwell, 2003.

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Roper, Robert B. Ruoff & Roper on the law and practice of registered conveyancing. 7. Aufl. London: Sweet & Maxwell, 2003.

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Ruoff, Theodore B. F. Ruoff & Roper on the law and practice of registered conveyancing. 5. Aufl. London: Stevens, 1987.

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B, Roper Robert, Hrsg. Ruoff & Roper on the law and practice of registered conveyancing. 5. Aufl. London: Sweet & Maxwell, 1986.

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Ruoff, Fritz. Fritz Ruoff, 1906-1986: Vom Expressiven zum Meditativen : Collagen, Gemälde, Mischtechniken, Plastiken, Zeichnungen : 26. Mai bis 22. Juni 1991, Galerie Schlichtenmaier ... Grafenau: Die Galerie, 1991.

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Roof, Michael K. The Roof (Rueff, Ruff) family and kinfolk of central South Carolina, 1748-1999. Alexandria, Va: M.K. Roof, 1999.

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Ruf, Alfons. Die Rüeffen 1591: Die aus Tirol stammenden Familien Rueff - Ruff- Ruf in Franken. Lohr am Main, BY, Germany: Alfons Ruf, 1999.

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Buchteile zum Thema "Ruoff"

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Engman, E. T., und R. J. Gurney. „Runoff“. In Remote Sensing in Hydrology, 103–26. Dordrecht: Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-009-0407-1_6.

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Yoo, Kyung H., und Claude E. Boyd. „Runoff“. In Hydrology and Water Supply for Pond Aquaculture, 92–120. Boston, MA: Springer US, 1994. http://dx.doi.org/10.1007/978-1-4615-2640-7_5.

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Leppla, Norman C., Bastiaan M. Drees, Allan T. Showler, John L. Capinera, Jorge E. Peña, Catharine M. Mannion, F. William Howard et al. „Runoff“. In Encyclopedia of Entomology, 3217. Dordrecht: Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_3464.

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Davie, Tim, und Nevil Wyndham Quinn. „Runoff“. In Fundamentals of Hydrology, 133–56. Third Edition. | New York : Routledge, 2019. | Series: Routledge Fundamentals of Physical Geography series | Previous edition: 2008.: Routledge, 2019. http://dx.doi.org/10.4324/9780203933664-7.

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Samantaray, Sandeep, Abinash Sahoo und Dillip K. Ghose. „Runoff“. In Watershed Management and Applications of AI, 151–70. Title: Watershed management and applications of AI / Sandeep Samantaray, Abinash Sahoo, and Dillip K. Ghose. Description: First edition. | Boca Raton, FL : CRC Press, 2021. | Series: Artificial intelligence (AI) in engineering: CRC Press, 2021. http://dx.doi.org/10.1201/9781003168041-9.

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Davie, Tim, und Nevil Wyndham Quinn. „Runoff“. In Fundamentals of Hydrology, 133–56. Third Edition. | New York : Routledge, 2019. | Series: Routledge Fundamentals of Physical Geography series | Previous edition: 2008.: Routledge, 2019. http://dx.doi.org/10.4324/9780203798942-7.

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Singh, Vishal, und Sanjay K. Jain. „Runoff“. In Handbook of Climate Change Impacts on River Basin Management, 105–18. Boca Raton: CRC Press, 2024. http://dx.doi.org/10.1201/9781003473336-9.

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Ellis, J. Bryan. „Pollutional Aspects of Urban Runoff“. In Urban Runoff Pollution, 1–38. Berlin, Heidelberg: Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-70889-3_1.

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Hémain, J. C. „Statistically Based Modelling of Urban Runoff Quality: State of the Art“. In Urban Runoff Pollution, 277–303. Berlin, Heidelberg: Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-70889-3_10.

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van der Heijden, Rene T. J. M., Lambertus Lijklema und R. Hans Aalderink. „A Statistical Methodology for the Assessment of Water Quality Effects of Storm Water Discharges“. In Urban Runoff Pollution, 305–23. Berlin, Heidelberg: Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-70889-3_11.

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Konferenzberichte zum Thema "Ruoff"

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Wittmanova, Reka, Jaroslav Hrudka, Stefan Stanko und Ivona Skultetyova. „ANALYSIS OF THE COMPOSITION AND CONCENTRATION OF POLLUTANTS IN RAINWATER RUNOFF“. In 22nd SGEM International Multidisciplinary Scientific GeoConference 2022. STEF92 Technology, 2022. http://dx.doi.org/10.5593/sgem2022/3.1/s12.06.

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Due to the population increasing in urban settlements, the use of the territory and the surface variability of urban settlements are changing rapidly. The development of areas covered with impervious materials contributes to accelerating the runoff process, intensifying surface runoff concentration and the concentration of surface runoff pollution. Surface runoff from urban catchments can be characterized as the primary source of the receiving water's pollution during torrential rains. The aim of the paper is to obtain information about the quality of surface runoff from paved areas of roofs and roads in the urbanized area of the city of Trnava and about the of pollutants concentration by analyzing the quality parameters of the samples taken. Rainwater runoff sampling took place from 26 of November 2021 to 8 of April 2022. Ten samples were taken during the mentioned period. The number of samples is directly proportional to the current precipitation situation in the area. The aim was to capture the first flush due to the assumption of the highest pollution concentration in the initial phase of surface runoff formation. Due to low precipitation and insufficient surface runoff formation, the sampling was irregular. The analyzed qualitative parameters are pH, electrical conductivity, chemical oxygen demand, and nitrogen oxides. By comparing the quality of samples and air quality on individual days, we can state that air quality partially affects the quality of samples taken. By comparing the air quality and the daily total precipitation on separate sampling days, we can conclude that pollutants accumulate in the air and on paved areas during a more extended rainy period. The following precipitation event washes away paved areas and cleans the air. The surface runoff then contains a higher concentration of pollutants than the runoff from the precipitation event after a short rainless or multi-day precipitation event.
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Trofimenko, Yuri V., Dmitri M. Nemchinov, Natalia A. Evstigneeva, Aleksey V. Lobikov und Evstigneeva Yu. V. „Methodology of green runoff drainage design for urban streets“. In 6th International Conference on Road and Rail Infrastructure. University of Zagreb Faculty of Civil Engineering, 2021. http://dx.doi.org/10.5592/co/cetra.2020.1050.

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The main provisions of the methodology for calculating and designing a "green drainage system" of surface runoff from the road network of settlements that are not equipped with an underground drainage and treatment system are given. Requirements for the "green drainage system" of surface runoff from urban streets that are not equipped with an underground drainage system are formulated. The requirements include the treatment degree of surface runoff, filtration rate, comfort of the visual environment, safety and convenience for pedestrians and bicyclists, technologies of winter maintenance. The main pollutants of surface runoff for different categories of Russian streets are identified. The composition and depth of filtration media, its operating life, types of green plants are determined depending on the composition of pollutants, their typical concentrations, the collection area of surface runoff and the composition of native soils. Examples of the most effective design solutions for the "green drainage system" and treatment of surface runoff from the road network are given.
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Stankevičienė, Rasa, und Oksana Survilė. „Land Drainage Development Processes and Changes in the Context of Runoff Change in Northern Lithuania“. In 11th International Conference “Environmental Engineering”. VGTU Technika, 2020. http://dx.doi.org/10.3846/enviro.2020.807.

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The impact of the drainage of excessively wet land on river runoff has so far been assessed differently and very carefully because of its complexity and diversity. The article analyses changes of drained land areas and runoff in the river basins of Mūša, Lėvuo Tatula and Nemunėlis. Wet land areas in the Mūša, Lėvuo and Nemunėlis rivers basins account for more than 70% from the total basins area and in the Tatula about 90%. Increase of drained land areas in the studied river basins has no significant influence on the change of river runoff. Studies have shown that the change in drained land areas did not affect the change in runoff height. Drainage does not have a significant effect on changes in the annual runoff distribution of the studied rivers.
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Delemazure, Théo, Jérôme Lang, Jean-François Laslier und M. Remzi Sanver. „Approval with Runoff“. In Thirty-First International Joint Conference on Artificial Intelligence {IJCAI-22}. California: International Joint Conferences on Artificial Intelligence Organization, 2022. http://dx.doi.org/10.24963/ijcai.2022/33.

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We define a family of runoff rules that work as follows: voters cast approval ballots over candidates; two finalists are selected; and the winner is decided by majority. With approval-type ballots, there are various ways to select the finalists. We leverage known approval-based committee rules and study the obtained runoff rules from an axiomatic point of view. Then we analyze the outcome of these rules on single-peaked profiles, and on real data.
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Katopodes, Nikolaos D. „Modeling Urban Runoff“. In World Water and Environmental Resources Congress 2003. Reston, VA: American Society of Civil Engineers, 2003. http://dx.doi.org/10.1061/40685(2003)300.

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Greer, Randell, und Stephen Wright. „Estimating Annual Runoff Based on the NRCS Runoff Curve Number“. In 2011 Low Impact Development Conference. Reston, VA: American Society of Civil Engineers, 2015. http://dx.doi.org/10.1061/9780784413883.013.

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Zhang, Huayong, und Liming Dai. „Surface Runoff and Its Erosion Energy in a Partially Continuous System: An Ecological Hydraulic Model“. In ASME 2009 International Mechanical Engineering Congress and Exposition. ASMEDC, 2009. http://dx.doi.org/10.1115/imece2009-10607.

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Plant community and ground surface form a partially continuous ecosystem in conveying surface runoff and its erosion energy. It is one of the mechanisms for maintaining the stable development of a partially continuous ecosystem that the plant community and ground surface dissipate the erosion energy produced by surface runoff so as to control the soil erosion process of the ecosystem. Based on the energy fundamentals of hydraulics and by idealizing the structure of plant community, we obtain an ecological hydraulic model in this paper through a series of mathematical deductions, which includes three equations: (1) the equation on approaching energy balance of surface runoff moving across plant community and ground surface; (2) the equation on the process of dissipating energy of surface runoff by plant community and ground surface in an ecosystem; (3) the equation on the relationship among the pattern of plant community, ground surface and energy dissipation of surface runoff. Theoretically, the ecological hydraulic model can be used to calculate the dynamical process of energy dissipation of surface runoff by plant community and ground surface in a partially continuous ecosystem and to discuss the optimization of plant community pattern in a given section of the ecosystem.
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Malytska, L., O. Lukianets und S. Moskalenko. „MAXIMUM RIVERINE RUNOFF IN THE BASIN OF TYSA AND PRUT WITHIN UKRAINE“. In XXVII Conference of the Danubian Countries on Hydrological Forecasting and Hydrological Bases of Water Management. Nika-Tsentr, 2020. http://dx.doi.org/10.15407/uhmi.conference.01.18.

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Research focuses on the objective assessment of maximum river runoff and its multi-annual variability in the basin of Tysa and Prut rivers within Ukraine. For this purpose, a database of maximum riverine water runoff (the highest daily values per year and the largest for one of the terms of daily measurement periods) from 36 measuring stations were created. The series were formed from the beginning of observations until 2015 and in most of them, the length is 50-70 years. Their representativeness for practical calculations has been evaluated. The main statistical parameters of the maximum runoff are determined – norms of water discharge and maximum specific discharges, coefficients of variation and skewness. A comparison was made between the maximum daily runoff values and their corresponding peak maxima. This is especially important for mountain rivers to calculate and predict dangerous peaks maxima on rivers. The multi-annual variability of the maximum runoff of rivers was examined by integral curves of differences, autocorrelation, and spectral functions. The result revealed the structure of cyclical fluctuations and an assessment of trends in the current period.
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Iddamalgoda, I. D. M. P., und E. Warusavitharana. „Investigation of application of green infrastructure practices for storm water management in urban areas: a case study of Diyatha Uyana“. In Independence and interdependence of sustainable spaces. Faculty of Architecture Research Unit, 2022. http://dx.doi.org/10.31705/faru.2022.26.

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With rapid urbanization, uncontrolled storm water runoff is one of the major problems facing urban areas at the present. Therefore, it can be seen as inducing flash flood events and water quality degradation in urban areas. In the Sri Lankan context, this same problem can be seen in urban areas. One of the issues facing urban areas is inadequate storm water drainage systems and limited space. At present, most urban areas have broadly used Green Infrastructure (GI) to reduce this situation in developing countries as an innovative and sustainable SWM approach. This Research is basically focused to examine the capability of reducing the impact of surface runoff using GI considering before- after situations (2005, 2021) in Diyatha Uyana and its surrounding as a case study area. When examining the research question, is explained the result with runoff retention index, runoff volume per watershed (m3), and runoff retention volume per pixel (m3) of the study area. Under various rainfall depths can be seen as a high retention index rather than before-situation of Diyatha Uyan
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Ayzel, Georgy, und Georgy Ayzel. „RUNOFF CALCULATIONS FOR UNGAUGED RIVER BASINS OF THE RUSSIAN ARCTIC REGION“. In Managing risks to coastal regions and communities in a changing world. Academus Publishing, 2017. http://dx.doi.org/10.31519/conferencearticle_5b1b942c3ef891.78763761.

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Arctic coastal systems are very sensitive to the freshwater budget mainly formed by river runoff. Great biases in estimation of total river runoff load to the Arctic Ocean proposed by the number of various scientific groups and insufficiency of physically-based, short-term, spatially diverse runoff predictions lead to strong necessity of state-of-art hydrological techniques implementation. At the moment the most powerful tools for the land hydrological cycle modeling are physically-based, conceptual or data-driven models. Better model – wider sources of hydrometeorological and landscape-related information we need to use to perform robust calculations. Severe climatic conditions of Arctic coastal region have led to weak river runoff monitoring net and a high level of uncertainties related to difficulties of direct measurements. There is the reason we need to develop modern techniques that allow providing effective runoff predictions by state-of-art models in the case of strong research data scarcity (for ungauged basins). Early stage of research aimed to coupling of conceptual hydrological model, cutting edge machine learning techniques and various sources of geographical data will be proposed with the call for intensification of cross-disciplinary research activities for the Arctic region sustainable development and safety.
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Berichte der Organisationen zum Thema "Ruoff"

1

Wagner, Anna, Chandler Engel, David Ho, Jeremy Giovando, Blaine Morriss und Elias Deeb. Stage frequency analysis from snowmelt runoff near Utqiagvik, Alaska. Engineer Research and Development Center (U.S.), Oktober 2023. http://dx.doi.org/10.21079/11681/47821.

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For the village of Utqiaġvik, located at the North Slope of Alaska, a stone-armored revetment along the coastline is proposed to reduce coastal erosion. The inner drainage capacity of the revetment must be sufficient to handle seasonal runoff from snowmelt. For this effort, we investigated the snowmelt runoff and the hydraulic impact at the watershed outlet using numerical snow and hydraulic modeling of the study area. We validated the snow model results by comparing simulated snow water equivalent (SWE) values to field measurements. Additionally, the snow model was validated using satellite-based Moderate Resolution Imaging Spectroradiometer (MODIS) snow-covered area (SCA) products and time-lapse camera imagery during snowmelt. Our results indicate that the simulated SWE and snowmelt dates agree closely with measured values. The timing of modeled runoff onset was less accurate due to natural processes that delay snowmelt runoff such as snow dams and refreeze. The effect of the uncertainty from both runoff timing and volume was addressed with a Monte Carlo simulation of stage-frequency curves for the lagoons that receive snowmelt runoff. These stage-frequency curves can be used directly in the design of outlet, drainage or discharge structures for the proposed revetment.
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2

Bouton, Laurent, Jorge Gallego, Aniol Llorente-Saguer und Rebecca Morton. Runoff Elections in the Laboratory. Cambridge, MA: National Bureau of Economic Research, Juni 2019. http://dx.doi.org/10.3386/w25949.

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3

Martin, Torge. Runoff remapping for ocean model forcing. GEOMAR Helmholtz Centre for Ocean Research Kiel, 2021. http://dx.doi.org/10.3289/sw_2_2021.

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A Pyhton-based toolbox to remap daily runoff fields of the JRA55-do reanalysis (Tsujino et al., 2018, https://doi.org/10.1016/j.ocemod.2018.07.002) onto any ocean model grid. Runoff from the original global JRA grid is collected and redistributed to a given model coastline. A particular feature is the optional treatment of river mouths: runoff from grid nodes, which is of exceptionally large magnitude after the basic remapping, can be radially spread to ocean nodes farther offshore. The scripts were tested successfully for NEMO ocean model configurations of various resolution (global grids ORCA025 and ORC05 as well as regional nests VIKING10, ORION10, VIKING20X and INALT20X) at GEOMAR, Kiel (see Biastoch et al., 2021, https://doi.org/10.5194/os-2021-37 for an application). General instructions are provided for how to process the original JRA runoff files and also for the optional river mouth treatment. The technique is illustrated by examples of the fragmented coast of Greenland and the Amazon river mouth. While the code is versatile, examples are given for an application with the NEMO ocean model.
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4

Bhattarai, Rabin, Yufan Zhang und Owen Yao. Evaluation of Net-free Erosion Control Blankets. Illinois Center for Transportation, November 2023. http://dx.doi.org/10.36501/0197-9191/23-026.

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Erosion control blankets (ECBs) protect soil from being detached and transported by raindrops and subsequential overland runoff while assisting in vegetation growth. ECBs have several characteristics, for example, thickness, mass per unit area, tensile strength, elongation, water absorption, etc. However, the impact of these characteristics on the performance in mitigating erosion has yet to be well understood. To better understand the interactions of ECB properties with the detachment and transport of sediment, field tests were conducted at the Erosion Control Research and Training Center at the University of Illinois Urbana-Champaign. Various ECBs, including net-free ECBs and bionet ECBs, were tested on a 3H:1V hillslope under a 30-minute simulated rainfall event (2 in./hr). The soil used on the testing plot was silty clay loam. To investigate ECB effectiveness, total runoff volume, runoff start/end time, peak runoff rate, and sediment yield were monitored during each test. The results showed that water absorption played a big role in enhancing the performance of ECBs. The materials absorbed a large amount of water at the beginning and then acted as a wet film to cover the hillslope, reducing soil erosion by the overland flow when the soil was saturated. This wet film continued to reduce soil detachment, although it probably did not help with runoff reduction after saturation. Among the blankets tested, Profile F4 Netless was the most degradable and lightest one. North American Green DS75 had the most cost efficiency with $0.4 /sq. yd. There was no big difference in the installation method.
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Peters, John C., und Daniel J. Easton. Runoff Simulation Using Radar Rainfall Data. Fort Belvoir, VA: Defense Technical Information Center, August 1996. http://dx.doi.org/10.21236/ada316115.

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6

Giovando, Jeremy, Chandler Engel, Steven Daly, Michael Warner, Daniel Hamill und Evan Heisman. Wintertime snow and precipitation conditions in the Willow Creek watershed above Ririe Dam, Idaho. Engineer Research and Development Center (U.S.), Mai 2021. http://dx.doi.org/10.21079/11681/40479.

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The Ririe Dam and Reservoir project is located on Willow Creek near Idaho Falls, Idaho, and is important for flood risk reduction and water supply. The current operating criteria is based on fully storing a large winter runoff event. These winter runoff events are generally from large storm events, termed atmospheric rivers, which produce substantial precipitation. In addition to the precipitation, enhanced runoff is produced due to frozen soil and snowmelt. However, the need for additional water supply by local stakeholders has prompted the U.S. Army Corps of Engineers to seek to better understand the current level of flood risk reduction provided by Ririe Dam and Reservoir. Flood risk analysis using hydrologic modeling software requires quantification of the probability for all of the hydrometeorologic inputs. Our study develops the precipitation, SWE, and frozen ground probabilities that are required for the hydrologic modeling necessary to quantify the current winter flood risk.
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Eldridge, L. L. A-01 metals in stormwater runoff evaluation. Office of Scientific and Technical Information (OSTI), November 1997. http://dx.doi.org/10.2172/565012.

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8

Alvez, Juan, James Cropper, Lynn Knight, Ed Rayburn, Howard Skinner, Kathy Soder und Mike Westendorf. Managing Grazing to Improve Climate Resilience. USDA Northeast Climate Hub, Februar 2017. http://dx.doi.org/10.32747/2017.6956540.ch.

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Heavy rain events have increased dramatically in the Northeastern United States. These downpours are causing more soil erosion and nutrient runoff. Increasing summer temperatures may also amplify plant stress and limit productivity.
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Ogden, Fred L., und Hatim O. Sharif. Propagation of Radar-Rainfall Uncertainty in Runoff Predictions. Fort Belvoir, VA: Defense Technical Information Center, Januar 2001. http://dx.doi.org/10.21236/ada394770.

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10

Bridges, Katherine. 50+ Voters and the Georgia Senate Runoff Elections. Washington, DC: AARP Research, Dezember 2020. http://dx.doi.org/10.26419/res.00401.029.

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