Literatura científica selecionada sobre o tema "Spree River"

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Artigos de revistas sobre o assunto "Spree River"

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Marotta, Irene. "Flussbad Berlin Re-Naturalization Project for the Spree River in the Museum Island". Advanced Materials Research 1149 (agosto de 2018): 76–85. http://dx.doi.org/10.4028/www.scientific.net/amr.1149.76.

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This article considers the issues of the re-naturalization of riverbanks and the urban regeneration of historic centres while focussing on the Flussbad Berlin, a project of sustainable redevelopment of the Spree River, around the Museum Island, which today is the focus of major city debate. Spree River is considered as a public space, an important resource that concerns the whole city. For the project, the historic centre is the main place to combine hot topics pertaining to the contemporary society such as ecology, environmental sustainability, concertation, and public-private collaboration. Berlin is conceived as a «dialogic city» where diverse sites and activities can express themselves and interact productively.
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Wanner, Susanne C., e Martin Pusch. "Analysis of particulate organic matter retention by benthic structural elements in a lowland river (River Spree, Germany)". Fundamental and Applied Limnology 151, n.º 3 (23 de maio de 2001): 475–92. http://dx.doi.org/10.1127/archiv-hydrobiol/151/2001/475.

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Schlaeger, F., H. Schonlau e J. Köngeter. "An integrated water resources management approach for the River Spree and its catchment". Water Science and Technology 47, n.º 7-8 (1 de abril de 2003): 191–99. http://dx.doi.org/10.2166/wst.2003.0689.

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In this paper a concept of an integrated water quality model for a river catchment area is presented. The main focus is directed to the development of a water quality module for rivers. Necessary simplifications for calculation of hydraulics and water quality will be explained. Furthermore, by first simulation results possible applications of the model are presented.
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Köhler, Jan. "Dynamics of phytoplankton in the lowland River Spree (Germany)". SIL Proceedings, 1922-2010 25, n.º 3 (janeiro de 1994): 1590–94. http://dx.doi.org/10.1080/03680770.1992.11900447.

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Yazdan, Munshi Md Shafwat, Md Tanvir Ahad, Raaghul Kumar e Md Abdullah Al Mehedi. "Estimating Flooding at River Spree Floodplain Using HEC-RAS Simulation". J 5, n.º 4 (10 de outubro de 2022): 410–26. http://dx.doi.org/10.3390/j5040028.

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River renaturation can be an effective management method for restoring a floodplain’s natural capacity and minimizing the effects during high flow periods. A 1D-2D Hydrologic Engineering Center–River Analysis System (HEC-RAS) model, in which the flood plain was considered as 2D and the main channel as 1D, was used to simulate flooding in the restored reach of the Spree River, Germany. When computing in this model, finite volume and finite difference approximations using the Preissmann approach are used for the 1D and 2D models, respectively. To comprehend the sensitivity of the parameters and model, several scenarios were simulated using different time steps and grid sizes. Additionally, dikes, dredging, and changes to the vegetation pattern were used to simulate flood mitigation measures. The model predicted that flooding would occur mostly in the downstream portion of the channel in the majority of the scenarios without mitigation measures, whereas with mitigation measures, flooding in the floodplain would be greatly reduced. By preserving the natural balance on the channel’s floodplain, the restored area needs to be kept in good condition. Therefore, mitigating measures that balance the area’s economic and environmental aspects must be considered in light of the potential for floods.
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Fredrich, F., S. Ohmann, B. Curio e F. Kirschbaum. "Spawning migrations of the chub in the River Spree, Germany". Journal of Fish Biology 63, n.º 3 (29 de agosto de 2003): 710–23. http://dx.doi.org/10.1046/j.1095-8649.2003.00184.x.

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Koronkevich, N. I., e K. S. Melnik. "Impact of urbanized landscapes on the river flow in Europe". Izvestiya Rossiiskoi akademii nauk. Seriya geograficheskaya, n.º 3 (25 de junho de 2019): 78–87. http://dx.doi.org/10.31857/s2587-55662019378-87.

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Global urban landscapes were growing rapidly during last decades. The impact of this growth on annual river runoff of foreign European and Russian river basins was shown in this article. Calculations for Moscow river basin were taken as a basis for computations. The performed calculations show, that 1% of urbanization area increase also enhances total river runoff at 1%. At the same time 1% growth of watertight territories (included in urbanized landscapes) leads to an increase in runoff by 2–3%. The growth of urbanized areas led to a smaller increase in runoff (2–3 times) in the past (in comparison with current period) due to a less established system of diversion from urbanized landscapes. Calculations were made for Spree, Thames, Seine river basins in comparison Moscow River basin. Impact of capitals landscapes (Berlin, London, Paris, and Moscow) on river runoff was estimated initially, and then the influence of other urbanized areas located in river basins. As a result, the general influence of all urbanized territories was defined. According to results of conducted calculations, modern urbanized areas led to an increase of annual river runoff by more than 9% in Spree river basin, more than 20% of the Thames, over 11% of the Seine and 10% in the basin of Moscow River in comparison with changes during the period of norm calculation (from the end of 19th century till the beginning of the 1960s of the 20th century). According to the results of conducted calculations, modern total annual runoff increase is 2.2–4.5% for Europe and 0.2–0.3% for the Russian Federation in comparison with changes during the period of norm calculation, and in relation to the runoff from the most populated their parts is 3.5-6.9% and 1-2%, respectively. In addition, it can be expressed in km3 with following values: 44.9–89.8 (for foreign Europe) and 7.2–14.3 (for the Russian Federation). For the whole Europe (including European territory of Russia), the runoff increases by 50–100 km3 (or by 2–4%) per year. Actually, this is not so much in percentage terms, though in terms of volume – these values are close to annual runoff of such river as Neva.
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Pohle, I., H. Koch e U. Grünewald. "Potential climate change impacts on the water balance of subcatchments of the River Spree, Germany". Advances in Geosciences 32 (11 de dezembro de 2012): 49–53. http://dx.doi.org/10.5194/adgeo-32-49-2012.

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Abstract. Lusatia is considered one of the driest regions of Germany. The climatic water balance is negative even under current climate conditions. Due to global climate change, increased temperatures and a shift of precipitation from summer to winter are expected. Therefore, it is of major interest whether the excess water in winter can be stored and to which extent it is used up on increasing evapotranspiration. Thus, this study focuses on estimating potential climate change impacts on the water balance of two subcatchments of the River Spree using the Soil and Water Integrated Model (SWIM). Climate input was taken from 100 realisations each of two scenarios of the STatistical Analogue Resampling scheme STAR assuming a further temperature increase of 0 K (scenario A) and 2 K by the year 2055 (scenario B) respectively. Resulting from increased temperatures and a shift in precipitation from summer to winter actual evapotranspiration is supposed to increase in winter and early spring, but to decrease in later spring and early summer. This is less pronounced for scenario A than for scenario B. Consequently, also the decrease in discharge and groundwater recharge in late spring is lower for scenario A than for scenario B. The highest differences of runoff generation and groundwater recharge between the two scenarios but also the highest ranges within the scenarios occur in summer and early autumn. It is planned to estimate potential climate change for the catchments of Spree, Schwarze Elster and Lusatian Neisse.
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Köhler, J., e S. Bosse. "Growth and losses of phytoplankton studied with a new dialysis chamber technique along the river Spree". Fundamental and Applied Limnology 142, n.º 1 (27 de abril de 1998): 1–19. http://dx.doi.org/10.1127/archiv-hydrobiol/142/1998/1.

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Brunke, Matthias, Andreas Hoffmann e Martin Pusch. "Association between invertebrate assemblages and mesohabitats in a lowland river (Spree, Germany): A chance for predictions?" Fundamental and Applied Limnology 154, n.º 2 (29 de maio de 2002): 239–59. http://dx.doi.org/10.1127/archiv-hydrobiol/154/2002/239.

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Teses / dissertações sobre o assunto "Spree River"

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Kieffer, Sandy. "Les fleuves urbains, une opportunité ou une rupture en matière d’aménagement du territoire : une analyse comparative entre la Havel et la Spree à Berlin ainsi que la Tamise à Londres". Thesis, Paris 4, 2014. http://www.theses.fr/2014PA040133.

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Berlin et Londres sont traversées par des fleuves. La Tamise s’écoule après 346 km dans la Mer du Nord. Berlin est traversée par la Spree et la Havel ; la Spree a une longueur de 400 km et la Havel de 325 km ; ces fleuves sont connectés par l’Elbe à la Mer du Nord. La population s’est sédentarisée sur les bords des fleuves à cause de la présence d’eau potable. À partir du Moyen - Âge, la situation a changé. Les gens ont utilisé le fleuve afin d’éliminer les eaux usées de la ville et des marchandises ont été transportées par la voie fluviale. Autrefois, des industries ont bordé ces fleuves. Aujourd’hui, ils n’occupent plus ces fonctions et les friches industrielles peuvent être réaménagées. Ces fleuves urbains peuvent créer soit une rupture, soit une opportunité en matière d’aménagement du territoire. Chaque métropole a ses propres conceptions d’aménagement. De nombreux projets d’aménagement sur les friches industrielles ont été déjà réalisés comme celui des Docklands à Londres et le projet Museumsinsel à Berlin. La mixité fonctionnelle avec la création de logements, de tertiaire supérieur et d’espaces verts est prédominante dans le projet des Docklands à Londres. Le projet Museumsinsel est orienté vers la culture. Le problème de la gentrification apparaît avec ces projets. Beaucoup d’habitants qui vivent dans ces quartiers ne peuvent plus payer les loyers croissants et doivent quitter leurs logements dans la capitale. Les berges seront -Elles seulement destinées à la classe aisée ou à tout public ? Par conséquent, les projets peuvent créer une rupture territoriale. Mais les projets d’aménagement sont une opportunité quand ils s’intègrent dans le tissu urbain existant
Berlin and London are crossed by rivers. The River Thames flows after 346 km in the North Sea. Berlin is crossed by the Spree and the Havel. The Spree has a length of 400 km and the Havel of 325 km; these two rivers are connected by the Elbe to the North Sea. The population was sedentary on the river banks due to the presence of drinking water. From the Middle – Ages, the situation has changed. The people used the river to eliminate wastewater from the city and transport goods by the waterway. In the past, the industries have bordered these rivers. Today, they no longer occupy these functions and the industrial wastelands can be redeveloped. These urban rivers can either create a city break or an opportunity in terms of planning. Each metropolis has its own conceptions. Many urban projects on industrial wastelands have already been realized such as the London Docklands and the Museumsinsel project in Berlin. On the one hand, the functional mix with the creation of housing, trade, services and green areas is predominant in the project of the Docklands in London. On the other hand, the Museumsinsel project is directed towards the culture. The problem of gentrification appears with these projects. Many inhabitants who live in these districts can no longer pay the increasing rents and must leave their homes in the metropolis. Will the riverbanks be only intended for the upper class people or at any public ? Therefore, the projects can create a territorial rupture. But, urban projects can also be an opportunity, when they fit into the existing urban morphology
Berlin und London haben eine Gemeinsamkeit, sie werden alle von Flüssen durchquert. Die Themse fliest nach 346 km in die Nordsee. Berlin wird von der Havel und der Spree durchquert. Die Spree hat eine Länge von 400 km und die Havel erstreckt sich auf 325 km und diese beiden Flüsse münden in die Elbe die wiederrum in die Nordsee fliest. Die Menschen siedelten sich an den Flüssen an, weil sie hier Trinkwasser fanden. Ab dem Mittelalter veränderte sich jedoch die Situation, die Menschen benutzten nun den Fluss zur Entsorgung der Abwässer der Stadt und zur Beförderung der Waren auf dem Flussweg. Industrien siedelten sich früher entlang der Flüsse an. Heute, erfüllen sie diese Aufgabe nicht mehr und das Industriebrachland steht für neue Projekte zur Verfügung. Die Flüsse die durch die Großstädte fließen, können entweder einen Bruch oder eine günstige Gelegenheit für die Stadt sein. Dies ist jedoch abhängig von der Stadtplanung, denn jede Hauptstadt besitzt seine eigene Auffassung zu diesem Thema. Viele Projekte auf Industriebrachen wurden bereits fertiggestellt, wie zum Beispiel das Projekt der Docklands in London und das Projekt der Museumsinsel in Berlin. Die Hauptaspekte des Projektes der Docklands in London bestehen in der Verwirklichung einer funktionellen Mischung aus Wohnungen, Gewerben, Dienstleistungen und Grünflächen. Die Kultur stand jedoch im Mittelpunkt des Projekts der Museumsinsel in Berlin. Diese neuen Bauprojekte können aber ein Gentrifizierungsproblem verursachen. Viele Bewohner dieser Viertel können die steigenden Mieten nicht mehr bezahlen und müssen Ihre Wohnungen in der Hauptstadt verlassen. Die Uferböschungen entlang der Flüsse, sind diese also nur für die obere Gesellschaftsschicht bestimmt oder sind sie für alle Leute ? Folglich, können diese Projekte einen territorialen Riss verursachen. Aber die Projekte können aber auch eine Bereicherung sein, wenn sie sich gut in die bestehende Baustruktur einfügen
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Livros sobre o assunto "Spree River"

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Groggert, Kurt. Personenschiffahrt auf Spree und Havel. Berlin: Nicolaische Verlagsbuchh., 1988.

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Dampfergruppe, Berliner Geschichtswerkstatt. Landgang in Berlin: Stadtgeschichte an Landwehrkanal und Spree. Berlin: Nishen, 1987.

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Mad river: A Virgil Flowers novel. Thorndike, Maine: Center Point Publishing, 2012.

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Wauer, Sophie. Das Flussgebiet der Havel (ohne die Spree). Stuttgart: F. Steiner, 1999.

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Dick, Enrique Rodolfo. Tras la estela del Graf Spee. 5a ed. Buenos Aires: Edivérn, 2002.

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illustrator, Bergara Matías 1984, ed. Los últimos días del Graf Spee. Montevideo, Uruguay: Estuario Editores, 2013.

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1984-, Bergara Matías, ed. Los últimos días del Graf Spee. Montevideo: Grupo Belerofonte, 2008.

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Lascano, Diego M. Historias de los marinos del Graf Spee. Montevideo: Librel Ediciones, 1998.

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Darnau, Martín. La aventura del "Graf Spee": Historia de la batalla del Río de la Plata. Montevideo-Uruguay: Ediciones del Nuevo Mundo, 1989.

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Morán, Alejandro Nelson Bertocchi. El Graf Spee en la trampa de Montevideo. Buenos Aires: Ayer y Hoy Ediciones, 1998.

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Capítulos de livros sobre o assunto "Spree River"

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Nilkens, B., F. Schlaeger e J. Köngeter. "Application of the Integrated Water Management Approach to the River Spree". In Water Resources Quality, 215–29. Berlin, Heidelberg: Springer Berlin Heidelberg, 2002. http://dx.doi.org/10.1007/978-3-642-56013-2_12.

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Köhler, Jan. "Origin and succession of phytoplankton in a river-lake system (Spree, Germany)". In Phytoplankton in Turbid Environments: Rivers and Shallow Lakes, 73–83. Dordrecht: Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-017-2670-2_7.

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Kozerski, H. P. "Seston sedimentation in a lowland river (River Spree, Germany): their spatial and temporal variations and controlling factors". In The Interactions between Sediments and Water, 51–55. Dordrecht: Springer Netherlands, 2003. http://dx.doi.org/10.1007/978-94-017-3366-3_9.

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Nones, Michael, e Christoph Gerstgraser. "Morphological Changes of a Restored Reach: The Case of the Spree River, Cottbus, Germany". In Hydrodynamic and Mass Transport at Freshwater Aquatic Interfaces, 167–82. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-27750-9_14.

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Köhler, Jan, e Brigitte Nixdorf. "Influences of the lowland river Spree on phytoplankton dynamics in the flow-through Lake Müggelsee (Germany)". In Nutrient Dynamics and Biological Structure in Shallow Freshwater and Brackish Lakes, 187–95. Dordrecht: Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-017-2460-9_16.

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Nikolaevich, N., A. Sukhodolov e C. Engelhardt. "Assaying historical maps and relict channel forms for the analysis of channel processes (on example of the Spree River in Germany)". In River Flow 2004, 181–89. CRC Press, 2004. http://dx.doi.org/10.1201/b16998-24.

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Braun, Harald, e Conrad Häßler. "Entre la Spree et l’East River : l’Allemagne au sein des Nations unies". In L'Allemagne sur la scène internationale, 77–98. Presses universitaires du Septentrion, 2017. http://dx.doi.org/10.4000/books.septentrion.17468.

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Lewandowski, Jörg, e Gunnar Nützmann. "Small-scale water- and nutrient-exchange between lowland River Spree (Germany) and adjacent groundwater". In IAH - Selected Papers on Hydrogeology, 23–32. CRC Press, 2013. http://dx.doi.org/10.1201/b15003-4.

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"Small-scale water- and nutrient-exchange between lowland River Spree (Germany) and adjacent groundwater". In Groundwater and Ecosystems, 41–50. CRC Press, 2013. http://dx.doi.org/10.1201/b15003-8.

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Wigger, John. "Peru, Indiana". In The Hijacking of American Flight 119, 89–91. Oxford University PressNew York, 2024. http://dx.doi.org/10.1093/oso/9780197695753.003.0024.

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Abstract This chapter provides a background of Peru, Indiana. Like a lot of rural communities, the population of Peru had declined over the previous decade to about 14,000. In the early 1800s, the Miami Indians lived along the banks of the Wabash River, where Peru now stands. The town was chosen as the seat of Miami County in the 1830s, before it was much more than just a name on a map. What kept Peru on the map was the circus, but it was devastated by a 1913 flood. The chapter recounts how John Dillinger raided the Peru police station in October 1933 as part of a fourteen-month crime spree that made him one of the most famous bank robbers of the time. In 1972, for visitors needing a place to stay, there was only one option: the Peru Motor Lodge. For the FBI agents who needed a place to stay during the search for the hijacker of American 119, the Peru Motor Lodge was the obvious choice.
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Trabalhos de conferências sobre o assunto "Spree River"

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Pohle, I., H. Koch, A. Gädeke, M. Kaltofen, M. Schramm, M. Redetzky, F. Müller e U. Grünewald. "Potential impacts of climate change on natural and managed discharges of the Rivers Spree, Schwarze Elster and Lusatian Neisse, Central Europe". In WATER AND SOCIETY 2013. Southampton, UK: WIT Press, 2013. http://dx.doi.org/10.2495/ws130011.

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