Добірка наукової літератури з теми "River basin planning"

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Статті в журналах з теми "River basin planning"

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Adams, W. M. "River basin planning in Nigeria." Applied Geography 5, no. 4 (October 1985): 297–308. http://dx.doi.org/10.1016/0143-6228(85)90009-8.

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Herricks, Edwin E., and Maria I. Braga. "Habitat Elements in River Basin Management and Planning." Water Science and Technology 19, no. 9 (September 1, 1987): 19–29. http://dx.doi.org/10.2166/wst.1987.0063.

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Comprehensive river basin management mast move beyond narrowly focused programs dealing with water quantity or water quality. A more comprehensive approach to river basin management recognizes that both flow quantity and water quality can be summarized as habitat measures. A number of well developed physical habitat analysis and prediction procedures are presently available. Several computerized systems available from the U.S.Fish and Wildlife Service (Habitat Suitability Index - HSI and PHysical HABitat SIMulation - PHABSIM) provide macrohabitat definition. We have developed a water quality based habitat component which operates effectively for general analysis. With an emphasis on site specific management in the United States, the macrohabitat definition procedures may not meet all river basin management and planning requirements. This paper reviews the results of research which characterizes microhabitat in streams and rivers and provides a valuable extension to basin management procedures.
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3

Sharef, A. J., and R. N. Dara. "GREATER ZAB RIVER BASIN PLANNING (2050)." IRAQI JOURNAL OF AGRICULTURAL SCIENCES 52, no. 5 (October 21, 2021): 1150–62. http://dx.doi.org/10.36103/ijas.v52i5.1453.

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This research was aimed to study the management of water resources within international basins, among which is the study of water authorities within the Greater Zab River Basin (GZRB) in the Kurdistan region - Iraq, where it is an international river shared by Iraq and Turkey, and aims to develop the river basin management and international cooperation between the authorities Shared water within the basin, as well as identifying factors that affect implementation, the principles, and joint projects. On the other hand, the interactions of water users competing for water inside the river basin were identified. For this reason, the Water Evaluation Analysis Planning (WEAP) model was applied to the basin to determine the optimal GZR planning system and plan optimum operating policy. The main issue with this planning is how the system meets future water needs. For this reason, optimal monthly water distribution policies have been simulated using the WEAP model using the past 33 years' debt, and the revaluated GZRB performance. An ideal simulation scheme has been developed and implemented for different scenarios such as domestic needs, irrigation water, and ecological water. This study compared to the official figures in the planning work that took place in the eighties. As a result of these comparisons, the average annual water supply was 368.1 million cubic meters in August 2032. Accordingly, it was proposed that the construction of the Bekhme Dam was completed because it understood that the water requirements could not be met in the current conditions.
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Safiolea, Eleftheria, Sotiria Baki, Christos Makropoulos, Jean Francois Deliège, Paul Magermans, Etienne Everbecq, Anthoula Gkesouli, Anastasios Stamou, and Maria Mimikou. "Integrated modelling for river basin management planning." Proceedings of the Institution of Civil Engineers - Water Management 164, no. 8 (September 2011): 405–19. http://dx.doi.org/10.1680/wama.2011.164.8.405.

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Bizjak, Aleš. "Water planning and river basin management plans." Dela, no. 30 (December 31, 2008): 101. http://dx.doi.org/10.4312/dela.30.7.101-121.

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Van Abs, Daniel J. "PLANNING FOR NEW JERSEY'S LARGEST RIVER BASIN." Proceedings of the Water Environment Federation 2002, no. 2 (January 1, 2002): 1756–76. http://dx.doi.org/10.2175/193864702785665670.

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Razavian, Daryoush, Ann S. Bleed, Raymond J. Supalla, and Noel R. Gollehon. "Multistage Screening Process for River Basin Planning." Journal of Water Resources Planning and Management 116, no. 3 (May 1990): 323–34. http://dx.doi.org/10.1061/(asce)0733-9496(1990)116:3(323).

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Safaei, Morteza, Hamid R. Safavi, Daniel Peter Loucks, Azadeh Ahmadi, and Wil van der Krogt. "Integrated river basin planning and management: a case study of the Zayandehrud River basin, Iran." Water International 38, no. 6 (October 2013): 724–43. http://dx.doi.org/10.1080/02508060.2013.823815.

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Vedula, S. "Optimal irrigation planning in river basin development: The case of the Upper Cauvery river basin." Sadhana 8, no. 2 (March 1985): 223–52. http://dx.doi.org/10.1007/bf02811895.

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Huidong, Su, Liu Yin, Lu Huiting, Wang Dongbo, and Jin Tianian. "Study on Integrated Planning and Management in Lhasa River Basin." E3S Web of Conferences 165 (2020): 03055. http://dx.doi.org/10.1051/e3sconf/202016503055.

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As a political, economic and cultural center of the Tibet Autonomous Region, the Lhasa River needs to take planning and management of the basin. In the past 60 years, the temperature of Lhasa River Basin has been increasing gradually at an annual rate of 0.047 ° C, which leads to the water cycle variation of the river basin and its associated aquatic ecology and environment continue to change and evolve, and ecological environmental protection is affected by more uncertain factors. Based on the assessment of the ecological environment of the Lhasa River Basin, the comprehensive planning suggestions for the Lhasa River Basin were proposed from the aspects of water environment, land use, ecological pattern, and economic and social development. These suggestions are drawn on the examples of integrated planning and management of catchment in foreign countries and are referred to as the comprehensive planning of the seven major river basins in China.
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Дисертації з теми "River basin planning"

1

Venema, Henry David. "A management planning model for the Senegal River Basin." Thesis, University of Ottawa (Canada), 1993. http://hdl.handle.net/10393/6879.

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The Senegal River Basin (SRB), located in the Sahel region of West Africa is undergoing fundamental environmental, hydrologic and socio-economic transitions simultaneously. The tri-nation (Senegal, Mauritania and Mali) river basin development authority, the Organisation pour la Mise en Valeur du Fleuve Senegal (OMVS) is attempting to execute a shift to irrigated rice production in the river basin for domestic consumption, to ease the severe foreign exchange shortfalls these riparian nations face. Compounding the severe effects of the drought on the river basin ecology is the negative impact of the state imposed agricultural policy of rice production. Rice production in the arid river valley has been a financial and social failure. This study postulates an alternative utilization of the scarce water resources in the basin. The water demand pattern for an alternative natural resources management focused agricultural development policy is based on the irrigation water requirements of well-researched village-scale irrigation projects in the SRB, and intensive irrigated agro-forestry projects. The agro-forestry production system analyzed has the joint objectives of using irrigation to re-establish a protective, diverse and productive bio-mass cover in the desertifying river valley, and to reverse the tide of drought induced migration from rural to urban areas. A comparative river system simulation study was conducted to analyze the effects of both the rice production development policy (policy RP) and the natural resources management policy (policy NRM), on the full agricultural development potential of the SRB. Alternative hydrologic scenarios were generated for the simulation study according to the Senegal River time series analysis, for the historical level, 1970s level drought and 1980s level drought. For all hydrologic scenarios the lower over-all demand pattern exerted by policy NRM allowed a higher full development potential than for policy RP. (Abstract shortened by UMI.)
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2

King, Caleb K. (Caleb Kimball). "The incorporation of health concerns into African river basin planning : a case study based on the Sénégal River basin." Thesis, Massachusetts Institute of Technology, 1996. http://hdl.handle.net/1721.1/10845.

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Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 1996.
Vita.
Includes bibliographical references (leaves 225-231).
Caleb K. King.
Ph.D.
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3

Millspaugh, John Henry. "Screening model optimization for Panay River Basin planning in the Philippines." Thesis, Massachusetts Institute of Technology, 2010. http://hdl.handle.net/1721.1/60770.

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Анотація:
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2010.
Cataloged from PDF version of thesis.
Includes bibliographical references (p. 42-44).
The state of the water resources of the Panay River Basin have motivated studies and initial basin planning to mitigate flood damages, to produce hydroelectricity, and to increase irrigated rice areas. The goal of this study was to provide the optimal design parameters for facilities potentially to be placed in the basin and the water management variables associated with operating these facilities. This study considered four reservoirs, four hydropower facilities, and an irrigation facility. Screening model optimization produced results to provide insight for future water resources management in the basin. The modeling was completed in GAMS (General Algebraic Modeling System).
by John Henry Millspaugh.
M.Eng.
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4

Fernandes, Sergio Alejandro. "Planning for future inland water transportation in the Parana-Paraguay River basin." Thesis, Massachusetts Institute of Technology, 1996. http://hdl.handle.net/1721.1/40578.

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Sousa, Maria LosÃngela Martins de. "Geoenvironmental diagnosis of sub-basin river figueiredo, CearÃ: Subsidies for Environmental Planning." Universidade Federal do CearÃ, 2012. http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=9684.

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FundaÃÃo Cearense de Apoio ao Desenvolvimento Cientifico e TecnolÃgico
CoordenaÃÃo de AperfeÃoamento de Pessoal de NÃvel Superior
A presente pesquisa aborda a contextualizaÃÃo geoambiental da sub-bacia hidrogrÃfica do rio Figueiredo, como um subsÃdio ao planejamento ambiental. Tem-se como principal objetivo realizar uma anÃlise ambiental integrada da sub-bacia, destacando a capacidade de suporte dos seus recursos naturais e as formas de uso e ocupaÃÃo. Assim, a pesquisa se estruturou em trÃs etapas principais. A primeira està voltada à pesquisa documental, bem como ao levantamento de dados secundÃrios da Ãrea de estudo. A segunda diz respeito ao levantamento da base geocartogrÃfica e de imagens de satÃlites. A terceira se volta à parte prÃtica atravÃs dos trabalhos de campo, interpretaÃÃo das imagens de satÃlites e produÃÃo cartogrÃfica. Como principais resultados, verificou-se que a sub-bacia possui os seguintes sistemas ambientais: planÃcies fluviais e Ãreas de inundaÃÃo sazonal, depressÃo sertaneja, que se divide nos sertÃes de Alto Santo, Iracema/Potiretama, Pereiro/ErerÃ, cristas residuais, maciÃo residual do Pereiro e patamares da chapada do Apodi. Esta sub-bacia apresenta processos de degradaÃÃo ambiental e riscos de desertificaÃÃo, pois possui condiÃÃes climÃticas semiÃridas e atividades humanas que comprometem a capacidade de suporte dos seus recursos naturais, entre elas a pecuÃria, a agricultura e o extrativismo vegetal, cujas tÃcnicas de utilizaÃÃo sÃo inadequadas. Neste contexto, o reconhecimento das potencialidades e limitaÃÃes naturais da bacia à de suma importÃncia para as diretrizes ambientais.
This research approaches the issue of integrated studies as an aid to environmental planning, having as the case study the sub-basin of the Rio Figueiredo. This river is one of the main tributaries of the Jaguaribe drainage basin, located in the eastern portion of the state of Ceara, Brazil. It has as its main objective to conduct an environmental analysis of the integrated sub-basin, highlighting the carrying capacity of its natural resources and ways to use and occupation, with a view to supporting environmental planning. For this purpose, its specific objectives are: to identify the environmental systems and types of use and occupation of their natural resources to investigate the main environmental problems in the sub-basin set, relating the causes and consequences; make a list of the floristic composition of the environmental systems aiming to realize the environmental degradation from the loss of biodiversity. This research was structured in three main stages. The first one is focused on documentary research, as well as the collection of complementary data on the study area. The second concerns the collecting of the geocartographic base data and satellite images. The third will discuss a practical field work through the interpretation of satellite images and cartographic production. The main results showed that the sub-basin has four environmental systems: fluvial plains and areas of seasonal flooding, depression hinterland, which is divided in the backlands of Alto Santo, Iracema/Potiretama, Pereiro/ErerÃ, residual ridges, Pereiro residual massive and the heights of the Apodi plateau. This sub-basin presents processes of environmental degradation and desertification risk, because it has semi-arid climatic conditions and human activities that compromise the carrying capacity of its natural resources, including livestock, agriculture and extraction plant, whose techniques are unsuitable for use. In this context, the recognition of the potential and limitations of the natural area is of great importance to the environmental guidelines.
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Shahid, Ayesha M. C. P. Massachusetts Institute of Technology. "Reimagining planning of irrigated agriculture in the Indus River Basin, Punjab, Pakistan." Thesis, Massachusetts Institute of Technology, 2017. http://hdl.handle.net/1721.1/111374.

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Анотація:
Thesis: M.C.P., Massachusetts Institute of Technology, Department of Urban Studies and Planning, 2017.
Cataloged from PDF version of thesis.
Includes bibliographical references (pages 86-93).
Faced with rapid resource degradation in the Indus river basin in Punjab, Pakistan, the provincial government of Punjab has identified 'integrated water resource management' as the guiding paradigm for achieving efficient, equitable and environmentally sustainable use of natural resources in the province. However, no clear roadmap for how multi-sectoral, 'integrated' resource management and governance can be operationalized exists. Focusing on irrigated agriculture in Punjab, this thesis uses a combination of historical, institutional and empirical analyses to investigate how 'integrated' food and water planning can be achieved in Punjab. The historical analysis traces how the idea of 'integration' in irrigated agriculture has evolved in Pakistan's colonial history and within the province of Punjab after independence. It reveals that both the departments of irrigation and agriculture have highlighted the need for vertical and horizontal integration within and between the departments throughout their existence. They have experimented with various institutional configurations and many reforms, like the creation of the On-Farm Water Management directorate and introduction of participatory irrigation management, have been implemented in an effort to achieve this integration. The institutional analysis explores how planning is done within and across the provincial departments of agriculture and irrigation. It finds that currently only the provincial tiers are responsible for planning within the two departments while the sub-provincial tiers are responsible for management and operational functions. Coordination between the departments happens by way of the provincial Planning and Development department as the final approver of their proposed plans. Finally, the empirical analysis uses annually collected departmental data to develop metrics that can enable integrated planning of irrigated agriculture. In conclusion, this thesis uses the idea of boundary spanning organizations and objects and builds on the historical, institutional and empirical analysis to propose recommendations for how planning in the Indus River Basin of Punjab can be re-imagined.
by Ayesha Shahid.
M.C.P.
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Smith, Heather M. "At a watershed : the emerging relationship between river basin management planning and development planning in Scotland." Thesis, University of Aberdeen, 2011. http://digitool.abdn.ac.uk:80/webclient/DeliveryManager?pid=174697.

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This project has explored the implementation of an integrative and collaborative policy _ vision in a real world setting - the emerging relationship between the river basin management planning (RBMP) and development planning regimes in Scotland. This relationship fits comfortably with some of the latest paradigms in the fields of water management and land use planning. Both fields espouse the need for greater integration and collaboration, particularly within and between public sector organisations. Such approaches are often portrayed as key to achieving ambitions for sustainability. The EU Water Framework Directive (WFD) places particular emphasis on building linkages between water management and land use planning systems. There is growing understanding that such linkages can emerge as a patchwork of overlapping and interrelated institutions. However, there is still limited empirical understanding of such institutional relationships and what they mean in practical terms for those involved. This project's approach is based in interpretive policy analysis, and it has explored how various public bodies have constructed different understandings of this emerging relationship - what it is, how it works, and why it is needed. Methods included analyses of key documents, as well as in-depth interviews, primarily with RBMP and planning staff from local authorities, SEPA and other agencies. The findings show that the locus of the relationship is 'downshifting' towards lower levels of the planning regime - i.e. local development plans, and development management. In keeping with this, some higher level issues - such as the wider tradeoffs between enabling new development and ensuring the protection and improvement of the water environment - are not being discussed in this context. This pattern is shaped by wider socio-political aims, such as the government's central purpose of increasing sustainable economic growth. These findings support the need for higher-level interactions in which these wider aims can be discussed and debated.
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Kaewkrajang, Vuttichai. "Integrated planning of water quality management system in the Tha Chin River Basin." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape4/PQDD_0017/MQ54715.pdf.

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Abedrabboh, Walid Yousef. "Multi-objective decision making applied for watershed development planning of Zarqa River Basin in Jordan." Diss., The University of Arizona, 1988. http://hdl.handle.net/10150/191142.

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In developing natural resources, decision makers are seeking to achieve different objectives, which cannot be reduced to a single objective such as economic efficiency, this covers only part of the problem. Tradeoffs between multiple objective of unequal importance is unavoidable in the process of selection or ranking of alternative developmental projects or plans. Multiobjective technique has the ability to deal with qualitative and quantitative objectives, also it enhances the planning process by involving broader segments of the society in the process of decision making. Compromise programming (CP) and utility worth analysis (UWA), two multiobjective methods were applied on Zarqa River Basin Project (ZRBP) in Jordan. Their appropriateness and suitability as decision aiding tools was examined in this study. For the purpose of the study, five criteria were developed to serve as a basis for the evaluation and 61 farmers and 15 technicians, planners and decision makers were interviewed. High consistency was observed among the results of ranking the six alternatives when both methods were applied, at the same time the ranking of the alternatives according to benefit/cost ratio and the internal rates of return as economic efficiency measures showed no agreement with the multiobjective ranking.
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Farias, Juliana Felipe. "Applicability of Geoecology of Landscapes in the Environmental Planning of River Basin Palmeira-CearÃ/Brazil." Universidade Federal do CearÃ, 2015. http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=13874.

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Анотація:
FundaÃÃo Cearense de Apoio ao Desenvolvimento Cientifico e TecnolÃgico
A bacia hidrogrÃfica do rio Palmeira, està localizada nos sertÃes do Centro-Norte, no Cearà (longitude 41Â6â31â e latitude 3Â5â14â) e possui uma Ãrea de 476.87 kmÂ. A mesma apresenta uma variedade de unidades de paisagem e de atividades econÃmicas, as quais em determinados setores sÃo incompatÃveis com a capacidade de suporte dos recursos naturais. Neste contexto, considerando a Ãrea de drenagem do rio Palmeira enquanto unidade de estudo, a presente pesquisa teve como objetivo elaborar propostas de planejamento ambiental para bacia hidrogrÃfica em questÃo, tendo como base teÃrica e metodolÃgica a Geoecologia das Paisagens. Em termos metodolÃgicos, a anÃlise geoecolÃgica foi aplicada nas seguintes fases: organizaÃÃo e inventÃrio, anÃlise, diagnÃstico e propositiva. Foram elaborados mapas temÃticos na escala de 1:160.000, auxiliados por levantamentos mais detalhados em escala local de 1:50.000 sobre uso/ocupaÃÃo, por exemplo. Como principais resultados à possÃvel destacar que a bacia se encontra em um estÃgio crescente de degradaÃÃo, sendo preocupante a Ãrea estuarina em funÃÃo do estabelecimento das salinas e carcinicultura. Com base nos levantamentos biofÃsicos e socioeconÃmicos realizados, na aferiÃÃo do estado ambiental, potencial de uso e capacidade de gestÃo, as propostas de planejamento ambiental foram consolidadas em trÃs vertentes: 1) as de carÃter geral; 2) uma proposta de zoneamento ambiental e funcional; e, 3) estratÃgias de gestÃo integrada agregadas com a discussÃo de um prognÃstico para a bacia. Espera-se que as aÃÃes destacadas possam contribuir com o planejamento do uso dos recursos naturais, em especifico a Ãgua, de maneira mais compatÃvel com as potencialidades locais. Igualmente, que os principais resultados da pesquisa sirvam como modelo à aplicaÃÃo da Geoecologia das Paisagens em outras bacias, com adaptaÃÃes ao objeto investigado.
The Palmeira river basin is located in the SertÃes of the Centro-Norte, Cearà (longitude 41 6 ' 31 " and latitude 3 5 ' 14") and presents 476.87 km area. The river basin features a variety of landscape units and of economic activities, which in certain sectors are incompatible with the ability to support natural resources. In this context, considering the Palmeira river basin as a unit of study, the present research aimed to make an proposals for environmental planning for the catchment area concerned, based on the methodological and theoretical Geoecology of the landscapes. In methodological terms, the geoecological analysis was applied in the following phases: Organization and inventory, analysis, diagnosis and purposeful. Thematic maps were prepared on a scale of 1: 160,000, aided by more detailed surveys in local scale of 1: 50,000 on use/occupation, for example. The main conclusions are possible to highlight that the basin is in a growing stage of degradation, being disturbing the estuarine area in relation to the establishment of the salt production and shrimp farming. Based on the biophysical and socioeconomic surveys conducted, in gauging environmental status, potential use and management capacity, proposals for environmental planning have been consolidated into three phases: 1) the general character; 2) a proposal for environmental zoning and functional; and, 3) aggregate integrated management strategies with the discussion of a prognosis for the basin. It is expected that the outstanding actions can contribute to the planning of the use of natural resources, in particular water, compatible with local potential. Likewise, that the main search results serve as a model for the application of Geoecology of the landscapes in other basins, with adaptations to the investigated object.
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Книги з теми "River basin planning"

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A, Abu-Zeid Mahmoud, Biswas Asit K, and Nile 2002 Conference (1993 : Aswān, Egypt), eds. River basin planning and management. Calcutta: Oxford University Press, 1996.

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2

Commission, Massachusetts Metropolitan District. New Charles River Basin: Charles River Reservation. Boston, Mass: The Commission, 1995.

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3

Pegram, Guy C. River basin planning principles: Procedures and approaches for strategic basin planning. Manila, Philippines: Asian Development Bank, 2013.

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4

States West Water Resources Corporation. and Wyoming Water Development Office. River Basin Planning Section., eds. Green River Basin water planning process. [Cheyenne, Wyo.]: States West Water Resources Corp., 2001.

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5

States West Water Resources Corporation. Green River Basin water planning process. [Cheyenne, Wyo.]: The Corporation, 2001.

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6

Utah. Division of Water Resources., Utah. State Water Plan Coordinating Committee., and Utah Board of Water Resources., eds. Bear River Basin : planning for the future. Salt Lake City, Utah: Utah Division of Water Resources, 2004.

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7

Wyoming Water Development Commission. Basin Planning Program., HKM Engineering Inc, Lord Consulting, and Watts and Associates, eds. Powder/Tongue River basin plan. [Cheyenne, Wyo.?: Wyoming Water Development Commission, 2002.

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8

Virginia. State Water Control Board., ed. Roanoke River basin water supply plan. Richmond, Va: State Water Control Board, 1988.

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Virginia. State Water Control Board., ed. New River Basin water supply plan. Richmond, Va: State Water Control Board, 1988.

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10

Commission, Massachusetts Metropolitan District, ed. The new Charles River Basin: Master plan. [Boston, Mass.]: The Commission, 1995.

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Частини книг з теми "River basin planning"

1

Loucks, Daniel P., and Eelco van Beek. "River Basin Modeling." In Water Resource Systems Planning and Management, 469–526. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-44234-1_11.

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2

Reynolds, Peter J. "Ecosystem Approaches to River Basin Planning." In The GeoJournal Library, 41–48. Dordrecht: Springer Netherlands, 1985. http://dx.doi.org/10.1007/978-94-009-5458-8_5.

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3

Steinitz, Carl, Hector Arias, Scott Bassett, Michael Flaxman, Thomas Goode, Thomas Maddock, David Mouat, Richard Peiser, and Allan Shearer. "The Upper San Pedro River Basin." In The Ecological Design and Planning Reader, 461–65. Washington, DC: Island Press/Center for Resource Economics, 2014. http://dx.doi.org/10.5822/978-1-61091-491-8_40.

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Vicory, Alan H., and Peter A. Tennant. "River Basin Planning and Management in 2050." In Toward a Sustainable Water Future, 76–83. Reston, VA: American Society of Civil Engineers, 2012. http://dx.doi.org/10.1061/9780784412077.ch08.

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Sinha, S. K. "Integrated River Basin Planning and Development — Some Case Studies." In Water Resources Planning and Management, 3–15. Dordrecht: Springer Netherlands, 1996. http://dx.doi.org/10.1007/978-94-011-0395-4_1.

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Hahn, Bernhard M., Sebastian Kofalk, Jean-luc De Kok, Jürgen Berlekamp, and Mariele Evers. "Elbe DSS: A Planning Support System for Strategic River Basin Planning." In The GeoJournal Library, 113–36. Dordrecht: Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-1-4020-8952-7_6.

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Tangi, Marco. "Dynamic Sediment Connectivity Modelling for Strategic River Basin Planning." In Special Topics in Information Technology, 27–37. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-15374-7_3.

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AbstractSediment connectivity is a distributed property of river systems that emerges from the connected transfer of sediment between multiple sources and sinks. Its disruption, brought by anthropic disturbances, can have severe and unforeseen consequences on both fluvial ecosystems and human livelihood. Modeling network-scale sediment connectivity provides a foundational understanding of river processes and their response to new pressures and can be used to forecast future system evolutions. In this chapter, we present the basin-scale, dynamic sediment connectivity model D-CASCADE (Dynamic CAtchment Sediment Connectivity And DElivery), which quantifies spatiotemporal patterns of sediment delivery in river networks. D-CASCADE considers multiple factors affecting transport, including heterogeneities in hydrology and sediment supply, different grain sizes, channel morphological evolution, and reservoir presence and management. The model is designed to be flexible, data parsimonious, and computationally efficient. We also present two applications of D-CASCADE in real-world case studies for historic geomorphic evolution reconstruction and future dam impacts forecasting. D-CASCADE is intended for integrated, basin-scale water management efforts, to perform multiple screening of various decision portfolios for hydromorphological impact assessments.
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Bouma, Geiske, and Adriaan Slob. "How Spatial Planning Can Connect to River Basin Management." In The Handbook of Environmental Chemistry, 321–45. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-38598-8_12.

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Goulter, I. C. "Equity Issues in the Implementation of River Basin Planning." In The GeoJournal Library, 287–92. Dordrecht: Springer Netherlands, 1985. http://dx.doi.org/10.1007/978-94-009-5458-8_29.

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Howe, Charles W. "A Vision of Unified River Basin Planning and Management." In Toward a Sustainable Water Future, 93–99. Reston, VA: American Society of Civil Engineers, 2012. http://dx.doi.org/10.1061/9780784412077.ch10.

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Тези доповідей конференцій з теми "River basin planning"

1

Macgregor, C. J. "Innovative river action planning for the Upper Collie catchment, Western Australia." In RIVER BASIN MANAGEMENT 2011. Southampton, UK: WIT Press, 2011. http://dx.doi.org/10.2495/rm110011.

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Raupp, I., F. Costa, and J. Damázio. "Minimization of the conflict between electric power generation and flood control of the Brazilian reservoirs operation planning." In RIVER BASIN MANAGEMENT 2009. Southampton, UK: WIT Press, 2009. http://dx.doi.org/10.2495/rm090141.

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Rutledge, Jack, William J. Owen, J. Steve Newton, and John K. Ricketts. "Mixing Local Flavor with River Basin Planning." In Watershed Management and Operations Management Conferences 2000. Reston, VA: American Society of Civil Engineers, 2001. http://dx.doi.org/10.1061/40499(2000)29.

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Bourget, Paul G., and Terry J. Birkenstock. "The Red River Basin Disaster Information Network." In Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000. Reston, VA: American Society of Civil Engineers, 2000. http://dx.doi.org/10.1061/40517(2000)117.

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Kirschbaum, Robin L., and Michael L. Brown. "Flood Study of the Columbia River Basin." In Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000. Reston, VA: American Society of Civil Engineers, 2000. http://dx.doi.org/10.1061/40517(2000)50.

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Bender, Michael, Rolf Oswald, Mark Vandersluis, Mark Deutschman, and Slobodan Simonovic. "Red River Basin Canadian Flood Management Virtual Database." In Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000. Reston, VA: American Society of Civil Engineers, 2000. http://dx.doi.org/10.1061/40517(2000)115.

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Triana, Enrique, and John W. Labadie. "Decision Support System for Optimal River Basin Management." In Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000. Reston, VA: American Society of Civil Engineers, 2000. http://dx.doi.org/10.1061/40517(2000)29.

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Tenney, Ray D., and Charles M. Brendecke. "Planning for Water Development and Endangered Species Recovery in the Yampa River Basin." In Wetlands Engineering and River Restoration Conference 1998. Reston, VA: American Society of Civil Engineers, 1998. http://dx.doi.org/10.1061/40382(1998)52.

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Anderton, Caroline, Thomas Crow, George Anderton, Louise Bond, and Emile Wadsworth. "Achieving multiple benefits through river basin planning in the Forth Sub Basin district." In BHS 11th National Hydrology symposium. British Hydrological Society, 2012. http://dx.doi.org/10.7558/bhs.2012.ns03.

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Ning, S. K., H. W. Chen, and Ni-Bin Chang. "System Analysis for Water Resources Management in Kao-Ping River Basin, Taiwan." In 29th Annual Water Resources Planning and Management Conference. Reston, VA: American Society of Civil Engineers, 1999. http://dx.doi.org/10.1061/40430(1999)170.

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Звіти організацій з теми "River basin planning"

1

McKay, S., and Byron Rupp. Preliminary scoping of watershed planning : Pamet River, Massachusetts. Engineer Research and Development Center (U.S.), September 2022. http://dx.doi.org/10.21079/11681/45566.

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The US Army Corps of Engineers (USACE), New England District (NAE) conducted a watershed study of the Pamet River basin in Truro, Massachusetts. The study broadly focused on basin planning with specific goals of establishing baseline hydrologic and ecological condition, identifying management opportunities, assessing the relative effects of management opportunities, and recommending alternative courses of action for the community. This technical note (TN) reviews a rapid reconnaissance effort to guide scoping for the broader watershed study related to problem identification, objective setting, management alternatives, and a potential decision framework.
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2

Saluja, Ridhi, and Thanapon Piman. The wetlands of the lower Songkhram River basin need collaborative conservation. Stockholm Environment Institute, August 2022. http://dx.doi.org/10.51414/sei2022.029.

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The wetlands of the lower Songkhram River basin are protected as a Ramsar site and a regional environmental asset, but they are under threat from numerous factors related to developmental activities. The lower Songkhram River is the last free-flowing tributary of the Mekong River and is a lifeline for over 14 000 households and a haven to many endemic biodiversity species. Local communities in the region have unique associations with the natural resources in the river basin, including the wetlands, and they perceive immense value in conserving these ecosystems. Natural resource policies lack specific guidelines and collaborative approaches for the protection, conservation and management of the wetland resources of the lower Songkhram River. The way forward should be led by a synchronized planning process, collaborative governance of the wetland resources, and empowerment of already existing local community groups.
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3

Shadurdyyev, G. Analysis of sets of factors affecting the variable flow of the Amu Darya River to create a seasonal prognostic model. Kazakh-German University, December 2022. http://dx.doi.org/10.29258/dkucrswp/2022/53-72.eng.

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The Amu Darya River is a transboundary river whose flow of the river in high-water years reaches up to 108 km3 and in low-water years up to 47 km3 and these are huge fluctuations in the water flow of the river for Tajikistan, Kyrgyzstan, Uzbekistan, Turkmenistan, and Afghanistan, that share water among themselves. The point to consider is that the downstream countries Turkmenistan and Uzbekistan (and possibly Afghanistan in the future) use a lot of water for irrigation, and therefore these countries are the ones most in need of an accurate forecast of the volume of water for the upcoming season. An accurate forecast of the volume of water on the seasonal scale is necessary for better planning of the structure of crops, and subsequently water use in the irrigation of crops. An acceptable solution to this challenge is the construction of an empirical time series model that will be used to predict the seasonal flows of the Amu Darya River to improve the planning and management of water resources in downstream countries. This article considers three important discharge time series in the larger Amu Darya Basin. These include the Kerki Gauge on the Amu Darya, Darband Gauge on Vaksh River and Khorog Gauge on Gunt River. Long-term time series from these stations are available for the study of the development and implementation of time-series based models for the prediction of discharge in the basin. At this stage, we attempt to demonstrate a proof-of-concept which can in a second step convince stakeholders to share such type of discharge data operationally for more effective water allocation between sectors and countries. All our work was carried out with the quantitative tools R/RStudio and QGIS. It can serve as a stepping stone for more complex forecasting models in the future.
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Gafurov, Z., and S. Eltazarov. Quantum geographic information system training and development of digital diagnostic atlas: intervention for analysis and planning of Murgab River Basin, Turkmenistan. [Final Project Report of the Transboundary Water Management in Central Asia]. International Water Management Institute (IWMI), 2017. http://dx.doi.org/10.5337/2017.223.

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5

Planning Atlas of the Lower Mekong River Basin. Vientiane, Lao PDR: Mekong River Commission Secretariat, December 2011. http://dx.doi.org/10.52107/mrc.ajggab.

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Анотація:
The Planning Atlas covers a wide range of land and water related information of the Mekong River Basin and explores the different themes a to consider how each might influence the choices that the MRC makes to promote and coordinate sustainable management and development of the Mekong River Basin.
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Mekong Basin Planning: The Story Behind the Basin Development Plan. Vientiane, Lao PDR: Mekong River Commission Secretariat, January 2013. http://dx.doi.org/10.52107/mrc.ajgsk5.

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This Story describes the Basin Development Plan (BDP) within the context of the history of the lower Mekong region and the history of river basin planning and development. An understanding of the past and the wider context will assist with the determination of future directions for the BDP.
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Fish Migrations of the Lower Mekong River Basin: Implications for Development, Planning and Environmental Management. Vientiane, Lao PDR: Mekong River Commission Secretariat, October 2002. http://dx.doi.org/10.52107/mrc.akbo9o.

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The report identifies some key features of the Mekong River ecosystem that are important for the maintenance of migratory fishes and their habitats. The report further discusses ways in which available information about migratory fishes can be incorporated in planning and environmental assessments.
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Fish Migrations of the Lower Mekong River Basin: Implications for Development, Planning and Environmental Management (Khmer). Vientiane, Lao PDR: Mekong River Commission Secretariat, October 2002. http://dx.doi.org/10.52107/mrc.akbo9k.

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Climate Change Analysis in the Lower River Mekong Basin: Review of Availability of Observed Meteorological Data. Vientiane, Lao PDR: Mekong River Commission Secretariat, October 2014. http://dx.doi.org/10.52107/mrc.ajgftn.

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Review of Climate Change Adaptation Methods and Tools. Vientiane, Lao PDR: Mekong River Commission Secretariat, December 2010. http://dx.doi.org/10.52107/mrc.ajhym7.

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The report provides an introduction to the theoretical landscape of planning adaptation to climate change and draws out key issues that are relevant to countries in the Lower Mekong River Basin (LMB) in the selection of approaches for adaptation planning.
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