981 resultados para Dandenong Ranges National Park


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アフリカ熱帯雨林とそこにすむ野生動物の保全は喫緊の国際課題であるが、政情不安や経済の停滞にくわえ、地域住民との軋轢が保全政策の大きな障害となっている。有効な保全体制を構築するためには、地域の社会的文脈をふまえ、地域コミュニティごとに固有の特徴と地域住民の多様性を理解することが重要である。そこで筆者は、ガボンの国立公園を対象に、地域コミュニティの歴史的・文化的背景および住民生活の実態について調べた。その結果、(1)地域コミュニティは、その歴史的・文化的背景により、出自や経歴が多様な人々から構成される流動的なものであること、(2)住民生活は、伝統的な自然資源利用を基盤としながらも、伐採事業や保全事業に強く影響を受けていることが明らかになった。一枚岩的な地域住民を前提とした「住民参加」概念を外部から当てはめるのではなく、地域社会の実態に即して内部からコミュニティを抽出し、それをもとに保全と開発事業を進める必要があるといえる。

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Tablas de Daimiel National Park is located in the Upper Guadiana Basin and represents one of the largest and most important wetlands in Europe. The long term ecological integrity of this wetland is inherently associated with the maintenance of a shallow groundwater table, namely the Western Mancha aquifer (WMA) or Aquifer 23. The intensive use of groundwater, mainly for irrigation, has led over the last decades to deep socio‐economic changes. Such intensive use has also lowered the water table of Aquifer 23, drastically reducing the flooded area of the wetland and threatening its ecological integrity. A number of plans and measures have been developed and implemented since the declaration of overexploitation of Aquifer 23 in the year 1987. The most recent one is the Special Plan for the Upper Guadiana (SPUG), approved in 2008. This Plan is the main measure to comply with achieving the objective of good quantitative and qualitative status required under the Water Framework Directive (2000). This paper offers a new type of integrated analysis which allows assessing under a common lens the physical, economic and social dimensions of groundwater use in the area. The first objective is to calculate the groundwater footprint of agricultural production in the Upper Guadiana basin and its evolution during 2000‐2008. For this purpose, we have applied the Extended Water Footprint (EWF) methodology ‐a novel approach based on the classical Water Footprint (WF) approach‐ that includes an assessment of the water productivity from an economic and social perspective. Compared to the classical WF, the EWF allows for a more complete overview of the sector, providing new insights for policy decisions (e.g. to define options and possibilities on water re‐allocation in order to achieve both better ecosystem conservation and social equity). The second objective is to use the EWF to compare the existing authorized and non‐authorized or illegal use of water. This allows us to discuss current initiatives by public authorities in relation to the existing frame of water rights

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Las Angustias torrent is an ungauged stream located in the Caldera de Taburiente National Park (Canary Islands), where frequent and intense flood events occur (even causing fatalities, such as in November 2001). The aim of this research is to analyse the flood hazard in one of the most visited areas of this protected area. To carry out this objective, during two dendrogeomorphological campaigns, all pine trees located on the stream bed and banks showing external evidence of flash flood damage were sampled. In addition, a detailed topographical survey using GPS and total station allowed us to obtain the inputs for hydraulic modelling. In the preliminary results, two flood events have been identified (1967-1968 and 1999- 2000), and evidence of other dates has been observed (1976, 1983, 1993 and 2001). Magnitude reconstruction of these events will improve flood hazard and risk analyses and will be useful for National Park managers.

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The Partido Stream is a small torrential course that flows into the marsh of the Doñana National Park, an area that was declared a World Heritage Site in 1994. Before 1981, floods occurred, and the stream overflowed onto a floodplain. As an old alluvial fan, the floodplain has its singular orography and functionality. Fromthe floodplain, several drainage channels, locally called caño, discharged into themarsh. The Partido Streamhad themorphology of a caño and covered approximately 8 km from the old fan to the marsh. The stream was straightened and channelised in 1981 to cultivate the old fan. This resulted in floods that were concentrated between the banks in the following years, which caused the depth of water and the shear stress to increase, thus, scouring the river bed and river banks. In this case, the eroded materials were carried towards the marsh where a new alluvial fan evolved. Control measures on the old fan were implemented in 2006 to stop the development of the new alluvial fan downstream over the marsh. Thus, the stream would partially recover its original behaviour that it had before channelisation, moving forwards in a new, balanced state. The present study describes the geomorphological evolution that channelisation has caused since 1981 and the later slow process of recovery of the original hydraulic-sedimentation regime since 2006. Additionally, it deepens the understanding of the original hydraulic behaviour of the stream, combining field data and 2D simulations.