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Floodplain vegetation responses to flood regime in the seasonal Okavango Delta, Botswana.

机译:博茨瓦纳季节性奥卡万戈三角洲的洪泛区植被对洪水制度的响应。

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摘要

As the global anthropogenic footprint grows, its effect is perhaps nowhere as profound as on the water cycle. Multiple influences act to change the variability of hydrological regimes: increasing rates of change in climate, a warmer, more carbon-rich biosphere, changes in land cover, and manipulations of river systems for water and energy supply. This increased variability is manifested as change in ecosystem services. Wetlands, which provide many such services, are particularly susceptible to changes in hydrology, and if we are to continue deriving ecosystem services from them, we need to understand the potential effects of hydrological change.;This dissertation describes the development of tools for investigating the effects of hydrological change on floodplain plant communities in the Okavango Delta, a flood-pulsed wetland at the terminus of a river basin shared by three countries. A hierarchical vegetation classification system for floodplains in the seasonally-pulsed Boro and Xudum distributaries was developed based on vegetation survey data from 30 floodplains. Analysis of two time-series of satellite imagery was used to derive flooding history in terms of extent, annual frequency and monthly duration. Correlations were established between hydroperiod parameters and plant species composition; the predictive capacity of remotely-sensed hydroperiod was tested using a 25-site calibration data set and a 5 site validation set. Species assemblages defined through cluster analysis reflect the influence of hydroperiod in 2 distinct groups: (i) assemblages of regularly flooded areas, in which species composition is driven by flood duration; (ii) assemblages of infrequently flooded areas, in which species composition follows a typical dry-land succession from herbaceous to woody species between flood pulses. Finally, floodplain classes and species hydroperiod response relationships were used to construct a multi-species distribution models as a layer for a spatial hydrological model.;In the semi-arid environment of the Delta, hydroperiod is clearly a major determinant of floodplain plant ecology. The tools outlined here provide both a simple system for monitoring of floodplain status and trends through time, and a system for testing scenarios of future hydrological change and its potential effects on species distributions. Temporal testing of the models, to improve confidence in their ability to predict species distribution change, and extension of the classification system to include assemblages of perennially inundated floodplains are needed. Better knowledge of species autecology would improve the interpretation of species distributions and consequently the modeling. (Full text of this dissertation may be available via the University of Florida Libraries web site. Please check http://www.uflib.ufl.edu/etd.html)
机译:随着全球人为足迹的增加,其影响可能远不及水循环。多种影响作用改变了水文状况的可变性:气候变化速率增加,碳圈更温暖,更温暖的生物圈,土地覆被变化以及对水和能源供应的河流系统的操纵。这种增加的可变性表现为生态系统服务的变化。提供许多此类服务的湿地特别容易受到水文变化的影响,如果我们要继续从中获取生态系统服务,就需要了解水文变化的潜在影响。水文变化对Okavango三角洲泛滥平原植物群落的影响,Okavango三角洲是三个国家共享的流域终点处的洪水脉冲湿地。基于来自30个洪泛区的植被调查数据,开发了季节性脉冲Boro和Xudum分流区内洪泛区的分级植被分类系统。通过对卫星图像的两个时间序列进行分析,可以得出洪水泛滥的历史,程度,年频率和每月持续时间。建立了水周期参数与植物物种组成之间的相关性;使用25个站点的校准数据集和5个站点的验证集测试了遥感水文周期的预测能力。通过聚类分析定义的物种组合反映了水周期在两个不同组中的影响:(i)常规洪水区域的组合,其中物种组成受洪水持续时间的驱动; (ii)不经常发生水灾的地区,其中物种组成遵循典型的旱地从洪涝脉冲之间的草本植物到木本植物的演替过程。最后,洪泛区类别和物种水周期响应关系被用来构建多物种分布模型,作为空间水文模型的一层。在三角洲的半干旱环境中,水周期显然是洪泛区植物生态学的主要决定因素。这里概述的工具既提供了一个简单的系统来监视洪泛区的状态和时间趋势,又提供了一个测试未来水文变化情景及其对物种分布的潜在影响的系统。需要对模型进行时间测试,以提高对它们预测物种分布变化的能力的信心,并需要扩展分类系统以包括多年生泛滥的泛滥平原的集合。对物种自律学的更好了解将改善对物种分布的解释,从而改善建模。 (可通过佛罗里达大学图书馆网站获得本文的全文。请检查http://www.uflib.ufl.edu/etd.html)

著录项

  • 作者

    Murray-Hudson, Michael.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Biology Ecology.;Hydrology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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