首页> 外文学位 >A GIS-based landscape analysis wetland function model for wetland restoration and mitigation banking.
【24h】

A GIS-based landscape analysis wetland function model for wetland restoration and mitigation banking.

机译:基于GIS的景观分析湿地功能模型,用于湿地恢复和减缓银行业务。

获取原文
获取原文并翻译 | 示例

摘要

Wetland management issues are related to regulatory compliance or planning and protection activities. A wetland evaluating system with suitable modules to address wetland function, wetland banking and wetland protection to perform wetland regulatory activities is required. This research, conducted in Prince Georges County, Maryland, provides county personnel a very useful GIS-based wetland analysis tool to perform wetland regulatory activities.; This research focuses on developing a Landscape Analysis of Wetland Function (LAWF) model for use within a GIS application. Twenty-seven wetland-related variables are defined and analyzed in this research and a ranking system is established. Five different wetland functions are developed based on a different group of wetland variables and they are represented by five Functional Capacity Indexes (FCI 1 through FCI 5). A distribution map of these FCIs can be generated in a specific area for further evaluation. The LAWF method incorporates the evaluation of wetland functions compared to a reference standard of wetlands within a particular type to determine the functional condition of the assessed wetland. A wetland analysis result is a quantifiable score for each function as well as the aggregate of all the functions examined. This method makes comparing the functions of separate wetland areas possible by calculating their different Functional Capacity Unit (FCU), which is FCI multiplied by the wetland area. Using FCIs and FCUs can also eliminate the possible errors arising from using any single evaluating factor. A selection of wetlands that have FCIs within the low 25th percentile of all the wetlands in a particular watershed can be evaluated with field assessment that provides additional data needed for final site selection. An example of using the model developed shows that in the Western Branch sub-watershed, when all five FCI distribution maps are overlaid, more than 39% of the wetland polygons are overlapped. These wetland candidate polygons are most likely good mitigation banking sites. This process could be repeated for each function, varying the prioritization arrangement depending on the needs and goals of the proposed acquisition. The major contributions of LAWF can be summarized as: (1) Developed a systematic wetland assessment functions and variables. (2) Capable of generating FCI to make individual wetland comparison possible. (3) FCI can be used to perform mitigation banking activities. (4) FCU can be derived from FCI to determine the amount of wetland function lost, the residual function and the amount of function needed to be restored. (5) Customization to meet the program, or task order, requirements. (6) Reorganization to make the functional analysis conducive to a GIS environment, and the ARCVIEW standard module is extended.
机译:湿地管理问题与法规遵从性或规划和保护活动有关。需要具有适当模块的湿地评估系统,以处理湿地功能,湿地库和湿地保护,以执行湿地监管活动。在马里兰州乔治王子县进行的这项研究为县工作人员提供了一个非常有用的基于GIS的湿地分析工具,可以进行湿地监管活动。这项研究的重点是开发用于GIS应用程序的湿地功能景观分析(LAWF)模型。在这项研究中定义和分析了27个与湿地相关的变量,并建立了排名系统。根据一组不同的湿地变量开发了五种不同的湿地功能,它们由五个功能能力指数(FCI 1至FCI 5)表示。可以在特定区域中生成这些FCI的分布图,以进行进一步评估。 LAWF方法结合了对湿地功能的评估与特定类型内的湿地参考标准的比较,以确定评估湿地的功能状况。湿地分析结果是每个功能以及所有检查功能的总和的可量化分数。这种方法可以通过计算不同的湿地面积(FCU)乘以湿地面积来比较不同湿地地区的功能。使用FCI和FCU还可以消除由于使用任何单个评估因素而可能引起的错误。可以通过现场评估来评估选择的FCI在特定流域中所有湿地的低25%百分数内的湿地,该评估可提供最终选址所需的其他数据。使用开发的模型的示例显示,在Western Branch子流域中,当所有五个FCI分布图都被覆盖时,超过39%的湿地多边形重叠。这些湿地候选多边形很可能是良好的减灾银行场所。可以针对每个功能重复此过程,并根据拟议收购的需求和目标更改优先级安排。 LAWF的主要贡献可以归纳为:(1)建立了系统的湿地评估功能和变量。 (2)能够生成FCI,以使各个湿地的比较成为可能。 (3)FCI可用于执行缓解银行业务。 (4)可以从FCI得出FCU,以确定损失的湿地功能量,剩余功能和需要恢复的功能量。 (5)定制以满足程序或任务顺序的要求。 (6)进行重组以使功能分析有利于GIS环境,并扩展了ARCVIEW标准模块。

著录项

  • 作者

    Li, Qin.;

  • 作者单位

    Indiana State University.;

  • 授予单位 Indiana State University.;
  • 学科 Physical Geography.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然地理学;环境科学基础理论;
  • 关键词

  • 入库时间 2022-08-17 11:45:06

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号