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141.
Application of a GIS-based stream buffer generation model to environmental policy evaluation 总被引:3,自引:0,他引:3
Wei-Ning Xiang 《Environmental management》1993,17(6):817-827
In this article a GIS method is presented for riparian environmental buffer generation. It integrates a scientifically tested
buffer width delineation model into a GIS framework. Using the generally available data sets, it determines buffer widths
in terms of local physical conditions and expected effectiveness. Technical burdens of data management, computation, and result
presentation are handled by the GIS. The case study in which the method was used to evaluate the stream buffer regulations
in a North Carolina county demonstrates its capability as a decision support tool to facilitate environmental policy formulation
and evaluation, and environmental dispute resolution. 相似文献
142.
本文简要介绍地理信息系统GIS的发展概况、主要功能以及在国内外的应用现状.对现有的GIS软件技术加以改进,引进人工神经元网络和模糊综合评判技术,发展了一种智能型的GIS,在我国若干城市的抗震设防区划工作中应用,取得良好的效果。 相似文献
143.
中原输气信息系统的建立与应用 总被引:1,自引:0,他引:1
在Windows环境下,以Maplnfo(GIS)软件为主要支持工具,结合VisualBasic为中原输气公司开发的信息管理系统既可用于平时企业管理,也可用于抗震救灾,是企业管理极为有效的工具。 相似文献
144.
基于遥感与GIS的土地利用动态变化研究 总被引:31,自引:0,他引:31
土地是人类社会经济活动的载体;土地利用是指人类对作为生产生活资料的土地的利用方式和强度;而土地利用动态变化则反映了土地利用方式的发展变化趋势。土地利用动态变化在数量,方式,强度,结构和趋势等方面存在很大的差异。全面,客观地反映土地利用动态变化有利于正确认识当前土地利用中合理和不合理的利用方式,为制定长期,可持续发展的土地管理和土地规划提供依据。遥感技术提供巨大而丰富的信息源,GIS技术具有强大的数据处理,空间分析等功能,二者的结合有着传统方式无法比拟的优越性,具有周期短,效率高,费用低等特点,在土地利用变化监测中发挥着巨大的作用。制定详细的技术手段,对重庆市15年间的土地利用及其动态变化在时间序列和空间序列上加以分析,阐明这种变化的外在表象,即耕地,林地的减少和城镇用地的增加;同时分析这种变化的内在驱动力主要为自然环境(坡度,高程,土壤等)和人文要素(经济条件与人口压力等)。为国土资源的有效可持续利用提供决策依据。 相似文献
145.
红壤丘陵区土地利用变化对土壤质量影响 总被引:3,自引:0,他引:3
以鄂南红壤丘陵典型区的三个村为代表 ,应用地理信息系统对 1981和 1998年两个时期的土地利用变化和土壤质量进行对比研究 ,分析了土地利用变化对土壤质量的影响。结果表明 :研究区土地利用结构总体上具有农业型特点 ,17a间水田减少了 2 1% ;其余的利用方式则有不同幅度的增加 ,居民地、水域、林地、园地和旱地增加了 4 2 .2 %、99.6 %、8%、5 6 .8%和 8%。土壤质量有从优劣两端向中等靠拢的趋势 ,17a后 、 、 和 等地面积分别减少 18.6 %、12 .2 %、2 9.6 %和 2 5 % ; 等地增幅达 5 1.9%。土地利用方式及管理措施是影响土壤质量演变方向和强度的关键因子 ,园地和林地的土壤质量大多得到明显改善 ,水田的Δ SQI多数呈下降的趋势 ,旱地的土壤质量变化比较复杂 ,与土地利用结构相关。依此 ,本文探讨了定向培育土壤质量的途径 相似文献
146.
A GIS Model of Subsurface Water Potential for Aquatic Resource Inventory,Assessment, and Environmental Management 总被引:4,自引:0,他引:4
Biological, chemical, and physical attributes of aquatic ecosystems are often strongly influenced by groundwater sources. Nonetheless, widespread access to predictions of subsurface contributions to rivers, lakes, and wetlands at a scale useful to environmental managers is generally lacking. In this paper, we describe a neighborhood analysis approach for estimating topographic constraints on spatial patterns of recharge and discharge and discuss how this index has proven useful in research, management, and conservation contexts. The Michigan Rivers Inventory subsurface flux model (MRI-DARCY) used digital elevation and hydraulic conductivity inferred from mapped surficial geology to estimate spatial patterns of hydraulic potential. Model predictions were calculated in units of specific discharge (meters per day) for a 30-m2-cell raster map and interpreted as an index of potential subsurface water flux (shallow groundwater and event through-flow). The model was evaluated by comparison with measurements of groundwater-related attributes at watershed, stream segment, and local spatial scales throughout Lower Michigan (USA). Map-based predictions using MRI-DARCY accounted for 85% of the observed variation in base flow from 128 USGS gauges, 69% of the observed variation in discharge accrual from 48 river segments, and 29% of the residual variation in local groundwater flux from 33 locations as measured by hyporheic temperature profiles after factoring out the effects of climate. Although it does not incorporate any information about the actual water table surface, by quantifying spatial variation of key constraints on groundwater-related attributes, the model provides strata for more intensive study, as well as a useful spatial tool for regional and local conservation planning, fisheries management, wetland characterization, and stream assessment. 相似文献
147.
A GIS/Simulation Framework for Assessing Change in Water Yield over Large Spatial Scales 总被引:1,自引:0,他引:1
Recent legislation to initiate vegetation management in the Central Sierra hydrologic region of California includes a focus
on corresponding changes in water yield. This served as the impetus for developing a combined geographic information system
(GIS) and simulation assessment framework. Using the existing vegetation density condition, together with proposed rules for
thinning to reduce fire risk, a set of simulation model inputs were generated for examining the impact of the thinning scenario
on water yield. The approach allows results to be expressed as the mean and standard deviation of change in water yield for
each 1-km2 map cell that is thinned. Values for groups of cells are aggregated for typical watershed units using area-weighted averaging.
Wet, dry, and average precipitation years were simulated over a large region. Where snow plays an important role in hydrologic
processes, the simulated change in water yield was less than 0.5% of expected annual runoff for a typical watershed. Such
small changes would be undetectable in the field using conventional stream flow analysis. These results suggest that use of
water yield increases to help justify forest-thinning activities or offset their cost will be difficult. 相似文献
148.
149.
150.
We use spatial data representing transportation networks, elevation, stand height, and recreation use to construct and compare
models of recreation use patterns and visibility in a forest. The recreation use pattern model depicts use frequencies along
travel corridors. The visibility model quantifies visibility for all forest areas. We find that the models provide different
but complementary types of information. Forest managers who are involved in scheduling harvest operations and want to address
the visual concerns of forest visitors may benefit most from the visibility model. Managers who wish to know more about travel
patterns or to reroute forest visitors affected by operations may benefit from the use pattern model. A combination of the
two models has the highest potential for providing planning assistance in multiple-use forests. Both models may be able to
enhance visual resource management (VRM) systems already in use by providing spatially explicit recreation use and visibility
data. 相似文献