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151.
Sonia Binte Murshed Md. Rezaur Rahman Jagath J. Kaluarachchi 《Journal of the American Water Resources Association》2019,55(4):800-823
The Ganges Delta in Bangladesh is an example of water‐related catastrophes in a major rural river basin where limitations in quantity, quality, and timing of available water are producing disastrous conditions. Water availability limitations are modifying the hydrologic characteristics especially when water allocation is controlled from the upstream Farakka Barrage. This study presents the changes and consequences in the hydrologic regime due to climate‐ and human‐induced stresses. Flow duration curves (FDCs), rainfall elasticity, and temperature sensitivity were used to assess the pre‐ and post‐barrage water flow patterns. Hydrologic and climate indices were computed to provide insight on hydro‐climatic variability and trend. Significant increases in temperature, evapotranspiration, hot days, heating, and cooling degree days indicate the region is heading toward a warmer climate. Moreover, increase in high‐intensity rainfall of short duration is making the region prone to extreme floods. FDCs depict a large reduction in river flows between pre‐ and post‐barrage periods, resulting in lower water storage capacity. The reduction in freshwater flow increased the extent and intensity of salinity intrusion. This freshwater scarcity is reducing livelihood options considerably and indirectly forcing population migration from the delta region. Understanding the causes and directions of hydrologic changes is essential to formulate improve water resources management in the region. 相似文献
152.
Quang A. Phung Allen L. Thompson Claire Baffaut Christine Costello E. John Sadler Bohumil M. Svoma Anthony Lupo Sagar Gautam 《Journal of the American Water Resources Association》2019,55(5):1196-1215
Anticipating changes in hydrologic variables is essential for making socioeconomic water resource decisions. This study aims to assess the potential impact of land use and climate change on the hydrologic processes of a primarily rain‐fed, agriculturally based watershed in Missouri. A detailed evaluation was performed using the Soil and Water Assessment Tool for the near future (2020–2039) and mid‐century (2040–2059). Land use scenarios were mapped using the Conversion of Land Use and its Effects model. Ensemble results, based on 19 climate models, indicated a temperature increase of about 1.0°C in near future and 2.0°C in mid‐century. Combined climate and land use change scenarios showed distinct annual and seasonal hydrologic variations. Annual precipitation was projected to increase from 6% to 7%, which resulted in 14% more spring days with soil water content equal to or exceeding field capacity in mid‐century. However, summer precipitation was projected to decrease, a critical factor for crop growth. Higher temperatures led to increased potential evapotranspiration during the growing season. Combined with changes in precipitation patterns, this resulted in an increased need for irrigation by 38 mm representing a 10% increase in total irrigation water use. Analysis from multiple land use scenarios indicated converting agriculture to forest land can potentially mitigate the effects of climate change on streamflow, thus ensuring future water availability. 相似文献
153.
The potential impacts driven by climate variability and urbanization in the Boise River Watershed (BRW), located in southwestern Idaho, are evaluated. The outcomes from Global Circulation Models (GCMs) and land use and land cover (LULC) analysis have been incorporated into a hydrological and environmental modeling framework to characterize how climate variability and urbanization can affect the local hydrology and environment at the BRW. The combined impacts of future climate and LULC change are also evaluated relative to the historical baseline conditions. For modeling exercises, Hydrological Simulation Program‐Fortran (HSPF) is used in parallel computing and statistical techniques, including spatial downscaling and bias correlation, are employed to evaluate climate consequences derived from GCMs as well. The implications of climate variability and land use change driven by urbanization are then observed to evaluate how these overall global challenges can affect water quantity and quality conditions at the BRW. The results show the combined impacts of both climate change and urbanization can lead to more seasonal variability of streamflow (from ?27.5% to 12.5%) and water quality, including sediment (from ?36.5% to 49.3%), nitrogen (from ?24% to 124.2%), and phosphorus (from ?13.3% to 21.2%) during summer and early fall over the next several decades. 相似文献
154.
An investigation of double-glass-covered trapezoidal salt-gradient solar pond coupled with reflector
G. S. Dhindsa 《International Journal of Green Energy》2018,15(2):57-68
In the present study, a trapezoidal salt-gradient solar pond (TSGSP) has been investigated experimentally. The top surface of solar pond has been covered with double-glass cover in order to reduce the evaporative and convective losses from the top. This results in increase of temperature even in the top zone of the solar pond and leads to more volume utilization for heat storage in the pond. A reflector made of aluminium sheet has been used to enhance the solar intensity on the solar pond during sunny hours. A procedure, to determine optimum tilt angle of reflector in order to utilize maximum amount of solar energy at noon, has been proposed. The use of reflector enhanced the average solar intensity on the top surface of solar pond by 22%. The maximum average temperature of trapezoidal solar pond with glass cover and reflector has been observed to be 70.5°C. The thermal efficiencies of LCZ, NCZ and UCZ for the trapezoidal solar pond with double-glass cover and reflector have been estimated to be 32.73%, 23.22% and 5.30%, respectively. In addition to experimental investigation, the sunny area ratio of TSGSP has been theoretically computed and compared with the cuboid solar pond having same top surface area and depth in order to see the effect of pond shape on sunny area ratio. The average yearly sunny area ratio of trapezoidal solar pond has been determined to be 11% higher than that of cuboid one. 相似文献
155.
156.
Use of Landsat Thematic Mapper Data to Assess Seasonal Rangeland Changes in the Southeast Kalahari, Botswana 总被引:2,自引:0,他引:2
S. Ringrose S. Musisi-Nkambwe T. Coleman D. Nellis C. Bussing 《Environmental management》1999,23(1):125-138
/ Management problems arise in semiarid rangeland that are characterized by marked wet and dry seasons because of forage deficiencies in the dry season. These natural vegetation rangelands can sustain livestock all year long when forage and senesced grass are available into the dry season. Seasonal range condition data are required to provide a basis for pasture management to help locate dry season cover and thereby minimize overstocking and degradation. The generation of seasonal data using Thematic Mapper (TM) imagery was undertaken to assess changes in natural vegetation cover in the southern Botswana Kalahari. Visual analysis of spectral reflectance curves, the development of spectral separability indexes, and conventional classification analysis techniques were used to identify and differentiate rangeland features. Results from reflectance curves indicated that most rangeland cover types could be preferentially distinguished using mainly wet season data, especially on the longer TM wavebands, and that range feature differentiation was more problematic on darker soils than on lighter soils. Spectral separability indexes (SSIs) confirmed that range feature separation varied considerably as a function of waveband and was more effective in the wet than the dry season. The SSIs also showed that range feature differentiation in both seasons was most effective using a combination of the chlorophyll absorpance band (TM3) and two mid-infrared bands (TM5 and TM7). Wet season data were more effectively classified in terms of range features than dry season data although some class similarity was inferred across the two classified data sets. The work shows that overall trends may be generated by comparing seasonal data sets, thereby providing an overall basis for dry season decision making. However, particular problems arise within the dry season data sets probably because of spectral similarities between shadow and darkened vegetation cover, thereby implying that further work is needed. KEY WORDS: Semiarid rangelands; Botswana; Kalahari; Spectral differentiation; Seasonal change; Darkened vegetation cover 相似文献
157.
硬化路面与温度场响应模型研究 总被引:1,自引:0,他引:1
硬化路面是城市热环境效应影响因素中较为重要的一个因素.笔者在研究了深圳市城市热效应的基础上,建立了一个三维动态模型对硬化路面条件下的温度场进行模拟.通过将模型的计算结果和在深圳的实测结果进行对比,发现2条曲线吻合较好,模拟结果十分接近实测结果.模型模拟结果还证明了硬化路面由于铺筑的材料具有较大蓄热、导热的能力,而且透水性差,因此温度升降都很快,对城市的热效应贡献大;城市绿化隔离带对城市温度场具有很好的调节作用,因此合理配置城市中的绿地对城市区域微热环境的改善能够起到很好的作用. 相似文献
158.
Dicky Simorangkir 《Mitigation and Adaptation Strategies for Global Change》2007,12(1):147-164
During the last two decades Indonesia has experienced immense forest and land fires. Often these fires are associated with
extended drought and widespread use of fire to clear previously logged forest and other degraded land in preparation for oil
palm, rubber, or pulpwood plantations. There are many reasons for the use of fire in land clearing activities, but probably
the most important one is economics. There is still acceptance that fire is the cheapest, fastest, and most effective land
clearing method with the added benefit of providing nutrients from ash residues.
This paper provides a review of existing information on the financial costs and benefits of using fire for land clearing in
agriculture and forestry plantations as compared with zero-burning techniques. The findings indicate that the economic advantage
of fire use varies widely and depends on many factors, such as soil fertility, vegetation density, labour cost, equipment
and training costs, and the costs of fire management. For large-scale land clearing, the financial analysis of the costs and
benefits of fire versus zero-burning shows that when applied to low-volume vegetation, zero-burning methods are not more expensive
than burning – and may actually be more cost effective in the long term. This is the case for clearing oil palm or rubber
plantations for replanting, low secondary vegetation, and heavily logged-over forest. Under high-volume forest conditions,
burning remains less expensive because it is more difficult, time consuming, and costly to dispose of high volumes of piled
wood mechanically. 相似文献
159.
目的 研究药型罩结构参数对所形成的聚能射流在水中运动的影响,改进水中聚能射流的运动特性。方法 采用多物质单元ALE法就锥形罩射流对水介质的侵彻进行数值模拟,分析锥形装药结构中药型罩锥角和厚度对所形成的聚能射流侵彻水时运动参数的影响。结果 锥形罩锥角大小及药型罩厚度对聚能射流在水中的形状、射流速度、加速度等有着明显的影响。侵彻体进入水中10 cm后,药型罩的锥角从30°增加到150°的过程中,剩余速度先增大、后减小,在90°时达到最高。药型罩厚度为1.5~4mm时,剩余速度变化起伏小;厚度为4~6 mm时,剩余速度开始大幅下降。结论 当锥角为90°时,罩厚为4 mm的药型罩所形成的射流在水中表现最好,形成的射流侵彻深度最长,侵彻水介质10 cm后的剩余速度最大,存速能力最强。 相似文献
160.
Elias Getahun Laura L. Keefer 《Journal of the American Water Resources Association》2023,59(3):510-522
A nutrient loss reduction strategy is necessary to guide the efforts of improving water quality downstream of an agricultural watershed. In this study, the effectiveness of two winter cover crops, namely cereal rye and annual ryegrass, is explored as a loss reduction strategy in a watershed that ultimately drains into a water supply reservoir. Using a coupled optimization-watershed model, optimal placements of the cover crops were identified that would result in the tradeoffs between nitrate-N losses reduction and adoption levels. Analysis of the 10%, 25%, 50%, and 75% adoption levels extracted from the optimal tradeoffs showed that the cover crop placements would provide annual nitrate-N loss reductions of 3.0%–3.7%, 7.8%–8.8%, 15%–17.5%, and 20.9%–24.3%, respectively. In addition, for the same adoption levels (i.e., 10%–75%), sediment (1.8%–17.7%), and total phosphorus losses (0.8%–8.6%) could be achieved. Results also indicate that implementing each cover crop on all croplands of the watershed could cause annual water yield reduction of at least 4.8%, with greater than 28% in the months of October and November. This could potentially be detrimental to the storage volume of the downstream reservoir, especially in drought years, if cover crops are adopted in most of the reservoir's drainage area. Evaluating water yield impacts, particularly in periods of low flows, is thus critical if cover crops are to be considered as best management practices in water supply watersheds. 相似文献