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221.
为了评价洪水灾害区域脆弱性,提出了应用改进DEA交叉效率模型和熵权法相结合的洪水灾害区域脆弱性评价方法。首先,在洪灾形成理论的基础上,构建洪灾区域脆弱性指标体系和评价标准;其次,应用改进DEA交叉效率模型计算不同区域的成灾效率,利用熵权法计算权重集结全局成灾效率。根据成灾效率的实际意义分析不同区域脆弱性的相对大小。最后,选取我国各省份洪灾作为实证分析的研究对象。研究结果表明:该方法能够准确评价区域洪灾脆弱性程度,评价结果与实际情况一致,具有较好的适用性。 相似文献
222.
为了研究逃生者在疏散标识引导下的火灾疏散效率与逃生认知应对规律,基于实地调研与问卷调查结果,采用Anylogic软件,对常规标识与增设标识2种教学楼火灾疏散情境进行仿真模拟。研究结果表明:在疏散过程中,增设标识能使各疏散出口的疏散时间相对持平,避免了常规疏散中通道过早闲置的现象;人流在一层教学楼的平均疏散时长缩短了约10%,显著缩短了整栋教学楼的疏散时间。据此火灾标识疏散仿真过程与人的认知反应提出了火灾疏散与标识认知应对规律模型。 相似文献
223.
为研究地铁网络化运营枢纽车站火灾烟气扩散特征和防排烟技术,根据工程资料和标准规范对典型多线换乘车站进行1∶10火灾实验模型设计,并依据设计方案完成车站模型主体结构和通风排烟系统的搭建,同时在各个防烟分区设计安装温度、流速、烟气浓度和热辐射测量装置,可实现对“T”形、“十”形和“L”形换乘等不同换乘形式车站的火灾场景模拟和危险参数测量。研究结果表明:该模型装置能够开展一系列针对不同换乘形式和通风模式的火灾实验,对于全面揭示大型换乘车站火灾烟气运动规律、验证并优化火灾防排烟设计方法、支撑复杂结构枢纽车站火灾烟气控制技术具有重要意义。 相似文献
224.
黑藻对铅离子的生物吸附 总被引:1,自引:0,他引:1
研究了黑藻对Pb^2+的生物吸附作用,考察了溶液pH、Pb^2+初始质量浓度、黑藻加入量和吸附时间对吸附效果的影响。实验结果表明,溶液pH在2.5~5.0时吸附效果最好,吸附20min基本达到平衡。在溶液pH为4.0、黑藻加入量为2g/L、吸附时间为60min、Pb^2+初始质量浓度为100mg/L的条件下,黑藻对Pb^2+的吸附量为47.5mg/g。通过元素分析和等温吸附模型对黑藻吸附Pb^2+的机理进行了研究,发现黑藻吸附Pb“是阳离子交换过程,吸附符合Langmuir、Freundlich和D—R等温吸附模型。考察了Cd^2+、Cu^2+和Ni^2+对黑藻吸附Pb^2+的影响,结果表明,Cd^2+、Cu^2+和Ni^2+的存在不干扰黑藻对Pb^2+的吸附。 相似文献
225.
论述了中国燃煤工业锅炉SO2污染防治技术的选择及评价,其中主要包括:《中国燃煤工业锅炉SO2污染综合防治对策》的产生、主要内容、特点、选择、评价及其实施的意义。 相似文献
226.
227.
Mark C. Stone Rollin H. Hotchkiss Carter M. Hubbard Thomas A. Fontaine Linda O. Mearns Jeff G. Arnold 《Journal of the American Water Resources Association》2001,37(5):1119-1129
ABSTRACT: Water from the Missouri River Basin is used for multiple purposes. The climatic change of doubling the atmospheric carbon dioxide may produce dramatic water yield changes across the basin. Estimated changes in basin water yield from doubled CO2 climate were simulated using a Regional Climate Model (RegCM) and a physically based rainfall‐runoff model. RegCM output from a five‐year, equilibrium climate simulation at twice present CO2 levels was compared to a similar present‐day climate run to extract monthly changes in meteorologic variables needed by the hydrologic model. These changes, simulated on a 50‐km grid, were matched at a commensurate scale to the 310 subbasin in the rainfall‐runoff model climate change impact analysis. The Soil and Water Assessment Tool (SWAT) rainfall‐runoff model was used in this study. The climate changes were applied to the 1965 to 1989 historic period. Overall water yield at the mouth of the Basin decreased by 10 to 20 percent during spring and summer months, but increased during fall and winter. Yields generally decreased in the southern portions of the basin but increased in the northern reaches. Northern subbasin yields increased up to 80 percent: equivalent to 1.3 cm of runoff on an annual basis. 相似文献
228.
Development and Adoption of a Simple Nonpoint Source Pollution Model for Port Phillip Bay,Australia 总被引:1,自引:0,他引:1
New computing tools and approaches allow tailored development of software to meet the needs of environmental managers. The processes required for such tailoring fit well with adaptive management concepts where, as knowledge and system understanding develop among managers, the software can be developed or replaced to match. This paper reports on development and adoption of a simple nonpoint source pollution modeling tool, including technical aspects of data support for modeling and social aspects of software design. The software, named FILTER, used a unit load model to generate expected pollutant loads from subcatchments of Port Phillip Bay, Australia. Monitoring data were used for calibration to modify the delivery of generated pollutants to receiving waters. Spatial, tabular, and charting software components were used to provide alternative forms of output visualization. FILTER was developed using a process that resulted in manager-stakeholders taking responsibility for setting of model parameter values and operation of the user interface, thereby encouraging uptake. The inclusive development process, tailoring of the software to manager needs and styles of usage, and matching of model complexity to data and knowledge, resulted in a successful application that has become the current agreed system representation among disparate stakeholder organizations. 相似文献
229.
一个研究街道峡谷流场及浓度场特征的三维数值模式 总被引:4,自引:0,他引:4
目前,研究街道峡谷内流场及机动车排放污染物的扩散行为特征所采用的主要方法为:采用野外测试法和物理模拟法,而采用三维数值模拟方法研究此问题的工作很少。本文创建了一个研究微尺度街道峡谷内流场及机动车排放污染物扩散特征的三维数值模式,即首次采用伪不定常方法,利用K——E闭合方案,建立了一个模拟城市街道峡谷内流场及污染物扩散特征与街道峡谷风场、街道几何结构及两侧建筑物高度对称性之间的复杂关系的三维数值模式。经过与实际监测资料及风洞实验对比,结果表明此三维模式具有较好的模拟精度,能够很好模拟峡谷内的风场及街谷几何结构对街道峡谷内流场及浓度场特征的影响,有很强的实用性。 相似文献
230.
Vellidis G Smith MC Leibowitz SG Ainslie WB Pruitt BA 《Environmental management》2003,31(2):0301-0312
In a climate of limited resources, it is often necessary to prioritize restoration efforts geographically. The synoptic approach
is an ecologically based tool for geographic prioritization of wetland protection and restoration efforts. The approach was
specifically designed to incorporate best professional judgment in cases where information and resources are otherwise limited.
Synoptic assessments calculate indices for functional criteria in subunits (watersheds, counties, etc.) of a region and then
rank the subunits. Ranks can be visualized in region-scale maps which enable managers to identify areas where efforts optimize
functional performance on a regional scale. In this paper, we develop a conceptual model for prioritizing watersheds whose
wetlands can be restored to reduce total sediment yield at the watershed outlet. The conceptual model is designed to rank
watersheds but not individual wetlands within a watershed. The synoptic approach is valid for applying the sediment yield
reduction model because there is high demand for prioritizing disturbed wetlands for restoration, but there is limited, quantitative,
accurate information available with which to make decisions. Furthermore, the cost of creating a comprehensive database is
prohibitively high. Finally, because the model will be used for planning purposes, and, specifically, for prioritizing based
on multiple decisions rather than optimizing a single decision, the consequence of prioritization errors is low. Model results
cannot be treated as scientific findings. The conclusions of an assessment are based on judgement, but this judgement is guided
by scientific principles and a general understanding of relevant ecological processes. The conceptual model was developed
as the first step towards prioritizing of wetland restoration for sediment yield reduction in US EPA Region 4. 相似文献