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黄淮海平原冬小麦最大可能蒸散的估算   总被引:1,自引:1,他引:0       下载免费PDF全文
作物最大可能蒸散考虑了作物及当地地表状况,为当地地表实际覆盖情况下实际蒸散的理论上限值,能客观分析作物对水分的需求程度和农业干旱状况。基于遥感(叶面积指数和地表反照率)数据和逐日气象数据,利用Penman-Monteith公式,计算黄淮海平原小麦种植区27个气象站冬小麦生育期2000-2015年逐日蒸散,提取得到冬小麦生育期逐日最大可能蒸散数据集,并分析其时空变化特征及成因。结果表明:与联合国粮农组织(FAO)单作物系数法计算的最大可能蒸散Ek对比,区域平均最大可能蒸散Ec的时间变化趋势与Ek一致,空间分布上Ec符合客观实际。黄淮海平原冬小麦全生育期、越冬期和返青-拔节期Ec均呈北低南高的分布特征,日平均值分别为1.99 mm,0.44 mm和2.75 mm;其余3个生育期(越冬前、抽穗期、乳熟-成熟期)在空间分布上差异不大,日平均值分别为1.23 mm,4.71 mm和3.74 mm。冬小麦不同生育期(含全生育期)Ec的空间分布主要受叶面积指数分布特征的影响,二者呈显著正相关关系。  相似文献   
104.
Abstract-The test organisms (Paralichthys olivaceus) were exposed to CB-28 with differentspiked concentrations. After 72 h, EROD activities in livers of the test organisms were measured. It wasfound that EROD activities significantly mounted up with the increase of spiked quantity. Therefore,there existed a dose-response relationship between EROD activities and specific pollutant concentrations.In the meantime, the optimal conditions for the analysis of EROD activity were discussed. The limita-tion of EROD activities as a monitoring parameter was also analyzed.  相似文献   
105.
Shallow groundwater plays a key role in agro‐hydrological processes of arid areas. Groundwater often supplies a necessary part of the water requirement of crops and surrounding native vegetation, such as groundwater‐dependent ecosystems. However, the impact of water‐saving irrigation on cropland water balance, such as the contribution of shallow groundwater to field evapotranspiration, requires further investigation. Increased understanding of quantitative evaluation of field‐scale water productivity under different irrigation methods aids policy and decision‐making. In this study, high‐resolution water table depth and soil water content in field maize were monitored under conditions of flood irrigation (FI) and drip irrigation (DI), respectively. Groundwater evapotranspiration (ETg) was estimated by the combination of the water table fluctuation method and an empirical groundwater–soil–atmosphere continuum model. The results indicate that daily ETg at different growth stages varies under the two irrigation methods. Between two consecutive irrigation events of the FI site, daily ETg rate increases from zero to greater than that of the DI site. Maize under DI steadily consumes more groundwater than FI, accounting for 16.4% and 14.5% of ETa, respectively. Overall, FI recharges groundwater, whereas DI extracts water from shallow groundwater. The yield under DI increases compared with that under FI, with less ETa (526 mm) compared with FI (578 mm), and irrigation water productivity improves from 3.51 kg m?3 (FI) to 4.58 kg m?3 (DI) through reducing deep drainage and soil evaporation by DI. These results highlight the critical role of irrigation method and groundwater on crop water consumption and productivity. This study provides important information to aid the development of agricultural irrigation schemes in arid areas with shallow groundwater.  相似文献   
106.
Abstract

In this study, a 5‐day life‐cycle of the IOP‐14 storm during CASP II is examined using conventional observations and numerical simulations with a mesoscale version of the Canadian Regional Finite‐Element (RFE) model. Observational analysis reveals that the IOP‐14 storm forms from a lee trough, occurring along a strong baroclinic zone with an intense frontogenetic deformation, that interacts with an upper‐level travelling short‐wave trough across the Canadian Rockies. Then the storm experiences a slow, but nearly steady, growth while traversing the North American continent. It deepens explosively as it moves into the Atlantic Ocean. It appears that i) the enhanced large‐scale baroclinicity due to land‐sea temperature contrasts, ii) the tremendous latent heat release due to the transport of high‐θe air from the marine boundary layer, Hi) the decrease of surface drag and iv) the favourable westward tilt of the low with an amplifying trough all contribute to the explosive deepening of the storm.

Two consecutive simulations covering a total of 102 h during the storm development are carried out with a grid size of 50 km. The RFE model reproduces very well the formation of the surface low on the lee side of the Rockies, the track and deepening rates, the explosive development and decay of the storm, and various mesoscale phenomena (e.g., a “bent‐back” warm front, a “T‐bone” thermal pattern, a cold frontal “fracture”, an upper‐level “eye” and warm‐core structures), as verified by conventional observations, satellite imagery, flight‐level and dropsonde data from a research aircraft. It is found from potential vorticity (PV) analysis that the storm reaches its peak intensity as the upper‐level dry PV anomaly, the low‐level moist PV anomaly and surface thermal warmth are vertically superposed. PV inversions reveal that these anomalies contribute about 60%, 30% and 10%, respectively, to the 900‐hPa negative height perturbation. It is shown that the warm‐core structure near the cyclone centre is produced by advection of warmer air ahead of the cold front, rather than by adiabatic warming associated with subsidence.  相似文献   
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108.
风能资源观测数据省级传输系统   总被引:2,自引:0,他引:2  
风能资源观测数据省级传输系统是国家风能资源数据库建设项目的一个重要组成系统,是全国风能及其相关数据和产品服务的基础,并已实现了观测数据的业务化传输。该系统由数据收集、收集处理、数据分发、传输监视等4个功能模块组成。数据收集模块功能由Linux下的socket编程实现,可收集实时和历史数据、备份数据、删除过时数据;收集处理模块功能由Linux下的C语言编程实现,可对数据的唯一性、正确性及格式进行检查;数据分发模块功能由Linux下的socket编程实现,可实时分发、失败重发、分发日志记录;传输监视模块具有监视、统计、信息查询和显示等功能。  相似文献   
109.
针对目前河南省气象信息网络实时业务需要,设计并实现了一种基于客户端/服务器(C/S)模式的气象信息网络监控系统.该系统采用数据库技术、GIS二次开发组件技术在Borland C + +Builder 5.0环境下开发完成,实现了对各类上行气象报文传输质量、网络质量、新一代天气雷达产品传输率的自动实时监控,监控结果以表格和图形两种形式实时自动刷新,出现错情后自动报警,还实现了省中心到台站网络质量专题信息的地图发布.系统内容丰富,界面友好,具有较强的实用性.  相似文献   
110.
对流有效位能计算的新方案   总被引:2,自引:1,他引:1  
对流有效位能是强对流天气分析预报的重要参数。本文通过理论推导,提出了载水气块和非载水气块两种情况下,对流有效位能的两个新的计算方案,分别记作CAPEw和CAPE。该方案与以往的方案有很大的不同和根本的区别,更加合理和符合实际。编制了相应的计算程序,可以计算两种情况下的对流抑制能量CINw、CIN,对流有效位能CAPEw、CAPE,抬升凝结高度LCL(二者相同),自由对流高度LFCw、LFC,对流凝结高度CCL(二者相同)以及平衡高度ELw、EL;可以预报对流温度Tg(二者相同);可以分析地面和高空温度、湿度、等压面高度发生变化时,CINw、CIN和CAPEw、CAPE等的数值变化情况,便于业务应用和理论研究。还讨论了影响对流有效位能局地变化的因子和预报思路。  相似文献   
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