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101.
罗茨鼓风机叶轮的传统设计方法是图解法,这种方法误差较大,浪费时间,在加工过程中需要反复进行修改,而且叶轮运转时容易产生噪声,效率低.针对这一问题,根据啮合原理中求解共轭曲线的解析法来求解叶轮的共轭曲线并构建精确的数学模型,以缩短叶轮的设计时间,提高叶轮的设计效率和设计品质.  相似文献   
102.
Tree height and crown allometries reflect adaptations for resource acquisition and structural stability, as well as plastic responses to a heterogeneous environment. While both light and soil resources limit growth and influence competitive responses in tropical forests, the effects of belowground resources on allometries are less understood, especially within the understory. To characterize outcomes of tree competition along an edaphic resource gradient, we quantified variation in height and crown allometries of six Bornean tree species from contrasting regeneration niches (light-demanding vs. shade-tolerant) on two soil habitats (clay-fine loam and sandy loam) within a 52-ha forest dynamics plot. Using empirically-fit allometric parameters and diameter growth rates from plot census data, we modeled tree height and crown area growth over the projected life span of each species. Based on resource competition theory, we hypothesized that tree species specializing on and populations of generalist species growing on the relatively moister, more fertile clay-fine loam soil habitat would have faster height and crown growth rates, compared to those on the sandy loam habitat, regardless of regeneration niche. Among soil specialists and within generalists of both genera, trees growing on clay-fine loam had taller stems and larger crowns at a given age and faster height and crown area growth rates at most sizes than trees on sandy loam. Differences in height and crown growth were driven by the faster diameter growth rates of trees on clay-fine loam, not by differences in height- and crown-diameter allometries, as trees on sandy loam were significantly taller at a given diameter, and differences in crown allometry were not consistent across soil habitats. Characterizing the height and crown growth responses of trees along resource gradients provides insight into the mechanisms that maintain diversity in tropical forests. Our results point to the importance of adaptive and plastic responses to both above and belowground resource availability in determining the allometric growth of trees and suggest that this diversity of responses may contribute tree species coexistence through competition-based trade-off mechanisms and variation in growth among individuals. Additionally, as the importance estimating natural carbon sequestration increases with the escalating effects of anthropogenic climate change, differences in tree growth and architecture across soil habitats also have implications for the approximation of forest carbon storage on heterogeneous tropical soils.  相似文献   
103.
The simulation of forest production until 2100 under different environmental scenarios and current management practices was performed using a process-based model BIOME-BGC previously parameterized for the main Central-European tree species: spruce, pine, beech and oak and adapted to include forest management practices. Climatic scenario HadCM3 used in the simulations was taken from the IPCC database created within the 3rd Assessment Report. It was combined with a scenario of CO2 concentration development and a scenario of N deposition. The control scenario considered no changes of climatic characteristics, CO2 concentration and N deposition. Simulation experiment was performed for the test region - South Bohemia - using a 1 km × 1 km grid. The actual data on the regional forest cover were aggregated for each grid cell in such a way that each cell represented an even-aged single-dominant species stand or non-forested area, and a standard management scenario depending on the stand age and species was applied to each cell. The effect of environmental variables was estimated as the difference of simulated carbon pools and fluxes in 2050 under environmental changes and under control scenario.The model simulation for the period to 2050 with only climate change under constant CO2 concentration and N deposition indicated a small decrease of NPP (median values by species reached −0.9 to −1.7% for different species), NBP (−0.3 to −1.7%) and vegetation carbon (−0.3 to −0.7%), whereas soil C slightly increased. Separate increase of N deposition gave small positive effect on carbon pools (0.8-2.9% for wood C and about 0.5% for soil C) and more expressed effect on carbon fluxes (1.8-4.3% for NPP and 1.0-9.7% for NBP). Separate increase of CO2 concentration lead to 0.6-2.4% increase of wood C pool and 0.1-0.5% increase of soil C. The positive effects of CO2 concentration and N deposition were more pronounced for coniferous than for deciduous stands.Replacement of 0.5% of coniferous plantations every year by natural broadleaved stands evoked 10.5% of increase of wood carbon pool due to higher wood density of beech and oak compared to spruce and pine, but slightly decreased soil and litter carbon pools.  相似文献   
104.
拉萨河流域非点源污染输出风险评估   总被引:7,自引:0,他引:7       下载免费PDF全文
有效识别流域非点源污染高风险区,对污染控制与管理以及水环境质量改善具有重要意义。该研究以拉萨河流域为研究对象,构建包括降雨、地形和施肥影响因子的输出风险模型,识别流域各级非点源污染输出风险的地域单元。结果表明:1996年和2010年,非点源污染输出风险概率分别为50.0%和46.3%;非点源污染风险处于较高以上程度的区域面积分别为12 985.8和11 628.0 km2,占全区总面积的38.9%和34.9%;与1996年相比,2010年非点源污染风险程度由低级别向高级别转换的总面积约为6 674.3 km2。拉萨河流域非点源污染发生的风险概率为中等,风险程度在局部范围内有所下降,主要表现在高风险区域面积减少、低风险区域面积增加,但是中等和较高风险区域面积有增加趋势。土地利用变化、农业生产和水土流失是非点源污染发生的主要原因,应巩固生态环境综合治理成果,提前应对可能出现的非点源污染问题,制定生态农业发展规划,营造控制非点源污染迁移的植被缓冲带。  相似文献   
105.
The objective of this study was to explore if more crop-specific plant growth modules can improve simulations of crop yields, and N in tile flow under different management practices compared with a generic plant growth module. We calibrated and evaluated the Root Zone Water Quality Model (RZWQM) with the Decision Support for Agrotechnology Transfer (DSSAT v3.5) plant growth modules (RZWQM-DSSAT) for simulating tillage (NT — no till, RT — ridge till, CP — chisel plow, and MP — moldboard plow), crop rotation {CC — continuous corn, and CS — corn (Zea mays L.)-soybean [Glycine max (L.) Merr.]}, and nitrogen (N) (SA — single application at preplant, and LSNT — late spring soil N test based application) and manure (SM — fall injected swine manure) management effects on crop production and water quality. Data from 1978 to 2003 from a water quality experiment near Nashua (Nashua experiments), Iowa, USA, were used. The model was calibrated using data from one treatment plot and validated for the rest of the plots. Simulated management effects on annual N loading in tile flow were agreeable with measured effects in 85%, 99%, 88%, and 78% of the cases for tillage, crop rotation (CS vs. CC), N application timing (SA vs. LSNT), and swine manure applications (SM vs. SA), respectively. On average, the LSNT plots were simulated to have 359 kg ha− 1 higher corn yield compared to SA, when the observed increase was 812 kg ha− 1. Grain yield simulations were not sensitive to differences between RT and NT, between SM and SA treatments, and between CS and CC. We conclude that considering the uncertainties of basic input data, processes in the field, and lack of site specific weather data, the results obtained with this RZWQM-DSSAT hybrid model were not much better than the results obtained earlier with the generic crop growth module.  相似文献   
106.
针对自传感磁轴承的滤波法幅度解调模型结构复杂导致相移过大的问题,提出一种基于Cosine纹波的同步离散电流估计自传感方法。建立了磁轴承磁阻模型,得到了磁轴承开关工作电流与位移之间的关联变化规律。与以往的采样电流相比较,同步离散电流是同步于PWM周期并定点离散于其Cosine纹波函数为0处的采样电流,并建立了同步离散电流估计器(Synchronous-Sampling-based Discrete Current Estimator,SS-DCE)数学模型;该模型可消除主动磁轴承自传感路径中的滤波器,简化估计算法复杂度,从而使得历经估计器的相移减小。数值仿真结果表明:SS-DCE自传感算法在50~250μm量程范围内估计误差小于2.72%;在特征频率处幅值增益为2 dB,相位滞后为-22°,为系统稳定运行提供了158°相位裕度。搭建了自传感磁轴承实验平台,验证了SS-DCE的位移估计最大估计误差为5.06μm,对应的估计精度为2.53%,并获得较好的激励响应的跟随特性,研究结果为小相移的自传感磁轴承和高速运行的磁轴承设计提供参考。  相似文献   
107.
Abstract. The problem of soil erosion is particularly evident in New Zealand, given the combination of coarse-textured soils, steep relief, high rainfall, and intensification of agriculture. A study was undertaken to assess the effects of land use change on soil erosion and sediment transport for the Ngongotaha catchment in New Zealand's North Island, using a GIS based decision support and modelling system. Model simulations considered the effect of increased catchment area under deer farming and forestry on the amount of sediment delivered to the catchment outlet, averaged over a period of six years. The simulations predicted that sediment loss from land under deer farming was considerably greater than from land under other livestock or forestry. Further model simulations testing best management practices demonstrated that sediment yield could be halved if deer farming was restricted to slopes under 20%.  相似文献   
108.
针对重庆三峡库区生态脆弱性和人口、资源、环境、经济等特征,探寻在生态敏感脆弱带及经济欠发达地区的生态农业发展模式,并且剖析了如何利用各种政策,有效引导、激励、调控等经济发展行为以及技术进步机制、制度创新机制、农户参与机制等推动库区生态农业可持续发展的有效途径。通过以上分析,以期探索出具有创新性的思路和方法,找出重庆三峡库区生态农业可持续发展的新路。  相似文献   
109.
实体水-虚拟水"二维三元"耦合流动理论基本框架   总被引:3,自引:1,他引:3  
在变化环境下,区域水资源系统演变规律正在发生深刻变化。解决新形势下出现的水问题单单依靠传统的实体水资源规划、调度和调控手段还不够。虚拟水概念和理论的提出拓展了水文水资源的认知范畴,丰富了水问题的解决手段。然而,如何搭建虚拟水理论与传统水文水资源认知体系的统一框架,认识自然-经济-社会连续系统中水资源演化的新规律,目前学界还没有成熟统一的看法。该文首先提出了实体水-虚拟水耦合流动效应的基本理论框架,指出实体水-虚拟水耦合流动是现代环境下自然-经济-社会水资源系统呈现的新特征。其次,从文明进步和生产力发展角度,论述了人类社会水文水资源系统的演化历史,将水文水资源系统演进大体分为三个阶段:早期的实体水"一维一元"自然循环阶段,近现代的实体水"二元"水循环阶段和当前的实体水-虚拟水"二维三元"耦合流动阶段。最后,该文详细论述了实体水-虚拟水耦合流动过程的路径结构,并针对其流动过程和状态表征提出了定量表达方程,初步构建了实体水-虚拟水耦合流动基本理论框架。  相似文献   
110.
针对基于主动微波遥感途径开展广域土壤湿度反演的过程中,对植被和土壤粗糙度影响难以进行有效估算的问题,该研究联合多极化雷达和原始多光谱数据源,提出一种改进的卷积神经网络(Improved Convolutional Neural Network,ICNN)方法。该方法采用不同尺寸的卷积核对原始变量进行一维卷积运算,自适应提取能反映测区土壤湿度时空差异的高级特征维;同时,去除了传统卷积神经网络结构中的池化层,保证提取的特征信息完整。试验结果表明,在边长超过100 km的四川盆地研究区域内,模型预测值与样本数据相关系数达到0.934,预测值偏差服从均值趋近于0的正态分布,均方根误差为1.45%,误差分布范围小于6.3%,结果具有较高的可靠性。该方法可为精准农业、旱涝灾害等领域的广域监测研究提供一定的支撑。  相似文献   
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