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Abstract: The impacts of runoff events on external suspended solids loading to Schoharie Reservoir, New York, and patterns of light scattering and sediment deposition in this reservoir are assessed. The assessment is based on monitoring of suspended solids concentrations in the reservoir's primary tributary, detailed vertical profiles of optical backscattering (a surrogate measure of light scattering) in the reservoir water column, and analysis of sediment trap collections, over a seven-month interval of high runoff. These impacts are reported to be tightly temporally coupled and strongly positively related to the magnitude of runoff events. The primary tributary entered the reservoir as a plunging inflow during runoff events, causing conspicuous subsurface peaks in light scattering, with vertical patterns that varied strongly for different events. Deposition quantified by near-bottom trap deployments is reported to be more representative than results from metalimnetic deployments that were generally within, rather than below, the turbid layers. Direct inputs of sediment, transported by density currents, are found to drive deposition, rather than resuspension/redeposition. More than 50 percent of the reported deposition occurred in less than 15 percent of the study period, associated with the four largest runoff events.  相似文献   
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本文阐述了电阻点焊生产时,需要对人员进行防护且能源消耗较大,不利于环保,焊接质量稳定性差等方面的不足。着重介绍了冲压铆接自动化程度高,铆接点精美一致,连接质量可靠且稳定,具有节能环保等方面的优势,以及替代电阻点焊的应用实例和对应的铆接模具,以期拓展冲压铆接技术的应用领域,不断提升电器产品的制造工艺水平。  相似文献   
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This study investigates energy dissipation due to air bubble entrainment for three typical phenomena; a hydraulic jump, a 2-D vertical plunging jet and a vertical circular plunging jet into water. A simple model is presented here which enables to estimate the energy transformation and dissipation achieved by air bubbles quantitatively for three above phenomena. The average rate of energy dissipation by air bubbles obtained from the experimental data are 25%, 1.4%, and 2.15% with respect to total energy loss for the hydraulic jump, 2-D vertical plunging jet and vertical circular plunging jet, respectively.  相似文献   
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厘清林业生产性服务对农户林地规模经营的影响,可为盘活集体林区林地资源、促进家庭林业发展提供决策参考。为考察林业生产性服务对林地规模经营的影响,首先构建了考虑林业生产性服务及林地规模的农户生产模型,通过理论分析后提出假设:林业生产性服务投入增加,将促进农户增加林地要素投入,即林业生产性服务对农户林地规模经营有正向影响。其次,基于福建500份经营商品林农户调查数据,利用Double-Hurdle模型及工具变量处理选择性偏差、遗漏变量及联立因果等引起的内生性问题,实证分析林业生产性服务对农户林地规模经营的影响。结果发现:不同类型的林业生产性服务对农户林地规模经营影响存在差异。其中,林业信贷服务对农户林地规模经营有正向影响,正规信贷与非正规信贷分别使农户林地流入概率提升19.6%、15.9%,使农户林地流入规模分别扩大66.8%、38.5%。林业物资与技术服务仅在是否流入林地阶段对农户林地规模经营有正向影响,使农户林地流入概率提升8.9%。林业劳动力服务仅在林地流入规模阶段对农户林地规模经营有正向影响,使得农户林地流入规模扩大66.9%。林业销售服务由于买方垄断特征对农户林地规模经营有负向影响,使农户林地流入概率降低12.3%,使农户林地流入规模缩减73.2%。因而,政府应有针对地激励和规范各类林业生产性服务发展,以更好地服务于集体林区家庭林业发展。  相似文献   
5.
The transport and fate of two plunging tributaries, Onondaga and Ninemile Creeks, in Onondaga Lake, New York, are quantified based on application of hydrodynamic/transport models. Short‐term transport is simulated with a three‐dimensional Estuary Lake and Coastal Ocean Model (ELCOM), while the longer term fate is represented by a previously validated one‐dimensional model (UFILS4). The validation of ELCOM for the vertical distribution of tributary inflow into the lake's water column is demonstrated for four dye tracer experiments. The models are applied for three years to represent the dynamics of transport and fate for the two tributaries, with ELCOM predictions serving as input for UFILS4. The models together quantify the distribution of these inflows between the upper mixed layer (UML) and stratified depths, and the subsequent transport from stratified depths to the UML by vertical mixing. Substantial short‐term variations are predicted for both tributaries in response to variability in hydrology and weather. Increased inflow to the UML is predicted for high runoff periods. The fraction of Ninemile Creek's inflow directly entering the UML is predicted to be 50% greater than for Onondaga Creek due to Ninemile's lower negative buoyancy. The plunging phenomenon has important water quality implications, by reducing the effective loading to the UML, particularly for constituents with large rates of loss/transformation relative to the rate of vertical transport from stratified depths.  相似文献   
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