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101.
Tim D. Keane Christopher K. Sass 《Journal of the American Water Resources Association》2017,53(6):1513-1529
This paper recounts our predictions of channel evolution of the Black Vermillion River (BVR) and sediment yields associated with the evolutionary sequence. Channel design parameters allowed for the prediction of stable channel form and coincident sediment yields. Measured erosion rates and basin‐specific bank erosion curves aided in prediction of the stream channel succession time frame. This understanding is critical in determining how and when to mitigate a myriad of instability consequences. The BVR drains approximately 1,062 km2 in the glaciated region of Northeast Kansas. Once tallgrass prairie, the basin has been modified extensively for agricultural production. As such, channelization has shortened the river by nearly 26 km from pre‐European dimensions; shortening combined with the construction of numerous flow‐through structures have produced dramatic impacts on discharge and sediment dynamics. Nine stream reaches were established within three main tributaries of the BVR in 2007. Reaches averaged 490 m in length, were surveyed, and assessed for channel stability, while resurveys were conducted annually through 2010 to monitor change. This work illustrates the association of current stream state, in‐channel sediment contributions, and prediction of future erosion rates based on stream evolution informed by multiple models. Our findings suggest greater and more rapid sedimentation of a federal reservoir than has been predicted using standard sediment prediction methods. 相似文献
102.
Summary.
Darna bradleyi Holloway, D. trima Moore, Setothosea asigna van Eecke and Setora nitens Walker are sympatric and coseasonal limacodid moths in plantations of oil palm, Elaeis guineensis Jacq. (Arecales: Palmae), in Borneo, southeast Asia. We tested the hypothesis that these four species maintain reproductive
isolation through specificity in diel periods of communication, microlocation for communication and/or communication signal
(pheromone). Studying diel periodicity of calling behavior by female moths and response by male moths to traps baited with
virgin females or synthetic pheromone, we determined that sexual communication of D. bradleyi and D. trima took place from ˜17:30 to 18:45 hr and that of S. asigna and S. nitens from ˜18:45 to 20:00 hr and from ˜18:30 to 19:30 hr, respectively. Over 80% of male S. asigna and S. nitens were captured in pheromone-baited traps suspended >5 m high, whereas male D. bradleyi and D. trima were captured mostly in traps <5 m high. Synthetic pheromone baits attracted male moths in a species-specific manner. Moreover,
baits containing both S. asigna and S. nitens pheromones failed to attract any male moths, indicating that female S. asigna and S. nitens, with overlapping communication periods, use bifunctional pheromone components that attract conspecific males while repelling
heterospecifics. Similarly, addition of D. bradleyi pheromone to S. asigna or S. nitens pheromone reduced attraction of male S. asigna and S. nitens. The failure of D. bradleyi and D. trima, which overlap in time and microlocation for communication, to evolve bifunctional pheromones may be attributed to the recent
occurrence of sympatry between D. bradleyi and D. trima in Borneo, apparently too recent for bifunctional pheromones to have evolved. We conclude that D. bradleyi, D. trima, S. asigna and S. nitens utilize any or all of diel periodicity, intra and interspecific effects of communication signal and/or microlocation for
signaling, allowing these limacodids to co-inhabit the same habitat and remain reproductively isolated.
Received 5 May 2000; accepted 18 August 2000 相似文献
103.
104.
植物床-沟壕系统的藻类捕获功能 总被引:2,自引:0,他引:2
采用原位实验验证植物床.沟壕系统的藻类捕获功能。结果表明:该系统能够有效拦截和捕获源水藻类。在水力梯度驱动下,约35%源水进入高位小沟流经植物床内部根孔结构而汇至低位小沟。低位小沟内叶绿素a(Chl-a)浓度显著低于高位小沟(P=0.0239),其降低比例为11.1%。以植物床.沟壕系统为结构形式的根孔净化区其出水Chl-a浓度较源水整体下降了27.0%。估算该片根孔净化区捕获藻类鲜生物量约122kg/d。石臼漾湿地共含根孔净化区11片,按供水25万t/d计,估算捕获藻类鲜生物量约1100kg/d。 相似文献
105.
为了掌握竖通道两侧开缝对于通道内热流场的影响,在一32cm(长)×32cm(宽)×200cm(高)的竖通道内进行了旋转热流场实验研究,对比了在不同热源条件下,竖通道侧开缝宽度为3.0cm和3.5cm时,侧开缝底部5cm高区域被遮挡前后通道内热流场的变化。实验结果表明,与遮挡前相比,遮挡通道侧开缝底部对火焰燃烧和热流场的运动状态都会产生影响。遮挡通道侧开缝底部区域,会在一定程度上限制外界冷空气进入通道内,从而减弱通道内的火焰旋转程度,致使燃料燃尽的耗时更长,平均火焰高度降低,其影响程度随着燃料池增大而减弱;遮挡侧开缝底部区域后,造成通道内下部区域中心轴线处的温度降低,最大影响区域在50cm高度附近,而在150cm高度以上基本没有影响;平均火焰高度与燃料池直径之比的无量纲量H/Φ与Peclet数之间的比例系数近似为1.732,并且是否遮挡侧开缝底部区域对于两者之间比例关系的影响不大。 相似文献
106.
107.
Brian Buchanan Zachary M. Easton Rebecca Schneider M. Todd Walter 《Journal of the American Water Resources Association》2012,48(1):43-60
Buchanan, Brian, Zachary M. Easton, Rebecca Schneider, and M. Todd Walter, 2011. Incorporating Variable Source Area Hydrology Into a Spatially Distributed Direct Runoff Model. Journal of the American Water Resources Association (JAWRA) 48(1): 43‐60. DOI: 10.1111/j.1752‐1688.2011.00594.x Abstract: Few hydrologic models simulate both variable source area (VSA) hydrology, and runoff‐routing at high enough spatial resolutions to capture fine‐scale hydrologic pathways connecting VSA to the stream network. This paper describes a geographic information system‐based operational model that simulates the spatio‐temporal dynamics of VSA runoff generation and distributed runoff‐routing, including through complex artificial drainage networks. The model combines the Natural Resource Conservation Service’s Curve Number (CN) equation for estimating storm runoff with the topographic index concept for predicting the locations of VSA and a runoff‐routing algorithm into a new spatially distributed direct hydrograph (SDDH) model (SDDH‐VSA). Using a small agricultural watershed in central New York, SDDH‐VSA results were compared to those from a SDDH model using the traditional land use assumptions for the CN (SDDH‐CN). The SDDH‐VSA model generally agreed better with observed discharge than the SDDH‐CN model (average, Nash‐Sutcliffe efficiency of 0.69 vs. 0.58, respectively) and resulted in more realistic spatial patterns of runoff‐generating areas. The SDDH approach did not correctly capture the timing of runoff from small storms in dry periods. Despite this type of limitation, SDDH‐VSA extends the applicability of the SDDH technique to VSA conditions, providing a basis for new tools to help identify critical management areas and assess water quality risks due to landscape alterations. 相似文献
108.
Sharon E. Clarke Kelly M. Burnett Daniel J. Miller 《Journal of the American Water Resources Association》2008,44(2):459-477
Abstract: Managers, regulators, and researchers of aquatic ecosystems are increasingly pressed to consider large areas. However, accurate stream maps with geo‐referenced attributes are uncommon over relevant spatial extents. Field inventories provide high‐quality data, particularly for habitat characteristics at fine spatial resolutions (e.g., large wood), but are costly and so cover relatively small areas. Recent availability of regional digital data and Geographic Information Systems software has advanced capabilities to delineate stream networks and estimate coarse‐resolution hydrogeomorphic attributes (e.g., gradient). A spatially comprehensive coverage results, but types of modeled outputs may be limited and their accuracy is typically unknown. Capitalizing on strengths in both field and regional digital data, we modeled a synthetic stream network and a variety of hydrogeomorphic attributes for the Oregon Coastal Province. The synthetic network, encompassing 96,000 km of stream, was derived from digital elevation data. We used high‐resolution but spatially restricted data from field inventories and streamflow gauges to evaluate, calibrate, and interpret hydrogeomorphic attributes modeled from digital elevation and precipitation data. The attributes we chose to model (drainage area, mean annual precipitation, mean annual flow, probability of perennial flow, channel gradient, active‐channel width and depth, valley‐floor width, valley‐width index, and valley constraint) have demonstrated value for stream research and management. For most of these attributes, field‐measured, and modeled values were highly correlated, yielding confidence in the modeled outputs. The modeled stream network and attributes have been used for a variety of purposes, including mapping riparian areas, identifying headwater streams likely to transport debris flows, and characterizing the potential of streams to provide high‐quality habitat for salmonids. Our framework and models can be adapted and applied to areas where the necessary field and digital data exist or can be obtained. 相似文献
109.
弯道明渠内危化品泄漏扩散的数值模拟 总被引:1,自引:0,他引:1
自由水面流动和危化品水体迁移扩散过程属有界性问题,利用两相流理论建立三维瞬态VOF动力学模型,在其基础上提出危化品水体迁移扩散的浓度压缩性微分方程,有限容积法离散方程,高分辨率Gamma离散格式适用于解决有界性问题,用Gamma格式离散VOF和危化品迁移扩散方程的对流项。对Chang实验的弯曲水槽的流动及危化品扩散进行数值模拟,模拟结果与实验结果较吻合。笔者建立的数学模型能准确地模拟水流三维特性突出的弯道水槽的流场和危化品水体迁移扩散过程。 相似文献
110.