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The equilibrium-perturb technique was used in the flume reaeration experiment.The interfacial mass transfer coefficients of DO were obtained by implementation of the oxyge-flux theory in the study.The turbulency characteristics of the flow field were investigated by numerical simulation approach.The expression of interfacial mass transfer coefficient related with velocity and turbulence kinetic energy was built.Examination with the experimental datum of different cases showed the validation of the expression. 相似文献
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Brian S. Caruso Brian Newman Thomas Econopouly 《Journal of the American Water Resources Association》2019,55(3):622-640
We performed two‐dimensional (2D) hydrodynamic modeling to aid recovery of the endangered razorback sucker (Xyrauchen texanus) by reconnecting the Green River with its historic bottomland floodplain wetlands at Ouray National Wildlife Refuge, Utah. Reconnection allows spring flood flows to overtop the river levee every two to three years, and passively transport razorback sucker larvae to the wetlands to grow in critical habitat. This study includes (1) river hydrologic analysis, (2) simulation of a levee breach/weir, overtopping of river flood flows, and 2D flow through the wetlands using Hydrologic Engineering Center River Analysis System 2D, and (3) modeling flow and restoration scenarios. Indicators of hydrologic alteration were used to evaluate river flow metrics, in particular flood magnitudes, frequency, and duration. Results showed a target spring flow of 16,000 cfs (453 m3/s) and a levee breach elevation of 4,663 ft (1,421 m) amsl would result in a median flow >6,000 acre‐feet (7.4 million m3) over five days into the wetlands, which is adequate for razorback sucker larvae transport and rearing. Modeling of flow/restoration scenarios showed using gated water control structures and passive low‐water crossings between wetland units can provide adequate control of flow movement into and storage in multiple units. Levee breaching can be a relatively simple, cost‐effective method to reconnect rivers and historic floodplains, and hydrodynamic modeling is an important tool for analyzing and designing wetland reconnection. 相似文献
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在设有水平机械搅拌、高径比(H/D)为1.2的圆柱形鼓风曝气SBR中,考察了活性污泥的颗粒化情况,对成熟颗粒污泥表面所受水力剪切速率进行了定量研究,分析了水平搅拌在颗粒化过程中的作用.结果表明:有水平搅拌存在下污泥逐渐颗粒化,形成了均值粒径为1.12mm的好氧颗粒污泥,污泥沉降速度为21.41m/h;计算结果表明污泥表面所受的平均剪切速率为27.25s-1,剪切应力为3.38×10-2N/m2;污泥表面所受平均剪切速率与机械搅拌速率和表观气速均呈正相关关系;实验条件下机械搅拌对剪切速率的贡献要远大于表观气速的贡献,前者指数约为后者的37.48倍.研究认为水平搅拌在反应器中形成的具有足够剪切强度的旋涡二次流是促使低高径比反应器好氧污泥颗粒化的关键水力条件. 相似文献
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A Comparison of Bayesian Methods for Uncertainty Analysis in Hydraulic and Hydrodynamic Modeling 下载免费PDF全文
René A. Camacho James L. Martin William McAnally Jairo Díaz‐Ramirez Hugo Rodriguez Peter Sucsy Song Zhang 《Journal of the American Water Resources Association》2015,51(5):1372-1393
We evaluate and compare the performance of Bayesian Monte Carlo (BMC), Markov chain Monte Carlo (MCMC), and the Generalized Likelihood Uncertainty Estimation (GLUE) for uncertainty analysis in hydraulic and hydrodynamic modeling (HHM) studies. The methods are evaluated in a synthetic 1D wave routing exercise based on the diffusion wave model, and in a multidimensional hydrodynamic study based on the Environmental Fluid Dynamics Code to simulate estuarine circulation processes in Weeks Bay, Alabama. Results show that BMC and MCMC provide similar estimates of uncertainty. The posterior parameter densities computed by both methods are highly consistent, as well as the calibrated parameter estimates and uncertainty bounds. Although some studies suggest that MCMC is more efficient than BMC, our results did not show a clear difference between the performance of the two methods. This seems to be due to the low number of model parameters typically involved in HHM studies, and the use of the same likelihood function. In fact, for these studies, the implementation of BMC results simpler and provides similar results to MCMC. The results of GLUE are, on the other hand, less consistent to the results of BMC and MCMC in both applications. The posterior probability densities tend to be flat and similar to the uniform priors, which can result in calibrated parameter estimates centered in the parametric space. 相似文献
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复杂岩溶矿床延深水平涌水量的预测 总被引:1,自引:0,他引:1
随着岩溶矿床的延深开采,矿坑涌水量的计算成为防治水害首先要解决的难题。文章创造性地采用国外广泛采用的岩溶水衰减动态分析法,选择了我国南方复杂岩溶含水层中有代表性的重庆市红岩煤矿,将丛林采区茅口组岩溶水动力单元和该单元南大巷(标高+370 m)的茅口灰岩岩溶含水层的主要排水点-1号突水点作为研究对象,建立了该单元岩溶含水层的计算模型-衰减动态(流量和水位)方程,求出了岩溶水动力单元水均衡、地下水储量计算和矿坑涌水量预测的水文地质参数:a、T、K、S、μ、Ie,建立了该单元岩溶裂隙-管道水的水均衡方程, 根据连续观察一个水文年以上的丰富地下水动态资料,预测了红岩煤矿370 m标高以下的延伸开采水平(295- 370 m)矿坑涌水量。 相似文献
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A three‐dimensional hydrodynamic model was applied to Lake Paldang, South Korea. The lake has three inflows, of which Kyoungan Stream has the smallest flow rate and poorest water quality. Since all drinking water intake stations are located near the confluence of Kyoungan Stream within the lake, this contaminated tributary may have a significant impact on the quality of drinking water sources. The optimum drinking water intake location was determined from the applied model. The model was calibrated and verified using the data measured under different hydrological conditions. The model results were in reasonable agreement with the field measurements in both calibration and verification. The circulation and spreading patterns of the incoming flows in the lake, as well as their composition ratios to the drinking water intakes were determined from the model, and three alternative intake locations were proposed. The simulation results suggested that the horizontal and vertical relocations of the intake aqueduct could significantly decrease the composition ratio of the contaminated water. From this study, it was concluded that the three‐dimensional hydrodynamic model could successfully simulate the temporal and spatial mixing patterns of incoming flows and become a useful tool in determining the optimum water intake location in Lake Paldang. 相似文献
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采用水力空化-O3氧化与超声吸附法联合处理煤气化废水。吸附剂以钙基膨润土为原料,经十六烷基三甲基溴化铵改性制得。通过单因素实验分别探讨了水力空化-O3氧化与超声吸附的适宜处理条件,并在该条件下对废水进行联合处理。实验结果表明:在O3通量194.4 mg/L、空化时间60 min、入口压力0.4 MPa、废水pH 10.00的优化条件下,水力空化-O3氧化对COD和苯酚的去除率分别达67.3%和57.5%;在此基础上进一步采用超声吸附法处理废水,在吸附剂投加量0.06 g/mL、超声时间60 min、废水pH 4.00、吸附温度25 ℃的优化条件下,处理后出水中COD和苯酚质量浓度分别降至317.1 mg/L和117.9 mg/L;COD和苯酚的总去除率分别达97.9%和96.6%。 相似文献