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排序方式: 共有212条查询结果,搜索用时 15 毫秒
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Urban stormwater thermal gene expression models for protection of sensitive receiving streams 下载免费PDF全文
Thermal impact of typical high‐density residential, industrial, and commercial land uses is a major concern for the health of aquatic life in urban watersheds, especially in smaller, cold, and cool‐water streams. This is the first study of its kind that provides simple easy‐to‐use equations, developed using gene expression programming (GEP) that can guide the assessment and the design of urban stormwater management systems to protect thermally sensitive receiving streams. We developed 3 GEP models using data collected during 3 years (2009–2011) from 4 urban catchments; the first GEP model predicts event mean temperature at the inlet of the pond; the second model predicts the stormwater temperature at the outlet of the pond; and the third model predicts the temperature of the stormwater after flowing through a cooling trench and before discharging to the receiving stream. The new models have high correlation coefficients of 0.90–0.94 and low prediction uncertainty of less than 4% of the median value of the predicted runoff temperatures. Sensitivity analysis shows that climatic factors have the highest influence on the thermal enrichment followed by the catchment characteristics and the key design variables of the stormwater pond and the cooling trench. The general method presented here is easily transferable to other regions of the world (but not necessarily the exact equations developed here); also through sensitivity and parametric analysis, we gained insight on the key factors and their relative importance in modelling thermal enrichment of urban stromwater runoff. 相似文献
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LIANGDong-fang CHENGLiang KervinYEOW 《中国海洋工程》2005,19(2):269-286
A numerical model for the self-burial of a pipeline trench is developed. Morphological evolutions of a pipeline trench under steady-current or oscillatory-flow conditions are simulated with/without a pipeline inside the trench. The oscillatory flow in this study represents the action of waves. The two-dimensional Reynolds-averaged continuity and Navier-Stokes equations with the standard k-e turbulence closure, as well as the sediment transport equations, are solved with the finite difference method in a eurvilirrear coordinate system. Both bed and suspended loads of sediment transport are included in the morphological model. Because of the lack of experimental data on the backfilling of pipeline trenches, the numericalmodel is firstly verified against three closely-relevant experiments available in literature. A detailed measurement of the channel migration phenomenon under steady currents is employed for the assessment of the integral performance of themodel. The two experimental results from U-tube tests are used to validate the model‘s ability in predicting oscillatory flows. Different time-marching schemes are employed for the morphological computation under unidirectional and oscillatory conditions. It is found that vortex motions within the trench play an important role in the trench development. 相似文献
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AbstractThe ground vibrations during pile driving operation have a drastic potential to undermine the surrounding structures both in land and reclaimed land. Particularly, reclaimed land necessitates ample application of pile driving due to the weak land condition. To prevent the structural damage, attenuation of the ground vibrations to an allowable level through active isolation of circular open trench is the scope of this study. In this research, finite element simulations of continuous impact pile driving process from the ground surface was executed with particular attention to the pile-soil interaction, and thereby, the efficiency of open trench application in attenuation of the unsafe distance of different structures was surveyed using the vibration sensitivity degree. Regarding the crucial parameters of an open trench (depth, width, and location), it was concluded that a sufficient high depth can attenuate the unsafe distance up to 68%, the trench width variations are less effective, and an average pile-trench distance is the most efficient option. The excavation volume was also concluded as another crucial parameter in open trench design which takes all three parameters into account. The trench depth equal to the pile’s maximum critical depth of vibration was inferred for an optimum design. 相似文献
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截齿贯入角度是双轮铣槽机布齿系统设计中的关键因素之一。基于连续−非连续单元法(CDEM),建立截齿不同角度冲击贯入破岩的数值模型,通过断裂能本构模型实现岩体弹性−损伤−断裂的破裂过程,开展截齿有效角度50º~90º区间内的9组冲击贯入破岩模拟,研究贯入角度对截齿破岩性能的影响规律,讨论贯入角度对截齿几何排布的影响,总结布齿系统的截齿几何排布规律。结果表明,当贯入角度从90º降低到50º时,岩体由张拉−拉剪破裂向剪切−拉剪破裂转变,截齿平均贯入力与破碎程度提高,截齿的跃进式侵入特性的显著性减低;贯入角度为75º~90º的第I类截齿与小于55º的第III类截齿在破岩中起辅助作用,贯入角度为55º~75º的第II类截齿可在岩体内部产生范围较大的水平非贯通裂隙,在布齿系统破碎岩体过程中发挥主要作用;2个第II类截齿先后贯入岩体可较好地破碎截线间的岩体,可构成一类基本破岩单元,多个基本破岩单元按照正弦线形式排布,由此形成了一种布齿系统设计方法。研究成果为完善双轮铣槽机布齿系统设计方法,打破国外在双轮铣槽机布齿系统设计方法上的技术壁垒提供了理论基础。 相似文献
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