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Channel Slope Effect on Energy Dissipation of Flow over Broad Crested Weirs
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作者 Shaymaa A. M. Al-Hashimi Huda M. Madhloom +1 位作者 Thameen N. Nahi Nadhir Al-Ansari 《Engineering(科研)》 2016年第12期837-851,共15页
The main purpose of broad crested weir used in open channels is to raise and control upstream (U/S) water level. In this study, a new performance was added to this weir, by making a step at downstream (D/S) of weir. T... The main purpose of broad crested weir used in open channels is to raise and control upstream (U/S) water level. In this study, a new performance was added to this weir, by making a step at downstream (D/S) of weir. The energy dissipation, the height of the weir/the upstream water height ratio and Froude number relationships (E% – P/h – Fr) for three range of flume slop S = 0.0, 0.002 and 0.004 were simulated. The experiments were performed in a laboratory horizontal channel of 4.6 m length, 0.3 m width and 0.3 m depth for a wide range of discharge. The D/S step height of the weir was 7.5 cm. FLUENT software was used as numerical model which represent a type of Computational Fluid Dynamics (CFD) model in order to simulate flow over weirs. The Volume of Fluid (VOF) method with the Standard k – ε turbulence model was used to estimate the free surface profile and the structured mesh with high concentration near the wall regions. The experimental results of the water surface profile gave a high agreement with the results of the numerical models. The maximum value 28.78 of E% was obtained in single step broad crested weir in the experimental result and 27.35 in numerical result at S = 0.004. Finally, the range of the relative error of the energy dissipation between experimental and numerical results was achieved and the maximum was 6.76 in all runs. 展开更多
关键词 Broad Crested Weir Numerical CFD model standard k ε Turbulence model energy Dissipation Ratio (e%) Sloping Flume
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大曲率弯管中湍流的计算与模型考证 被引量:3
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作者 马坤 杨金龙 赖焕新 《华东理工大学学报(自然科学版)》 CAS CSCD 北大核心 2013年第5期617-624,共8页
一些文献在使用标准k-ε模型预测弯道湍流时缺乏网格无关性检查和湍流参数的比对。本文结合具有详细测量数据的弯道湍流算例,研究了标准k-ε模型结合壁面函数法在不同网格密度时的计算结果。检查表明排除网格依赖性以后,标准k-ε模型与... 一些文献在使用标准k-ε模型预测弯道湍流时缺乏网格无关性检查和湍流参数的比对。本文结合具有详细测量数据的弯道湍流算例,研究了标准k-ε模型结合壁面函数法在不同网格密度时的计算结果。检查表明排除网格依赖性以后,标准k-ε模型与壁面函数法的结合使用可以获得明显优于前人的计算结果,即使是在弯道的后半段,计算结果仍然与实验数据良好地吻合。同时采用当前预测复杂流动时较受欢迎和好评的SST k-ω模型作比对分析,考证两种模型对曲率影响的预测能力。结果表明,SST k-ω模型对于弯道后半段的主流速度和二次流速度预测值优于标准k-ε模型,但对湍流动能和脉动应力的预测结果则显示标准k-ε模型在数值上与实验值更为接近,优于SST k-ω模型的结果。 展开更多
关键词 弯管 湍流流动 标准肛£模型 SST k-ω模型
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上海地铁A型车车厢体空调气流组织的模拟研究 被引量:10
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作者 钱珊珊 安恩科 《制冷空调与电力机械》 2008年第6期28-31,共4页
利用计算流体力学软件对地铁A型车厢空调系统在不同工况下的温度场和速度值进行了数值模拟,就其所涉及的风口尺寸、位置、型式以及气流组织等方面定性地进行了比较分析,提出了一个优化方案,为车厢内气流分布的优化设计提供参考。
关键词 气流组织 数值模拟 计算流体动力学(CFD) 标准k-e湍流模型
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焊缝跟踪装置冷却系统设计
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作者 胡卓焕 丁义萍 《轻工机械》 CAS 2018年第5期68-72,共5页
为了提高焊接质量和焊接效率,需设计相关的焊缝辨识与跟踪装置,从而实现自动化焊接。而焊接时产生的高温环境对该类装置的正常工作构成威胁,因而其附属冷却系统的设计尤为重要。通过建立该类焊缝跟踪装置的三维全尺寸仿真模型,设置相关... 为了提高焊接质量和焊接效率,需设计相关的焊缝辨识与跟踪装置,从而实现自动化焊接。而焊接时产生的高温环境对该类装置的正常工作构成威胁,因而其附属冷却系统的设计尤为重要。通过建立该类焊缝跟踪装置的三维全尺寸仿真模型,设置相关的边界条件,采用标准的k-e模型进行仿真,获得其内部完整的流场和温度场,并分析和完善其冷却效果。结果表明,经气体强迫对流换热后,该类装置的温度明显下降且分布较为均匀,冷却系统符合相关需求。 展开更多
关键词 焊接 焊缝跟踪装置 温度分布 标准k-e模型 强迫对流
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离心泵内部流场的数值模拟研究 被引量:6
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作者 郭傲辉 曾永忠 +2 位作者 刘小兵 王丝丝 罗凤 《人民长江》 北大核心 2013年第23期86-88,共3页
计算流体(CFD)技术已经成功地运用于离心泵内部湍流流动的数值模拟。通过实体建模,为某型号离心泵添加固定导叶,然后运用ANSYS软件,基于标准k-ε模型,对离心泵内部流场进行数值模拟,并对添加导叶前后的压力、速度矢量图以及效率与实际... 计算流体(CFD)技术已经成功地运用于离心泵内部湍流流动的数值模拟。通过实体建模,为某型号离心泵添加固定导叶,然后运用ANSYS软件,基于标准k-ε模型,对离心泵内部流场进行数值模拟,并对添加导叶前后的压力、速度矢量图以及效率与实际的试验数据进行比较。结果发现,添加固定导叶后,出口压力明显增大,液流流动更加均匀,效率也得到大幅提升,而且与实验结果也比较吻合。研究结果进一步验证了仿真模拟的可靠性,同时也为实体泵优化和进一步提升效率研究提供理论参考。 展开更多
关键词 固定导叶 ANSYS 标准k-ε模型 数值模拟 离心泵
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Simulation of buoyancy-induced turbulent flow from a hot horizontal jet 被引量:1
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作者 El-AMIN M.F. SUN Shuyu SALAM Amgad 《Journal of Hydrodynamics》 SCIE EI CSCD 2014年第1期104-113,共10页
Experimental visualizations and numerical simulations of a horizontal hot water jet entering cold water into a rectangular storage tank are described. Three different temperature differences and their corresponding Re... Experimental visualizations and numerical simulations of a horizontal hot water jet entering cold water into a rectangular storage tank are described. Three different temperature differences and their corresponding Reynolds numbers are considered. Both experimental visualization and numerical computations are carried out for the same flow and thermal conditions. The realizable k-e model is used for modeling the turbulent flow while the buoyancy is modeled using the Boussinesq approximation. Polynomial approximations of the water properties are used to compare with the Boussinesq approximation. Numerical solutions are obtained for unsteady flow while pressure, velocity, temperature and turbulence distributions inside the water tank as well as the Froude number are analyzed. The experimental visualizations are performed at intervals of five seconds for all different cases. The simulated results are compared with the visualized results, and both of them show the stratification phenomena and buoyancy force effects due to temperature difference and density variation. After certain times, depending on the case condition, the flow tends to reach a steady state. 展开更多
关键词 turbulent flow realizablc k - e turbulence model heat transfer JeT heat storage
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