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国家自然科学基金(51176088)

作品数:29 被引量:304H指数:12
相关作者:曹树良谭磊王玉川邴浩祝宝山更多>>
相关机构:清华大学中国水利水电科学研究院华北水利水电学院更多>>
发文基金:国家自然科学基金中国博士后科学基金水利部公益性行业科研专项更多>>
相关领域:机械工程农业科学水利工程建筑科学更多>>

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29 条 记 录,以下是 1-10
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离心泵蜗壳内非定常流动特性被引量:15
2014年
基于修正的RNG k-ε湍流模型和输运方程空化模型,对离心泵内部非空化和空化的非定常流动进行了数值模拟,计算结果与试验结果吻合较好,验证了数值模型和计算方法的准确性。在离心泵蜗壳内布置了5个监测点,分析了蜗壳内非空化和空化工况时流动特性。结果表明:离心泵非空化和临界空化工况下,蜗壳内压力脉动的主频为叶片通过频率145 Hz或290 Hz,而在充分发展空化工况下,压力脉动的主频非常低,可能原因是空泡剧烈的脱落及溃灭引起的。三种工况下,离心泵蜗壳第2断面附近的压力脉动最大幅值均远大于其它监测点,原因是此处存在较强的二次流,出现了两个非对称反向旋涡,两个旋涡的涡心位置、形状、强度随时间不断变化,对流动产生较强扰动,诱发强烈的压力脉动。
王松林谭磊王玉川
关键词:离心泵蜗壳非定常流动特性
离心泵叶轮区瞬态流动及压力脉动特性被引量:28
2014年
目前离心泵过流部件的瞬态流动分析主要集中在蜗壳内,对旋转叶轮区内的流动特性研究较少。基于RNG k-ε湍流模型和滑移网格,对不同工况下离心泵内部瞬态流场进行数值模拟,计算得到的离心泵扬程和效率曲线与试验结果吻合较好。在离心泵叶片正背面分别设置3个监测点,分析叶轮区压力脉动特性。结果表明,设计工况下叶片正背面压力脉动的主频为叶轮转频或2倍叶轮转频,非设计工况下其主频均为叶轮转频。从叶轮进口到出口,叶片正背面的压力脉动最大幅值都逐渐增大。同一监测点上压力脉动最大幅值在小流量时最大,约为设计工况下5倍。分析小流量工况下叶轮内部相对速度分布,叶轮出口处附近随时间变化的旋涡是内部流动不均匀的主要原因,使得离心泵在该工况下运行效率低、压力脉动强度大。
王玉川谭磊曹树良祝宝山
关键词:离心泵叶轮压力脉动
液体射流泵内部流动分析:Ⅰ试验与三维数值模拟被引量:8
2012年
对偏向吸入和水平放置的液体射流泵的基本性能和内部流动分别进行了试验和三维数值模拟.数值模拟采用k-ε双方程湍流模型和SIMPLE算法,数值模拟结果与试验结果在最高效率工况附近基本重合.利用数值模拟结果对射流泵内两股流体的混合过程和流动规律进行了分析,发现对于大流量工况(流量比q>0.8),在喉管入口0.6倍喉管直径长度内,出现由局部损失和摩阻损失引起的当地压力比降低,被吸流体能量损失的现象;随着流量比的增大,单位被吸流体获得能量减少,两股流体传能距离增加,速度混合均匀长度为6~8倍喉管直径,大于喉管内压力比达到峰值的长度;喉管内两股流体混合流动过程与形成充分发展湍流过程类似;对偏向吸入的射流泵,吸入腔体内流动不对称,导致内部截面存在二次流动诱导旋涡,但是喉管内二次流动速度远小于主流速度,因此采用二维理论分析能够反映射流泵性能的主要特征.
王松林王玉川桂绍波高传昌曹树良
关键词:射流泵数值模拟
基于输运方程空化模型的离心泵空化数值模拟
基于输运方程空化模型和RNG k-ε湍流模型,考虑湍流压力脉动对饱和压力的影响修正空化模型,考虑空化流动可压缩性影响修正RNG k-ε湍流模型,数值模拟了离心泵内部的定常和瞬态空化流动。数值模拟所得的离心泵空化外特性与试...
谭磊曹树良孟根其其格见文刘卫伟魏培茹
关键词:离心泵输运方程空化压力脉动
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离心泵叶轮内部流场的数值计算被引量:9
2012年
为弥补基于传统一元理论方法中流场计算的不足,该文基于流体的连续方程和运动方程,用Fortran语言编程实现了离心泵叶轮内部流场的数值计算,S1流面上采用有限单元法、S2流面上采用流线曲率法,2类流面迭代计算直至收敛得到离心泵叶轮内部流场分布。对2类相对流面方法计算得到的叶轮内部流场进行了分析。结果表明,叶轮内部相对速度分布合理,叶片头部受冲击作用,压力面和吸力面流速相差较大。叶轮内部压力分布从进口到出口逐渐增大,梯度较小,叶轮做功平稳,进口处压力从后盖板到前盖板逐渐降低。同时考虑流体的连续方程和运动方程后,对比传统一元理论方法的计算结果,计算得到的轴面速度从后盖板到前盖板间各条流线的分布规律相差较大,在叶轮进口段差别最大,具有较强的三维特征,表明本文数值计算结果可更好地反映离心泵叶轮内部的三维真实流动规律。
谭磊曹树良王玉明邴浩祝宝山
关键词:离心泵叶轮流场
混流泵叶轮设计关键参数分析被引量:10
2013年
基于正反问题迭代设计方法,通过给定不同的速度矩分布规律、叶片进出口边位置等关键参数,设计了一系列混流泵叶轮。在此基础上,基于SIMPLEC算法,通过求解Naiver-Stokes方程和RNG k-ε湍流模型方程,模拟了叶轮内的三维湍流流场,获得了采用不同关键参数时叶轮内的速度与压力分布。针对数值模拟结果,分析了关键参数对于叶轮设计的影响。结果表明:基于类抛物型速度矩分布规律设计的叶片对于流体运动方向的控制能力最强,具有最优的水力性能;叶片进、出口边轴面距离适当增大有利于改善内部流动,水力效率可获得提升,但当距离过大时,会因表面摩擦损失增加导致效率下降。
邴浩曹树良陆力
关键词:水力机械混流泵数值模拟
Multi-parameter optimization design, numerical simulation and performance test of mixed-flow pump impeller被引量:5
2013年
On the basis of the three-dimensional design platform of the mixed-flow pump impellers, an optimization design system was developed in this paper by improving the genetic algorithm with application of both strategies of keeping the optimal individual and employing the niche. This system took the highest efficiency of the impeller as the optimization objective and employed P, a0 , △θh and △θt , which could directly affect the shape and the position of the blade, as optimization parameters. In addition, loss model was used to obtain fast and accurate prediction of the impeller efficiency. The optimization results illustrated that this system had advantages such as high accuracy and fine convergence, thus to effectively improve the design of the mixed-flow pump impellers. Numerical simulation was applied to determine the internal flow fields of the impeller obtained by optimization design, and to analyze both the relative velocity and the pressure distributions. The test results demonstrated that the mixed flow pump had the highest efficiency of 87.2%, the wide and flat high efficiency operation zone, the relatively wide range of blade angle adjustment, fine cavitation performance and satisfied stability.
BING HaoCAO ShuLiang
关键词:流场数值模拟混流泵优化设计系统改进遗传算法
混流泵叶轮的正反问题迭代法设计及流动分析被引量:2
2013年
提出了用正反问题迭代法设计混流泵叶轮的新方法。该方法能够有效地弥补传统方法设计叶片时轴面流动的计算仅满足流体连续方程的缺陷,同时考虑了叶片形状对轴面流场计算的影响。通过两类相对流面迭代求解流体连续方程与运动方程,完成设计叶轮的正问题计算。采用逐点积分法进行叶片骨线绘型,在轴面上加厚叶片,在保角变换平面内修圆叶片头尾部,完成反问题设计。正反问题迭代计算直至收敛,最终完成混流泵叶轮的设计。采用SIMPLEC算法,通过求解Navier-Stokes方程和RNGk-ε湍流模型方程,模拟了混流泵叶轮内的三维流场,获得了叶轮内的速度与压力分布。结果表明:正反问题迭代方法设计的叶片对于水流的控制能力增强,叶轮内部流动稳定,压力分布均匀,具有更优的水力性能。
邴浩张勤昭曹树良谭磊祝宝山
关键词:混流泵叶轮
Prediction method of impeller performance and analysis of loss mechanism for mixed-flow pump被引量:8
2012年
A loss model for the mixed-flow pump impellers was developed by summarizing a variety of loss calculation formulas systematically.The internal flow field of the impeller was obtained by employing the iterative calculation for S 1 and S 2 stream surfaces to solve the continuity and motion equations of fluid.Based on the calculation method of the flow field and the loss model,it is achieved to predict the impeller performance of the mixed-flow pump and the performance curves of a mixed-flow pump model with adjustable blades.Compared with the test data,the loss model of the mixed-flow pump based on the iterative calculation can predict the impeller performance quickly and accurately,which has a high value on the engineering applications.Based on the test verification,curves of various kinds of losses varied for the flow rate were analyzed under different blade angles.In addition,the mechanisms of various kinds of losses inside the mixed-flow pump impeller were discussed in-depth.
BING HaoTAN LeiCAO ShuLiangLU Li
关键词:损失计算混流泵迭代计算内部流场
Experimental Study of the Influence of Flow Passage Subtle Variation on Mixed-flow Pump Performance被引量:5
2014年
In the mixed-flow pump design,the shape of the flow passage can directly affect the flow capacity and the internal flow,thus influencing hydraulic performance,cavitation performance and operation stability of the mixed-flow pump.However,there is currently a lack of experimental research on the influence mechanism.Therefore,in order to analyze the effects of subtle variations of the flow passage on the mixed-flow pump performance,the frustum cone surface of the end part of inlet contraction flow passage of the mixed-flow pump is processed into a cylindrical surface and a test rig is built to carry out the hydraulic performance experiment.In this experiment,parameters,such as the head,the efficiency,and the shaft power,are measured,and the pressure fluctuation and the noise signal are also collected.The research results suggest that after processing the inlet flow passage,the head of the mixed-flow pump significantly goes down;the best efficiency of the mixed-flow pump drops by approximately 1.5%,the efficiency decreases more significantly under the large flow rate;the shaft power slightly increases under the large flow rate,slightly decreases under the small flow rate.In addition,the pressure fluctuation amplitudes on both the impeller inlet and the diffuser outlet increase significantly with more drastic pressure fluctuations and significantly lower stability of the internal flow of the mixed-flow pump.At the same time,the noise dramatically increases.Overall speaking,the subtle variation of the inlet flow passage leads to a significant change of the mixed-flow pump performance,thus suggesting a special attention to the optimization of flow passage.This paper investigates the influence of the flow passage variation on the mixed-flow pump performance by experiment,which will benefit the optimal design of the flow passage of the mixed-flow pump.
BING HaoCAO Shuliang
关键词:混流泵通流部分水力性能
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