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长距离输水泵站中空气罐参数敏感度分析及正交优化设计
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作者 赵斌娟 曹可凡 +3 位作者 刘雨露 宋英南 陈汇龙 戴斌 《排灌机械工程学报》 CSCD 北大核心 2024年第3期243-249,共7页
为了探讨长距离输水泵站中空气罐的优化设计方法,以西北某长距离输水工程为例,以泵站水击最大正压水头和最小负压水头作为优化目标,以初始气体压力、高度直径比、连接管直径、进口阻力系数和出口阻力系数为优化变量,基于正交优化设计方... 为了探讨长距离输水泵站中空气罐的优化设计方法,以西北某长距离输水工程为例,以泵站水击最大正压水头和最小负压水头作为优化目标,以初始气体压力、高度直径比、连接管直径、进口阻力系数和出口阻力系数为优化变量,基于正交优化设计方法和KYPipe软件,采用极差分析法获得空气罐各参数对于水击最大正压水头和最小负压水头的影响,同时对得到的结果进行排序,比较并找到最优参数组合.结果表明:初始气体压力、连接管直径和出口阻力系数等因素对于水击最大正压水头和最小负压水头的影响程度较大,其中初始气体压力是最敏感的参数,对于最大正压水头和最小负压水头的影响程度最大;经过比较发现最优方案的参数组合为初始气体压力水头50 m、高度直径比4、连接管直径250 mm、进口阻力系数10、出口阻力系数5;相比原始方案,优化方案使泵站的水击最大正压水头降低4.98%、最小负压水头升高64.00%. 展开更多
关键词 空气罐 长距离输水泵站 水锤防护 敏感度分析 正交优化设计
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端面粗糙度对螺旋浅槽机械密封液膜空化的影响 被引量:1
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作者 陈汇龙 程谦 +4 位作者 韩婷 付燕霞 周涛 赵斌娟 杨敬江 《润滑与密封》 CAS CSCD 北大核心 2023年第4期13-21,共9页
以螺旋浅槽上游泵送机械密封为研究对象,对端面粗糙度进行近似模拟,同时建立涉及表面粗糙度和液膜空化的间隙润滑膜流动计算模型,模拟分析端面不同部位粗糙度对密封液膜压力分布和空化的影响。研究表明:密封端面粗糙度会使液膜高压区压... 以螺旋浅槽上游泵送机械密封为研究对象,对端面粗糙度进行近似模拟,同时建立涉及表面粗糙度和液膜空化的间隙润滑膜流动计算模型,模拟分析端面不同部位粗糙度对密封液膜压力分布和空化的影响。研究表明:密封端面粗糙度会使液膜高压区压力提升、范围扩大,且粗糙度越大越明显,其中,动环非槽区粗糙度影响最大,静环端面粗糙度影响次之,动环槽区粗糙度影响最小;低转速(如1 000 r/min)时,无论端面粗糙与否,螺旋槽和粗糙微元均未导致液膜空化;较高转速时,位于较低膜压区的粗糙微元会导致液膜微观空化,动环槽区粗糙度对液膜宏观空化有一定的抑制作用且粗糙度越大抑制作用越明显,动环非槽区粗糙度导致膜压升高、空化区域收缩,静环端面粗糙度对液膜空化的影响相对较小;动、静环全端面粗糙时对空化的抑制作用比任何局部粗糙时强,且转速越高越明显。 展开更多
关键词 表面粗糙度 液膜空化 动压密封 气液两相流 微尺度
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小流量工况下混流泵涡识别及其演变规律 被引量:1
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作者 赵斌娟 刘雨露 +3 位作者 韩璐遥 曹可凡 陈汇龙 黄忠富 《排灌机械工程学报》 CSCD 北大核心 2023年第3期231-238,共8页
为了研究小流量工况下混流泵内部流动状态及涡结构的演化规律,采用大涡模拟的计算方法并结合先进的Omega涡识别方法,对某混流泵小流量工况下的涡结构进行识别,获得了叶轮内部典型涡结构的特征和演化规律,并与叶片表面的涡量生成和流动... 为了研究小流量工况下混流泵内部流动状态及涡结构的演化规律,采用大涡模拟的计算方法并结合先进的Omega涡识别方法,对某混流泵小流量工况下的涡结构进行识别,获得了叶轮内部典型涡结构的特征和演化规律,并与叶片表面的涡量生成和流动分离情况进行对比分析.研究结果表明:Omega方法克服了第二代涡识别方法需要人为调节阈值的缺陷,可以较好地识别小流量工况下混流泵内部的精细涡结构;在小流量工况下,混流泵内的叶片斜向涡带、叶尖涡和叶尖分离涡、通道涡以及尾缘脱离涡是叶轮流道内生成的典型涡结构,它们有各自独立的生成和发展过程,又相互作用,使叶轮内流场更加紊乱.本研究揭示了小流量工况下混流泵内部特有的涡结构特征与演变规律,可为包括混流泵在内的叶轮机械流场分析和性能优化提供一定的理论指导和技术支撑. 展开更多
关键词 混流泵 小流量工况 涡识别 涡演变规律 Omega方法
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基于人工神经网络的离心泵叶轮边界涡量流预测 被引量:10
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作者 赵斌娟 刘琦 +3 位作者 付燕霞 赵尤飞 廖文言 谢昀彤 《排灌机械工程学报》 EI CSCD 北大核心 2020年第2期127-132,共6页
根据边界涡量动力学理论,从边界涡量流在离心泵叶轮内表面的分布情况,可获知叶轮的受力状况,进而改进叶轮设计.以BP神经网络和径向基神经网络为建模手段,以叶轮内表面的边界涡量流为预测目标,通过高精度的CFD计算获得70个离心泵叶轮内... 根据边界涡量动力学理论,从边界涡量流在离心泵叶轮内表面的分布情况,可获知叶轮的受力状况,进而改进叶轮设计.以BP神经网络和径向基神经网络为建模手段,以叶轮内表面的边界涡量流为预测目标,通过高精度的CFD计算获得70个离心泵叶轮内表面的BVF分布,建立可用于训练人工神经网络的初始样本集;再利用63个初始样本建立离心泵叶轮几何参数和边界涡量流的非线性映射关系,并用剩余的7个校对样本进行测试.根据神经网络预测结果和数值模拟计算结果的误差分析,确定最适用于离心泵叶轮边界涡量流预测的神经网络类型.研究表明:径向基(RBF)神经网络的预测精度高于BP神经网络,其训练时间更短、运行稳定性更高;径向基函数的宽度对RBF神经网络的预测性能有较大影响,当径向基函数宽度取0.3时,RBF神经网络的预测性能最佳,预测误差仅0.0203;RBF神经网络预测所得叶轮内表面的边界涡量流分布,可以作为评价叶轮水力设计优劣的重要指标,进而指导叶轮机械的优化设计. 展开更多
关键词 离心泵叶轮 边界涡量流 径向基神经网络 BP神经网络 径向基函数宽度
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上游泵送机械密封多目标多工况优化研究 被引量:3
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作者 陈汇龙 桂铠 +3 位作者 赵斌娟 陈妙妙 任坤腾 刘金凤 《润滑与密封》 CAS CSCD 北大核心 2020年第8期19-25,共7页
为了获得具有较强适应工况变化能力的上游泵送机械密封,以微间隙内流场的CFD计算为基础,建立涉及多工况的多目标优化数学模型,综合分析相关研究成果和密封特性确定了优化变量及其取值范围、工况参数取值范围和优化目标。应用模糊集理论... 为了获得具有较强适应工况变化能力的上游泵送机械密封,以微间隙内流场的CFD计算为基础,建立涉及多工况的多目标优化数学模型,综合分析相关研究成果和密封特性确定了优化变量及其取值范围、工况参数取值范围和优化目标。应用模糊集理论确定不同工况下的液膜刚度和泄漏量的权重因子,并研究人工神经网络模型对优化结果的影响。基于穷尽搜索法和遗传算法对密封进行优化设计,对比分析2种优化方法得到的优化结果,并对优化前后的密封润滑膜流场特性进行BVF诊断分析。优化研究表明:人工神经网络模型很好地拟合了液膜刚度、泄漏量随槽型参数变化的函数关系;2种优化方法都能提高密封性能,但遗传算法优化比穷尽搜索法优化能获得更好的优化结果。 展开更多
关键词 上游泵送机械密封 人工神经网络模型 优化 穷尽搜索法 遗传算法
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混流泵叶片安放角对内涡结构及叶轮-导叶适应性的影响 被引量:3
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作者 赵斌娟 韩璐遥 +3 位作者 刘雨露 廖文言 付燕霞 黄忠富 《排灌机械工程学报》 CSCD 北大核心 2022年第2期109-114,共6页
转叶式混流泵的叶片安放角可以调节,当工况发生改变、叶片安放角调节后,叶轮-导叶的适应性将随之变化,进而影响到混流泵的水力性能.以一叶片安放角可取-4°,0°和4°的转叶式混流泵为研究对象,从涡结构的角度出发,探究叶片... 转叶式混流泵的叶片安放角可以调节,当工况发生改变、叶片安放角调节后,叶轮-导叶的适应性将随之变化,进而影响到混流泵的水力性能.以一叶片安放角可取-4°,0°和4°的转叶式混流泵为研究对象,从涡结构的角度出发,探究叶片安放角改变对叶轮-导叶适应性的影响规律.研究结果表明:随着叶片安放角的增大,叶轮内部涡结构的大小在逐渐增大,且环绕在轮缘处的涡带直径逐渐增大,而导叶内通道涡数量在逐渐减少,叶轮和导叶外缘后盖板壁上的涡结构大小和强度在逐渐增大;混流泵强度较高的涡主要集中在叶片表面以及壁面附近;通过对叶片安放角的调节,转叶式混流泵能在不同的流量区间内保持高效运行,但随着叶片安放角的增大,由于涡结构逐渐增多,转叶式混流泵效率逐渐降低;导叶内通道涡的数量随着叶片安放角的降低而增加,从而导致转叶式混流泵的扬程变小;转叶式混流泵叶轮-导叶适应性在叶片安放角调节后产生变化,叶片安放角为-4°时,叶轮与导叶匹配度最好,而越偏离-4°,从叶轮进入导叶的涡结构越多,叶轮-导叶适应性越差. 展开更多
关键词 转叶式混流泵 叶片安放角 Q准则 涡结构
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Hydraulic Optimization of a Double-channel Pump's Impeller Based on Multi-objective Genetic Algorithm 被引量:11
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作者 zhao binjuan WANG Yu +2 位作者 CHEN Huilong QIU Jing HOU Duohua 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第3期634-640,共7页
Computational fluid dynamics(CFD) can give a lot of potentially very useful information for hydraulic optimization design of pumps, however, it cannot directly state what kind of modification should be made to impro... Computational fluid dynamics(CFD) can give a lot of potentially very useful information for hydraulic optimization design of pumps, however, it cannot directly state what kind of modification should be made to improve such hydrodynamic performance. In this paper, a more convenient and effective approach is proposed by combined using of CFD, multi-objective genetic algorithm(MOGA) and artificial neural networks(ANN) for a double-channel pump's impeller, with maximum head and efficiency set as optimization objectives, four key geometrical parameters including inlet diameter, outlet diameter, exit width and midline wrap angle chosen as optimization parameters. Firstly, a multi-fidelity fitness assignment system in which fitness of impellers serving as training and comparison samples for ANN is evaluated by CFD, meanwhile fitness of impellers generated by MOGA is evaluated by ANN, is established and dramatically reduces the computational expense. Then, a modified MOGA optimization process, in which selection is performed independently in two sub-populations according to two optimization objectives, crossover and mutation is performed afterword in the merged population, is developed to ensure the global optimal solution to be found. Finally, Pareto optimal frontier is found after 500 steps of iterations, and two optimal design schemes are chosen according to the design requirements. The preliminary and optimal design schemes are compared, and the comparing results show that hydraulic performances of both pumps 1 and 2 are improved, with the head and efficiency of pump 1 increased by 5.7% and 5.2%, respectively in the design working conditions, meanwhile shaft power decreased in all working conditions, the head and efficiency of pump 2 increased by 11.7% and 5.9%, respectively while shaft power increased by 5.5%. Inner flow field analyses also show that the backflow phenomenon significantly diminishes at the entrance of the optimal impellers 1 and 2, both the area of vortex and intensity of vortex decreases in the whole flow channel. This paper provides a promising tool to solve the hydraulic optimization problem of pumps' impellers. 展开更多
关键词 double-channel pump's impeller multi-objective genetic algorithm artificial neural network computational fluid dynamics(CFD) UNI
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THREE-DIMENSIONAL COUPLED IMPELLER-VOLUTE SIMULATION OF FLOW IN CENTRIFUGAL PUMP AND PERFORMANCE PREDICTION 被引量:28
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作者 zhao binjuan YUAN Shouqi +1 位作者 LlU Houlin TAN Minggao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第1期59-62,共4页
A three-dimensional turbulent flow through an entire centrifugal pump is simulated using k-ε turbulence model modified by rotation and curvature, SIMPLEC method and body-fitted coordinate. The velocity and pressure f... A three-dimensional turbulent flow through an entire centrifugal pump is simulated using k-ε turbulence model modified by rotation and curvature, SIMPLEC method and body-fitted coordinate. The velocity and pressure fields are obtained for the pump under various working conditions, which is used to predict the head and hydraulic efficiency of the pump, and the results correspond well with the measured values. The calculation results indicate that the pressure is higher on the pressure side than that on the suction side of the blade; The relative velocity on the suction side gradually decreases from the impeller inlet to the outlet, while increases on the pressure side, it finally results in the lower relative velocity on the suction side and the higher one on the pressure side at the impeller outlet; The impeller flow field is asymmetric, i.e. the velocity and pressure fields arc totally different among all channels in the impeller; In the volute, the static pressure gradually increases with the flow route, and a large pressure gratitude occurs in the tongue; Secondary flow exists in the rear part of the spiral. 展开更多
关键词 Centrifugal pump Numerical simulation Performance prediction Secondary flow
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Influencing factors on hydrodynamic lubrication failure of upstream pumping mechanical seal 被引量:2
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作者 CHEN Huilong LI Xinwen +4 位作者 WANG Bin WU Qiangbo REN Kunteng LI Tong zhao binjuan 《排灌机械工程学报》 EI CSCD 北大核心 2018年第6期509-516,共8页
Considering the effect of viscosity-temperature relationship and cavitation of micro-scale film,the influencing factors on hydrodynamic lubrication performance of upstream pumping mechanical seal were investigated bas... Considering the effect of viscosity-temperature relationship and cavitation of micro-scale film,the influencing factors on hydrodynamic lubrication performance of upstream pumping mechanical seal were investigated based on the theory of hydrodynamic lubrication.N-S equation,energy equation,viscosity-temperature equation and vapor transport equation were solved with the finite volume method by using Fluent software,which was performed to analyze the influence of the viscosity-temperature and cavitation effect on hydrodynamic lubrication failure of the film.The research demonstrates that it will lead to the significant difference of the temperature field by considering the coupling of temperature and viscosity.When the film thickness decreases and the rotating speed rises,cavitation regions and viscous friction heat increases,the opening force of the film is also enhanced.However,the growth rate is restricted to the cavitation regions and viscous friction heat,and the opening force begins to decline to a certain extent,and thereby being insufficient to open the surfaces of the seals and leading to the failure of automatic adjustment function and severe wear,lubrication failure occurrs.Through comprehensive research on the influences of viscosity-temperature and cavitation effect on hydrodynamic lubrication performance,the theories of failure and design of upstream pumping mechanical seal are further developed. 展开更多
关键词 mechanical seal hydrodynamic lubrication viscosity-temperature effect cavitation effect lubrication failure computational fluid dynamics
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以家庭为中心的协同护理结合伙伴式健康宣教对肝胆手术后患者疾病感知程度及健康知识水平的影响 被引量:2
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作者 李钰 刘利 +5 位作者 施彩凤 王乐 张玺 董咪咪 赵斌娟 于燕喃 《临床医学研究与实践》 2021年第29期169-171,共3页
目的探讨以家庭为中心的协同护理结合伙伴式健康宣教在肝胆手术后患者中的应用效果。方法选取2018年6月至2020年6月收治的80例肝胆手术后患者作为研究对象,按照随机数字表法将其分为对照组和观察组,各40例。对照组给予常规护理干预,观... 目的探讨以家庭为中心的协同护理结合伙伴式健康宣教在肝胆手术后患者中的应用效果。方法选取2018年6月至2020年6月收治的80例肝胆手术后患者作为研究对象,按照随机数字表法将其分为对照组和观察组,各40例。对照组给予常规护理干预,观察组在对照组基础上实施以家庭为中心的协同护理结合伙伴式健康宣教。比较两组的疾病感知程度、自我效能感、健康知识水平、并发症发生情况。结果干预后,观察组的BIPQ评分低于对照组,GSES、病情掌握程度、病情禁忌事项、药物禁忌、相关病症知识评分高于对照组(P<0.05)。观察组的并发症总发生率为5.00%,低于对照组的20.00%(P<0.05)。结论以家庭为中心的协同护理结合伙伴式健康宣教可改善肝胆手术后患者的疾病感知程度,提高自我效能感及健康知识水平,安全可靠。 展开更多
关键词 以家庭为中心的协同护理 伙伴式健康宣教 肝胆手术 疾病感知程度 健康知识水平
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Robust optimization design on impeller of mixed-flow pump
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作者 zhao binjuan LIAO Wenyan +3 位作者 XIE Yuntong HAN Luyao FU Yanxia HUANG Zhongfu 《排灌机械工程学报》 CSCD 北大核心 2021年第7期671-677,共7页
To increase the robustness of the optimization solutions of the mixed-flow pump,the impeller was firstly indirectly parameterized based on the 2D blade design theory.Secondly,the robustness of the optimization solutio... To increase the robustness of the optimization solutions of the mixed-flow pump,the impeller was firstly indirectly parameterized based on the 2D blade design theory.Secondly,the robustness of the optimization solution was mathematically defined,and then calculated by Monte Carlo sampling method.Thirdly,the optimization on the mixed-flow pump′s impeller was decomposed into the optimal and robust sub-optimization problems,to maximize the pump head and efficiency and minimize the fluctuation degree of them under varying working conditions at the same time.Fourthly,using response surface model,a surrogate model was established between the optimization objectives and control variables of the shape of the impeller.Finally,based on a multi-objective genetic optimization algorithm,a two-loop iterative optimization process was designed to find the optimal solution with good robustness.Comparing the original and optimized pump,it is found that the internal flow field of the optimized pump has been improved under various operating conditions,the hydraulic performance has been improved consequently,and the range of high efficient zone has also been widened.Besides,with the changing of working conditions,the change trend of the hydraulic performance of the optimized pump becomes gentler,the flow field distribution is more uniform,and the influence degree of the varia-tion of working conditions decreases,and the operating stability of the pump is improved.It is concluded that the robust optimization method proposed in this paper is a reasonable way to optimize the mixed-flow pump,and provides references for optimization problems of other fluid machinery. 展开更多
关键词 mixed-flow pump multi-objective genetic optimization robust optimization response surface method 2D blade design theory
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第二代涡识别方法在混流泵内部流场中的适用性分析 被引量:26
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作者 赵斌娟 谢昀彤 +3 位作者 廖文言 韩璐遥 付燕霞 黄忠富 《机械工程学报》 EI CAS CSCD 北大核心 2020年第14期216-223,共8页
流体机械内部涡的产生会严重影响流体机械的内流场及外性能,速度、压力等传统方式并不能全面揭示流场真实的流动情况,而涡识别方法可以表征混流泵内部涡结构,识别涡的大小、位置和演变规律。采用大涡模拟对混流泵内部流场进行高精度数... 流体机械内部涡的产生会严重影响流体机械的内流场及外性能,速度、压力等传统方式并不能全面揭示流场真实的流动情况,而涡识别方法可以表征混流泵内部涡结构,识别涡的大小、位置和演变规律。采用大涡模拟对混流泵内部流场进行高精度数值模拟,由此获得不同涡识别方法(涡量、螺旋度方法、λ2准则和Q准则)在混流泵内流场中识别出的涡结构。结果表明:与涡量准则法相比,采用第二代涡识别方法更能获得详细的混流泵内部的涡结构。其中,Q准则能剔除绝大部分的剪切层影响,较其他涡识别方法更好地捕捉混流泵内部的涡结构,显示的涡大小更加精确。通过Q准则的识别,提取了混流泵叶轮流道内规则的通道涡,此类型涡结构均匀分布在各个流道,叶片叶顶泄漏涡结构清晰,摆脱了壁面剪切层的干扰;导叶叶片靠近轮毂处同样获取了规则的通道涡,通道涡均匀的分布在各个流道内,叶片尾缘脱落涡摆脱了壁面剪切层的干扰,可以看到清晰的涡结构。Q准则在第二代涡识别方法中脱颖而出,更适用于混流泵内流场的涡识别,在涡结构以及涡大小的显示方面都具有优势,可用于旋转机械内流场的分析。 展开更多
关键词 混流泵 大涡模拟 涡识别 Q准则 螺旋度方法 λ2准则
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