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LNG储运安全保障技术发展与展望
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作者 朱祖超 崔宝玲 +2 位作者 张光 王超 于佳文 《流体机械》 CSCD 北大核心 2024年第9期84-97,共14页
中国作为液化天然气(LNG)进口大国主要通过LNG运输船运至沿海地区的LNG接收站,经气化后向内陆地区通过管道进行输送,其中,储罐和高压泵等储运关键设备发挥着核心支撑作用。本文阐述了LNG从船运到LNG接收站再进入管线输送过程中所涉及的... 中国作为液化天然气(LNG)进口大国主要通过LNG运输船运至沿海地区的LNG接收站,经气化后向内陆地区通过管道进行输送,其中,储罐和高压泵等储运关键设备发挥着核心支撑作用。本文阐述了LNG从船运到LNG接收站再进入管线输送过程中所涉及的LNG储运技术与关键设备发展状况,分析了LNG船运过程传热与蒸发抑制技术,储存、冷凝及气化等静设备以及长管线输送动力设备等关键设备的研发难点,讨论了LNG管线安全输送保障技术。提出了要进一步加强理论研究和关键技术突破,重点研发LNG储运关键设备,确保LNG储运过程的安全可靠性,实现LNG储运关键设备全部国产化和能源重大工程的自主可控发展。 展开更多
关键词 液化天然气(LNG) LNG储运设备 管线输送 安全保障技术
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高速诱导轮离心泵内空化发展可视化实验与数值模拟 被引量:21
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作者 崔宝玲 陈杰 +3 位作者 李晓俊 林哲 蔡海兵 韩安达 《农业机械学报》 EI CAS CSCD 北大核心 2018年第4期148-155,共8页
为了研究高速诱导轮离心泵内空化发生发展规律,采用高速摄像技术,对离心泵内诱导轮与叶轮流道的空化流动进行可视化研究,并结合CFD数值计算对离心泵内部流场进行模拟分析。结果表明:在空化初生阶段(汽蚀余量为5.0 m),诱导轮叶片前缘出... 为了研究高速诱导轮离心泵内空化发生发展规律,采用高速摄像技术,对离心泵内诱导轮与叶轮流道的空化流动进行可视化研究,并结合CFD数值计算对离心泵内部流场进行模拟分析。结果表明:在空化初生阶段(汽蚀余量为5.0 m),诱导轮叶片前缘出现叶顶泄漏涡空化;在空化发展阶段(汽蚀余量为1.07~5.0 m),流动极为复杂,在诱导轮流道内同时出现叶顶泄漏涡空化、片状空化和云状空化,并且在较低汽蚀余量(汽蚀余量为1.5 m)时,出现不对称空化现象。在空化初生和发展阶段,泵的扬程和效率基本保持不变;在空化恶化阶段(汽蚀余量小于1.07 m),诱导轮流道内基本被空泡堵塞,空泡进入叶轮流道,导致离心泵扬程和效率急剧下降。 展开更多
关键词 高速离心泵 诱导轮 空化发展 叶顶泄漏涡 可视化实验
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血清PLA2R抗体评估原发性膜性肾病病情的临床价值研究 被引量:9
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作者 李伟皓 崔宝玲 +4 位作者 高伟 张明明 刘晓梅 张菲菲 张智萍 《国际检验医学杂志》 CAS 2018年第23期2889-2892,2896,共5页
目的探讨血清M型磷脂酶A2受体(PLA2R)抗体评估原发性膜性肾病(PMN)病情的能力。方法测定2016年3月至2017年12月河北医科大学第二医院收治的137例PMN患者、31例继发性膜性肾病(SMN)患者和50例健康对照者血清尿素氮、肌酐、总蛋白、胆固... 目的探讨血清M型磷脂酶A2受体(PLA2R)抗体评估原发性膜性肾病(PMN)病情的能力。方法测定2016年3月至2017年12月河北医科大学第二医院收治的137例PMN患者、31例继发性膜性肾病(SMN)患者和50例健康对照者血清尿素氮、肌酐、总蛋白、胆固醇、三酰甘油、血清PLA2R抗体和24h尿蛋白。对31例经免疫抑制剂治疗的PMN患者随访6个月。结果 PMN组患者血清PLA2R抗体阳性率显著高于SMN组。PMN、SMN患者治疗前血清PLA2R抗体水平与总蛋白、清蛋白呈负相关(P<0.05),与总胆固醇呈正相关(P<0.05),且PMN患者血清PLA2R抗体水平与24h尿蛋白呈正相关(P<0.05)。低蛋白尿组、中蛋白尿组、高蛋白尿PMN患者血清PLA2R抗体水平依次升高,差异有统计学意义(P<0.05)。免疫抑制剂治疗6个月后缓解组患者血清PLA2R抗体水平及24h尿蛋白显著低于未缓解组,差异有统计学意义(P<0.05)。结论血清PLA2R抗体水平与PMN的病情具有明显相关性,可作为临床病情评估的重要参考指标。 展开更多
关键词 肾小球肾炎 膜性 血尿素氮 胆固醇 三酰甘油 磷脂酶A2受体抗体
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多级离心泵扬程预测及内部流场数值模拟 被引量:16
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作者 成科 陈启明 +1 位作者 崔宝玲 岳维亮 《流体机械》 CSCD 北大核心 2021年第3期60-67,共8页
为了研究多级离心泵的性能及其内部流场分布,采用SST k-ε湍流模型对原型泵的首级、第二级及第三级叶轮进行定常和非定常数值模拟计算,分析其外特性、内部流场和压力脉动。研究表明,通过前三级叶轮的扬程能较准确地预测原型泵的扬程。... 为了研究多级离心泵的性能及其内部流场分布,采用SST k-ε湍流模型对原型泵的首级、第二级及第三级叶轮进行定常和非定常数值模拟计算,分析其外特性、内部流场和压力脉动。研究表明,通过前三级叶轮的扬程能较准确地预测原型泵的扬程。不同流量工况下隔舌处均易出现低压区域,大流量工况蜗壳出口近隔舌处也易出现局部低压区和高压区,隔舌处压力梯度较大。小流量下首级叶轮近隔舌区域的压力脉动不稳定,周期性较差,频域幅值主要集中在低频率区域;对于设计流量和大流量工况,首级叶轮近隔舌区域和远离隔舌区域的压力脉动较为稳定,呈现出较明显的周期性,主频在1倍和2倍叶片通过频率处,频域幅值主要集中在叶片通过频率及其高次谐波频率处。 展开更多
关键词 多级离心泵 扬程预测 内部流场 压力脉动
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潜水离心泵叶轮叶片数及导叶叶片数的匹配 被引量:8
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作者 葛明亚 崔宝玲 方晨 《排灌机械工程学报》 EI CSCD 北大核心 2018年第12期1240-1245,共6页
为分析叶轮和导叶叶片数对潜水泵性能的影响,在原型泵(叶轮叶片数为7,导叶叶片数为8)基础上设计了9个不同叶轮和导叶叶片数的潜水泵模型,基于雷诺时均Navier-Stokes方程Spalart-Allmaras湍流模型对各模型泵内的流场进行了三维定常数值... 为分析叶轮和导叶叶片数对潜水泵性能的影响,在原型泵(叶轮叶片数为7,导叶叶片数为8)基础上设计了9个不同叶轮和导叶叶片数的潜水泵模型,基于雷诺时均Navier-Stokes方程Spalart-Allmaras湍流模型对各模型泵内的流场进行了三维定常数值模拟计算,获得了泵的扬程和效率曲线.结果表明,当潜水离心泵的叶轮叶片数为6,导叶叶片数为8时,潜水泵具有最佳的整体性能.性能最优潜水泵效率提高2. 61%,扬程提高0. 574 m.通过对性能最优和原潜水泵内流场对比分析发现,性能最优潜水泵具有更大的相对高压区,叶轮和导叶叶片数变化对潜水泵流场速度分布影响较小.通过对原型潜水泵的外特性试验验证了数值模拟方法合理可行. 展开更多
关键词 潜水泵 叶片数 数值模拟 性能
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Numerical Simulation and Analysis of Solid-liquid Two-phase Flow in Centrifugal Pump 被引量:60
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作者 ZHANG Yuliang LI Yi +2 位作者 cui baoling ZHU Zuchao DOU Huashu 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第1期53-60,共8页
The flow with solid-liquid two-phase media inside centrifugal pumps is very complicated and the relevant method for the hydraulic design is still immature so far. There exist two main problems in the operation of the ... The flow with solid-liquid two-phase media inside centrifugal pumps is very complicated and the relevant method for the hydraulic design is still immature so far. There exist two main problems in the operation of the two-phase flow pumps, i.e., low overall efficiency and severe abrasion. In this study, the three-dimensional, steady, incompressible, and turbulent solid-liquid two-phase flows in a low-specific-speed centrifugal pump are numerically simulated and analyzed by using a computational fluid dynamics (CFD) code based on the mixture model of the two-phase flow and the RNG k-~ two-equation turbulence model, in which the influences of rotation and curvature are fully taken into account. The coupling between impeller and volute is implemented by means of the frozen rotor method. The simulation results predicted indicate that the solid phase properties in two-phase flow, especially the concentration, the particle diameter and the density, have strong effects on the hydraulic performance of the pump. Both the pump head and the efficiency are reduced with increasing particle diameter or concentration. However, the effect of particle density on the performance is relatively minor. An obvious jet-wake flow structure is presented near the volute tongue and becomes more remarkable with increasing solid phase concentration. The suction side of the blade is subject to much more severe abrasion than the pressure side. The obtained results preliminarily reveal the characteristics of solid-liquid two-phase flow in the centrifugal pump, and are helpful for improvement and empirical correction in the hydraulic design of centrifugal pumps. 展开更多
关键词 centrifugal pump solid-liquid two-phase particle property hydraulic performance ABRASION numerical simulation
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External Characteristics and Internal Flow Features of a Centrifugal Pump during Rapid Startup 被引量:15
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作者 ZHU Zuchao GUO Xiaomei +1 位作者 cui baoling LI Yi 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第5期798-804,共7页
Centrifugal pumps always work under steady conditions,and many researches focus on the steady operation.But transient conditions,such as sudden startup and shutdown,are inevitable.The researches on the inner flow of c... Centrifugal pumps always work under steady conditions,and many researches focus on the steady operation.But transient conditions,such as sudden startup and shutdown,are inevitable.The researches on the inner flow of centrifugal pumps under transient conditions have been done,and they show that the transient operation is different from the steady operation.In order to research the evolution of unsteady flow in a centrifugal pump under transient conditions,and to investigate the mechanism of transient effects by analyzing the unsteady flow in a centrifugal pump,the external characteristic experiment and the internal flow numerical calculation of the centrifugal pump with an open impeller during startup is presented.The relationships of the rotation speed,capacity and head between start-time are obtained by the external characteristics experiment.The numerical calculations under startup process are carried out by using the k-e model and N-S equation.The distribution of velocity and pressure in the inner channel of the tested pump was obtained by choosing fourteen start-time points and twelve geometrical points in the impeller channel during startup.The calculation results show that the velocity and the pressure increase linearly with the start-time before rotation's speed gets steady,then changes almost horizontally after rotation speed becomes steady,then fluctuates until being steady.The internal flow characteristics are in good agreement with the external characteristic experimental results and numerical calculation.The simulation methods and results make the basis for the diagnosis and optimization of under flow in the centrifugal pump during transient operation. 展开更多
关键词 centrifugal pump numerical calculation transient condition STARTUP
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Computational Analysis of Centrifugal Pump Delivering Solid-liquid Two-phase Flow during Startup Period 被引量:14
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作者 ZHANG Yuliang LI Yi +1 位作者 ZHU Zuchao cui baoling 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第1期178-185,共8页
The transient behavior of centrifugal pumps during transient operating periods, such as startup and stopping, has drawn more and more attention recently because of urgent needs in engineering. Up to now, almost all th... The transient behavior of centrifugal pumps during transient operating periods, such as startup and stopping, has drawn more and more attention recently because of urgent needs in engineering. Up to now, almost all the existing studies on this behavior are limited to using water as working fluid. The study on the transient behavior related to solid-liquid two-phase flow has not been seen yet. In order to explore the transient characteristics of a high specific-speed centrifugal pump during startup period delivering the pure water and solid-liquid two-phase flow, the transient flows inside the pump are numerically simulated using the dynamic mesh method. The variable rotational speed and flow rate with time obtained from experiment are best fitted as the function of time, and are written into computational fluid dynamics (CFD) code-FLUENT by using a user defined function. The predicted heads are compared with experimental results when pumping pure water. The results show that the difference in the transient performance during startup period is very obvious between water and solid-liquid two-phase flow during the later stage of startup process. Moreover, the time for the solid-liquid two-phase flow to achieve a stable condition is longer than that for water. The solid-liquid two-phase flow results in a higher impeller shaft power, a larger dynamic reaction force, a more violent fluctuation in pressure and a reduced stable pressure rise comparing with water. The research may be useful to tmderstanding on the transient behavior of a centrifugal pump under a solid-liquid two-phase flow during startup period. 展开更多
关键词 centrifugal pump solid-liquid two-phase flow STARTUP transient performance
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Effect of Cone Angle on the Hydraulic Characteristics of Globe Control Valve 被引量:1
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作者 LIN Zhe WANG Huijie +3 位作者 SHANG Zhaohui cui baoling ZHU Chongxi ZHU Zuchao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第3期641-648,共8页
Globe control valve is widely used in chemical, petroleum and hydraulic industries, and its throttling feature is achieved by the adopting of valve plug. However, very limited information is available in literature re... Globe control valve is widely used in chemical, petroleum and hydraulic industries, and its throttling feature is achieved by the adopting of valve plug. However, very limited information is available in literature regarding the influence of valve plug on the internal and external features in globe control valves. Thus the effect of valve plug is studied by CFD and experiment in this paper. It is obtained from external features that the pressure drop between upstream and downstream pressure-sampling position increases exponentially with flow rate. And for small valve opening, the increment of pressure drop decreases with the increase of cone angle(β). However, with the increase of valve opening, the effect of cone angle diminishes significantly. It is also found that the cone angle has little effect on flow coefficient(Cv) when the valve opening is larger than 70%. But for the cases less than 70%, Cv curve varies from an arc to a straight line. The variation of valve performance is caused by the change of internal flow. The results of internal flow show that cone angle has negligible effect on flow properties for the cases of valve opening larger than 70%. However, when valve opening is smaller than 70%, the pressure drop of orifice decreases with the increase of β, making the reduction in value and scope of the high speed zone around the conical surface of valve plug, and then results in a decreasing intensity of adjacent downstream vortex. Meanwhile, it is concluded from the results that the increase of cone angle will be beneficial for the anti-cavitation and anti-erosion of globe control valve. This paper focuses on the internal and external features of globe control valve that caused by the variation of cone angle, arriving at some results beneficial for the design and usage of globe control valve. 展开更多
关键词 globe control valve cone angle numerical simulation EXPERIMENT internal and external features
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旋进旋涡流量计气固两相流数值模拟与实验研究
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作者 谭文熬 崔宝玲 +1 位作者 张玉良 陈德胜 《机械工程师》 2018年第5期37-40,44,共5页
以50 mm口径旋进旋涡流量计为研究对象,利用计算流体动力学软件FLUENT,采用欧拉-欧拉模型,结合RNG k-ε湍流模型与SIMPLEC算法对流量计内部进行气固两相数值模拟和实验研究,对旋进旋涡流量计气固两相流动中固相的体积分布规律、速度场... 以50 mm口径旋进旋涡流量计为研究对象,利用计算流体动力学软件FLUENT,采用欧拉-欧拉模型,结合RNG k-ε湍流模型与SIMPLEC算法对流量计内部进行气固两相数值模拟和实验研究,对旋进旋涡流量计气固两相流动中固相的体积分布规律、速度场分布、压力场分布进行了探讨,并做了相应的实验研究。结果表明:颗粒浓度越大,监测点的压力频率越小,流量计读数越小,流体流动越复杂,在流道壁面上的固体颗粒分布越多。 展开更多
关键词 旋进旋涡流量计 气固两相流动 数值模拟
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Unsteady Flow Characteristic of Low-Specific-Speed Centrifugal Pump under Different Flow-Rate Conditions 被引量:7
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作者 cui baoling CHEN Desheng +2 位作者 XU Wenjing JIN Yingzi ZHU Zuchao 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第1期17-23,共7页
To investigate the unsteady flow characteristics in centrifugal pump, the flow field in a low-specific-speed centri- fugal pump with complex impeller is numerically simulated under different conditions. The RNG r-e tu... To investigate the unsteady flow characteristics in centrifugal pump, the flow field in a low-specific-speed centri- fugal pump with complex impeller is numerically simulated under different conditions. The RNG r-e turbulence model and sliding mesh are adopted during the process of computation. The results show that the interaction be- tween impeller and volute results in the unstable flow of the fluid, which causes the uneven distribution of pres- sure fluctuations around the circumference of volute. Besides the main frequency and its multiple frequency of pressure fluctuations in the centrifugal pump, the frequency caused by the long blades of complex impeller also plays a dominant role in the low-frequency areas. Furthermore, there exists biggish fluctuation phenomenon near the tongue. The composition of static pressure fluctuations frequency on the volute wall and blade outlet is similar except that the fluctuation amplitude near the volute wall reduces. In general, the different flow rates mainly have influence on the amplitude of fluctuation frequency in the pump, while have little effect on the frequency compo- sition. 展开更多
关键词 Centrifugal pump Low-specific-speed Complex impeller UNSTEADY Numerical simulation
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Numerical Investigation of Pressure Distribution in a Low Specific Speed Centrifugal Pump 被引量:7
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作者 JIA Xiaoqi cui baoling +1 位作者 ZHU Zuchao YU Xiaoli 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第1期25-33,共9页
To study the pressure distribution of the volute casing, front casing and back casing in a prototype centrifugal pump, the pressure experiments and numerical simulations are carried out at six working conditions in th... To study the pressure distribution of the volute casing, front casing and back casing in a prototype centrifugal pump, the pressure experiments and numerical simulations are carried out at six working conditions in this paper. The experimental results shows that the asymmetry of static pressure distribution on volute casing and front cavity is caused by the tongue of the volute and it may result in high radial and axial resultant force which can cause vibration and noise in the centrifugal pump. With the increasing of flow rote, the asymmetry of static pressure distribution and the magnitude of static pressure values reduce. The numerical results indicate that the pressure fluctuation near the tongue is strongest and it becomes slighter at point away from the tongue. With the increasing of flow rote, the local high=pressure region in impeller passage reduces and the flow becomes smoother accordingly, whereas the fluid speed becomes much higher which may cause further flow losses. The results predicted by numcrical simulation are in coincident with the experimental ones. It shows that the turbulence model for simulating the flow field in centrifugal pumps is feasible. 展开更多
关键词 pressure testing pressure distribution numerical simulation centrifugal pump
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Anti-cavitation performance of a splitter-bladed inducer under different flow rates and different inlet pressures 被引量:4
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作者 GUO XiaoMei ZHU ZuChao +1 位作者 cui baoling HUANG Yong 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第12期2131-2138,共8页
The anti-cavitation performance of a high-speed centrifugal pump with a splitter-bladed inducer is investigated under different flow rates and different inlet pressures. Simulations and external characteristics experi... The anti-cavitation performance of a high-speed centrifugal pump with a splitter-bladed inducer is investigated under different flow rates and different inlet pressures. Simulations and external characteristics experiments are carried out. Static pressure and the vapor volume fraction distributions on the inducer and the impeller of the pump under various operation conditions are obtained. The results show that the cavitation developments on the impeller and on the inducer with the flow rates are reverse, while the development of the inlet pressure on the inducer and the impeller is the same. Cavitation on the impeller increases with the increase of flow rates, and it extends to the near passages with rotating, while cavitation on the inducer is more complex than that on the impeller. Cavitation at the inlet of the inducer decreases with the increase of flow rates, while cavitation at the outlet of the inducer is opposite. The results also show that cavitation development on the impeller and on the inducer with the inlet pressure is the same. Cavitation both decreases with the increase of the inlet pressure at the same flow rate. Furthermore, asymmetric cavitation on the impeller and on the inducer is both observed. And the asymmetric degree of cavitation on the impeller is higher than that on the inducer. 展开更多
关键词 centrifugal pump anti-cavitation characteristics splitter-bladed inducer two phases flow
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Influence of Blade Outlet Angle on Performance of Low-specific-speed Centrifugal Pump 被引量:4
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作者 cui baoling Wang Canfei +1 位作者 Zhu Zuchao Jin Yingzi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第2期117-122,共6页
In order to analyze the influence of blade outlet angle on inner flow field and performance of low-specific-speed centrifugal pump, the flow field in the pump with different blade outlet angles 32.5°and 39° ... In order to analyze the influence of blade outlet angle on inner flow field and performance of low-specific-speed centrifugal pump, the flow field in the pump with different blade outlet angles 32.5°and 39° was numerically calculated. The external performance experiment was also carried out on the pump. Based on SIMPLEC algorithm, time-average N-S equation and the rectified k-ε turbulent model were adopted during the process of computation. The distributions of velocity and pressure in pumps with different blade outlet angles were obtained by calculation. The numerical results show that backflow areas exist in the two impellers, while the inner flow has a little improvement in the impeller with larger blade outlet angle. Blade outlet angle has a certain influence on the static pressure near the long-blade leading edge and tongue, but it has little influence on the distribution of static pressure in the passages of impeller. The experiment results show that the low-specific-speed centrifugal pump with larger blade outlet angle has better hydraulic performance. 展开更多
关键词 centrifugal pump blade outlet angle numerical simulation external characteristic
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Numerical simulation of the effect of upstream swirling flow on swirl meter performance 被引量:4
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作者 CHEN Desheng cui baoling ZHU Zuchao 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第2期117-124,共8页
Flow measurement is important in the fluid process and transmission system. For the need of accuracy measure- ment of fluid, stable flow is acquired. However, the elbows and devices as valves and rotary machines may p... Flow measurement is important in the fluid process and transmission system. For the need of accuracy measure- ment of fluid, stable flow is acquired. However, the elbows and devices as valves and rotary machines may pro- duce swirling flow in the natural gas pipeline networks system and many other industry fields. In order to reveal the influence of upstream swirling flow on internal flow fields and the metrological characteristics, numerical si- mulations are carried out on the swirl meter. Using RNG k-e turbulent model and SIMPLE algorithm, the flow field is numerically simulated under swirling flows generated from co-swirl and counter-swirl flow. Simulation results show fluctuation is enhanced or weakened depending on the rotating direction of swirling flow. A coun- ter-swift flow increases the entropy production rate at the inlet and outlet of the swirler, the junction region between throat and divergent section, and then the pressure loss is increased. The vortex precession dominates the static pressure distributions on the solid walls and in the channel, especially at the end region of the throat. 展开更多
关键词 Swirl meter Numerical simulation swirling flow vortex precession
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Pressure Fluctuation Generated by the Interaction of Blade and Tongue 被引量:4
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作者 ZHENG Lulu DOU Hua-Shu +2 位作者 CHEN Xiaoping ZHU Zuchao cui baoling 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第1期8-16,共9页
Pressure fluctuation around the tongue has large effect on the stable operation of a centrifugal pump. In this paper, the Reynolds averaged Navier-Stokes equations (RANS) and the RNG k-epsilon turbulence model is em... Pressure fluctuation around the tongue has large effect on the stable operation of a centrifugal pump. In this paper, the Reynolds averaged Navier-Stokes equations (RANS) and the RNG k-epsilon turbulence model is employed to simulate the flow in a pump. The flow field in the centrifugal pump is computed for a range of flow rate. The simulation results have been compared with the experimental data and good agreement has been achieved. In order to study the interaction of the tongue with the impeller, fifteen monitor probes are evenly distributed circumferentially at three radii around the tongue. Pressure distribution is investigated at various blade positions while the blade approaches to and leaves the tongue region. Results show that pressure signal fluctuates largely around the tongue, and it is more intense near the tongue surface. At design condition, standard deviation of pressure fluctua- tion is the minimum. At large flow rate, the increased low pressure region at the blade trailing edge results in the increases of pressure fluctuation amplitude and pressure spectra at the monitor probes. Minimum pressure is obtained when the blade is facing to the tongue. It is found that the amplitude of pressure fluctuation strongly depends on the blade positions at large flow rate, and pressure fluctuation is caused by the relative movement between blades and tongue. At small flow rate, the rule of pressure fluctuation is mainly depending on the structure of vortex flow at blade passage exit besides the influence fTom the relative position between the blade and the tongue. 展开更多
关键词 centrifugal pump pressure fluctuation INSTABILITY numerical simulation
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Effect of Placements (horizontal with vertical) on Gas-solid Flow and Particle Impact Erosion in Gate Valve 被引量:2
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作者 LIN Zhe ZHU Linhang +2 位作者 cui baoling LI Yi RUAN Xiaodong 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第6期558-563,共6页
Gate valve has various placements in the practical usages.Due to the effect of gravity,particle trajectories and erosions are distinct between placements.Thus in this study,gas-solid flow properties and erosion in gat... Gate valve has various placements in the practical usages.Due to the effect of gravity,particle trajectories and erosions are distinct between placements.Thus in this study,gas-solid flow properties and erosion in gate valve for horizontal placement and vertical placement are discussed and compared by using Euler-Lagrange simulation method.The structure of a gate valve and a simplified structure are investigated.The simulation procedure is validated in our published paper by comparing with the experiment data of a pipe and an elbow.The results show that for all investigated open degrees and Stokes numbers(St),there are little difference of gas flow properties and flow coefficients between two placements.It is also found that the trajectories of particles for two placements are mostly identical when St << 1,making the erosion independent of placement.With the increase of St,the distinction of trajectories between placements becomes more obvious,leading to an increasing difference of the erosion distributions.Besides,the total erosion ratio of surface T for horizontal placement is two orders of magnitudes larger than that for vertical placement when the particle diameter is 250 μm. 展开更多
关键词 gate valve PLACEMENT flow properties EROSION
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Research on Performance of Centrifugal Pump with Different-type Open Impeller 被引量:2
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作者 cui baoling CHEN Desheng +3 位作者 WANG Canfei ZHU Zuchao JIN Yingzi JIN Yuzhen 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第6期586-591,共6页
To investigate the influence of impeller type on the performance and inner flow of centrifugal pump, the numeri- cal simulation and experimental research were carried out on the same centrifugal pump with straight-bla... To investigate the influence of impeller type on the performance and inner flow of centrifugal pump, the numeri- cal simulation and experimental research were carried out on the same centrifugal pump with straight-blade and curved-blade open impeller. Based on SIMPLEC algorithm, time-averaged N-S equation and the standard k-e turbulence model, the numerical results are obtained. The pressure distribution in the different type impellers is uniform, while the low pressure area in straight-blade inlet is larger. The vortexes in the passage of impeller exist in both cases. Relative to curved-blade impeller, there are larger vortexes in most of the flow passages except the passage near the tongue in straight-blade impeller. Also some small backflow regions are found at the blade inlet of two impellers. The characteristic curves achieved by numerical simulation basieaUy agree with those by experiment, and straight-blade open impeller centrifugal pump has a better hydraulic performance. 展开更多
关键词 open impeller centrifugal pump numerical simulation EXPERIMENT
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