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“恒浮罐”消除流体质量计量中空气浮力影响原理分析和验证
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作者 董阳 赵娜 +1 位作者 贾永刚 王强 《计量技术》 2017年第12期38-41,共4页
采用mt法进行流量计量时,称量罐的空气浮力是质量测量不确定度评定中不可忽略的分量。本文主要分析了产生称量罐浮力变化的因素,并针对这些影响因素,提出具有多层结构的“恒浮罐”作为流体质量计量时的称量罐,解决流体质量测量中罐... 采用mt法进行流量计量时,称量罐的空气浮力是质量测量不确定度评定中不可忽略的分量。本文主要分析了产生称量罐浮力变化的因素,并针对这些影响因素,提出具有多层结构的“恒浮罐”作为流体质量计量时的称量罐,解决流体质量测量中罐体浮力变化的问题。并对“恒浮罐”与普通单层罐进行受热外径及受热浮力变化的对比试验,验证了“恒浮罐”在罐内温度、体积变化时仍可达到恒定浮力的效果。 展开更多
关键词 恒浮罐 称量罐 流体质量计量 mt法流量计量 空气浮力修正
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Calculation of Steady SF_6 Gas Flow through a 420 kV Circuit Breaker Nozzle and Electric Field Distribution
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作者 Dejan Beslija Sead Delic +2 位作者 Kyong-Hoe Kim Mirsad Kapetanovic Almir Ahmethodzic 《Journal of Energy and Power Engineering》 2014年第11期1964-1973,共10页
Special interest in current interruptions is dedicated to the processes close to the current zero instant, the so-called interaction region, which determines the circuit breakers' performance. The quantities of inter... Special interest in current interruptions is dedicated to the processes close to the current zero instant, the so-called interaction region, which determines the circuit breakers' performance. The quantities of interest in this region are the distribution of temperature, density and pressure, velocity and gas mass flow along the electric arc axis, as well as the distribution of electric stress between contacts Calculation of steady SF_6 gas flow through the nozzle of a 420 kV circuit breaker at the current zero instant, for different arcing durations, was carried out using a commercial CFD (computational fluid dynamics) simulation tool. The calculation results were used to get insight into improvement possibilities of the SF_6 gas flow model used in the software for computer simulation of HV (high-voltage) circuit breakers. Electric field calculation results were performed for the same 420 kV circuit breaker, in order to estimate the breakdown voltage at the current zero instant. 展开更多
关键词 HV SF_6 circuit breaker NOZZLE gas flow regime shock wave breakdown voltage.
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Constructal design for a steam generator based on entransy dissipation extremum principle 被引量:13
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作者 XIAO QingHua CHEN LinGen SUN FengRui 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第6期1462-1468,共7页
Steam generator is optimized by applying entransy dissipation extremum principle and constructal theory and adopting analyti-cal method.The obtained results show that the optimal spacing between adjacent tubes,the mas... Steam generator is optimized by applying entransy dissipation extremum principle and constructal theory and adopting analyti-cal method.The obtained results show that the optimal spacing between adjacent tubes,the mass flow rate of gas and the maximum entransy dissipation rate all depend on the dimensionless diameter of one tube,the dimensionless pressure difference number and the dimensionless length of flow channel of gas.Besides the three dimensionless groups,the optimal numbers of riser tubes and downcomer tubes and their summation all depend on the dimensionless height of one tube.The maximum entransy dissipation rate increases as the pressure difference that drives the gas flowing increases,and as the diameter of one tube and the length of flow channel both decrease.The mean heat flux in the heat transfer process of hot gas grows greatly,and the performance of the system is improved.Compared with the optimal construct with heat transfer rate maximization,the optimal construct with entransy dissipation rate maximization can improved the heat transfer effect of the steam generator more. 展开更多
关键词 entransy dissipation extremum principle constructal theory steam generator entransy dissipation rate generalized thermodynamic optimization
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A parameter-free upwind scheme for all speeds' simulations 被引量:1
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作者 QU Feng YAN Chao +1 位作者 SUN Di YUAN Wu 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第3期434-442,共9页
With the rapid development of the computational fluid dynamics(CFD),a parameter-free upwind scheme capable of simulating all speeds accurately and efficiently is in high demand.To achieve this goal,we present a new up... With the rapid development of the computational fluid dynamics(CFD),a parameter-free upwind scheme capable of simulating all speeds accurately and efficiently is in high demand.To achieve this goal,we present a new upwind scheme called AUSMPWM in this paper.This scheme computes the numerical mass flux as the AUSMPW+and computes the interfacial sound speed in a different way.Also,it computes the pressure flux by limiting the dissipation if the Mach number is less than 1.Series of numerical experiments show that AUSMPWM can satisfy the following attractive properties independent of any tuning coefficient:(1)Robustness against the shock anomaly and high discontinuity’s resolution;(2)high accuracy on hypersonic heating prediction and capability to give smooth reproductions of heating profiles;(3)low dissipation at low speeds;and(4)strong grid,reconstruction scheme,and Mach number independence in low speeds’simulations.These properties suggest that AUSMPWM is promising to be widely used to accurately and efficiently simulate flows of all speeds. 展开更多
关键词 shock anomaly AUSMPW+ ausmpwm all speeds computational fluid dynamics
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