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of critical
    Design and Determination of Critical Speed for Centrifugal Oil Filters
    离心式机油滤清器的设计及其临界转速的确定
    A Simplified Mathematics Model of Critical Flow in Vapour-liquid Two-phase Nozzle
    汽液两相喷嘴中临界流的简化数学模型
    Study of Critical Leakance and Leakage Time in High Pressure Heater System
    大机组高加系统临界泄漏参量的研究
    ESTABLISHMENT OF CRITICAL COOLING TIME CRITERION OF WELDING COLD CRACKING
    焊接冷裂纹临界冷却时间判据建立
    Experimental Comparison of Critical Heat Fluxes (CHF) for Water in Two Different Length Single Tubes
    两种管长单管中水临界热流密度(CHF)实验比较
    Exploration on Cause Analysis and Comprehensive Treatment for the Emergence of Critical Flame in 2×300MW Generating Sets
    2×300MW 机组产生临界火焰的原因分析和综合治理探讨
    Analysis of critical flowrate theory for intake processes in ICE
    临界流量理论用于内燃机进气流量的分析
    Combustion Modeling in SI Engine and Prediction of Critical Knock
    点燃式发动机燃烧过程模拟分析及临界爆震预测
    Determination of Critical Fluidization Airflow in CFB Boiler and Influence Factor
    循环流化床锅炉临界流化风量确定及影响因素
    Effect of Grid on the Fluid-to-fluid Modeling of Critical Heat Flux in 4×4 Rod Bundle
    定位格架对4×4棒束临界热流密度流体模化的影响
    Review and New Developments of the Theoretical Models of Critical Heat Flux
    临界热流理论模型的回顾以及新的发展
    The calculation formulae of critical axial compression for the composite case is given.
    给出了复合材料壳体圆筒临界轴压的计算公式。
    Correlation of critical mass velocity has been provided.
    文中还给出了临界质量流速的试验关联式。
    Based on the up-to-date research of the fluid-to-fluid modeling of critical heat flux (CHF) in bundle, the experiment on fluid-to-fluid modeling of CHF in 4×4 bundle was carried out.
    基于棒束临界热流密度(CHF)流体模化研究现状,进行了 4×4 棒束 CHF流体模化的实验研究。
    With thermodynamic fundamentals and equations of state (EOS) of vdW EOS, RK EOS, SRK EOS, PR EOS and PG EOS, the physical parameters of critical temperature, pressure and specific volume is calculated theoretically for the major hydrocarbons such as CH_4, C_2H_6, C_3H_8, C_8H_ 18, C_ 16H_ 34 etc.
    利用热力学基本定律和常用状态方程vdWEOS、RKEOS、SRKEOS、PREOS及PGEOS,对CH4、C2H6、C3H8、C8H18、C16H34等的临界温度、临界压力、临界比容三者之间的相互关系进行了理论计算。
 

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