1) Chrastil semi-empirical equation
Chrastil半经验溶解度模型
1.
Results Solubility data were fitted by Chrastil semi-empirical equation and the characteristic model parameters of the model were obtained.
结果应用Chrastil半经验溶解度模型拟合了所研究的二元体系的溶解度数据,而且得到了对应于该系统的溶解度方程参数。
2) semi-empirical equation of Chrastil
Chrastil半经验溶解度方程
3) density-based Chrastil model
Chrastil密度型模型
1.
And the experimental data well correlated with the empirical density-based Chrastil model and the empirical improved Chrastil model.
实验数据经Chrastil密度型模型和Chrastil改进模型模拟,均取得较好的吻合。
4) Chrastil model
Chrastil模型
1.
Based on the principle of solvation reaction and the equilibrium constant affected by pressure and temperature,Chrastil model was modified and an association model of four parameters was established.
根据高压反应的质量作用定律和相平衡规则,对经典的Chrastil模型进行修正,建立了四参数缔合模型,该模型提高了胆固醇溶解度的关联精度,为胆固醇在CO2流体中相平衡计算与过程控制了提供了依据。
5) semi-empirical model
半经验模型
1.
A semi-empirical model of permeate flux(J) of ultrafiltration membrane as a function of process time(t) was carried out based on the discipline of permeate flux variation in the process of soybean whey UF in which the permeate flux curve was divided into two periods as initial rapid decline period and relative slowly decline one respectively.
根据膜通量衰减的过程曲线,把超滤膜通量的衰减过程分为2个阶段,分别对应于快速衰减期、缓慢衰减期,建立了膜通量J随处理时间t变化的半经验模型,采用该半经验模型,很好地拟合了大豆乳清液超滤过程中膜通量衰减的过程,分析了超滤膜材料、膜截留分子质量(MWCO)以及切向于膜面的水流速度等条件下膜通量衰减的影响因素,结果表明对每一个通量衰减阶段,造成膜通量衰减的原因均不是某一种因素的单独作用,阶段1内膜通量衰减的原因不仅仅是吸附污染,还涉及浓差极化和膜孔堵塞作用,阶段2内膜通量衰减的原因受膜材料、膜MWCO和进水流速等多种因素的影响而各不相同。
2.
A semi-empirical model of a parasite system power of a fuel cell engine is developed by modifying the antitrigonometric function,and is verified by different test data.
分析了燃料电池发动机辅助系统功率的变化特点及其规律,并在试验研究的基础上,通过反三角函数进行改造,建立了辅助系统功率特性的半经验模型。
3.
This paper mainly researches on the semi-empirical model of municipal solid waste treatment.
对固体废弃物的气化处理半经验模型进行了研究。
6) improved Chrastil model
Chrastil改进模型
1.
And the experimental data well correlated with the empirical density-based Chrastil model and the empirical improved Chrastil model.
实验数据经Chrastil密度型模型和Chrastil改进模型模拟,均取得较好的吻合。
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8
性质:暂无
制备方法:暂无
用途:用于轻、中度原发性高血压。
分子量:365.5
CAS号:26807-65-8
性质:暂无
制备方法:暂无
用途:用于轻、中度原发性高血压。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条