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thermodynamics相关的网络例句

查询词典 thermodynamics

与 thermodynamics 相关的网络例句 [注:此内容来源于网络,仅供参考]

The three laws of thermodynamics describe these changes and predict the equilibrium state of the system.

热力学三定律描述了这些变化,并能预言系统的平衡态。

Based on thermal conduction theory, a thermal model is built up to get the effective thermal content and the effective thermal conductivity to be 1.0×10^(-3) W/K and 8.1 μJ/K, respectively, and the temperature-fluctuation noise is nearly 1.73×10^(-10)W/Hz(superscript 1/2). According to the device operating principle and energy equipartition theory of thermodynamics, the mechanical-thermal noise is 9.96×10^(-9) W/Hz(superscript 1/2), and the background noise is nearly 3.22×10^(-11)W/Hz(superscript 1/2), so that the normalized detectivity is deduced to be 9.03×10^6 cmHz(superscript 1/2)/W.

从理论上建立了器件的基本热模型,推导得到器件的等效热熔和等效热导分别为8.1μJ/K和1.0×10^(-3)W/K,温度噪声约为1.73×10^(-10)W/Hz(上标 1/2);通过器件的工作机理和能量均分原理,推导得到热机械噪声的等效噪声功率约为9.96×10^(-9)W/Hz(上标 1/2),器件的背景噪声约为3.22×10^(-11)W/Hz(上标 1/2),从而得出器件的归一化探测率约为9.03×106cm。

According to the device operating principle and energy equipartition theory of thermodynamics,the mechanical-thermal noise is 9.96×10-9 W/Hz1/2,and the background noise is nearly 3.22×10-11 W/Hz1/2,so that the normalized detectivity is deduced to be 9.03×106 cm·Hz1/2/W.

Hz1/2/W。实验表明,器件的噪声中热机械噪声为主要噪声源,大小主要由浓硼硅薄膜的机械性能和器件结构决定,可以通过增大薄膜厚度,减小薄膜面积,从而增加薄膜的特征频率的方法来减小器件受外界振动的影响,但以降低器件的灵敏度为代价。

According to the classical thermodynamics, driving force equipartition principle has been proposed, and used to derive the optimum parameter distribution of counter-flow heat exchangers.

以经典热力学理论为基础,导出了驱动力均分原理,并将这个原理用于逆流换热器的热力学优化,利用这个原理和变分原理求得了逆流换热器的最佳参数分布。

The following points are emphasized:The operation models of adiabatic and diabatic distillation have been set up and the operation block, thermodynamics model and mathematical model in the simulation have been determined as well;(2)Based on the simulation and exergy analysis with Aspen Plus program, shortcut distillation design—DSTWU model and rigorous distillation design—RADFRAC model, the author has determined the heat duty, exergy losses and the distribution of exergy losses along the adiabatic column, which will help the simulation and optimization of the diabatic distillation;(3)Diabatic distillation under various operation conditions has been simulated by using energy balance method and exergy analysis;(4)How the different mixture and the various degree of separation, number of trays and feed location influence exergy saving in diabatic distillation have also been discussed;(5)On the basis of the total exergy losses along the column, different schema of the heat transfer distribution along the column have been compared and analyzed;they can be classified in three categories: heat duty equipartition approach, empirical approach, separation degree matching approach. In conclusion, different heat transfer distribution along the column will have effect on total exergy losses. In particular, most satisfactory results have been obtained by using separation degree matching approach. In order to diminish the exergy losses, heat transfer distribution should meet the needs of the request of separation degree.And on this premise, the author makes his suggestion in increasing the proportion of heat supplied to the tray with minimum exergy losses and decreasing the proportion of heat supplied to the tray with the maximum exergy losses.

本文对透热精馏过程进行了模拟并对其节能效果的影响因素做了较为全面的分析和深入的研究,主要研究内容如下:(1)建立了常规精馏和透热精馏过程的模拟操作模块、热力学模型以及数学模型;(2)利用化工模拟软件Aspen Plus并分别采用DSTWU简捷模型和RADFRAC严格计算模型对常规精馏进行模拟计算和有效能分析,确定常规精馏塔的公用工程热负荷、有效能损失及有效能损失在塔内的分布,为透热精馏的模拟和优化提供数据参考;(3)对不同物系在不同分离度条件下进行透热精馏的模拟,分别采用能量衡算法和有效能分析法进行计算和分析;(4)探讨了各种因素如物系的选择、不同分离度、塔板数、进料位置对透热精馏节能效果的影响;(5)以全塔总有效能损失为比较基准,对热量在塔内的三种分布方案即热负荷平均分配法、经验法和分离度匹配法进行了对比分析并得出结论:塔内热量的不同分布方案对于全塔总有效能损失会产生影响,其中以分离度匹配法的节能效果最为理想,为减少有效能的损失,应使塔内的热量分布满足各塔板的分离度要求,并在此前提下,尽量减小有效能损失大的塔板的热负荷和增加有效能损失小的塔板的热负荷。

We also explored thermodynamics of the system.

我们也讨论了系统的热力学。

This paper reported the thermodynamics of extracting Re with the extractant of N235 in the HCl system.

以N235为萃取剂,正庚烷为稀释剂,在盐酸体系中研究萃取铼的热力学。

All human beings obey the first law of thermodynamics.

所有的人都在遵循热力学的第一定律。

The first law of thermodynamics states that energy can neither be created nor destroyed.

热力学第一定律说明,能量既不能被创造,也不能被破坏。

N The first law of thermodynamics gives a precise definition of heat.

热力学第一定律给热下了精确的定义。

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