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Chinese translation for "irreversible thermodynamics"

不可逆过程热力学
不可逆热力学
非平衡态热力学


Related Translations:
general law of thermodynamics:  热力学普遍定律
irreversible coma:  不可逆昏迷不可逆性昏迷,脑死亡大脑死亡
irreversible magnetization:  不可逆磁化
irreversible state:  不可逆状态
irreversible operation:  不可逆运算
irreversible catalysis:  不可逆催化非可逆催化反应
irreversible denaturation:  不可逆变性
irreversible effect:  不可逆效应
irreversible drive:  不可逆传动
irreversible flow:  不可逆流动
Example Sentences:
1.The irreversible thermodynamics process is discussed under non - isothermal circumstances , and the physical significance of the external terms in the three - field coupled equations is also analyzed
探讨了非等温条件下,体系不可逆热力学过程,并对其三场耦合控制方程中附加项的物理意义进行了分析。
2.In this paper , using the elasticity recovery correspondence principle and the nonlinear viscoelastic continuum thermodynamics , we utilize the irreversible thermodynamics to get the nonlinear viscoelastic relations with damage
本文结合弹性回复对应原理,从非线性粘弹性材料的连续介质热力学分析入手,通过不可逆热力学定律来求出含损伤的非线性粘弹性本构关系。
3.The application value of irreversible thermodynamics in multi - process irreversible transportation problem in the process of porous media seepage is embodied in this paper , and provides new idea and method for the research of kin problems
本文的工作体现了不可逆热力学理论和方法在多孔介质多过程不可逆输运问题中应用的价值,为同类问题的研究提供了新的思路和方法。
4.In allusion to the irreversible behavior of porous media seepage process , the research thought and method of irreversible thermodynamics are attempted to introduce in the research on porous media seepage system , and some positive conclusions have been achieved
本文针对多孔介质渗流过程中的不可逆行为,尝试将不可逆热力学的研究思路和方法引入多孔介质渗流问题的研究中,取得了一些积极的成果。
5.Presents the study on the cross - effect of heat and mass transfer of capillary porous media a . b . luikov set up on the irreversible thermodynamics principle with the theoretical solution of unsteady drying process given and its validity verified though experiments , and analyses using the mathematical model the influence of all factors on temperature and moisture distribution and the cross - effect of heat and mass transfer during drying processes
针对雷柯夫建立在不可逆过程热力学原理上的传热与传质方程组,着重研究毛细多孔介质内传热与传质过程中的交叉效应.得出了非稳态干燥过程的理论解,并通过实验验证了其正确性,利用该模型分析了干燥过程中各因素对内部温度场和湿度场的影响以及交叉效应在干燥过程中的作用
6.In this paper , we aim at establish heat and mass coupled transfer model in the building wall , , the emphasis of this study lies in creating a coupled and non - linear diferential equation system for the heat air and moisture transfer in the wall , which can be described by means of continuum mechanics and irreversible thermodynamics , the most dominant factor is moisture conten 9la gas pressure pc and temperature t , for the description of heatair and moisture transport , the general mass balance equation can be expressed by the temporal change of moisture conten 9 l , gas pressure pc and temperature t that means , in order to create a closed solvable equation system , the other additional dependencies have to be found , which the other variable depending on the variables of the solution : moisture conten 6 l gas pressure pc and temperature to the model is verified by the numerical simulation software which has been developed about building wall . ,
根据节能设计要求,本文用热力学的方法,并根据多孔介质中多相流体流动描述方面的最新研究成果? ?体积平均方程,建立了墙体热、湿和空气耦合热质传递模型,并推导出热、湿和空气耦合传递等效扩散方程;找到建筑墙体热、湿及空气耦合作用下热质传递过程的主要影响因素湿容量_ l 、气压p _ c和温度t 。开发了单体材料墙体热质传递数值模拟软件,用实测数据对软件进行调试并对模拟计算结果进行了验证。模拟出了单材料墙体在热、湿和空气耦合作用下建筑墙体内的温度和湿度分布规律。
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