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基于网络热力学的能量转换最优效率研究 被引量:1
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作者 许婷 程伟良 《电力科学与工程》 2009年第4期50-53,共4页
在进行以电网络方法分析能量系统时,遇到了网络结点效率的问题,它将为网络中能流与物流的输运路径提供合理方向,以达到理想的优化策略。因此提出基于网络热力学的系统最大效率表达式。以二端网络的热力学模型为例,引入参数Q,建立了R,L,... 在进行以电网络方法分析能量系统时,遇到了网络结点效率的问题,它将为网络中能流与物流的输运路径提供合理方向,以达到理想的优化策略。因此提出基于网络热力学的系统最大效率表达式。以二端网络的热力学模型为例,引入参数Q,建立了R,L,H,F参数表示法下的系统最大效率通式。将该式结合kedem-katchalsky方程描述的水与溶质形成的膜输运分析中,得到膜输运网络描述的最大效率关系式,这将大大有利于膜输运的机理研究。网络热力学最大效率表达式的结构简单,通用性强,适用于热静力学及非平衡态热力学在内的复杂热力系统的分析和优化。 展开更多
关键词 网络热力学 能量转换 最优效率 kedem-katchalsky方程
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Fluid and Osmotic Pressure Balance and Volume Stabilization in Cells Dedicated to Professor Karl Stark Pister for his 95th birthday
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作者 Peter M.Pinsky 《Computer Modeling in Engineering & Sciences》 SCIE EI 2021年第12期1329-1350,共22页
A fundamental problem for cells with their fragile membranes is the control of their volume.The primordial solution to this problem is the active transport of ions across the cell membrane to modulate the intracellula... A fundamental problem for cells with their fragile membranes is the control of their volume.The primordial solution to this problem is the active transport of ions across the cell membrane to modulate the intracellular osmotic pressure.In this work,a theoretical model of the cellular pump-leak mechanism is proposed within the general framework of linear nonequilibrium thermodynamics.The model is expressed with phenomenological equations that describe passive and active ionic transport across cell membranes,supplemented by an equation for the membrane potential that accounts for the electrogenicity of the ionic pumps.For active ionic transport,the model predicts that the intracellular fluid pressure will be balanced by the osmotic pressure and a new pressure component that arises from the active ionic fluxes.A model for the pump-leak mechanism in an idealized human cell is introduced to demonstrate the applicability of the proposed theory. 展开更多
关键词 Pump-leak mechanism cell volume regulation active ion transport ion pump membrane transport cell mechanics modified kedem-katchalsky equations nonequilibrium thermodynamics phenomenological equations
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