热泳
机械
流体力学
压力梯度
流量(数学)
非平衡态热力学
热的
明渠流量
压力降
温度梯度
热扩散率
电流(流体)
经典力学
热力学
化学
物理
传热
气象学
纳米流体
作者
Pietro Anzini,Zeno Filiberti,Alberto Parola
出处
期刊:Physical review
日期:2022-08-16
卷期号:106 (2)
被引量:7
标识
DOI:10.1103/physreve.106.024116
摘要
Thermal forces drive several nonequilibrium phenomena able to set a fluid in motion without pressure gradients. Although the most celebrated effect is thermophoresis, also known as Ludwig-Soret effect, probably the simplest example where thermal forces are at play is thermo-osmosis: The motion of a confined fluid exclusively due to the presence of a temperature gradient. We present a concise but complete derivation of the microscopic theory of thermo-osmosis based on linear response theory. This approach is applied to a simple fluid confined in a slab geometry, mimicking the flow through a pore in a membrane separating two fluid reservoirs at different temperatures. We consider both the case of an open channel, where the fluid can flow freely, and that of a closed channel, where mass transport is inhibited and a pressure drop sets in at the boundaries. Quantitative results require the evaluation of generalized transport coefficients, but a preliminary check on a specific prediction of the theory has been successfully performed via nonequilibrium molecular dynamics simulations.
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