Rademaker Hanna, Jensen Kaare H, Bohr Tomas
Department of Physics, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.
Phys Rev E. 2021 Mar;103(3-1):033108. doi: 10.1103/PhysRevE.103.033108.
We study the viscous dissipation in pipe flows in long channels with porous or semipermeable walls, taking into account both the dissipation in the bulk of the channel and in the pores. We give simple closed-form expressions for the dissipation in terms of the axially varying flow rate Q(x) and the pressure p(x), generalizing the well-known expression W[over ̇]=QΔp=RQ^{2} for the case of impenetrable walls with constant Q, pressure difference Δp between the ends of the pipe and resistance R. When the pressure p_{0} outside the pipe is constant, the result is the straightforward generalization W[over ̇]=Δ[(p-p_{0})Q]. Finally, applications to osmotic flows are considered.
我们研究了具有多孔或半透壁的长通道中管道流动的粘性耗散,同时考虑了通道主体和孔隙中的耗散。我们根据轴向变化的流量Q(x)和压力p(x)给出了耗散的简单闭式表达式,推广了对于具有恒定Q、管道两端压力差Δp和阻力R的不可渗透壁情况的著名表达式W[over ̇]=QΔp=RQ²。当管道外部的压力p₀恒定时,结果是直接的推广W[over ̇]=Δ[(p - p₀)Q]。最后,考虑了对渗透流的应用。