This paper investigates vortex shedding processes occurring at the end of a stack of parallel plates, due to an oscillating flow induced by an acoustic standing wave. Here the hot-wire anemometry measurement technique is applied to detect the velocity fluctuations due to vortex shedding near the end of the stack. The hot-wire fast time response enables obtaining detailed frequency spectra of the velocity signal, which can be used for identifying the dominant frequencies associated with vortex shedding, and thus allow calculating the corresponding Strouhal numbers. By varying the stack configuration (the plate thickness and spacing) and the acoustic excitation level (the so-called drive ratio), the impact ofthe stack blockage ratio and the R...
This paper considers an entrance flow into the channels formed by a stack of parallel plates, placed...
Thermoacoustic refrigerator system generates cooling from acoustic energy. Acoustic waves interact w...
AbstractMinor losses around the thermoacoustic parallel stack in the oscillatory flow conditions are...
This paper investigates vortex shedding processes occurring at the end of a stack of parallel plates...
This paper investigates vortex shedding processes occurring at the end of a stack of parallel plates...
Oscillating flow near the end of a stack of parallel plates placed in a standing wave resonator is i...
Thermoacoustic system is one of the alternative technologies that provides green working principles ...
Oscillatory flow in stacks of parallel plates is essential for the working of "standing wave" thermo...
Thermoacoustic system is one of the alternative technologies that provides green working principles....
International audienceRegenerators (often consisting in stack mesh-wires) and heat exchangers are th...
Oscillatory flow condition is a fluid flow condition that is less understood especially with the pre...
Thermoacoustic refrigeration systems generate cooling power from a high-amplitude acoustic standing ...
This paper describes the vorticity shedding excitation in tube bundles and its relation to the acous...
An experimental investigation is conducted to understand the flow behavior near a stack in a hybrid ...
Flow visualization is a necessity in thermoacoustic devices to study the behavior of the devices and...
This paper considers an entrance flow into the channels formed by a stack of parallel plates, placed...
Thermoacoustic refrigerator system generates cooling from acoustic energy. Acoustic waves interact w...
AbstractMinor losses around the thermoacoustic parallel stack in the oscillatory flow conditions are...
This paper investigates vortex shedding processes occurring at the end of a stack of parallel plates...
This paper investigates vortex shedding processes occurring at the end of a stack of parallel plates...
Oscillating flow near the end of a stack of parallel plates placed in a standing wave resonator is i...
Thermoacoustic system is one of the alternative technologies that provides green working principles ...
Oscillatory flow in stacks of parallel plates is essential for the working of "standing wave" thermo...
Thermoacoustic system is one of the alternative technologies that provides green working principles....
International audienceRegenerators (often consisting in stack mesh-wires) and heat exchangers are th...
Oscillatory flow condition is a fluid flow condition that is less understood especially with the pre...
Thermoacoustic refrigeration systems generate cooling power from a high-amplitude acoustic standing ...
This paper describes the vorticity shedding excitation in tube bundles and its relation to the acous...
An experimental investigation is conducted to understand the flow behavior near a stack in a hybrid ...
Flow visualization is a necessity in thermoacoustic devices to study the behavior of the devices and...
This paper considers an entrance flow into the channels formed by a stack of parallel plates, placed...
Thermoacoustic refrigerator system generates cooling from acoustic energy. Acoustic waves interact w...
AbstractMinor losses around the thermoacoustic parallel stack in the oscillatory flow conditions are...