Abstract
The interaction between two different shaped structures is very important to be understood. Fluid-structure interactions and aerodynamics of a circular cylinder in the wake of a V-shaped cylinder are examined experimentally, including forces, shedding frequencies, lock-in process, etc., with the V-shaped cylinder width d varying from d/D = 0.6 to 2, where D is the circular cylinder diameter. While the streamwise separation between the circular cylinder and V-shaped cylinder was 10D fixed, the transverse distance T between them was varied from T/D = 0 to 1.5. While fluid force and shedding frequency of the circular cylinder were measured using a load cell installed in the circular cylinder, measurement of shedding frequency of the V-shaped cylinder was done by a hotwire. The major findings are: (i) a larger d begets a larger velocity deficit in the wake; (ii) with increase in d/D, the lock-in between the shedding from the two cylinders is centered at d/D = 1.1, occurring at d/D ≈ 0.95-1.35 depending on T/D; (iii) at a given T/D, when d/D is increased, the fluctuating lift grows and reaches a maximum before decaying; the d/D corresponding to the maximum fluctuating lift is dependent on T/D, and the relationship between them is linear, expressed as d/D = 1.2+1/et/d; that is, a larger d/D corresponds to a greater T/D for the maximum fluctuating lift.
| Original language | English |
|---|---|
| Pages (from-to) | 143-155 |
| Number of pages | 13 |
| Journal | Wind and Structures, An International Journal |
| Volume | 23 |
| Issue number | 2 |
| DOIs | |
| State | Published - Aug 2016 |
| Externally published | Yes |
Keywords
- Cylinder
- Fluctuating lift force
- Lock-in
- Wake
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