Fluid-solid interaction characteristics of a novel liquid-conveying 90° elbow structure
-
摘要: 采用雙向耦合法研究了一種新型流體脈動衰減彎頭,討論了結構參數對其流固耦合特性的影響.結果表明:原始彎頭內總壓差為29.50627kPa,內部流場極不均勻,其最大變形量為20.689μm,最大應力為180.08kPa,變形方式是兩側拉長、中間向里凹陷,呈雙橢圓形,對其具有"拉直"效應;當導流器按黃金比例排列,片數為2,橫截面彎曲半徑為200mm,出口延長度為40mm設計時,優化結構內總壓差為10.70787kPa,比原始彎頭減小了63.71%,但該結構最大變形為330.39μm,最大應力為1569.10kPa;最終方案增加導流器片數至3片,導流器厚度為3mm,優化后結構內總壓差為12.46956kPa,比原始彎頭減小了57.74%,其最大變形為20.898μm,最大應力為259.80kPa,且內部流場均勻.Abstract: A novel fluid pulsation attenuation elbow was studied by the bidirectional coupling method, and the effects of structural parameters on its fluid-solid interaction characteristics were discussed. The results show that the internal total pressure difference is 29.506 27 kPa in the original elbow, the internal flow field is very uneven, the maximum deformation is 20.689 μm, the maximum stress is 180.08 kPa, and the deformation mode is that the structure is elongated in both sides, concaved in the middle and shows a double oval, and the deformation leads to the flare-out effect on the elbow. When guide plates are designed according to the golden ratio, the number, the radius and the length are 2 200 mm and 40 mm respectively, the total pressure difference is 10.707 87 kPa, it decreases by 63.71% in comparison with the result of the original elbow, but the maximum deformation is 330.39mm, and the maximum stress is 1 569.10 kPa. When the number of guide plates is 3, and the thickness is 3 mm in the final optimized structure, the internal total pressure difference is 12.469 56 kPa, it decreases by 57.74% in comparison with the result of the original elbow, the maximum deformation is 20.898 mm, the maximum stress is 259.80 kPa, and the internal flow field is very even.
-
Key words:
- pipeline /
- elbow /
- fluid pulsation /
- structural optimization /
- fluid-solid interaction
-

計量
- 文章訪問數: 113
- HTML全文瀏覽量: 33
- PDF下載量: 3
- 被引次數: 0