• 제목/요약/키워드: Pressure-Strain Correlation Terms

검색결과 2건 처리시간 0.017초

Comparison of Two-Equation Model and Reynolds Stress Models with Experimental Data for the Three-Dimensional Turbulent Boundary Layer in a 30 Degree Bend

  • Lee, In-Sub;Ryou, Hong-Sun;Lee, Seong-Hyuk;Chae, Soo
    • Journal of Mechanical Science and Technology
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    • 제14권1호
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    • pp.93-102
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    • 2000
  • The objective of the present study is to investigate the pressure-strain correlation terms of the Reynolds stress models for the three dimensional turbulent boundary layer in a $30^{\circ}$ bend tunnel. The numerical results obtained by models of Launder, Reece and Rodi (LRR) , Fu and Speziale, Sarkar and Gatski (SSG) for the pressure-strain correlation terms are compared against experimental data and the calculated results from the standard k-${\varepsilon}$ model. The governing equations are discretized by the finite volume method and SIMPLE algorithm is used to calculate the pressure field. The results show that the models of LRR and SSG predict the anisotropy of turbulent structure better than the standard k-${\varepsilon}$ model. Also, the results obtained from the LRR and SSG models are in better agreement with the experimental data than those of the Fu and standard k-${\varepsilon}$ models with regard to turbulent normal stresses. Nevertheless, LRR and SSG models do not effectively predict pressure-strain redistribution terms in the inner layer because the pressure-strain terms are based on the locally homogeneous approximation. Therefore, to give better predictions of the pressure-strain terms, non-local effects should be considered.

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다짐점성토(粘性土)의 동적전단탄성계수(動的剪斷彈性係數) (Dynamic Shear Modulus of Compacted Clayey Soil)

  • 강병희
    • 대한토목학회논문집
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    • 제3권2호
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    • pp.109-117
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    • 1983
  • 구속응력(拘束應力), 전단변형율진폭(剪斷變形率振幅), 다짐함수비(含水比), 다짐에너지, 간극비(間隙比) 및 포화도(飽和度)가 다짐점성토(粘性土)의 동적전단탄성계수(動的剪斷彈性係數)에 끼치는 영향(影響)을 연구(硏究)하기 위하여 도주공진시험(圖柱工振試驗)을 하였다. 이들 각각(各各)의 요소(要素)들은 다짐 흙의 동적전단탄성계수(動的剪斷彈性係數)에 큰 영향(影響)을 나타내며 그 원인(原因)은 다짐에 의한 흙의 여러 가지 변화(變化)로서 설명(說明)할 수 있다. 흙의 동적전단탄성계수(動的剪斷彈性係數)는 다짐에 의해서 크게 증가(增加)되며 최적함수비(最適含水比) 건조측(乾燥側)의 함수비(含水比)에서 다지는 것이 훨씬 더 효과적(効果的)이다. 그리고 동적(動的) 전단탄성계수(剪斷彈性係數)와 정적(靜的) 전단탄성도(剪斷彈性度)는 좋은 상관관계(相關關係)를 나타내며 이를 이용(利用)하여 어떤 일정(一定)한 구속응력(拘束應力)에 대한 동적전단탄성계수(動的剪斷彈性係數)를 일축압축강도(一軸壓縮强度)로부터 쉽게 구할 수가 있다.

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