• 제목/요약/키워드: Shear Stress Gradient

검색결과 111건 처리시간 0.026초

Frequency characteristics and sensitivity analysis of a size-dependent laminated nanoshell

  • Dai, Zuocai;Jiang, Zhiyong;Zhang, Liang;Habibi, Mostafa
    • Advances in nano research
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    • 제10권2호
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    • pp.175-189
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    • 2021
  • In this article, frequency characteristics, and sensitivity analysis of a size-dependent laminated composite cylindrical nanoshell under bi-directional thermal loading using Nonlocal Strain-stress Gradient Theory (NSGT) are presented. The governing equations of the laminated composite cylindrical nanoshell in thermal environment are developed using Hamilton's principle. The thermodynamic equations of the laminated cylindrical nanoshell are obtained using First-order Shear Deformation Theory (FSDT) and Fourier-expansion based Generalized Differential Quadrature element Method (FGDQM) is implemented to solve these equations and obtain natural frequency and critical temperature of the presented model. The novelty of the current study is to consider the effects of bi-directional temperature loading and sensitivity parameter on the critical temperature and frequency characteristics of the laminated composite nanostructure. Apart from semi-numerical solution, a finite element model was presented using the finite element package to simulate the response of the laminated cylindrical shell. The results created from finite element simulation illustrates a close agreement with the semi-numerical method results. Finally, the influences of temperature difference, ply angle, length scale and nonlocal parameters on the critical temperature, sensitivity, and frequency of the laminated composite nanostructure are investigated, in details.

Application of machine learning and deep neural network for wave propagation in lung cancer cell

  • Xing, Lumin;Liu, Wenjian;Li, Xin;Wang, Han;Jiang, Zhiming;Wang, Lingling
    • Advances in nano research
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    • 제13권3호
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    • pp.297-312
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    • 2022
  • Coughing and breath shortness are common symptoms of nano (small) cell lung cancer. Smoking is main factor in causing such cancers. The cancer cells form on the soft tissues of lung. Deformation behavior and wave vibration of lung affected when cancer cells exist. Therefore, in the current work, phase velocity behavior of the small cell lung cancer as a main part of the body via an exact size-dependent theory is presented. Regarding this problem, displacement fields of small cell lung cancer are obtained using first-order shear deformation theory with five parameters. Besides, the size-dependent small cell lung cancer is modeled via nonlocal stress/strain gradient theory (NSGT). An analytical method is applied for solving the governing equations of the small cell lung cancer structure. The novelty of the current study is the consideration of the five-parameter of displacement for curved panel, and porosity as well as NSGT are employed and solved using the analytical method. For more verification, the outcomes of this reports are compared with the predictions of deep neural network (DNN) with adaptive optimization method. A thorough parametric investigation is conducted on the effect of NSGT parameters, porosity and geometry on the phase velocity behavior of the small cell lung cancer structure.

NACA0012 날개 위의 천이 경계층에 관한 실험적 연구 (An experimental study on the transitional boundary layer developing on NACA0012 airfoil)

  • 강신형;신상철;이현구
    • 대한기계학회논문집B
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    • 제20권5호
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    • pp.1689-1699
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    • 1996
  • A study on the transitional boundary layer with arbitrary pressure gradient under various upstream conditions is very important for engineering applications like the performance predictions of the turbomachineries under various and strong disturbances. Experimental data on the transitional boundary layer for real cascades of the turbomachinery are rare because of difficulties in boundary layer experiments. Flow on NACA0012 airfoil is more similar to the real case than that on the flat plate with which many researches are done. The data of the transitional flow on the airfoil could be used to verify or to develop a turbulence model for numerical simulations. The experiment was performed with two cases of Reynolds number at a=0$^{0}$ and one case of Reynolds number at a=5$^{0}$ . The measured data are the transition length and the wall shear stresses. These two characteristic values are measured within 25%~90% of the airfoil chord by Computation Preston tube Method(CPM) proposed by Nitsche et al.(1983). At a=0$^{0}$ , transition occured at 70% and 55% of chord length when R $e_{c}$=6*10$^{5}$ and 8* 10$^{5}$ , respectively. It started when R {\theta}=500 regardless of R $e_{c}$, and ended when R {\theta}=750, and 850 respectively. The transition length was 15~20% of the chord length. At a=5$^{0}$ (R $e_{c}$=6*10$^{5}$ ), boundary layer on the pressure side does not undergo transition, but on the suction side transition occured at .chi.$_{c}$/c=0.16 and ended at .chi.$_{c}$/c=0.22.c//c=0.22./c=0.22.c//c=0.22.

Application of nonlocal elasticity theory on the wave propagation of flexoelectric functionally graded (FG) timoshenko nano-beams considering surface effects and residual surface stress

  • Arani, Ali Ghorbanpour;Pourjamshidian, Mahmoud;Arefi, Mohammad;Arani, M.R. Ghorbanpour
    • Smart Structures and Systems
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    • 제23권2호
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    • pp.141-153
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    • 2019
  • This research deals with wave propagation of the functionally graded (FG) nano-beams based on the nonlocal elasticity theory considering surface and flexoelectric effects. The FG nano-beam is resting in Winkler-Pasternak foundation. It is assumed that the material properties of the nano-beam changes continuously along the thickness direction according to simple power-law form. In order to include coupling of strain gradients and electrical polarizations in governing equations of motion, the nonlocal non-classical nano-beam model containg flexoelectric effect is used. Also, the effects of surface elasticity, dielectricity and piezoelectricity as well as bulk flexoelectricity are all taken into consideration. The governing equations of motion are derived using Hamilton principle based on first shear deformation beam theory (FSDBT) and also considering residual surface stresses. The analytical method is used to calculate phase velocity of wave propagation in FG nano-beam as well as cut-off frequency. After verification with validated reference, comprehensive numerical results are presented to investigate the influence of important parameters such as flexoelectric coefficients of the surface, bulk and residual surface stresses, Winkler and shear coefficients of foundation, power gradient index of FG material, and geometric dimensions on the wave propagation characteristics of FG nano-beam. The numerical results indicate that considering surface effects/flexoelectric property caused phase velocity increases/decreases in low wave number range, respectively. The influences of aforementioned parameters on the occurrence cut-off frequency point are very small.

인공강우 시 나지교란사면 토사유출에 미치는 다짐처리의 영향 (Effects of Surface Compaction Treatment on Soil Loss from Disturbed Bare Slopes under Simulated Rainfalls)

  • 박상덕;신승숙;김선정;최병구
    • 한국수자원학회논문집
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    • 제46권5호
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    • pp.559-568
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    • 2013
  • 토양의 다짐은 강우 시 지표유출 및 토사유출에 큰 영향을 끼친다. 다짐은 체적밀도 증가, 전단강도 증가, 공극률 변형, 투수계수 등과 같은 토양특성 변화를 야기하기 때문이다. 본 연구는 인공강우 실험을 활용하여 개발지의 사면조건과 유사한 나지교란사면에서 표면의 다짐처리가 지표유출 및 토사유출에 미치는 영향을 파악하였다. 표면처리(다짐, 비다짐), 강우강도(68.5mm/hr, 95.6mm/hr), 사면경사($5^{\circ}$, $12.5^{\circ}$, $20^{\circ}$)의 각 조건별 3회 반복하여 총 36회의 강우모의에 따른 지표유출 및 토사유출을 측정하였다. 연구결과, 다짐처리 후 토양의 체적밀도 및 전단강도는 유의적으로 증가하였다. 그러나 이러한 물리적 특성의 변화가 지표유출에 미치는 영향은 강우강도와 사면경사에 따라 다르게 반응하였다. 평균 토사유출량은 강우강도와 사면경사가 증가함에 따라 유의적으로 증가하였다. 또한, 토사유출량은 강우강도와 사면경사 별 다짐처리 유 무에 따라 다른 반응을 보였다. 완경사($5^{\circ}$)에서는 다짐처리에서 더 많은 토사가 유출되었으나, 급경사($20^{\circ}$)에서의 다짐처리는 토사유출을 감소시키는 역할을 한 것으로 나타났다. 나지교란사면에서는 토사유출에 대한 다짐효과의 천이구간이 존재하는 것으로 파악되며, 본 연구의토양조건 및 강우조건에서 천이구간은 완경사와 급경사 사이로서 사면경사 $10{\sim}15^{\circ}$ 범위에 존재하는 것으로 판단된다.

MEASUREMENT OF SURFACE TENSION OF MOLTEN METALS IN ARC WELDING

  • Shinobu Satonaka;Shigeo Akiyoshi;Inoue, Rin-taro;Kim, Kwang-Ryul
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.757-762
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    • 2002
  • Many reports have been shown that the buoyancy, electromagnetic force, surface tension, and gas shear stress are the driving forces of weld pool circulation in arc welding. Among them, the surface tension of molten metal plays an important role in the flow in weld pool, which are clarified by the specially designed experiments with small particles as well as the numerical simulations. The surface tension is also related to the penetration in arc welding. Therefore, a quantitative evaluation of surface tension is demanded for the development of materials and arc process control. However, there are few available data published on the surface tension of molten metals, since it depends on the temperature and the composition of materials. In this study, a new method was proposed for the evaluation of surface tension and its temperature dependence, in which it is evaluated by the equilibrium condition of acting forces under a given surface geometry, especially back surface. When this method was applied to the water pool and to the back surface of molten pool in the stationary gas tungsten arc welding of thin plate, following results were obtained. In the evaluation of surface tension of water, it was shown that the back surface geometry was very sensitive to the evaluation of surface tension and the evaluated value coincided with the surface tension of water. In the measurement of molten pool in the stationary gas tungsten arc welding, it was also shown that the comparison between the surface tension and temperature distribution across the back surface gave the temperature dependent surface tension. Applying this method to the mild steel and stainless steel plates, the surface tension with negative gradient for temperature is obtained. The evaluated values are well matched with ones in the published papers.

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연직변환좌표(鉛直變換座標)에서 3차원(次元) 유동(流動) 수직모형(數値模型) (A Three-Dimensional Numerical Model of Hydrodynamic Flow on σ-Coordinate)

  • 정태성;이길성
    • 대한토목학회논문집
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    • 제14권5호
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    • pp.1145-1158
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    • 1994
  • 물의 유동(流動)에 관한 계산상 효율성(效率性)을 갖는 자유수면(自由水面)을 고려한 3차원(次元) 유한차분(有限差分) 수직모형(數値模型)을 개발하였다. 수직모형(數値模型)은 연직방향(鉛直方向)에 대해 정규화(正規化)한 좌표(座標)(${\sigma}$-coordinate)를 사용하며, 시간(時間) 적분방법(積分方法)으로는 반음해법(半陰解法)(semi-implicit)을 사용하여 계산시간(計算時間)의 효율성(效率性)을 도모하였다. 모드분리(mode-splitting)개념을 도입하여 내부모드(internal mode)에 대해서는 양해법(陽解法)을 사용하였으며, 외부모드(external mode)는 수평방향(水平方向) 운동량방정식(運動量方程式)들과 연속방정식(連續方程式)의 차분식(差分式)으로부터 구한 타원형(楕圓型) 차분방정식(差分方程式)을 SOR방법에 의하여 해석하였다. 이와 같은 방법은 계산(計算) 시간간격(詩間間隔)이 표면(表面) 중력파(重力波)에 대한 CFL(Courant-Fredrich-Lewy)조건에 의해 제약을 받지 않아 계산시간(計算時間)의 효율성을 도모할 수 있다. 개발된 모형은 1차원(次元) 수로(水路)에서 취송유(吹送流)의 연직분포(鉛直分布)에 대한 해석해(解析解)와 비교(比較) 및 연직(鉛直) 가변격자(可變格子)의 도입에 따른 오차분석(誤差分析) 정사각형(正四角形) 호수(湖水)에서 취송유(吹送流) 계산(計算) 및 차분화(差分化) 상수(常數)들의 민감도(敏感度) 분석(分析)을 수행하였다.

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DESIGN OF AIR SEAT CUSHION ORTHOSIS FOR PLEGIA

  • Hong, Jung-Hwa;Kim, Gyoo-Suk;Kim, Jong-Kwon;Mun, Mu-Seong;Ryu, Jei-Cheong;Lee, In-Huk;Lee, Jong-Keun
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.121-123
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    • 2002
  • The design of an air seat cushion for preventing decubitus ulcer includes many design factors such as the even distribution of interface pressure, the minimization of mean and peak interface pressure values, and the reduction of interface shear force and pressure gradient. It involves the anatomic condition of plegia's buttock as well as air pressure in air cells of cushion. As a result, a suitable design of the cushion satisfying the all requirements is a difficult problem. Therefore, an appropriate and effective numerical tool to develop an air cushion orthosis is required. The purpose of the present study was to develop an air seat cushion orthosis having optimized air cells for evenly distributed interface pressure between the buttock and cushion surface. For the purpose, an advanced finite element (FE) model for the design of air cushion was developed. Since the interface pressure and shear force behavior, as well as stress analyses were primary concern, a FE air cell model was developed and verified by the experiments. Then, the interactions of two cells were checked. Also, the human part of the developed numerical model includes every material property and geometry related to buttock and femoral parts. For construction of dimension data of buttock and femoral parts, CT scans were performed. A commercial FE program was employed for the simulation representing the seating process on the orthosis. Then, sensitive analyses were performed with varying design parameters. A set of optimal design parameters was found satisfying the design criteria of the orthosis. The results were utilized to produce a prototype of the orthosis. Experimentally, the buttock interface pressure distributions from the optimized and previous ones were compared. The new seat orthosis showed a significantly improved interface pressure characteristics compared to the most popular one in the market. The new orthosis will be used for the development of the AI(artificial intelligent) controlled seat orthosis fur prevention of decubitus ulcer fur various plegic patients and the elderly.

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청천시 오수량을 고려한 합류식 하수도 소류력 설계법과 이를 활용한 하수관거 개보수방안 (A combined sewer design method using tractive force considering wastewater flow on non-rainy days and its application for improvement methods of sewer)

  • 지현욱;유성수;송호면;강정희
    • 상하수도학회지
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    • 제34권3호
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    • pp.211-220
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    • 2020
  • When domestic sewage and rainwater runoff are discharged into a single sewer pipe, it is called a "combined sewer system." The sewage design standards in Korea specify the flow velocity based only on the volume of rainfall; therefore, sedimentation occurs on non-rainy days owing to the reduced flow rate and velocity. This sedimentation reduces the discharge capacity, causes unpleasant odors, and exacerbates the problem of combined sewer overflow concentration. To address this problem, the amount of sewage on non-rainy days, not just the volume of rainfall, should also be considered. There are various theories on sedimentation in sewer movement. This study introduces a self-cleansing velocity based on tractive force theory. By applying a self-cleansing velocity equivalent to the critical shear stress of a sand particle, sedimentation can be reduced on non-rainy days. The amount of sewage changes according to the water use pattern of citizens. The design hourly maximum wastewater flow was considered as a representative value, and the velocity of this flow should be more than the self-cleansing velocity. This design method requires a steeper gradient than existing design criteria. Therefore, the existing sewer pipelines need to be improved and repaired accordingly. In this study, five types of improvement and repair methods that can maximize the use of existing pipelines and minimize the depth of excavation are proposed. The key technologies utilized are trenchless sewer rehabilitation and complex cross-section pipes. Trenchless sewer rehabilitation is a popular sewage repair method. However, it is complex because the cross-section pipes do not have a universal design and require continuous research and development. In an old metropolis with a combined sewer system, it is difficult to carry out excavation work; hence, the methods presented in this study may be useful in the future.

육포 제조시 염의 확산속도 및 건조 특성 (Diffusion of Salt and Drying Characteristics of Beef Jerky)

  • 이신우;이보수;차원섭;박준희;오상룡;조영제;김종국;홍주헌;이원영
    • 한국식품저장유통학회지
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    • 제11권4호
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    • pp.508-515
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    • 2004
  • 육포에 대한 염성분의 침투정도를 알고자 침지온도, 침지액의 농도 그리고 시간에 대한 염침투량을 조사하였다. 시간의 변화에 따른 소금의 확산량은 침지 2시간 내에 평형농도의 $60\%$ 이상으로 급격히 증가하다가 그이후에 증가 폭이 둔화 되는 것으로 나타났고, 침지액의 염농도와 침지 시간은 증가할수록 확산량도 증가하는 것으로 나타났다. 조미 침지 육포의 건조 시간에 따른 수분감소 정도는 열풍건조가 가장 크고 냉풍건조 그리고 천일건조의 순으로 나타났으며, 수분의 함량변화는 열풍건조의 경우 2시간 건조 후 평형수분함량이 되었고, 냉풍건조와 천일건조의 경우 6일 건조 후 평형수분함량에 다다른 것으로 나타났다. 건조 초기 때 건조속도상수가 냉풍건조의 경우 건조일수 2일일 때보다 15배 이상이나 큰 값으로 나타나며, 천일 건조의 경우에는 6배 이상으로 열풍건조의 경우 처음 1시간 내의 건조 상수가 2시간째의 경우보다 약 2배 가까이 큰 값을 나타내었다. 초기 건조기간 내에 냉풍건조의 경우 $80\%$ 이상, 천일건조의 경우 $75\%$ 이상 그리고 열풍의 경우 $50\%$ 이상의 수분이 제거되었다. 육포의 품질특성으로는 기호성에 영향을 줄 수 있는 색도와 조직감을 측정하고 건조방법별로 비교하였다. 냉풍건조가 열풍건조에 비해서는 밝고 가장 선홍색을 띠고 낮은 황색 값을 나타내 열풍건조나 천일건조에 비해 육색소의 산화가 적게 일어난 것으로 판단되어 가장 좋은 품질적 상태를 유지하였고, 조직감을 측정한 결과 열풍건조의 경우 경도와 씹힘성 그리고 인장력에서 높은 값을 나타냈으며, 천일건조와 냉풍건조는 비슷한 경향을 보였으나, 절단 응력에서 천일건조가 높은 값을 나타내었다.