• Title/Summary/Keyword: around school

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Prediction of scour around single vertical piers with different cross-section shapes

  • Bordbar, Amir;Sharifi, Soroosh;Hemida, Hassan
    • Ocean Systems Engineering
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    • v.11 no.1
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    • pp.43-58
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    • 2021
  • In the present work, a 3D numerical model is proposed to study local scouring around single vertical piers with different cross-section shapes under steady-current flow. The model solves the flow field and sediment transport processes using a coupled approach. The flow field is obtained by solving the Unsteady Reynolds Averaged Navier-Stokes (URANS) equations in combination with the k-ω SST turbulence closure model and the sediment transport is considered using both bedload and suspended load models. The proposed model is validated against the empirical measurements of local scour around single vertical piers with circular, square, and diamond cross-section shapes obtained from the literature. The measurement of scour depth in equilibrium condition for the simulations reveal the differences of 4.6%, 6.7% and 13.1% from the experimental measurements for the circular, square, and diamond pier cases, respectively. The model displayed a remarkable performance in the prediction of scour around circular and square piers where horseshoe vortices (HSVs) have a leading impact on scour progression. On the other hand, the maximum deviation was found in the case of the diamond pier where HSVs are weak and have minimum impact on the formation of local scour. Overall, the results confirm that the prediction capability of the present model is almost independent of the strength of the formed HSVs and pier cross-section shapes.

Image-based characterization of internal erosion around pipe in earth dam

  • Dong-Ju Kim;Samuel OIamide Aregbesola;Jong-Sub Lee;Hunhee Cho;Yong-Hoon Byun
    • Computers and Concrete
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    • v.33 no.5
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    • pp.481-496
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    • 2024
  • Internal erosion around pipes can lead to the failure of earth dams through various mechanisms. This study investigates the displacement patterns in earth dam models under three different failure modes due to internal erosion, using digital image correlation (DIC) methods. Three failure modes—erosion along a pipe (FM1), pipe leakage leading to soil erosion (FM2), and erosion in a pipe due to defects (FM3)—are analyzed using two- and three-dimensional image- processing techniques. The internal displacement of the cross-sectional area and the surface displacement of the downstream slope in the dam models are monitored using an image acquisition system. Physical model tests reveal that FM1 exhibits significant displacement on the upper surface of the downstream slope, FM2 shows focused displacement around the pipe defect, and FM3 demonstrates increased displacement on the upstream slope. The variations in internal and surface displacements with time depend on the segmented area and failure mode. Analyzing the relationships between internal and surface displacements using Pearson correlation coefficients reveals various displacement patterns for the segmented areas and failure modes. Therefore, the image-based characterization methods presented in this study may be useful for analyzing the displacement distribution and behavior of earth dams around pipes, and further, for understanding and predicting their failure mechanisms.

Numerical simulation of natural convection around the dome in the passive containment air-cooling system

  • Chunhui Dong;Shikang Chen;Ronghua Chen;Wenxi Tian;Suizheng Qiu;G.H. Su
    • Nuclear Engineering and Technology
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    • v.55 no.8
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    • pp.2997-3009
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    • 2023
  • The Passive containment Air-cooling System (PAS) can effectively remove the decay heat of the modular small nuclear reactor after an accident. The details of natural convection around the dome, which is a key part of PAS, were investigated numerically in the present study. The thermal dynamics around the dome were studied through the temperature, pressure and velocity contours and the streamlines. Additionally, the formation of the buoyant plume at the top of the dome was investigated. The results show that with the increase of Ra, the lift-off point moves toward the bottom of the dome, and the eddy under the buoyant plume grows larger gradually, which enhances the heat transfer. And the heat transfer along the dome surface with different truncation angles was investigated. As the angle increases, the heat transfer coefficient becomes stronger as well. Consequently, a newly developed heat transfer correlation considering the influence of truncation angle for the dome is proposed based on the simulated results. This study could provide a better understanding of natural convection around the dome of PAS and the proposed correlation could also offer more predictive value in the improvement of nuclear safety.

The Relationships Between the Perception of Social Support and the Adjustment to School Life of Gifted Middle School Students. (중학생 영재가 지각한 사회적 지지와 학교생활 적응과의 관계)

  • 한성희;이지현
    • Journal of Gifted/Talented Education
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    • v.12 no.1
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    • pp.97-115
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    • 2002
  • The purpose of this study were to examine:(l)gifted middle school students'perception about Support fr~mpe ople around them, (2)the types of social support, (3)the number of support, and (4)the relationships among the factors above and the students' adjustment to school life The results obtained were as follows. On the whole, gifted middle school students obtained social support and their adjustment to school of life was higher than that of average students'. The rriore the students perceived support and help around them, the more they adjusted to their schlml life. The better important relationship was that of teachers' support and the student.,' adjustment to shool life. Namely, when the students perceived their teacher(support, their adjustment to a new school was greater. This study brmrght to atterltion that the teachers' understanding of the gifted students' specific character. In addition, a close relationship between teachers and the students was to be encouraged.

A Study on Health Seeking Behaviors of Local Residents -Focused on Shopping Around Phenomenon in Yangsan City, Korea- (일부 지역사회 주민의 의료이용행태에 관한 연구 -양산시 주민의 shopping-around 현상을 중심으로-)

  • Sung, Mi-Kyong;Lim, Byung-Mook
    • Journal of Society of Preventive Korean Medicine
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    • v.16 no.2
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    • pp.83-94
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    • 2012
  • Objectives : This study aimed to investigate the use and patterns of health care resources of local patients and to analyze the health seeking behaviors focusing on shopping around phenomenon. Methods : Questionnaires on the use of health institution were developed and administered to the residents in Yangsan city, Korea. We selected patients who were suffering from any diseases two months and over. Patients' health seeking behaviors were categorized, and the factors for selecting health institutions in each visiting stages were analyzed. Results : 139 local patients participated in the survey, and 130 completed questionnaires were analyzed. We found that there were sixty eight different types of medical utilization paths. The most frequent path was 'western clinics ${\rightarrow}$ Korean medicine hospitals or clinics ${\rightarrow}$ western clinics'. Only 6 patients started at Korean medicine, however, 16 patients(12.3%) finalized their treatment at Korean medicine hospitals or clinics. In most health seeking stages, patients tended to select health resources by their own decisions, and the geographic factor was the key reason to select health resources. Conclusions : Patients had not any stable forms to treat with their diseases, and we observed diversified patterns in the health seeking behaviors of patients, a typical shopping around phenomenon.

Comparison of various k-ε models and DSM applied to flow around a high-rise building - report on AIJ cooperative project for CFD prediction of wind environment -

  • Mochida, A.;Tominaga, Y.;Murakami, S.;Yoshie, R.;Ishihara, T.;Ooka, R.
    • Wind and Structures
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    • v.5 no.2_3_4
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    • pp.227-244
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    • 2002
  • Recently, the prediction of wind environment around a building using Computational Fluid Dynamics (CFD) technique comes to be carried out at the practical design stage. However, there have been very few studies which examined the accuracy of CFD prediction of flow around a high-rise building including the velocity distribution at pedestrian level. The working group for CFD prediction of wind environment around building, which consists of researchers from several universities and private companies, was organized in the Architectural Institute of Japan (AIJ) considering such a background. At the first stage of the project, the working group planned to carry out the cross comparison of CFD results of flow around a high rise building by various numerical methods, in order to clarify the major factors which affect prediction accuracy. This paper presents the results of this comparison.

Shear failure and mechanical behavior of flawed specimens containing opening and joints

  • Zhang, Yuanchao;Jiang, Yujing;Shi, Xinshuai;Yin, Qian;Chen, Miao
    • Geomechanics and Engineering
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    • v.23 no.6
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    • pp.587-600
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    • 2020
  • Shear-induced instability of jointed rock mass has greatly threatened the safety of underground openings. To better understand the failure mechanism of surrounding rock mass under shear, the flawed specimens containing a circular opening and two open joints are prepared and used to conduct direct shear tests. Both experimental and numerical results show that joint inclination (β) has a significant effect on the shear strength, dilation, cracking behavior and stress distribution around flaws. The maximum shear strength, occurring at β=30°, usually corresponds to a unifrom stress state around joint and an intense energy release. However, a larger joint inclination, such as β=90°~150°, will cause a more uneven stress distribution and a stronger stress concentration, thus a lower shear strength. The stress distribution around opening changes little with joint inclination, while the magnitude varys much. Both compression and tension around opening will be greatly enhanced by the 30°-joints. In addition, a higher normal stress tends to enhance the compression and suppress the tension around flaws, resulting in an earlier generation and a larger proportion of shear cracks.

Bone response around immediately placed titanium implant in the extraction socket of diabetic and insulin-treated rat maxilla (인슐린으로 조절되는 당뇨쥐 상악에서 발치 후 즉시 임플란트 주변에서 골형성)

  • Kim, Dae-Won;Heo, Hyun-A;Lim, Sang-Gyu;Lee, Won;Kim, Young-Sil;Pyo, Sung-Woon
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.37 no.1
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    • pp.30-35
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    • 2011
  • Introduction: Dental implants are used routinely with high success rates in generally healthy individuals. By contrast, their use in patients with diabetes mellitus is controversial because altered bone healing around implants has been reported. This study examined the bone healing response around titanium implants placed immediately in rats with controlled and uncontrolled diabetes. Materials and Methods: Twenty rats were divided into the control, insulin-treated and diabetic groups. The rats received streptozotocin (60 mg/kg) to induce diabetes; animals in the insulin-treated group also received three units of subcutaneous slow-release insulin. A titanium implant ($1.2{\times}3\;mm$) was placed in the extraction socket of the maxillary first molar and bone block was harvested at 1, 2 and 4 weeks. Results: Bone formation around the implants was consistently (from 1 to 4 week post-implantation) slower for the diabetic group than the control and insulin-treated group. Bone morphogenesis in the diabetic rats was characterized by fragmented bone tissues and extensive soft tissue intervention. Conclusion: The immediate placement of titanium implants in the maxilla of diabetic rats led to an unwanted bone healing response. These results suggest that immediate implant insertion in patients with poorly controlled diabetes might be contraindicated.

Influence of marginal bone resorption on two mini implant-retained mandibular overdenture: An in vitro study

  • Guo, Ying;Kono, Kentaro;Suzuki, Yasunori;Ohkubo, Chikahiro;Zeng, Jian-Yu;Zhang, Jing
    • The Journal of Advanced Prosthodontics
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    • v.13 no.1
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    • pp.55-64
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    • 2021
  • PURPOSE. To investigate the biomechanical effect of marginal bone resorption (MBR) on the mandibular mini implant (MI)-retained overdenture (MI-OD) on the edentulous model. MATERIALS AND METHODS. The experimental mandibular edentulous model was modified from a commercial model with 2 mm thick artificial soft tissue under denture base. Two MIs (Φ2.6 mm × 10 mm) were bilaterally placed between the lateral incisor and the canine area and attached with magnetic attachments. Three groups were set up as follows: 1) alveolar bone around the MI without MBR (normal group), 2) with MBR to 1/2 the length of the implant (resorption group), and 3) complete denture (CD) without MI (CD group). Strain around the MI, pressure near the first molar area, and displacement of denture were simultaneously measured, loading up to 50 N under bilateral/unilateral loading. Statistical analysis was performed using independent-samples t test and one-way ANOVA (α=.05). RESULTS. The strain around the MI with MBR was approximately 1.5 times higher than that without MBR. The pressure in CD was higher than in MI-ODs (P<.05), while there was no statistical difference between the normal and resorption group (P>.05). Similarly, the CD demonstrated a greater displacement of the denture base than did the MI-ODs during bilateral and unilateral loadings (P<.05). CONCLUSION. The strain around the MI with MBR was approximately 1.5 times higher than that without MBR. The pressure on posterior alveolar ridge and denture displacement of MI-ODs significantly decreased compared to CDs, even when MBR occurs. Bilateral balanced occlusion was recommended for MI-ODs, especially when MBR occurred.