• 제목/요약/키워드: chevron angle

검색결과 88건 처리시간 0.024초

직교배열표 실험계획법에 의한 심해저 점착성 연약지반용 무한궤도차량의 선회성능에 대한 실험 연구 (An Experimental Study on Steering Performance of Tracked Vehicle on Deep-sea Cohesive Soft Soil by DOE using Orthogonal Arrays)

  • 최종수;홍섭;김형우
    • 한국해양공학회지
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    • 제20권4호
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    • pp.37-42
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    • 2006
  • This paper is concerned with experimental investigation of steering performance of a tracked vehicle on extremely soft soil. A tracked vehicle model with principal dimensions of 0.9 m(L)x0.75 m(B)x0.4 m(H) and weight of 167 kg was constructed with a pair of driving chain links, driven by two AC-servo motors. The tracks were configured with detachable grousers with variable span. A deep seabed was simulated by means of a bentonite-water mixture in a soil bin of 6.0 m(L)x3.7 m(B)x0.7 m(H). The turning radii of vehicle and driving torques of motors were measured with respect to experiment variables: steering ratio, driving speed, grouser chevron angle, grouser span, and grouser height. L8 orthogonal table is adopted for DOE (Design of experiment). The effects of experiment variables on steering performance are evaluated.

Plate-shell 열교환기에서 R245fa의 응축열전달 및 압력강하 특성에 관한 연구 (Condensation Heat Transfer and Pressure Drop of R245fa in a Plate-shell Heat Exchanger)

  • 김성우;백창현;송강섭;김용찬
    • 설비공학논문집
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    • 제28권12호
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    • pp.495-501
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    • 2016
  • Condensation heat transfer and pressure drop of R245fa were investigated experimentally in a plate-shell heat exchanger which consisted of thirty seven counter flow channels formed by thirty-eight plates with a chevron angle of $50^{\circ}$. The upflow of the water in one channel receives heat from the downflow of R245fa in the other. The effects of refrigerant mass flux, imposed heat flux, refrigerant saturation pressure, and mean vapor quality on the heat transfer characteristics were explored in detail. Experimental correlations were proposed to predict the condensation heat transfer coefficient and friction factor in terms of the Boiling number, Reynolds number, and Prandtl number. In the experiments, the mean vapor quality in the refrigerant channel was varied from .22 to .82, mass flux from 3 to $5kg/m^2$, imposed heat flux from 1 to $3kW/m^2$, and system pressure from .61 to .81 MPa.

무지외반증에서 종자골 전이 정도가 치료결과에 미치는 영향 (The Effect of Sesamoid Position on Results of Treatment for Hallux Valgus)

  • 유총일;이동호;김휘택
    • 대한족부족관절학회지
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    • 제8권2호
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    • pp.131-137
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    • 2004
  • Purpose: We evaluated the results of various surgical treatments for hallux valgus with and without attempting to correct sesamoid subluxation. Materials and Methods: Thirty-one cases in 26 patients were involved in this study: Group I (15 cases) - surgery performed only to correct the hallux valgus angle (HVA) and the first-second intermetatarsal angle (IMA) in AP view; Group II (16 cases) - surgery performed to correct HVA and IMA and also to reduce the subluxation of sesamoid. The degree of sesamoid subluxation was measured from a pre- and intraoperative sesamoid tangential views. For both groups, we analysed the status of the sesamoid in pre- and postoperative radiographs and performed clinical evaluation using the Mayo clinic forefoot scoring system. Results: The average amount of correction during postoperative period and loss of correction at last follow-up in the sesamoid tangential view were as follows: soft tissue procedures (5 cases) - group I: grade $1.0{\pm}0.4/1.5{\pm}0.3$ and group II: grade $2.0{\pm}0.9/0.5{\pm}0.08$; chevron osteotomy (12 cases) - group I: grade $1.0{\pm}0.5/1.2{\pm}0.3$ and group II: grade $2.2{\pm}0.7/0.9{\pm}0.2$; proximal metatarsal osteotomy (14 cases) - group I: grade $4.0{\pm}0.4/1{\pm}0.2$ and group II: grade $4.7{\pm}1.1/0.8{\pm}0.1$. In clinical evaluation, more than 93% of the feet had a good result in both groups. The analysis of these data for each treatment type did not show any statistically significant differences between groups I and II. Conclusion: The radiologic and clinical results did not validate our attempts to reduce the sesamoid during surgery.

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판형 열교환기의 열전달과 유동특성에 대한 연구 (Study on Characteristics of Heat Transfer and Flow in Plate Heat Exchanger)

  • 김진화;이광성;지명국;정한식;정효민
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.1476-1483
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    • 2009
  • In present work, experiments conducted to investigate the heat transfer characteristics and relationship between operating parameters and production of fresh water as output of the system. Plate Heat Exchanger (PHE) applied in vacuum evaporator for product fresh water that system intended to efficiently use low grade heat. PHE have become popular in chemical, power, food and refrigeration industries due to the efficient heat transfer performance, extremely compact design and flexibility of extend or modify to suit changed duty. The heat transfer part contains corrugated plates with 60 degree of chevron angle which verified by many researchers and commonly apply. Fresh water can be produced from saline water under near vacuum pressure by operating ejector. Consequently, evaporating temperature stay around $51-57^{\circ}C$ so it is possible to use any low grade heat source or renewable source. The maximum fresh water produced by freshwater generator with plat heat exchanger applied in the study was designed as 1.0 Ton/day.

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Evaporation Heat Transfer and Pressure Drop Characteristics of R-134a in the Oblong Shell and Plate Heat Exchanger

  • Park, Jae-Hong;Kim, Young-Soo
    • Journal of Mechanical Science and Technology
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    • 제18권12호
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    • pp.2284-2293
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    • 2004
  • The evaporation heat transfer coefficient h$\_$r/ and frictional pressure drop Δp$\_$f/ of refrigerant R-134a flowing in the oblong shell and plate heat exchanger were investigated experimentally in this study. Four vertical counterflow channels were formed in the oblong shell and plate heat exchanger by four plates of geometry with a corrugated sinusoid shape of a 45 chevron angle. Upflow of refrigerant R-134a boils in two channels receiving heat from downflow of hot water in other channels. The effects of the refrigerant mass flux, average heat flux, refrigerant saturation temperature and vapor quality of R-134a were explored in detail. Similar to the case of a plate heat exchanger, even at a very low Reynolds number, the flow in the oblong shell and plate heat exchanger remains turbulent. The results indicate that the evaporation heat transfer coefficient h$\_$r/ and pressure drop Δp$\_$f/ increase with the vapor quality. A rise in the refrigerant mass flux causes an increase in the h$\_$r/ and Δp$\_$f/. But the effect of the average heat flux does not show significant effect on the h$\_$r/ and Δp$\_$f/. Finally, at a higher saturation temperature, both the h$\_$r/ and Δp$\_$f/ are found to be lower. The empirical correlations are also provided for the measured heat transfer coefficient and pressure drop in terms of the Nusselt number and friction factor.

오블롱 셀 플레이트 열교환기에서의 R-l34a, R-407C, R-410A의 증발 열전달에 관한 실험적 연구 (Study on Evaporation Heat Transfer of R-l34a, R-407C, and R-410A in the Oblong Shell and Plate Heat Exchanger)

  • 박재홍;김영수
    • 설비공학논문집
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    • 제16권9호
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    • pp.845-854
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    • 2004
  • The evaporation heat transfer coefficient for R-l34a, R-407C (a mixture of 23wt% R-32, 25 wt% R-125, and 52 wt% R-l34a) and R-410A (a mixture of 50 wt% R-32 and 50 wt% R-125) flowing in the oblong shell and plate heat exchanger were investigated experimentally in this study. Four vertical counterflow channels were formed in the exchanger by four plates of commercial geometry with a corrugated sinusoid shape of a chevron angle of 45 degree. The effects of the mean vapor quality, mass flux, heat flux, and saturation temperature of different refrigerants on the evaporation heat transfer were explored in detail. Similar to the case of a Plate heat exchanger, even at a very low Reynolds number, the flow in the oblong shell and plate heat exchanger remains turbulent. It is found that the evaporation heat transfer coefficient in the plates is much higher than that in circular pipes. The present data show that the evaporation heat transfer coefficients of all refrigerants increase with the vapor quality. At a higher mass flux h, is higher than for the entire range of the vapor quality. Raising the imposed wall heat flux was found to slightly improve h$_{r}$, while h$_{r}$ is found to be lower at a higher refrigerant saturation temperature. A comparison of the performance of the various refrigerants reveals that R-410A has the highest heat transfer performance followed by R-l34a, and R-407C had the lowest performance of the refrigerants tested. Based on the present data, empirical correlations of the evaporation heat transfer coefficient were proposed.sed.

Condensation Heat Transfer and Pressure Drop of R-134a in the Oblong Shell and Plate Heat Exchanger

  • Park Jae-Hong;Kim Young-Soo
    • International Journal of Air-Conditioning and Refrigeration
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    • 제12권3호
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    • pp.158-167
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    • 2004
  • Condensation heat transfer experiments were conducted with a oblong shell and plate heat exchanger without oil in a refrigerant loop using R-134a. An experimental refrigerant loop has been developed to measure the condensation heat transfer coefficient $h_r$ and frictional pressure drop ${\Delta}p_f$ of R-134a in a vertical oblong shell and plate heat exchanger. Four vertical counter flow channels were formed in the oblong shell and plate heat exchanger by four plates having a corrugated sinusoid shape of a $45^{\circ}$ chevron angle. The effects of the refrigerant mass flux, average heat flux, refrigerant saturation temperature and vapor quality were explored in detail. Similar to the case of a plate heat exchanger, even at a very low Reynolds number, the flow in the oblong shell and plate heat exchanger remains turbulent. The results indicate that the condensation heat transfer coefficients and pressure drops increase with the vapor quality. A rise in the refrigerant mass flux causes an increase in the $h_r\;and\;{\Delta}p_f$. Also, a rise in the average heat flux causes an increase in the $h_r$. But the effect of the average heat flux does not show significant effect on the ${\Delta}p_f$. On the other hand, at a higher saturation temperature, both the $h_r\;and\;{\Delta}p_f$. found to be lower. Based on the present data, the empirical correlations are provided in terms of the Nusselt number and friction factor.

감은사지 3층석탑(서탑)의 지반 특성을 위한 지구물리탐사 (GEOPHYSICAL EXPLORATION FOR THE SITE CHARACTERISTICS OF THE WESTERN THREE-STORY STONE PAGODA IN GAMEUM TEMPLE)

  • 서만철;최희수;이찬희;오진용
    • 지구물리
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    • 제6권1호
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    • pp.39-46
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    • 2003
  • 경상북도 경주시 양북면 용당리 감은사지터에 위치한 쌍둥이 3층석탑(전체높이 약 13.4 m, 기단폭 6.78 m x 4.4 m)은 682년에 건립된 국내 최대 3층 석탑으로 국보급 문화재이다. 3층석탑의 서탑(이하 감은사지서탑)은 1959년에 해체 수리되었으나, 현재는 석탑 석재인 화강섬록암의 심한 풍화가 관찰되며, 탑의 구조적 불균형에 의하여 생겨난 하중의 편중으로 일부 옥개석 사이가 역 V자형으로 벌어져 있다. 일반적으로 석탑 안정성 진단을 위해서는 석탑과 인근의 지반환경을 이해하는 것이 필수적이다. 이 연구에서는 감은사지서탑 주변에서 탄성파탐사와 전기비저항탐사의 복합 지구물리탐사를 실시하였다. 웨너법에 의한 천부층의 전기비저항 수평 분포는 55∼350 Ωm의 범위인데, 대체로 석탑 남서측면이 상대적으로 높은 비저항인 반면 북동측은 100 Ωm이하의 낮은 비저항 지역으로서 연약지반으로 해석된다. 이는 동측 방향으로의 구조적인 기울임이 관찰된 석탑의 변위측정 결과와 부합한다. 탄성파 굴절법 탐사에 의하면 석탑인근의 약 3 m 두께의 최상부층의 탄성파 P파 속도범위는 200∼700 m/s이다. 복합지구물리 탐사결과 나타난 감은사지서탑의 기초는 약 11 m x 11 m의 장방형 형태로 약 3 m 깊이까지 분포하는 것으로 해석된다.

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