• 제목/요약/키워드: Horizontal Force

검색결과 849건 처리시간 0.031초

보강롤 구동 4 단 냉간압연기에서 작업롤의 수평하중 거동분석과 안정위치 결정을 위한 해석적 및 수치적 고찰 (Analytical and Numerical Investigation of Horizontal Force and Stable Position of Work Roll in Backup-Roll-Drive 4-High Cold-Rolling Mill)

  • 변상민;이재현;박흥식
    • 대한기계학회논문집A
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    • 제35권9호
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    • pp.977-982
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    • 2011
  • 보강롤 구동 4 단 냉간압연기에서 작업롤과 보강롤 사이의 접촉력으로 인해 발생된 작업롤의 수평력을 고찰하였다. 본 수평력은 작업롤을 수평방향으로 휘게하고 롤갭 형상을 그 만큼 변화시킨다. 본 논문에서는 압연을 정상상태라고 가정하여 작업롤의 수평력을 예측할 수 있는 수식모델을 제시하였다. 해석에 사용된 소재는 고-실리콘(약 3%) 강판이었다. 수평력의 비-정상거동을 고찰하기 위해서 삼차원 유한요소모델을 채용하였다. 두 가지 모델을 이용하여 작업롤의 수평력은 보강롤의 중심으로부터 작업롤의 중심이 벗어난 길이에 따라 변한다는 결과를 얻었다. 그리고 작업롤의 수평력을 최소화 시킬 수 있는 작업롤의 최적 중심이탈 길이를 도출하였다.

Experimental study on the method of estimating the vertical design wave force acting on a submerged dual horizontal plate

  • Kweon, Hyuck-Min;Oh, Sang-Ho;Choi, Young-Hwan
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제5권4호
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    • pp.569-579
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    • 2013
  • A steel-type breakwater that uses a submerged dual horizontal porous plate was originally proposed by Kweon et al. (2005), and its hydrodynamic characteristics and design methodology were investigated in a series of subsequent researches. In particular, Kweon et al. (2011) proposed a method of estimating the vertical uplift force that acts on the horizontal plate, applicable to the design of the pile uplift drag force. However, the difference between the method proposed by Kweon et al. (2011), and the wave force measured at a different time without a phase difference, have not yet been clearly analyzed. In this study, such difference according to the method of estimating the wave force was analyzed, by measuring the wave pressure acting on a breakwater model. The hydraulic model test was conducted in a two-dimensional wave flume of 60.0 m length, 1.5 m height and 1.0 m width. The steepness range of the selected waves is 0.01~0.03, with regular and random signals. 20 pressure gauges were used for the measurement. The analysis results showed that the wave force estimate in the method of Kweon et al. (2011) was smaller than the wave force calculated from the maximum pressure at individual points, under a random wave action. Meanwhile, the method of Goda (1974) that was applied to the horizontal plate produced a smaller wave force, than the method of Kweon et al. (2011). The method of Kweon (2011) was already verified in the real sea test of Kweon et al. (2012), where the safety factor of the pile uplift force was found to be greater than 2.0. Based on these results, it was concluded that the method of estimating the wave force by Kweon et al. (2011) can be satisfactorily used for estimating the uplift force of a pile.

Partition method of wall friction and interfacial drag force model for horizontal two-phase flows

  • Hibiki, Takashi;Jeong, Jae Jun
    • Nuclear Engineering and Technology
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    • 제54권4호
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    • pp.1495-1507
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    • 2022
  • The improvement of thermal-hydraulic analysis techniques is essential to ensure the safety and reliability of nuclear power plants. The one-dimensional two-fluid model has been adopted in state-of-the-art thermal-hydraulic system codes. Current constitutive equations used in the system codes reach a mature level. Some exceptions are the partition method of wall friction in the momentum equation of the two-fluid model and the interfacial drag force model for a horizontal two-phase flow. This study is focused on deriving the partition method of wall friction in the momentum equation of the two-fluid model and modeling the interfacial drag force model for a horizontal bubbly flow. The one-dimensional momentum equation in the two-fluid model is derived from the local momentum equation. The derived one-dimensional momentum equation demonstrates that total wall friction should be apportioned to gas and liquid phases based on the phasic volume fraction, which is the same as that used in the SPACE code. The constitutive equations for the interfacial drag force are also identified. Based on the assessments, the Rassame-Hibiki correlation, Hibiki-Ishii correlation, Ishii-Zuber correlation, and Rassame-Hibiki correlation are recommended for computing the distribution parameter, interfacial area concentration, drag coefficient, and relative velocity covariance of a horizontal bubbly flow, respectively.

육상의 직립구조물에 미치는 지진 해일에 의한 수평 파력 및 파압에 대한 수리모형실험 (Physical Modeling of Horizontal Force on the Inland Vertical Structure by Tsunami-like Waves)

  • 박형수;;신성원
    • 한국해안·해양공학회논문집
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    • 제29권6호
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    • pp.363-368
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    • 2017
  • 지진해일은 그 파랑이 연안 도시로 범람하여 육상 구조물에 피해를 주게 된다. 육상 구조물에 미치는 파압 및 파력에 대한 연구는 육상 구조물의 안정성 설계의 중요한 요인 중 하나이다. 본 연구에서는 단순화한 박스구조물에 미치는 지진 해일의 수평 파력 및 파압에 대한 2차원 단면 수리모형실험을 수행하였다. 시간에 따른 수평 파압의 수직 분포와 파력을 파압계와 파력계를 사용하여 계측하여 상호 비교하였다. 또한, 쇄파의 형태도 다양하게 고려하여 계측하였다. 쇄파된 파랑이 입사하는 경우 구조물에 미치는 수평 파력이 최대가 되는 순간에는 수평 파압이 수직적으로 균일하였고, 그 외의 경우에는 육상 저면에 가까울수록 수평 파압이 커지는 분포를 보였다. 최대 수평 파력을 다양한 입사파랑 조건에 대한 함수로 표현하기 위해 쇄파상사계수를 사용하여 수평 파력과의 관계식을 산출하였다. 그 결과 무차원화한 수평 파력은 쇄파상사계수가 증가함에 따라 지수적으로 감소하는 경향을 있음을 보였다.

해안 구조물에 작용하는 부유체의 충격력에 관한 연구(I) - 연직원주에 작용하는 수평력 - (A study on the Impact force of floating body which acts on near shore structures - On the horizontal force acts on the vertical circular piles -)

  • 양윤모;김병욱;김도삼
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 1982년도 제24회 수공학 연구발표회 논문초록집
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    • pp.105-120
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    • 1982
  • The circular cylindrical piles are extensively used in near shore structures. For the purpose of analysing stability of vertical pile, we must consider the horizontal force, the lift force, and the traverse force etc. In this paper author studied horizontal force acts on the vertical circular pile and investigated the relation between the floating body coefficients C$$ and U$$T/D.

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Experimental and numerical study on the wave force calculation of a partially immersed horizontal cylindrical float

  • Liu, Bijin;Fu, Danjuan;Zhang, Youquan;Chen, Xiaoyun
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제12권1호
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    • pp.733-742
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    • 2020
  • Taking the cylindrical float of the floating fence of a floating litter collection device as the research object, based on the shallow immersion characteristics of the cylindrical float, the Morison equation is modified, and the interaction between regular waves and the partially immersed horizontal cylindrical float is discussed in combination with scale model test. The results show that the modified Morison equation can accurately predict the wave force of the horizontal cylindrical float and reveal the influence of amplitude, immersion depth and period on the wave force of the cylindrical float. For partially immersed cylindrical floats, the wave force increases with the increase in wave height and decays with the increase in period. The positive value distribution of the wave force is larger than that of the negative direction, and the difference between the positive and negative directions is mainly affected by the immersion depth.

수직형 손잡이와 수평형 손잡이의 높이와 간격에 따른 미는 힘 비교 (Comparison of the Pushing Forces between Horizontal Handle and Vertical Handle According to the Handle Height and Distance)

  • 송영웅
    • 대한안전경영과학회지
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    • 제16권4호
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    • pp.371-378
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    • 2014
  • Manual materials handling tasks are the main risk factors for the work-related musculoskeletal disorders. Many assistant tools for manual materials handling are being used in various kind of industries. One of them is a 4-wheeled cart which is widely used in manufacturing factories, hospitals, etc. The major force required to control the 4-wheeled cart is pushing and pulling. There are two types of handles being used for the 4-wheeled cart : vertical type (two vertical handles), and horizontal type (one horizontal handle). This study tried to investigate the pushing forces and subjective discomforts (hand/writst, shoulder, low back, and overall) of the two handle types with different handle height and distance conditions. Twelve healthy male students (mean age = 23.4 years) participated in the experiment. The independent variables were handle angle (horizontal, vertical), handle height (low, medium, high), and handle distance (narrow, medium, wide). The full factorial design was used for the experiment and the maximum pushing forces were measured in 18 different conditions ($2{\times}3{\times}3$). Analysis of variance (ANOVA) procedure was conducted to test the effects of the independent variables on the pushing force and discomfort levels. Handle height and angle were found to be the critical design factors that affect the maximal pushing forces and subjective discomfort. In the middle height, subjects exerted higher pushing forces, and experience lower discomfort levels compared to the high, and low height. There was no statistical influence of the handle distance to the pushing forces and subjective discomfort levels. It was found out that the effects of the handle angle (horizontal and vertical) on both pushing force and subjective discomfort were statistically significant (p < 0.05). The vertical handle revealed higher pushing force and lower discomfort level than the horizontal handle. The reason for that was thought to be the different postures of the hand when grasping the handles. The horizontal handle induced pronaton of the hand and made hand posture more deviated from the neutral position.

면진장치 설치각도에 따른 아치구조물의 지진응답 (Seismic Response of Arch Structure with Base Isolation Device Depending on Installation Angle)

  • 김기철;이준호
    • 한국공간구조학회논문집
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    • 제22권1호
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    • pp.25-32
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    • 2022
  • The seismic behaviors of the arch structure vary according to the rise-span ratio of the arch structure. In this study, the rise-span ratio (H/L) of the example arch structure was set to 1/4, 1/6, and 1/8. And the installation angle of the seismic isolator was set to 15°, 30°, 45°, 60° and 90°. The installation angles of the seismic isolator were set by analyzing the horizontal and vertical reaction forces according to the rise-span ratio of the arch structure. Due to the geometrical and dynamic characteristics of the arch structure, the lower the rise-span ratio, the greater the horizontal reaction force of the static load, but the smaller the horizontal reaction force of the dynamic load. And if the seismic isolator is installed in the direction of the resultant force of the reaction forces caused by the seismic load, the horizontal seismic response becomes small. Also, as the installation angle of the seismic isolator increases, the hysteresis behavior of the seismic isolator shows a plastic behavior, and residual deformation appears even after the seismic load is removed. In the design of seismic isolators for seismic response control of large space structures such as arch structures, horizontal and vertical reaction forces should be considered.

경사식 방파제 상부구조물 작용 수평파력 산정식 비교 사례 연구 (A Case Study of Comparing Formulae for Estimating Horizontal Wave Force on Crown Wall of Sloping Breakwater)

  • 오상호;오영민;여봉구;한태영
    • 한국연안방재학회지
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    • 제1권1호
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    • pp.28-35
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    • 2014
  • This study investigated the applicability of four empirical equations (Morihira et al., 1967; Goda, 2010; Jensen, 1984 and Bradbury et al., 1988; Pedersen, 1996) suggested for estimating the horizontal wave force on the crown wall of sloping breakwaters. For the two exemplary cross sections of the breakwaters whose geometry are apparently different each other, the estimates of horizontal wave force calculated by the four equations were compared. The values of estimated wave force showed considerable discrepancy among the equations for each of the two exemplary breakwater cross sections, respectively. In addition, the relative magnitude of the wave force was quite different according to the breakwater geometry as well as the design wave condition. In general, Morihira's or Goda's formulae produced larger estimates of the horizontal wave force than Jensen/Bradbury's or Pedersen's formulae if the wave period (or wavelength) is comparatively short. In contrast, exactly opposite result was obtained when the wave period or wavelength is comparatively long. Further detailed study based on physical experiments is required to examine the applicability of the four empirical equations considered in this study more thoroughly.

Sloped rolling-type bearings designed with linearly variable damping force

  • Wang, Shiang-Jung;Sung, Yi-Lin;Hong, Jia-Xiang
    • Earthquakes and Structures
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    • 제19권2호
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    • pp.129-144
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    • 2020
  • In this study, the idea of damping force linearly proportional to horizontal isolation displacement is implemented into sloped rolling-type bearings in order to meet different seismic performance goals. In addition to experimentally demonstrating its practical feasibility, the previously developed analytical model is further modified to be capable of accurately predicting its hysteretic behavior. The numerical predictions by using the modified analytical model present a good match of the shaking table test results. Afterward, several sloped rolling-type bearings designed with linearly variable damping force are numerically compared with a bearing designed with conventional constant damping force. The initial friction damping force adopted in the former is designed to be smaller than the constant one adopted in the latter. The numerical comparison results indicate that when the horizontal isolation displacement does not exceed the designed turning point (or practically when subjected to minor or frequent earthquakes that seldom have a great displacement demand for seismic isolation), the linearly variable damping force design can exhibit a better acceleration control performance than the constant damping force design. In addition, the former, in general, advantages the re-centering performance over the latter. However, the maximum horizontal displacement response of the linearly variable damping force design, in general, is larger than that of the constant damping force design. It is particularly true when undergoing a horizontal isolation displacement response smaller than the designed turning point and designing a smaller value of initial friction damping force.