• Title/Summary/Keyword: butterfly design

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The Nonlinear Structure Design for Hyper-elastic Meterials Using Contact Analysis (비선형 해석을 이용한 초탄성 재료의 구조 최적 설계)

  • Kim J.Y.;Jung D.S.;Park Y.C.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.1315-1321
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    • 2005
  • Using hyper-elastic material has been increased gradually and its range was extended all over the industrial. In addition, the performance prediction of this material was required not only experimental methods like metal material but also numerical methods. In this study, we presented the process how to use numerical method for hyper-elastic material and then, it was applied for seat-ring of butterfly valve by using this process. The finite element analysis was executed to evaluate the mechanical characteristics of hyper-elastic material and search the optimum model considered conditions and features. According to that model the coefficient was obtained by using Contact analysis.

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Study of Flow Control Range according to Valve Type (밸브 형식별 유량제어범위 결정에 관한 연구)

  • Park, Jong-Ho;Park, Han-Yung
    • The KSFM Journal of Fluid Machinery
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    • v.14 no.5
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    • pp.39-47
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    • 2011
  • Flow control range of valve, which is installed on pipeline, varies according to valve type, pipe diameter, pipe length, roughness, and elevation difference of both ends of pipeline. A lot of computation efforts and knowledge are needed to estimate flow control range of valve, considering above many parameters. The table of flow control range of each valve type is presented for convenience of pipeline design engineers who must make decision of valve size and type in this study. Also the reason that butterfly valve is recommended for flow control, and gate valve is forbidden is presented via quantification and figures in this study.

Determination of Eccentric Axis for Pump Control Valve Using the Characteristic Function (특성함수를 이용한 펌프 제어 밸브의 편심축 결정)

  • Shin, Myung-Seob;Yi, Sang-Il;Park, Gyung-Jin;Yoon, Joon-Yong
    • The KSFM Journal of Fluid Machinery
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    • v.11 no.3
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    • pp.43-49
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    • 2008
  • The pump control valve is a butterfly valve that has an eccentric rotating axis. It is not only used as a butterfly valve to control the flow rate or pressure, but also as a check valve to prevent backward flow. A new design method of eccentric rotating axis is proposed to design the valve. The height of the rotating axis is determined through flow field analysis. A general purpose of computational fluid dynamics software system, Fluent is used to simulate the fluid flow. Flow field analysis is performed for various heights of the rotating axis and different opening angles of the valve. A characteristic function is defined for estimating the flow characteristics based on the results of flow field analysis. The characteristic function is defined in order to determine the height of the rotating axis. An optimization problem with a characteristic function is formulated to determine the amount of eccentricity. The height of the Totaling axis of the valve is determined through solving the optimization problem.

Theoretical Seismic Analysis of Butterfly Valve for Nuclear Power Plant (원자력 발전소용 버터플라이밸브의 내진해석)

  • Han, Sang-Uk;Ahn, Jun-Tae;Lee, Kyung-Chul;Han, Seung-Ho
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.36 no.9
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    • pp.1009-1015
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    • 2012
  • Valves are one of the most important components of a pipeline system in a nuclear power plant, and it is important to ensure their structural safety under seismic loads. A crucial aspect of structural safety verification is the seismic qualification, and therefore, an optimal shape design and experimental seismic qualification is necessary in case the configuration of the valve parts needs to be modified and their performance needs to be improved. Recently, intensive numerical analyses have been performed before the experimental verification in order to determine the appropriate design variables that satisfy the performance requirements under seismic loads. In this study, static and dynamic numerical structural analyses of a 200A butterfly valve for a nuclear power plant were performed according to the KEPIC MFA. The result of static analysis considering an equivalent static load under SSE condition gave an applied stress of 135 MPa. In addition, the result of dynamic analysis gave an applied stress of 183 MPa, where the CQC method using response spectrums was taken into account. These values are under the allowable strength of the materials used for manufacturing the butterfly valve, and therefore, its structural safety satisfies the requirements of KEPIC MFA.

VCM Design to Improve Dynamic Performance of Actuator in a Disk Drive (하드 디스크 드라이브 엑추에이터의 동적성능향상을 위한 VCM 설계)

  • 이행수;강성우;김영훈;황태연
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2003.11a
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    • pp.911-914
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    • 2003
  • As high-capacity disk drives pow in track density, the allowable level of PES is becoming smaller. In this paper, some design concept of actuator is introduced to suppress the Butterfly mode that imposes the fundamental limitation on servo bandwidth. The effect of dynamics of proposed actuator on PES is examined by simulation.

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An Optimization for Flow Control Butterfly Valve using Grey Relational Analysis (회색 관계 분석을 이용한 유량 제어용 버터플라이밸브 형상 최적화)

  • Lee, Sang Beom;Lee, Dong Myung
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.26 no.6
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    • pp.359-366
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    • 2014
  • This paper considered optimization method of appending a shape on a disc in an attempt to improve core functions, which are inherent in flow characteristics. The paper also verifies the optimization method of appendage shape with a Class 150 200A Butterfly valve. Then the design of experiment (DOE) with an orthogonal array is performed to analyze the effect of form parameters by grey relational analysis and analysis of mean (ANOM). And this study sets flow coefficient as an object functions for optimization, and the conventional disc model and the optimal appendage shape on disc model are compared by computational fluid analysis. The paper concludes that an optimal appendage shape on disc model achieves wider usability by a wider operating range.

A Study on Scarf Design Development with a Combination of Traditional Korean Rice Cake Pattern and Jogakbo Patchwork (전통 떡살문양과 조각보를 조합한 스카프디자인 개발)

  • Kim, Sun-Young
    • Journal of the Korean Home Economics Association
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    • v.50 no.1
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    • pp.29-39
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    • 2012
  • The purpose of this research is to suggest a scarf design which reflects the traditional culture native to Korea by making use of the combined pattern of jokgakbo patchwork and ddeoksal(rice cake). For research methodology, the computer design programs of Adobe Illustrator CS3 and Adobe Photoshop CS3 were used along with the related literature. For the combined sets of motif pattern, the following were consider: first, a combination of jogakbo in square shape and chrysanthemum in a rice cake mold; second, a combination of radius jogakbo and geometrical pattern; third, a combination of vertical and horizontal forms of jogakbo and rice cake pattern; fourth, a combination of yeouijumunbo and butterfly pattern in rice cake mold. For the scarf design with these applications, technical skills such as repeat, rotation, symmetry, free setup, and distortion were used for the combination motif. In terms of the shape of the design, there are two, square and lengthwise tetragons.

Structural Safety of Lightweight Valve Disc by Topology Optimization Design based on Computational Simulation (전산 시뮬레이션 기반의 위상최적설계에 의한 경량 밸브디스크의 구조적 안전성)

  • Kim, Taehyung
    • Journal of Energy Engineering
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    • v.29 no.3
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    • pp.25-33
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    • 2020
  • In this study, flow and structural computational analysis were performed to investigate the structural safety of the lightweight butterfly valve disc designed by topology optimization. After flow analysis, as the opening angle increased, the flow coefficient increased non-linearly and showed a gentle slop. When the opening angle was 12 degree, the cavitation could be predicted. After FE analysis, all FE von-Misses stresses of the lightweight disc were smaller than the yield strength of the material, and all FE maximum deformations were also smaller than the conservative deformation of the previous study. Ultimately, it was confirmed that the structural safety of the lightweight valve disc based on computational analysis is effective.

Reconstruction of post-burn anterior neck contractures using a butterfly design free anterolateral thigh perforator flap

  • Lellouch, Alexandre G.;Ng, Zhi Yang;Pozzo, Victor;Suffee, Tabrez;Lantieri, Laurent A.
    • Archives of Plastic Surgery
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    • v.47 no.2
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    • pp.194-197
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    • 2020
  • Anterior neck burns represent a major reconstructive challenge due to severe sequalae including restriction in movement and poor aesthetic outcomes. Common treatment options include skin grafting with/without dermal matrices, and loco-regional and distant free flap transfers with/without prior tissue expansion. Such variation in technique is largely influenced by the extent of burn injury requiring resurfacing. In order to optimize like-for-like reconstruction of the anterior neck, use of wide, thin and long flaps such as the anterolateral thigh (ALT) perforator flap have been reported with promising results. Of note, some patients have a tendency towards severe scar contractures, which may be contributed by the greater extent of inflammation during wound healing. We report our experience at 4 years' followup after secondary reconstruction of severe, anterior neck burn contractures in two patients by harvesting the ALT flap with a butterfly design. This technique provides adequate wound resurfacing of the burned neck and surrounding areas, and provides good neck extensibility by addressing both anterior and lateral aspects of the scar defect simultaneously. Such a flap design reduces tension on wound edges and thus, the risk of contracture recurrence in what remains a particularly challenging type of burn reconstruction.

Design and Comparison of the Pipelined IFFT/FFT modules for IEEE 802.11a OFDM System (IEEE 802.11a OFDM System을 위한 파이프라인 구조 IFFT/FFT 모듈의 설계와 비교)

  • 이창훈;김주현;강봉순
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.8 no.3
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    • pp.570-576
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    • 2004
  • In this paper, we design the IFFT/FFT (Inverse fast Fourier Transform/Fast Fourier Transform) modules for IEEE 802.11a-1999, which is a standard of the High-speed Wireless LAN using the OFDM (Orthogonal Frequency Division Multiplexing). The designed IFFT/FFT is the 64-point FFT to be compatible with IEEE 802.11a and the pipelined architecture which needs neither serial-to-parallel nor parallel-to-serial converter. We compare four types of IFFT/FFT modules for the hardware complexity and operation : R22SDF (Radix-2 Single-path Delay feedback), the R2SDF (Radix-2 Single-path Delay feedback), R2SDF (Radix-4 Single-path Delay Feedback), and R4SDC (Radix-4 Single-path Delay Commutator). In order to minimize the error, we design the IFFT/FFT module to operate with additional decimal parts after butterfly operation. In case of the R22SDF, the IFFT/FFT module has 44,747 gate counts excluding RAMs and the minimized error rate as compared with other types. And we know that the R22SDF has a small hardware structure as compared with other types.