• 제목/요약/키워드: Structural effect

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Analysis of a cable-stayed bridge with uncertainties in Young's modulus and load - A fuzzy finite element approach

  • Rama Rao, M.V.;Ramesh Reddy, R.
    • Structural Engineering and Mechanics
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    • 제27권3호
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    • pp.263-276
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    • 2007
  • This paper presents a fuzzy finite element model for the analysis of structures in the presence of multiple uncertainties. A new methodology to evaluate the cumulative effect of multiple uncertainties on structural response is developed in the present work. This is done by modifying Muhanna's approach for handling single uncertainty. Uncertainty in load and material properties is defined by triangular membership functions with equal spread about the crisp value. Structural response is obtained in terms of fuzzy interval displacements and rotations. The results are further post-processed to obtain interval values of bending moment, shear force and axial forces. Membership functions are constructed to depict the uncertainty in structural response. Sensitivity analysis is performed to evaluate the relative sensitivity of displacements and forces to uncertainty in structural parameters. The present work demonstrates the effectiveness of fuzzy finite element model in establishing sharp bounds to the uncertain structural response in the presence of multiple uncertainties.

Structural Design on Small Scale Sandwich Composite Wind Turbine Blade

  • Seongjin Ahn;Hyunbum Park
    • International Journal of Aerospace System Engineering
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    • 제10권2호
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    • pp.1-4
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    • 2023
  • Even though the recent development trend of wind turbine systems has been focused on larger MW Classes, the small-scale wind turbine system has been continuously developed because it has some advantages due to easy personnel establishment and use with low cost and energy saving effect. This work is to propose a specific structural design and analysis procedure for development of a low noise 500W class small wind turbine system which will be applicable to relatively low wind speed region like Korea. The proposed structural feature has a skin-spar-foam sandwich composite structure with the E-glass/Epoxy face sheets and the Urethane foam core for lightness, structural stability, low manufacturing cost and easy manufacturing process. Moreover this type of structure has good behaviors for reduction of vibration and noise. Structural analysis including load cases, stress, deformation, buckling and vibration was performed using the Finite Element Method. In order to evaluate the designed blade structure the structural tests were done, and their test results were compared with the estimated results.

Development of seismic collapse capacity spectra for structures with deteriorating properties

  • Shu, Zhan;Li, Shuang;Gao, Mengmeng;Yuan, Zhenwei
    • Earthquakes and Structures
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    • 제12권3호
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    • pp.297-307
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    • 2017
  • Evaluation on the sidesway seismic collapse capacity of the widely used low- and medium-height structures is meaningful. These structures with such type of collapse are recognized that behave as inelastic deteriorating single-degree-of-freedom (SDOF) systems. To incorporate the deteriorating effects, the hysteretic loop of the nonlinear SDOF structural model is represented by a tri-linear force-displacement relationship. The concept of collapse capacity spectra are adopted, where the incremental dynamic analysis is performed to check the collapse point and a normalized ground motion intensity measure corresponding to the collapse point is used to define the collapse capacity. With a large amount of earthquake ground motions, a systematic parameter study, i.e., the influences of various ground motion parameters (site condition, magnitude, distance to rupture, and near-fault effect) as well as various structural parameters (damping, ductility, degrading stiffness, pinching behavior, accumulated damage, unloading stiffness, and P-delta effect) on the structural collapse capacity has been performed. The analytical formulas for the collapse capacity spectra considering above influences have been presented so as to quickly predict the structural collapse capacities.

복합재료 쌍동형 초고속선의 최적 구조 설계 - 최소 중량 설계 (The Optimum Structural Design of the High-speed Surface Effect Ship using Composite Materials - Minimum Weight Design)

  • 장창두;김호경
    • 대한조선학회논문집
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    • 제35권2호
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    • pp.94-103
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    • 1998
  • 최근 선박의 고속화와 경량화가 중요시되면서 고속화에 적합한 선형과 경량화를 위한 재질의 연구가 활발히 진행되고 있다. 따라서 본 논문에서는 고속화와 경량화에 적합한 복합재료를 이용한 쌍동형 초고속선의 최소 중량 설계를 위한 구조 설계 기법과 전산 프로그램을 개발하였다. 또한 개발된 프로그램을 이용하여 복합재료의 대표적인 구조 형식인 샌드위치 형식과 Single skin 형식, 두가지가 혼용되는 Hybrid 형식에 대하여 각각 최적 설계를 수행하여 우열을 비교 검토하였다. 설계과정은 먼저 종강도 관점에서 주요 부재의 최적 설계를 수행하고, 쌍동선형 특유의 비틀림 모멘트를 고려하여 횡부재 설계를 수행하였다. 전체적인 설계 알고리즘은 미해군의 군함설계방법(Structural Synthesis Design Program)을 따르고 설계하중, 강도기준은 DnV 선급규정을 적용하였으며, 최적화 알고리즘은 ES 1+1을 사용하였다.

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워셔블 울과 노멀 울편성물의 구성특성에 따른 질감 및 감성이미지 (제2보) -구성특성에 따른 선호도를 중심으로- (Textures and Sensible Images on Structural Properties of Washable Wool and Normal Wool Knit Fabrics (Part II) -Focus on Preferences-)

  • 김현아;유효선
    • 한국의류학회지
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    • 제36권5호
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    • pp.501-511
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    • 2012
  • This study examines the effect of structural properties of F/W wool knit fabrics for woman's knitwear on the preferences for textile designing through analyzing the relationship among the structural properties, mechanical properties, objective hand measurements, and preferences. The 'knit structure' was determined to be the most important parameter in rating preferences, apart from the 'preference for cardigans'. Consumers preferred washable wool to normal wool when comparing a normal wool knit with a washable wool knit on a 'knit structure' factor. Preferred structural properties showed a similar tendency 'preference for fabric' and the 'preference for cardigans', 'preference for sweaters' and 'preference for vests'. The 'sophisticated/feminine' factor showed a correlation with 'fabric preference' and the texture and sensible images had a similar effect on fabric preferences. In the relationship between objective hand measurements and fabric preferences, the KOSHI value had a negative coefficient and the THV value had a positive correlation with fabric preferences. In conclusion, we found a consumer preference for more flexible fabrics.

Effect of Electroacupuncture on ERK Activation in Carrageenan-induced Inflammatory Pain Model

  • Kim, Ji-Hwan;Lee, Si-Hyoung;Kim, Ha-Neui;Kim, Yu-Ri;Lee, Yong-Tae;Choi, Byung-Tae
    • 동의생리병리학회지
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    • 제24권5호
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    • pp.872-876
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    • 2010
  • The present study found that EA pre-treatment effectively attenuated both spinal ERK activation and hyperalgesia against carrageenan-induced inflammation, whereas EA co-treatment with carrageenan injection unexpectedly elevated ERK activation in a synergistic manner and virtually had no analgesic effect. Therefore, we have concluded that the molecular mechanism of EA anagesia may be related to the inhibition of spinal ERK activation. Further experiments are required to find the intermediate candidates which transmits the pain-alleviating signals on the way of inhibiting ERK activation by EA.

The effect of structural variability and local site conditions on building fragility functions

  • Sisi, Aida Azari;Erberik, Murat A.;Askan, Aysegul
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.285-295
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    • 2018
  • In this study, the effect of local site conditions (site class and site amplifications) and structural variability are investigated on fragility functions of typical building structures. The study area is chosen as Eastern Turkey. The fragility functions are developed using site-specific uniform hazard spectrum (UHS). The site-specific UHS is obtained based on simulated ground motions. The implementation of ground motion simulation into seismic hazard assessment has the advantage of investigating detailed local site effects. The typical residential buildings in Erzincan are represented by equivalent single degree of freedom systems (ESDOFs). Predictive equations are accomplished for structural seismic demands of ESDOFs to derive fragility functions in a straightforward manner. To study the sensitivity of fragility curves to site class, two sites on soft and stiff soil are taken into account. Two alternative site amplification functions known as generic and theoretical site amplifications are examined for these two sites. The reinforced concrete frames located on soft soil display larger fragilities than those on stiff soil. Theoretical site amplification mostly leads to larger fragilities than generic site amplification more evidently for reinforced concrete buildings. Additionally, structural variability of ESDOFs is generally observed to increase the fragility especially for rigid structural models.

Prediction of response of reinforced concrete frames exposed to fire

  • Balaji, Aneesha;Muhamed Luquman, K.;Nagarajanb, Praveen;Pillai, T.M. Madhavan
    • Advances in Computational Design
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    • 제1권1호
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    • pp.105-117
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    • 2016
  • The objective of this work is to study the restraining effect in fire resistance of framed structures and to evaluate the global response of reinforced concrete frames when exposed to fire based on advanced finite element method. To study the response a single portal frame is analyzed. The effect of floor slab on this frame is studied by modeling a beam-column-slab assembly. The evolution of temperature distribution, internal stresses and deformations of the frame subjected to ISO 834 standard fire curve for both the frames are studied. The thermal and structural responses are evaluated and a comparison of results of individual members and entire structure is done. From the study it can be seen that restraining forces has significant influence on both stresses and deflection and overall response of the structure when compared to individual structural member. Among the various structural elements, columns are the critical members in fire and failure of column causes the failure of entire structure. The fire rating of various structural elements of the frame is determined by various failure criteria and is compared with IS456 2000 tabulated fire rating.

Advances and challenges in impedance-based structural health monitoring

  • Huynh, Thanh-Canh;Dang, Ngoc-Loi;Kim, Jeong-Tae
    • Structural Monitoring and Maintenance
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    • 제4권4호
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    • pp.301-329
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    • 2017
  • Impedance-based damage detection method has been known as an innovative tool with various successful implementations for structural health monitoring of civil structures. To monitor the local critical area of a structure, the impedance-based method utilizes the high-frequency impedance responses sensed by piezoelectric sensors as the local dynamic features. In this paper, current advances and future challenges of the impedance-based structural health monitoring are presented. Firstly, theoretical background of the impedance-based method is outlined. Next, an overview is given to recent advances in the wireless impedance sensor nodes, the interfacial impedance sensing devices, and the temperature-effect compensation algorithms. Various research works on these topics are reviewed to share up-to-date information on research activities and implementations of the impedance-based technique. Finally, future research challenges of the technique are discussed including the applicability of wireless sensing technology, the predetermination of effective frequency bands, the sensing region of impedance responses, the robust compensation of noise and temperature effects, the quantification of damage severity, and long-term durability of sensors.

직물 구조인자와 표면 가공특성이 스포츠 의류용 투습직물의 발수/방수/투습특성에 미치는 영향 (Effect of Fabric Structural Parameters and Surface Finishing Characteristics to Water Repellency/Proofing/Vapor Permeability of Breathable Fabrics for Sportswear Clothing)

  • 김현아
    • 한국의류산업학회지
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    • 제22권1호
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    • pp.112-118
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    • 2020
  • This paper examined the water repellency, water proofing and water vapor permeability of twelve types of woven fabrics for sports wear clothing. Their physical properties were compared and discussed with the fabric structural parameters and surface finishing effect. A water repellent property of 100% was obtained in the coated or laminated water repellent finished fabrics; in addition, cotton/nylon breathable composite fabrics treated with a laminated finishing and with low fabric density showed a 90% water repellency. Water proofing fabric above 6,000 mm H2O hydraulic pressure was achieved by coated or laminated finishing; however, high density fabric or medium-level coated fabrics exhibited 100% water repellent and low water proofing characteristics. Superior water vapor permeability characteristics with good water repellency and proofing properties were achieved at the 2.5 layered low density and with 0.7 - 0.9 cover factor nylon fabrics treated with hydrophilic laminated finishing. The regression analysis for examining the effects of fabric structural parameters and surface finishing such as coating and laminating to the water vapor permeability exhibited a high determination coefficient of fabric structural parameters of 63.5%; in addition,, main factors among fabric structural parameters appeared to be cover factor and fabric thickness per weight. Coating and Laminating factors exhibited determination coefficient of water vapor permeability parameters of 36.5%.