• 제목/요약/키워드: architecture for safety

Search Result 1,597, Processing Time 0.027 seconds

Noise Analysis for Large Silencers of Ships and Off-shore Plants using Energy Flow Analysis

  • Kim, Tae-Gyoung;Song, Jee-Hun;Hong, Suk-Yoon
    • Journal of the Korean Society of Marine Environment & Safety
    • /
    • v.26 no.3
    • /
    • pp.297-307
    • /
    • 2020
  • In the study, energy flow analysis is performed to predict the performance of silencers. To date, deterministic approaches such as finite element method have been widely used for silencer analysis. However, they have limitations in analyzing large structures and mid-high frequency ranges due to unreasonable computational costs and errors. However, silencers used for ships and off-shore plants are much larger than those used in other engineering fields. Hence, energy governing equation, which is significantly efficient for systems with high modal density, is solved for silencers in ships and off-shore plants. The silencer is divided into two different acoustic media, air and absorption materials. The discontinuity of energy density at interfaces is solved via hypersingular integrals for the 3-D modified Helmholtz equation to analyze multi-domain problems with the energy flow boundary element method. The method is verified by comparing the measurements and analysis results for ship silencers over mid-high frequency ranges. The comparisons confirm good agreement between the measurement and analysis results. We confirm that the applied analysis method is useful for large silencers in mid-high frequency ranges. With the proven procedures, energy flow analysis can be performed for various types of silencer used in ships and off-shore plants in the first stage of the design.

A partial factors methodology for structural safety assessment in non-linear analysis

  • Castro, Paula M.R.P.;Delgado, Raimundo M.;Cesar de Sa, Jose M.A.
    • Computers and Concrete
    • /
    • v.2 no.1
    • /
    • pp.31-53
    • /
    • 2005
  • In the present structural codes the safety verification is based on a linear analysis of the structure and the satisfaction of ultimate and serviceability limit states, using a semi-probabilistic security format through the consideration of partial safety factors, which affect the action values and the characteristic values of the material properties. In this context, if a non-linear structural analysis is wanted a difficulty arises, because the global safety coefficient, which could be obtained in a straightforward way from the non-linear analysis, is not directly relatable to the different safety coefficient values usually used for the different materials, as is the case for reinforced concrete structures. The work here presented aims to overcome this difficulty by proposing a methodology that generalises the format of safety verification based on partial safety factors, well established in structural codes within the scope of linear analysis, for cases where non-linear analysis is needed. The methodology preserves the principal assumptions made in the codes as well as a reasonable simplicity in its use, including a realistic definition of the material properties and the structural behaviour, and it is based on the evaluation of a global safety coefficient. Some examples are presented aiming to clarify and synthesise all the options that were taken in the application of the proposed methodology, namely how to transpose the force distributions obtained with a non-linear analysis into design force distributions. One of the most important features of the proposed methodology, the ability for comparing the simplified procedures for second order effects evaluation prescribed in the structural codes, is also presented in a simple and systematic way. The potential of the methodology for the development and assessment of alternative and more accurate procedures to those already established in codes of practice, where non-linear effects must be considered, is also indicated.

Simulation and assessment of gas dispersion above sea from a subsea release: A CFD-based approach

  • Li, Xinhong;Chen, Guoming;Zhang, Renren;Zhu, Hongwei;Xu, Changhang
    • International Journal of Naval Architecture and Ocean Engineering
    • /
    • v.11 no.1
    • /
    • pp.353-363
    • /
    • 2019
  • This paper presents a comprehensive simulation and assessment of gas dispersion above sea from a subsea release using a Computational Fluid Dynamics (CFD) approach. A 3D CFD model is established to evaluate the behavior of flammable gas above sea, and a jack-up drilling platform is included to illustrate the effect of flammable gas cloud on surface vessels. The simulations include a matrix of scenarios for different surface release rates, distances between surface gas pool and offshore platform, and wind speeds. Based on the established model, the development process of flammable gas cloud above sea is predicted, and the dangerous area generated on offshore platform is assessed. Additionally, the effect of some critical factors on flammable gas dispersion behavior is analyzed. The simulations produce some useful outputs including the detailed parameters of flammable gas cloud and the dangerous area on offshore platform, which are expected to give an educational reference for conducting a prior risk assessment and contingency planning.

Comparative study on the characteristics of professionalization between interior design and architecture - Comparison of the body of knowledge shown in the accrediting criteria of interior design and architecture education in the United States - (실내디자인과 건축학의 프로페션화에 나타나는 특성 비교 - 미국 실내디자인과 건축학의 교육인증기준에 나타난 전문지식영역 비교 -)

  • Lee, Jong-Hee;Kim, Duk-Su
    • Korean Institute of Interior Design Journal
    • /
    • v.23 no.2
    • /
    • pp.125-135
    • /
    • 2014
  • Professionalization of Korean interior design is not completed, considering the fact that accreditation and registration systems cannot be found in it. This study, initiated with this concern, analyzed the knowledge area of interior design and architecture in the United States while utilizing accreditation standards of CIDA and NAAB. The purpose of this study is to provide reference to consult for the professionalization of Korean interior design by showing the effects of standardized professional knowledge on professionalization. The utilized research method is a multiple case study, analyzing cases of interior design and architecture in the United States. The unit of analysis is accrediting criteria, including present and revised versions. Content analysis was conducted to interpretate qualitative data collected. The research results include that knowledge differences between interior design and architecture are not clear. This study concludes that standardized professional knowledge emphasizes the technicality elements of knowledge to protect the health, safety and welfare of the public instead of indeterminacy elements. The research results imply that knowledge standardization concerning HSW can be a critical step to professionalization because it can show a jurisdictional boundary as a unique profession.

Research on rotation capacity of the new precast concrete assemble beam-column joints

  • Han, Chun;Li, Qingning;Wang, Xin;Jiang, Weishan;Li, Wei
    • Steel and Composite Structures
    • /
    • v.22 no.3
    • /
    • pp.613-625
    • /
    • 2016
  • The joints of the new prefabricated concrete assemble beam-column joints are put together by the hybrid joints of inserting steel under post-tensioned and non-prestressed force and both beams and columns adopt prefabricated components. The low cyclic loading test has been performed on seven test specimens of beam-column joints. Based on the experimental result, the rotation capacity of the joints is studied and the $M-{\theta}$ relation curve is obtained. According to Eurocode 3: Design of steel structures and based on the initial rotational stiffness, the joints are divided into three types; by equivalent bending-resistant stiffness to the precast beam, the equivalent modulus of elasticity $E_e$ is elicited with the superposition method; the beam length is figured out that satisfies the rigid joints and after meeting the requirements of application and safety, the new prefabricated concrete assemble beam-column joints can be regarded as the rigid joints; the design formula adopted by the standard of concrete joint classification is theoretically derived, thereby providing a theoretical basis for the new prefabricated concrete structure.

Residence Consciousness of The Elderly Residing in Apartments (아파트 거주 고령자의 거주의식 특성)

  • Lee, Ho Sung
    • Journal of The Korea Institute of Healthcare Architecture
    • /
    • v.18 no.1
    • /
    • pp.25-33
    • /
    • 2012
  • As of November 1st 2010, 59% of overall residences in Korea are apartments with 8,185,000 households and when including the multi-unit houses, 71.0% of the overall residences are multifamily houses. The apartments have become the most universal form of residence in Korea and its' relative weight will continuously increase in the future. Meanwhile, Korea has turned into aging society in 2000 and will turn into the super-aged society by 2026 to display the world's fastest speed for aging. Majority of the elderly will spend their declining years in apartments. To understand the residence consciousness and its' properties for unit housing of the elderly residing in apartments, the present study obtained the following results through surveying the 541 nationwide samples. First, the elderly most prefer the mid and high levels(6-9th floors, or 10-15th floors) of apartments. Second, the elderly couples most prefer areas of $85m^2$ while single elderly most prefer $60m^2$. Third, the elderly feel the most inconveniences in bathrooms and showers. Fourth, safety accidents in dwelling of the elderly have no significant correlation with age, gender or their possessed diseases. Fifth, the elderly displayed high satisfaction for their bedrooms. Sixth, there were less tendencies for elderly to feel lack of storage spaces or conduct remodeling. As a result of the analysis, all apartment houses of Korea must support the physical aging of residents and prevent safety accidents in houses to enable Korean aging in place.

Improving the Design Process of Pleasure Yachts for CE RCD Certification via Modification to Buoyancy and Stability Assessment Method

  • Oh, Daekyun;Lee, Chang-Woo
    • Journal of the Korean Society of Marine Environment & Safety
    • /
    • v.23 no.3
    • /
    • pp.301-312
    • /
    • 2017
  • CE RCD (Recreational Craft Directive) is a certification for the design and construction of small vessels, including pleasure yachts, which are widely used not only in the countries within the European Union, but also in Japan and Southeast Asia. Recently, South Korean leisure craft shipyards have developed interest in exporting to foreign leisure craft markets such as Europe; however, they have encountered difficulties because of the CE RCD regulations, which are relatively complex and difficult to understand. The requirements for buoyancy and stability, which are essential properties that must be understood within the early stage of ship design, are defined based on ISO 12217. However, preparing this assessment according to ship classification regulations is an exceedingly complex task, even with knowledge of naval architecture. In this research, we have developed design support tools to systematically support assessments and preemptively define design information so that buoyancy and stability assessments based on ISO 12217 can be systematically prepared. Our research results were applied to actual examples of yacht design to confirm validity. We believe that the improved yacht design process presented in this research can act as a foundational reference for enhancing the effectiveness and systematic buoyancy and stability assessments.

Test and Evaluation Procedure of Foam Core Materials for Composite Ships

  • Jang, Jae-Won;Jeong, Sookhyun;Oh, Daekyun;Cho, Je-Hyoung;Noh, Jackyou
    • Journal of the Korean Society of Marine Environment & Safety
    • /
    • v.26 no.3
    • /
    • pp.286-296
    • /
    • 2020
  • Sandwich structures are general-purpose structures that can reduce the structural weight of composite ships. Core materials are essential for these structures, with polyvinyl chloride (PVC) foams being the most popular. These foam core materials are subjected to various tests in the development process, and must satisfy the performance requirements of several ISO and ASTM standards. Therefore, a procedure for evaluating the performance of foam core materials was proposed in this paper. In addition, prototypes were fabricated using a commercial PVC foam core product in accordance with the structural design of an 11 m fiber-reinforced plastic yacht. Then, a case study was conducted on the proposed evaluation procedure. The proposed procedure facilitates the understanding of the performance requirements and evaluation of core materials used in composite ships and is expected to be utilized in developing core materials for marine structures.

A Space Making of Waterfront City focused on the Sustainable Campus on the Waterfront (워터프론트도시 공간조성방안 연구 -워터프론트 대학의 지속가능 캠퍼스를 중심으로)

  • Lee, Kumjin;Chu, Beom;Song, Changgeun
    • Journal of the Society of Disaster Information
    • /
    • v.13 no.1
    • /
    • pp.6-14
    • /
    • 2017
  • The opportunity provided for design method and strategy of sustainable campus on the waterfront, is the purpose of this paper. Waterfront campus is an important issue as it seeks to revive the sustainability and to renew the facilities. This paper reviews an assessment of its success for waterfront campus in 10 principles such as waterfront, water and safety, climate & energy, green building and transportation, green labs and recycling, health and food, social economic sustainability, fund, human, smart, also concludes with the establishment of space making for the waterfront campus for future educational facilities on the waterfront; implementation of waterfront campus maserplan; building sustainable campus in adaptation to climate change; creative and resilient cooperation.

RAMS evaluation for a steel-truss arch high-speed railway bridge based on SHM system

  • Zhao, Han-Wei;Ding, You-Liang;Geng, Fang-Fang;Li, Ai-Qun
    • Structural Monitoring and Maintenance
    • /
    • v.5 no.1
    • /
    • pp.79-92
    • /
    • 2018
  • The evaluation theory of reliability, availability, maintainability and safety (RAMS) as a mature theory of state evaluation in the railway engineering, can be well used to the evaluation, management, and maintenance of complicated structure like the long-span bridge structures on the high-speed railway. Taking a typical steel-truss arch bridge on the Beijing-Shanghai high-speed railway, the Nanjing Dashengguan Yangtze River Bridge, this paper developed a new method of state evaluation for the existing steel-truss arch high-speed railway bridge. The evaluation framework of serving state for the bridge structure is presented based on the RAMS theory. According to the failure-risk, safety/availability, maintenance of bridge members, the state evaluation method of each monitoring item is presented. The weights of the performance items and the monitoring items in all evaluation levels are obtained using the analytic hierarchy process. Finally, the comprehensive serving state of bridge structure is hierarchical evaluated.