• 제목/요약/키워드: the front and back of the free face

검색결과 4건 처리시간 0.02초

계단식 발파에 있어서 자유면 전.후방의 지반진동에 관한 연구 (A Study on the Ground Vibration of the Front and the Back Direction of the Free Face in the Bench Blasting)

  • 기경철;김일중
    • 화약ㆍ발파
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    • 제20권2호
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    • pp.21-31
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    • 2002
  • We did bench blasting upon the natural rock which it's uniaxial compressive strength was about $1,420~1,476kgf/\textrm{cm}^2$. This is the results we inferred after measuring, analyzing the ground vibration velocity of the front and back direction from the free face of the bench blasting. We have to induce the square and cube root scaled equation and the general equation to guarantee confidence upon the data when analyzing the measurement data of the test blasting. The variable distance is in reverse proportion to the permitted ground vibration velocity. The shorter is the exploding point to a protection structure, the bigger is the reflection that the direction of the free face experts the ground vibration velocity, The ground vibration velocity front of the free face tends become reduced about 38~46% compare with back of the free face in the range that the permitted ground vibration velocity is 2.0~5.0mm/sec. In case of 2.0mm/sec, when a protection structure is within about 95m, the max. allowable charge weight per delay on positing front of the free face can be more used about 2.61 times than that on positing back of the free face, in case of 3.0mm/sec within about 78m more about 2.38 times, in case of 5.0mm/sec within 60m more about 2.10 times. In case of 2.0~5.0mm/sec when a protection structure is within about 200m front from the free face, the max. allowable charge weight per delay can become about 1.52 times than the case on back to the free face.

Experimental and numerical investigation of RC sandwich panels with helical springs under free air blast loads

  • Rashad, Mohamed;Wahab, Mostafa M.A.;Yang, T.Y.
    • Steel and Composite Structures
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    • 제30권3호
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    • pp.217-230
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    • 2019
  • One of the most important design criteria in underground structure is to design lightweight protective layers to resist significant blast loads. Sandwich blast resistant panels are commonly used to protect underground structures. The front face of the sandwich panel is designed to resist the blast load and the core is designed to mitigate the blast energy from reaching the back panel. The design is to allow the sandwich panel to be repaired efficiently. Hence, the underground structure can be used under repeated blast loads. In this study, a novel sandwich panel, named RC panel - Helical springs- RC panel (RHR) sandwich panel, which consists of normal strength reinforced concrete (RC) panels at the front and the back and steel compression helical springs in the middle, is proposed. In this study, a detailed 3D nonlinear numerical analysis is proposed using the nonlinear finite element software, AUTODYN. The accuracy of the blast load and RHR Sandwich panel modelling are validated using available experimental results. The results show that the proposed finite element model can be used efficiently and effectively to simulate the nonlinear dynamic behaviour of the newly proposed RHR sandwich panels under different ranges of free air blast loads. Detailed parameter study is then conducted using the validated finite element model. The results show that the newly proposed RHR sandwich panel can be used as a reliable and effective lightweight protective layer for underground structures.

반도체 산업환경에서의 방진복 디자인의 개발 (Development of Cleanroom Garment Design in Semiconductor Industrial Environment)

  • 이윤정;정찬주;정재은
    • 한국의류학회지
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    • 제26권2호
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    • pp.337-348
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    • 2002
  • Based upon literature survey and questionnaire survey, this research tries to develop four new Cleanroom Garment in semiconductor industrial environment. The designs emphasize to minimize workers disconmfort so that they can not only cover human body fully but also reduce dust as much as possible during work hour in clean room. The new designs characteristics and results from both function test and dust emission test are as follows: 1. In order to reduce dust-emission, we develop new designs with hood, kimono sleeve, and back zipper. The designs with hood face positive test results in term of motion suitability and dust-omission. The design with seam in front, in particular, is effective to control dust-emission. 2. For the purpose of reducing dust-emission, we also emphasize to minimize ease of dust-proof wear, with reference to previous research and clothing experiment. The experiment participants report that the new wears are not so comfortable as existing ones, but they accept the new wears positive as effective in reducing dust-emission owing to reduced ease of Cleanroom Garment and sleeves. 3. A1so to reduce dust-emission in inner wear, we put inner wear in both Cleanroom Garments and inner wear, resulting to remove discomfort of wearers when changing clothes and of tight waist due to inner-trousers. 4. We develop new designs with elastic bands in both waist through the side lines and with velcro only at the back side. To remove twist in front contributes to reduce emission arising out of friction, also to free the appearance minding woman workers from worrying about exposed stomach. The new designs need to be accepted as a valuable alternative of Cleanroom Garment, in that they are highly effective to reduce dust-emission, which is the most important factor in the wear, in spite of some drawbacks in terms of motion-suitability, ease and appearance as shown in wearing test.

중국 전통서원의 수체계와 수경관의 구성적 특성 (A Study on the Compositional Characteristics of Water Systems and Landscapes in Traditional Chinese Seowons)

  • 마서효;노재현
    • 헤리티지:역사와 과학
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    • 제55권3호
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    • pp.74-100
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    • 2022
  • 본 연구는 중국 서원의 특성을 구명하고 이를 바탕으로 한국 서원 고유의 수경관 특성을 준거할 수 있는 자료 확보를 목적으로 시도되었다. 문헌조사와 현장 관찰조사를 바탕으로 악록서원을 비롯한 중국의 대표적인 전통 서원 10개소의 입지와 내·외부의 수체계 그리고 수경관의 연출 특성을 조사 분석한 연구의 결론은 다음과 같다. 중국 서원의 수체계는 내부와 외부 수체계로 이원화되며 보편적으로 외부에 2개, 최다 3개의 수체가 중첩된 양상을 보였다. 외부 수체계에 입각한 서원의 입지유형은 양면환수형 4개소, 환산면수형 3개소 그리고 삼면환수형, 사면환수형, 의산방수형이 각각 1개소 등 총 5개 유형으로 분류됨에 따라, 배산면수형(일명 배산임수형)의 전형을 보이는 한국 서원과 비교할 때, 매우 적극적인 친수성을 보였다. 외부 수체계의 수형(水形)은 곡류형(46.0%), 계류형(36.0%), 광형(廣形)과 부정형(각 9.0%)으로 구분되었으며 수태(水態)는 계(溪, 31.8%), 강(江, 27.3%), 샘과 우물(泉·井, 13.6%), 폭(瀑, 9.1%), 호(湖, 4.5%) 그리고 지(池, 4.5%) 등의 순으로 나타났다. 서원 내부 수체계 상의 수경관은 악록서원에서 7개소, 만송서원에서 4개소 순으로 상대적 수경관의 수가 많았다. 조사대상 10개 서원에서는 확인된 총 27곳의 세부 수경관은 지당(池塘)과 반지(伴池)를 포함하여 총 6개 유형으로 분류됨으로써 한국 서원보다 다양성이 매우 높았다. 주목할 만한 것은 중국 전통 서원의 내부 수경관에는 최소한 반지나 방당(方塘)이 1개소 이상 연출되는 예제적 질서가 잘 드러났다. 특히 한국 서원에서는 보기 어려운 반지는 42.8%를 차지하여 중국 서원의 대표적인 수경관 요소임이 확인되었다. 주희의 「관서유감」 시에 근거한 남계서원의 방당 또한 방형의 반지로 취급한다면 수경관에서 차지하는 반지의 비중은 거의 50%에 육박한다. 지당의 형태는 방형(28%), 자유곡선형과 원형(각 24%), 반월형(20%), 계류형(3.8%)로 구성되었는 바, 이는 방형 일색의 한국 서원과는 매우 다른 특성으로 보인다. 한편 중국 서원의 내부 수경관 관련 조형물은 정(亭)과 교(橋) 11개소(26.8%), 방(坊) 5개소(16.5%), 문(門)과 누(樓) 4개소(1.4%), 재(齋)가 2개소(6.2%) 그리고 헌(軒)·사(祠)·대(臺)·각(閣)이 각 1개소(3.1%) 등 총 10개 유형으로 확인되었으며 서원 내부의 정자는 경관정(景觀亭 27.2%), 비정(碑亭, 18.2%), 연집정(宴集亭, 54.5%) 등 3가지로 유형화되었다. 전반적으로 정자, 반교를 갖는 반지 그리고 패방은 중국 서원 내부 수경관을 지배하는 연계성 높은 주요 구성요소임이 확인되었다.