• 제목/요약/키워드: Interval graph

검색결과 53건 처리시간 0.026초

Effect of Carrot Intake in the Prevention of Gastric Cancer: A Meta-Analysis

  • Fallahzadeh, Hossein;Jalali, Ali;Momayyezi, Mahdieh;Bazm, Soheila
    • Journal of Gastric Cancer
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    • 제15권4호
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    • pp.256-261
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    • 2015
  • Purpose: Gastric cancer is the third leading cause of cancer-related mortality, with the incidence and mortality being higher in men than in women. Various studies have shown that eating carrots may play a major role in the prevention of gastric cancer. We conducted a meta-analysis to determine the relationship between carrot consumption and gastric cancer. Materials and Methods: We searched multiple databases including PubMed, Cochrane Library, Scopus, ScienceDirect, and Persian databases like Scientific Information Database (SID) and IranMedx. The following search terms were used: stomach or gastric, neoplasm or cancer, carcinoma or tumor, and carrot. Statistical analyses were performed using Comprehensive Meta Analysis/2.0 software. Results: We retrieved 81 articles by searching the databases. After considering the inclusion and exclusion criteria, 5 articles were included in this study. The odds ratio (OR) obtained by fixed effects model showed that a 26% reduction in the risk of gastric cancer has been associated with the consumption of carrots) OR=0.74; 95% confidence interval=0.68~0.81; P<0.0001). According to funnel graph, the results showed that the possibility of a publication bias does not exist in this study. Conclusions: The findings of this study showed an inverse relationship between the consumption of carrots and the risk of gastric cancer.

포렌식 마킹을 위한 특징점 기반의 동적 멀티미디어 핑거프린팅 코드 설계 (A Design on the Multimedia Fingerprinting code based on Feature Point for Forensic Marking)

  • 이강현
    • 전자공학회논문지CI
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    • 제48권4호
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    • pp.27-34
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    • 2011
  • 본 논문에서는 멀티미디어 콘텐츠 보호에 대한 반공모 코드를 위한 동적 멀티미디어 핑거프린팅 코드를 설계하는 알고리즘을 제안한다. 기존의 반공모 코드(ACC: Anti-Collusion Code)를 위한 멀티미디어 핑거프린팅 코드는 BIBD(Balanced Incomplete Block Design)의 접속행렬을 보수행렬로 변환하여 k를 k+1로 증대시키는 수리적 방법으로 설계되었다. 그리고 보수행렬의 코드벡터를 사용자에게 핑거프린팅 코드로 부여하고, 콘텐츠에 삽입하였다. 제안된 알고리즘에서는 사용자가 구매하는 콘텐츠로부터 특징점을 추출하고, 이를 기반으로 동적으로 핑거프린팅 코드를 설계할 수 있도록 BIBD의 v와 k+1 조건을 만족하는 반공모 코드의 후보성 코드를 코드북(Codebook)에 구축하고 ${\lambda}+1$ 조건을 만족하는 행렬(이하, Rhee행렬이라 함.)을 생성한다. 실험을 통하여 콘텐츠의 특징점 기반으로 생성된 Rhee행렬의 코드벡터는 v비트의 유의수준 ($1-{\alpha}$)에서 신뢰구간에 k가 존재하며, Rhee행렬의 각 행과 행, 열과 열 사이의 유클리디안 거리가 BIBD 기반의 보수행렬과 그래프 기반의 보수행렬과 같은 k값이 산출되었다. 더욱이 Rhee행렬의 첫 행과 첫 열은 생성과정에서 초기 점화벡터로 콘텐츠 포렌식 마크 정보가 되며, 이와 관계가 있는 나머지 코드벡터들과의 관계성이 코드북에 기록되어 있기 때문에, 공모된 코드를 추적할 때 원 핑거프린팅 코드의 상관관계 계수를 구할 필요 없이 코드북의 탐색으로 공모자를 추적이 용이하다. 따라서 본 논문에서 생성된 Rhee행렬은 수리적으로 생성된 BIBD 기반의 행렬보다 ACC로서 강인성과 충실도가 우수하다.

항해지원을 위한 해양환경정보 실시간 예보시스템 개발 (Development of Real-Time Forecasting System of Marine Environmental Information for Ship Routing)

  • 홍기용;신승호;송무석
    • 한국해양환경ㆍ에너지학회지
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    • 제8권1호
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    • pp.46-52
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    • 2005
  • 대양을 운항하는 선박의 최적 항로계획 수립에 중요한 해양환경정보를 실시간으로 예보하는 시스템(MEIS)을 개발하였다. 예보정보는 위성관측 대양환경 자료를 기반으로 유럽중기기후예보센터가 처리한 실시간 자료를 바탕으로 하며, 장기 관측자료 데이터베이스에 근거한 통계적 정보와 함께 제공된다. MEIS시스템은 육상 기지국에 설치되어 해양환경정보를 취득하고 처리하는 육상자료처리시스템(MEIS-Center)과 선박에 탑재되어 가공된 해양환경정보를 화상으로 구현하고 최적항로 선정을 돕는 선박탑재화상구현시스템(MEIS-Ship)으로 구성되며, 운항중인 선박과 육상기지국간의 정보 송수신을 위한 위성통신 시스템을 활용한다. 해양환경 요소는 바람, 파랑, 기압, 폭풍을 포함하며, 바람은 풍향과 풍속 정보를 제공하고, 파랑은 너울과 풍파로 구분하여 파고, 파향, 파주기 정보를 제공할 수 있다. 실시간 정보는 0.5°해상도로 5시간 간격의 10일 예보치가 매일 제공되며, 통계적 정보는 1.5° 해상도의 15년 관측자료를 이용하여 월평균 및 재현주기별 최대값이 산정된다. MEIS-Ship은 항로 시뮬레이션 기능을 제공하며, 설정된 항로에 대해 예보 및 통계적 해양환경정보를 그림 또는 표의 형태로 제공한다. MEIS는 예정 항로상의 정확한 실시간 해양환경 예보를 제공하므로 선박운항자가 항로의 위험도와 운항경제성을 고려하여 최적 항로를 선정하는 것이 가능하다.

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비정규분포공정에서 매디안특수관리도의 모형설계와 적용연구 (Median Control Chart for Nonnormally Distributed Processes)

  • 신용백
    • 기술사
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    • 제20권3호
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    • pp.15-25
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    • 1987
  • Statistical control charts are useful tools to monitor and control the manufacturing processes and are widely used in most Korean industries. Many Korean companies, however, do not always obtain desired results from the traditional control charts by Shewhart such as the X-chart, X-chart, X-chart, etc. This is partly because the quality charterstics of the process are not distributed normally but are skewed due to the intermittent production, small lot size, etc. In Shewhart X-chart, which is the most widely used one in Korea, such skewed distributions make the plots to be inclined below or above the central line or outside the control limits although no assignable causes can be found. To overcome such shortcomings in nonnormally distributed processes, a distribution-free type of confidence interval can be used, which should be based on order statistics. This thesis is concerned with the design of control chart based on a sample median which is easy to use in practical situation and therefore properties for nonnormal distributions may be easily analyzed. Control limits and central lines are given for tile more famous nonnormal distributions, such as Gamma, Beta, Lognormal, Weibull, Pareto, Truncated-normal distributions. Robustness of the proposed median control chart is compared with that of the X-chart, the former tends to be superior to the latter as the probability distribution of the process becomes more skewed. The average run length to detect the assignable cause is also compared when the process has a Normal or a Gamma distribution for which the properties of X are easy to verify, the proposed chart is slightly worse than the X-chart for the normally distributed product but much better for Gamma-distributed products. Average Run Lengths of the other distributions are also computed. To use the proposed control chart, the probability distribution of the process should be known or estimated. If it is not possible, the results of comparison of the robustness force us to use the proposed median control chart based on a normal distribution. To estimate the distribution of the process, Sturge's formula is used to graph the histogram and the method of probability plotting, $X^2$-goodness of fit test and Kolmogorov-Smirnov test, are discussed with real case examples. A comparison of the propose4 median chart and the X chart was also performed with these examples and the median chart turned out to be superior to the X-chart.

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Testing The Healing Environment Conditions for Nurses with two Independent Variables: Visibility Enhancement along with Shortening the Walking Distance of the Nurses to Patient - Focused on LogWare stop sequence and space syntax for U-Shape, L- Shape and I-Shape NS-

  • Shaikh, Javaria Manzoor;Park, Jae Seung
    • KIEAE Journal
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    • 제15권2호
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    • pp.19-26
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    • 2015
  • Purpose: Maximizing human comfort in design of medical environments depends immensely on specialized architects particularly critical care design; the study proposes Evidence-Based Design as an apparent analog to Evidence-Based Medicine. Healthcare facility designs are substantially based on the findings of study in an effort to design environments that augment care by improving patient safety and being therapeutic. On SPSS (Statistical Package for Social Science) t-test is applied to simulate two independent variables of PDR (Pre Design-Research) and POE (Post- Occupancy Evaluation). PDR is conducted on relatively new hospital Hallym University Dongtan Sacred Heart Hospital to analyse visibility from researchers' point of view, here the ICU is arranged in I-Shape. POE is applied on Dongguk University Ilsan Hospital to simulate walking on LogWare where two NS are designed based on L- Shape and Seoul St. Mary's Hospital, The Catholic University of Korea where five NS are functional for ICU Intensive Care Unit, Surgical Intensive Care Unit (SICU), Medical Intensive Care Unit (MICU), Critical Care Unit (CCU), Korean Oriental Medical Care Unit which are mostly arranged in U-Shape, and walking pattern is recognized to be in a zigzag path. Method: T-Test is applied on two dependent communication variables: walkability and visibility, with confidence interval of 95%. This study systematically analyses the Nurse Station (NS) typo-morphology, and simulates nurse horizontal circulation, by computing round route visits to patient's bed, then estimating minimum round route on LogWare stop sequence software. The visual connectivity is measured on depth map graphs. Hence the aim is to reduce staff stress and fatigue for better patients care by minimizing staff horizontal travel time and to facilitate nurse walk path and support space distribution by increasing effectiveness in delivering care. Result: Applying visibility graph and isovist field on space syntax on I- Shape, L- Shape and U- Shape ICU (SICU, MICU and CCU) configuration, I-shape facilitated 20% more patients in linear view as they stir to rise from their beds from nurse station compared to U-shape. In conclusion, it was proved that U-Shape supply minimum walking and maximum visibility; and L shape provides just visibility as the nurse is at pivot. I shape provides panoramic view from the Nurse Station but very rigorous walking.

비정규분포공정에서 메디안특수관리도 통용모형설정에 관한 실증적 연구(요약) (Median Control Chart for Nonnormally Distributed Processes)

  • 신용백
    • 산업경영시스템학회지
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    • 제10권16호
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    • pp.101-106
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    • 1987
  • Statistical control charts are useful tools to monitor and control the manufacturing processes and are widely used in most Korean industries. Many Korean companies, however, do not always obtain desired results from the traditional control charts by Shewhart such as the $\bar{X}$-chart, $\bar{X}$-chart, $\bar{X}$-chart, etc. This is partly because the quality charterstics of the process are not distributed normally but are skewed due to the intermittent production, small lot size, etc. In Shewhart $\bar{X}$-chart. which is the most widely used one in Kora, such skewed distributions make the plots to be inclined below or above the central line or outside the control limits although no assignable causes can be found. To overcome such shortcomings in nonnormally distributed processes, a distribution-free type of confidence interval can be used, which should be based on order statistics. This thesis is concerned with the design of control chart based on a sample median which is easy to use in practical situation and therefore properties for nonnormal distributions may be easily analyzed. Control limits and central lines are given for the more famous nonnormal distributions, such as Gamma, Beta, Lognormal, Weibull, Pareto, Truncated-normal distributions. Robustness of the proposed median control chart is compared with that of the $\bar{X}$-chart; the former tends to be superior to the latter as the probability distribution of the process becomes more skewed. The average run length to detect the assignable cause is also compared when the process has a Normal or a Gamma distribution for which the properties of X are easy to verify, the proposed chart is slightly worse than the $\bar{X}$-chart for the normally distributed product but much better for Gamma-distributed products. Average Run Lengths of the other distributions are also computed. To use the proposed control chart, the probability distribution of the process should be known or estimated. If it is not possible, the results of comparison of the robustness force us to use the proposed median control chart based oh a normal distribution. To estimate the distribution of the process, Sturge's formula is used to graph the histogram and the method of probability plotting, $\chi$$^2$-goodness of fit test and Kolmogorov-Smirnov test, are discussed with real case examples. A comparison of the proposed median chart and the $\bar{X}$ chart was also performed with these examples and the median chart turned out to be superior to the $\bar{X}$-chart.

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벼의 저온발아성에 관한 유전분석 (Genetic Analysis of Low Temperature Germinability of Rice)

  • 강종래;고미석;김호영;임상종;김순철
    • 한국작물학회지
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    • 제42권6호
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    • pp.766-777
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    • 1997
  • 수도 저하발아성에 대한 유전 양상을 구명하여 저온발아성 품종 육성의 기초 자료를 얻고자 숙기가 다른 세 그룹에서 10품종을 선정 '94년에 15일 간격 4시기로 파종 및 이앙을 실시하여 수량한 종자를 '95년 4~5월에 13$^{\circ}C$ 항온 실내 시험과, 건답 직파의 포장 시험으로 저온발아성을 조사하고, 저온발아성 고 1품종, 저 1품종, 중 4품종을 선정 '94 하계에 절영법에 의한 정역이면교잡을 실시하여 얻어진 F$_1$ 교배입을 '95년 5월에 13$^{\circ}C$ 항온에서 저온발아 시험을 실시하여 얻은 결과를 요약하면 다음과 같다. 1. 재배 시기를 달리하여 수량된 종자의 실내 및 포장에서의 저온발아성 분산분석 결과 품종에 따라 재배시기간에 고도의 유의차가 인정되었다. 2. 실내 13$^{\circ}C$ 항온 저온발아계수와 포장의 자연상태 건답직파에서의 출아계수와의 상관분석 결과 고도의 유의한 상관(r=0.5111)이 인정되었다. 3. 조합능력 분석 결과 일반조합능력 및 특정조합능력 모두 고도의 유의성이 인정되었으며, 일반조합능력이 특정조합능력보다 커서 상가적작용이 상위성 작용보다 더 크게 나타났다. 4. 정역차이 분산분석 결과 정역간에 고도의 유의차가 인정되었다. 5. 부친열 공분산/모친열 공분산 Graph에서 6개의 교배열 모두가 모본 효과를 보였으며, Alpha와 Beta 유전 분석 결과, 저온발아성의 정역간 차이는 Alpha 유전의 효과로 나타났다. 6. 평균우성도 분석 결과, 30개 조합 중 17개 조합에서 초월분리를 보였으며, 그 중 9개 조합이 저온발아성이 낮은 쪽으로 초월분리를 보였다.

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Brain Metabolic Network Redistribution in Patients with White Matter Hyperintensities on MRI Analyzed with an Individualized Index Derived from 18F-FDG-PET/MRI

  • Jie Ma;Xu-Yun Hua;Mou-Xiong Zheng;Jia-Jia Wu;Bei-Bei Huo;Xiang-Xin Xing;Xin Gao;Han Zhang;Jian-Guang Xu
    • Korean Journal of Radiology
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    • 제23권10호
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    • pp.986-997
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    • 2022
  • Objective: Whether metabolic redistribution occurs in patients with white matter hyperintensities (WMHs) on magnetic resonance imaging (MRI) is unknown. This study aimed 1) to propose a measure of the brain metabolic network for an individual patient and preliminarily apply it to identify impaired metabolic networks in patients with WMHs, and 2) to explore the clinical and imaging features of metabolic redistribution in patients with WMHs. Materials and Methods: This study included 50 patients with WMHs and 70 healthy controls (HCs) who underwent 18F-fluorodeoxyglucose-positron emission tomography/MRI. Various global property parameters according to graph theory and an individual parameter of brain metabolic network called "individual contribution index" were obtained. Parameter values were compared between the WMH and HC groups. The performance of the parameters in discriminating between the two groups was assessed using the area under the receiver operating characteristic curve (AUC). The correlation between the individual contribution index and Fazekas score was assessed, and the interaction between age and individual contribution index was determined. A generalized linear model was fitted with the individual contribution index as the dependent variable and the mean standardized uptake value (SUVmean) of nodes in the whole-brain network or seven classic functional networks as independent variables to determine their association. Results: The means ± standard deviations of the individual contribution index were (0.697 ± 10.9) × 10-3 and (0.0967 ± 0.0545) × 10-3 in the WMH and HC groups, respectively (p < 0.001). The AUC of the individual contribution index was 0.864 (95% confidence interval, 0.785-0.943). A positive correlation was identified between the individual contribution index and the Fazekas scores in patients with WMHs (r = 0.57, p < 0.001). Age and individual contribution index demonstrated a significant interaction effect on the Fazekas score. A significant direct association was observed between the individual contribution index and the SUVmean of the limbic network (p < 0.001). Conclusion: The individual contribution index may demonstrate the redistribution of the brain metabolic network in patients with WMHs.

단위유량도와 비수갑문 단면 및 방조제 축조곡선 결정을 위한 조속계산 (Calculation of Unit Hydrograph from Discharge Curve, Determination of Sluice Dimension and Tidal Computation for Determination of the Closure curve)

  • 최귀열
    • 한국농공학회지
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    • 제7권1호
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    • pp.861-876
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    • 1965
  • During my stay in the Netherlands, I have studied the following, primarily in relation to the Mokpo Yong-san project which had been studied by the NEDECO for a feasibility report. 1. Unit hydrograph at Naju There are many ways to make unit hydrograph, but I want explain here to make unit hydrograph from the- actual run of curve at Naju. A discharge curve made from one rain storm depends on rainfall intensity per houre After finriing hydrograph every two hours, we will get two-hour unit hydrograph to devide each ordinate of the two-hour hydrograph by the rainfall intensity. I have used one storm from June 24 to June 26, 1963, recording a rainfall intensity of average 9. 4 mm per hour for 12 hours. If several rain gage stations had already been established in the catchment area. above Naju prior to this storm, I could have gathered accurate data on rainfall intensity throughout the catchment area. As it was, I used I the automatic rain gage record of the Mokpo I moteorological station to determine the rainfall lntensity. In order. to develop the unit ~Ydrograph at Naju, I subtracted the basic flow from the total runoff flow. I also tried to keed the difference between the calculated discharge amount and the measured discharge less than 1O~ The discharge period. of an unit graph depends on the length of the catchment area. 2. Determination of sluice dimension Acoording to principles of design presently used in our country, a one-day storm with a frequency of 20 years must be discharged in 8 hours. These design criteria are not adequate, and several dams have washed out in the past years. The design of the spillway and sluice dimensions must be based on the maximun peak discharge flowing into the reservoir to avoid crop and structure damages. The total flow into the reservoir is the summation of flow described by the Mokpo hydrograph, the basic flow from all the catchment areas and the rainfall on the reservoir area. To calculate the amount of water discharged through the sluiceCper half hour), the average head during that interval must be known. This can be calculated from the known water level outside the sluiceCdetermined by the tide) and from an estimated water level inside the reservoir at the end of each time interval. The total amount of water discharged through the sluice can be calculated from this average head, the time interval and the cross-sectional area of' the sluice. From the inflow into the .reservoir and the outflow through the sluice gates I calculated the change in the volume of water stored in the reservoir at half-hour intervals. From the stored volume of water and the known storage capacity of the reservoir, I was able to calculate the water level in the reservoir. The Calculated water level in the reservoir must be the same as the estimated water level. Mean stand tide will be adequate to use for determining the sluice dimension because spring tide is worse case and neap tide is best condition for the I result of the calculatio 3. Tidal computation for determination of the closure curve. During the construction of a dam, whether by building up of a succession of horizontael layers or by building in from both sides, the velocity of the water flowinii through the closing gapwill increase, because of the gradual decrease in the cross sectional area of the gap. 1 calculated the . velocities in the closing gap during flood and ebb for the first mentioned method of construction until the cross-sectional area has been reduced to about 25% of the original area, the change in tidal movement within the reservoir being negligible. Up to that point, the increase of the velocity is more or less hyperbolic. During the closing of the last 25 % of the gap, less water can flow out of the reservoir. This causes a rise of the mean water level of the reservoir. The difference in hydraulic head is then no longer negligible and must be taken into account. When, during the course of construction. the submerged weir become a free weir the critical flow occurs. The critical flow is that point, during either ebb or flood, at which the velocity reaches a maximum. When the dam is raised further. the velocity decreases because of the decrease\ulcorner in the height of the water above the weir. The calculation of the currents and velocities for a stage in the closure of the final gap is done in the following manner; Using an average tide with a neglible daily quantity, I estimated the water level on the pustream side of. the dam (inner water level). I determined the current through the gap for each hour by multiplying the storage area by the increment of the rise in water level. The velocity at a given moment can be determined from the calcalated current in m3/sec, and the cross-sectional area at that moment. At the same time from the difference between inner water level and tidal level (outer water level) the velocity can be calculated with the formula $h= \frac{V^2}{2g}$ and must be equal to the velocity detertnined from the current. If there is a difference in velocity, a new estimate of the inner water level must be made and entire procedure should be repeated. When the higher water level is equal to or more than 2/3 times the difference between the lower water level and the crest of the dam, we speak of a "free weir." The flow over the weir is then dependent upon the higher water level and not on the difference between high and low water levels. When the weir is "submerged", that is, the higher water level is less than 2/3 times the difference between the lower water and the crest of the dam, the difference between the high and low levels being decisive. The free weir normally occurs first during ebb, and is due to. the fact that mean level in the estuary is higher than the mean level of . the tide in building dams with barges the maximum velocity in the closing gap may not be more than 3m/sec. As the maximum velocities are higher than this limit we must use other construction methods in closing the gap. This can be done by dump-cars from each side or by using a cable way.e or by using a cable way.

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미세균열이 합천지역 쥬라기 화강암의 압열인장강도에 미치는 영향 (Influence of Microcrack on Brazilian Tensile Strength of Jurassic Granite in Hapcheon)

  • 박덕원;김경수
    • 광물과 암석
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    • 제34권1호
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    • pp.41-56
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    • 2021
  • ① 미세균열의 길이(N=230), ② 미세균열의 간격(N=150) 및 ③ 압열인장강도(N=30)를 이용하여 쥬라기의 합천화강암에서 발달된 여섯 결(R1~H2)의 특성을 분석하였다. 여섯 결에 평행한 방향으로 측정한 이들 세 인자에 대한 18개의 누적그래프를 상호 대비하였다. 분석한 주요 결과를 요약하면 다음과 같다. 첫째, 9개 계급구간으로 구분한 압열인장강도값(kg/㎠)의 분포율(%)은 60~70(3.3) < 140~150(6.7) < 100~110·110~120(10.0) < 90~100(13.3) < 80~90(16.7) < 120~130·130~140(20.0)의 순으로 증가한다. 각 계급구간의 빈도수에 따른 강도의 분포곡선은 이봉 분포를 보여 준다. 둘째, 길이, 간격 및 인장강도에 대한 그래프를 H2 < H1 < G2 < G1 < R2 < R1의 순으로 배열하였다. 간격과 길이에 대한 두 그래프 사이의 지수차(λS-λL, Δλ)는 H2(-1.59) < H1(-0.02) < G2(0.25) < G1(0.63) < R2(1.59) < R1(1.96)(2 < 1)의 순으로 증가한다. 관련 도면으로부터, 상기한 지수차의 증가와 함께 인장강도에 대한 여섯 그래프는 점차 좌측 방향으로 이동한다. 조직의 균일도를 지시하는 인장강도에 대한 그래프의 음의 기울기(a)는 3번 결((H1+H2)/2, 0.116) < 2번 결((G1+G2)/2, 0.125) < 1번 결((R1+R2)/2, 0.191)의 순으로 증가한다. 셋째, 각 결(R1·R2(1번 결), G1·G2(2번 결), H1·H2(3번 결))을 구성하는 두 방향에 대한 그래프 사이의 배열순을 비교하였다. 길이와 간격에 대한 두 그래프의 배열순은 상호 역순이다. 간격과 인장강도에 대한 두 그래프는 배열순에서 서로 일관성이 있다. 길이와 간격에 대한 지수차(ΔλL 및 ΔλS)는 1번 결(R, -0.08) < 2번 결(G, 0.14) < 3번 결(H, 0.75) 및 3번 결(H, 0.16) < 2번 결(G, 0.23) < 1번 결(R, 0.45)의 순으로 각각 증가한다. 넷째, 미세균열의 길이, 미세 균열의 간격 및 인장강도의 분포 특성을 보여 주는 여섯 그래프에 대한 종합도를 작성하였다. 길이의 범위에 따라, 여섯 그래프는 G2 < H2 < H1 < R2 < G1 < R1(<7 mm) 및 G2 < H1 < H2 < R2 < G1 < R1(≦2.38 mm)의 순을 보여 준다. 간격에 대한 여섯 그래프는 누적 빈도수 12 및 간격 0.53 mm에 해당하는 지점 부근에서 병목구간을 형성하여 서로 교차한다. 다섯째, 여섯 결을 대변하는 각 파라미터의 여섯 값을 증가 및 감소하는 순으로 배열하였다. 길이와 관련된 8개 파라미터 중에서, 총 길이(Lt) 및 그래프(≦2.38 mm)는 배열순에서 상호 부합한다. 간격과 관련된 7개 파라미터 중에서, 간격의 빈도수(N), 평균 간격(Sm) 및 그래프(≦5 mm)는 배열순에서 상호 일관성이 있다. 배열순의 측면에서, 간격에 대한 상기 세 파라미터의 값은 그룹 E에 속하는 최대인장강도와 일관성이 있다. 표 8에서와 같이, 이들 파라미터 값의 배열순은 여섯 결 및 세채석면에 대한 사전 인식에 유용하다.