In this study, we proposed a novel concept of liquid level indicator that can stably measure the liquid level even with changes in liquid density by enormous temperature changes. This uses a distributed optical fiber sensor based on Rayleigh scattering with high spatial resolution. Additionally, taking advantage of the flexibility of an optical fiber sensor, we introduced a bendable supporting structure and made it possible to freely adjust the angle for ease of installation of the liquid level indicator. In the proof-of-concept experiment using a prototype incorporating the proposed concept, we confirmed that the interface location can be effectively detected by utilizing the difference in heat transfer characteristics between liquid and gas phases, demonstrating the feasibility of liquid level measurement. Such a liquid level indicator is expected to enable more accurate level measurements in environments with huge temperature changes and to be conveniently used even in situations where installation and maintenance of the level meter are challenging due to complex internal structures.
We analyzed the performance of hubless rim propellers based on the number of blades, maintaining a fixed pitch ratio and expanded area ratio, using computational fluid dynamics (CFD). Thrust coefficient, torque coefficient and efficiency according to the number of blades were analyzed. In addition, the pressure distribution on the discharge and suction sides of the blade was analyzed. As the advance ratio increases, the thrust coefficient decreases. The highest thrust was shown when the advance ratio was lowest. For the three, four, five and six-blades, the torque coefficient tended to decrease as the advance ratio increased. In the case of seven and eight-blades, the torque coefficient tended to increase as the advance ratio increased. The maximum efficiency was found when the advance ratio was 0.8. When the three-blade, it showed high efficiency at all advance ratios. A high pressure distribution was observed at the leading edge of the discharge blade, and a low pressure distribution was observed at the trailing edge. Applying a hubless rim-driven thruster with the three-blade can generate higher thrust and increase work efficiency.
벽계천의 어류군집 특성 및 멸종위기 4종의 서식 양상을 밝히기 위해 2020년 4월부터 9월까지 조사를 실시하였다. 조사기간 동안 7개 지점을 선정하여 조사한 결과, 채집된 어류는 9과 31종 3,415개체였다. 출현종 중 우점종은 참갈겨니 (Zacco koreanus, 31.2%), 아우점종은 피라미(Z. platypus, 15.0%), 다음으로 돌고기(Pungtungia herzi, 11.7%), 줄납자 루(Acheilognathus yamatsutae, 5.4%), 납자루(A. lanceolata intermedia, 4.8%), 밀어(Rhinogobius brunneus, 4.4%), 가는돌고기(Pseudopungtungia tenuicorpa, 4.3%) 등의 순으로 우세하였다. 출현종 중 한국고유종은 19종(고유화율 61.3%)이었고, 기후변화민감종(냉수성 어종)은 금강모치(Rhynchocypris kumgangensis)와 둑중개(Cottus koreanus) 2종이 확인되었다. 법정보호종은 환경부지정 멸종위기 야생생물 II급인 묵납자루(A. signifer)와 가는돌고기, 한강납줄 개(Rhodeus pseudosericeus), 둑중개 4종이 출현하였으며, 주로 묵납자루와 가는돌고기는 중·하류에, 한강납줄개는 중류에, 둑중개는 최상류에 서식하고 있었다. 이중 가는돌고기는 출현개체수가 가장 많았고, 전장빈도분포도로 연령을 추정한 결과, 7월기준 전장 24~35㎜는 당년생, 54~75㎜는 1년생, 82~97㎜는 2년생, 104~109㎜는 3년생 이상으로 추정되었다. 군집분석 중 우점도는 상류에서 높고 하류로 갈수록 낮아지는 경향을 보이나 다양도와 균등도, 풍부도는 상류에서 낮고 하류로 갈수록 높아지는 경향을 보였다. 하천건강성(FAI)은 매우 좋음 5개 지점, 좋음 2개 지점으로 나타나 양호하였다. 벽계천은 비교적 서식지가 잘 보존되고 있었으나 멸종위기종이 많이 서식하는 중·하류부 일부는 하천공사가 진행되면서 서식지가 교란되고 있어 보존대책이 요구되었다.
This study was conducted to in-depth understand and describe the thoughts and experiences of nursing students in the practice of the intensive care unit. Data was collected through focus group interviews with 14 nursing students who voluntarily participated in the study targeting students who practiced the intensive care unit and analyzed by the content analysis. As a result of the study, two themes, 'ethical challenges faced in intensive care unit practice' and 'incomplete reflection, were derived. The categories included in the former were 'feeling wrong in the appearance of a nurse', 'thinking about a good nurse', 'thinking about the cause of the wrong practice', and the categories included in the latter were ''fear of being assimilated', and 'pledge oneself by put yourself in someone else's shoes’. Based on these results, it is necessary to develop ethics education to become a nurse who can form correct ethical comfortment, including ethics education in clinical practice instruction as well as classroom instruction.
In the case of the companies selected for noise measurement in this study, even though noise exposure in the workplace begins with noise management for large machines or high-output machines, they only manage to write reports on how much workers are exposed to noise for 8 hours a day. is focused on. When large machines are delivered, little information on noise received from the manufacturer is kept, and noise information indicated on design drawings is also difficult to find. History management of noise information of large machines is necessary. There is also a problem with the professionalism of managers who manage noise information. Like odors and fine dust, it is judged that noise needs to be managed by a professional manager at the workplace and managed through a database of noise information.
β-Ga2O3 has become the focus of considerable attention as an ultra-wide bandgap semiconductor following the successful development of bulk single crystals using the melt growth method. Accordingly, homoepitaxy studies, where the interface between the substrate and the epilayer is not problematic, have become mainstream and many results have been published. However, because the cost of homo-substrates is high, research is still mainly at the laboratory level and has not yet been scaled up to commercialization. To overcome this problem, many researchers are trying to grow high quality Ga2O3 epilayers on hetero-substrates. We used diluted SiH4 gas to control the doping concentration during the heteroepitaxial growth of β-Ga2O3 on c-plane sapphire using metal organic chemical vapor deposition (MOCVD). Despite the high level of defect density inside the grown β-Ga2O3 epilayer due to the aggregation of random rotated domains, the carrier concentration could be controlled from 1 × 1019 to 1 × 1016 cm-3 by diluting the SiH4 gas concentration. This study indicates that β-Ga2O3 hetero-epitaxy has similar potential to homo-epitaxy and is expected to accelerate the commercialization of β-Ga2O3 applications with the advantage of low substrate cost.
Mangroves are distributed in intertidal zones of coastal environments or estuarine margins, playing a critical role in the global carbon cycle. However, understanding of the carbon cycle role of mangrove associates in the Republic of Korea is still limited. This research measured soil respiration and leaf gas exchange in three habitats of Hibiscus hamabo (Gimnyeong, Seongsan, and Wimi) and analyzed the impacts on sites and months. Soil respiration was measured once a month from June to October 2022 and leaf gas exchange was measured monthly from June to September 2022. Soil respiration in August (5.7±0.8 μmol CO2 m-2 s-1) was significantly higher than that in other months (p<0.001) and soil respiration increased as air temperature increased (p<0.001). In Seongsan, net photosynthesis in July (9.0±0.9 μmol m-2 s-1) was significantly higher than that in other months (p<0.001). Net photosynthesis increased as stomatal conductance and transpiration rate increased during the entire period (p<0.001). Furthermore, a weak positive linear relationship was observed between soil respiration and net photosynthesis (r2=0.12; p<0.01). The results indicated that soil respiration was influenced not only by air temperature and season but also by net photosynthesis. This study is expected to provide basic information on the carbon dynamics of mangrove associates.
PURPOSES : This study aims to identify the thresholds at which various factors affecting traffic crashes lead to actual traffic crashes METHODS : To verify the thresholds, we created scenarios and ran simulations with a combination of factors that affect traffic crashes. Lateral offset and minimum TTC were used to evaluate whether an incident occurred. RESULTS : In the first scenario, the most significant factor affecting traffic crashes is curvature, and it was found that the smaller the curvature(200 meters or less), the greater the deviation from the lane. And in the second scenario, especially the passenger car scenario, no accidents occurred when the curvature was greater than 90 meters and the speed was 40 km/h or less. The smaller the curvature and the higher the speed, the more accidents occurred. Similarly, in the bus scenario, no accidents occurred when the curvature was 120 meters or more and the speed was 30 km/h or less. Also, accidents tended to occur when the curvature was smaller and the speed was higher. CONCLUSIONS : Through this study, we derived the thresholds of factors that influence traffic crashes. The results are expected to help design and operate roads in the future and contribute to reducing traffic crashes.
2015년부터 2022년도까지 6개목(딱정벌레목, 노린재목, 나비목, 벌목, 파리목, 총채벌레목) 곤충들에 대해서 식물검역현장 검출실적과 국내 보고된 미기록종을 분석하였다. 해당기간 동안 국경검역에서 6개목 곤충은 총 45,084건이 검출되었다. 같은 기간 국내에서는 총 545종이 미기록종 으로 보고되었으며, 이중 9종은 국경검역에서도 검출된 것으로 확인되었다. 검역현장에서는 딱정벌레목, 총채벌레목, 노린재목이 높은 검출률을 보 였으며, 국내 미기록종 중에서는 벌목이 176종으로 가장 많이 보고되었다. 본 연구를 통해 침입압력(국경검역 검출)과 실제 침입(국내 미기록종 발 견) 사이에 비동시성이 확인되었다. 향후 보다 장기적인 분석이 필요할 뿐만 아니라 지속적인 식물검역시스템 개선이 필요할 것으로 판단된다.
PURPOSES : The wedge-type anchorage system requires a complex analysis of not only the tensile stress of the CFRP plate, but also the compressive stress and shear stress generated by the wedge action. The purpose of this study is to find a composite material failure theory that is suitable for analyzing the behavior of wedge-type anchorage system among various failure theories. METHODS : In this study, numerical analysis of various composite material failure theories was performed to analyze the anchorage strength and failure mode of the wedge-type anchorage system according to each failure theory, and compared with actual test results to determine the composite material failure theory most suitable for analyzing the behavior of a wedge-type anchorage system. RESULTS : Since the Maximum Stress failure theory shows similar results to the actual test in terms of failure mode and anchorage strength, there is no significant problem in applying it to the wedge-type anchorage system. However, it is judged to be difficult to apply under property conditions where interactions between stresses are highlighted. The Tsai-Hill and Tsai-Wu failure theories are considered unsuitable for application to wedge-type anchorage systems because the wedge angle conditions at which the most advantageous anchorage strength occurs are significantly different from other theories and the fracture type cannot be predicted. The Hashin-Rotem failure theory is considered to be the most appropriate to apply as a failure theory for the wedge-shaped anchorage system because the anchorage strength was slightly lower than the actual test results, but there was no significant difference, and the failure mode was consistent with the test results. The Hashin failure theory is judged to be unsuitable for application as a failure theory for the wedge-type anchorage system because the anchorage strength and failure mode were interpreted differently from the actual test results. CONCLUSIONS : The Hashin-Rotem failure theory was presented as the composite material failure theory most suitable for analyzing the behavior of wedge-type anchorage system.
본 연구는 소나무재선충병 방제대상지 선정의 효율성을 높이기 위해 진주시를 대상으로 소나무재선충병 잠재분포를 예측하였다. 예측에 사용된 MaxEnt 모델은 회귀분석을 기반으로 종 발생 확률 평가 및 다양한 잠재분포 예측에 이용되고 있다. 종속변수로는 소나무재선충병 감염목 자료를 사용하였으며, 독립변수로는 지리 ‧ 지형 ‧ 기후적 요인으로 총 15개 인자를 사용하였다. 잠재분포 예측 결과, 모델의 성능은 AUC가 0.801로 우수한 수준의 정확도를 나타냈다. 독립변수 중에는 전년도 감염목과의 거리, 6월 하순 강우량, 5월 강우량, 화목보일러와의 거리 순으로 잠재분포에 영향을 미치는 것으로 나타났다. 이러한 결과는 지속적인 소나무재선충병 감염목 DB 구축과 지리적 요인들에 대한 모니터링의 중요성이 크다는 것을 의미한다.
Raman distributed temperature sensor can be used as temperature instruments as well as monitoring abnormalities in next-generation nuclear systems. Since noise reduction and Measuring Frequency enhancement are required, integration time adjustment has been mainly used so far. In this study, a new data processing method using Moving Average Filter was analyzed to see if noise reduction and Measuring Frequency could be reduced, and improvement measures were suggested.
The major active components of Astragalus membranaceus (AM) are isoflavones, which exist in the form of various glycosides. Nuruk is a traditional fermentation starter in Korea, and is suitable for the biotransformation of isoflavone glycosides because it contains various microorganisms and enzymes. This study was performed to determine changes in the isoflavones and antioxidant properties of AM fermented (AF) with nuruk over 24 hours. AF was sampled after 0, 2, 4, 6, 12, 18, and 24 h of fermentation, and calycosin 7-glucoside, ononin, calycosin, and formononetin content, and the antioxidant properties of AF were analyzed. The total phenolic content increased with fermentation time, and the ABTS radical scavenging activity increased until 6 h of fermentation and then decreased. During fermentation, the isoflavone glycosides decreased significantly as fermentation time increased. The contents of calycosin and formononetin, which are aglycons of calycosin-7-glucoside and ononin, increased from 100.54 μg/g to 276.84 μg/g and from 56.29 μg/g to 123.04 μg/g, respectively, at 18 h of fermentation. Significant correlations were observed between fermentation time, isoflavone content, and antioxidant properties. The results of this study showed that fermentation with nuruk is suitable for the biotransformation of isoflavones in AM.
태의 첨가량을 3수준(낮음 : 5.8 g, 중간 : 10.8 g, 높음 : 22.4 g)으로 하여 흘림뜨기로 초지한 태지의 지합과 강도적 특성을 비교하였다. 흘림뜨기에 의해 제조한 한지와 태지의 평량은 태의 첨가량에 관계없이 34.4~36.1 g/㎡였으며, 가둠뜨기 태지의 평량은 25.7 g/㎡였다. 지합지수는 첨가한 태의 양이 적을 때는 한지보다 양호하였으나 태의 첨가량이 증가할수록 지합지수도 증가하여 지합은 좋지 않았다. 태의 첨가에 의한 표면의 평활도와 거칠음도도 소량의 태 첨가에서는 미첨가 한지 보다 약간 좋았으나 태의 첨가량이 높았을 때는 평활도와 거칠음도 모두 미첨가 한지 보다 좋지 않았다. 태지의 인장지수는 한지에 비해 낮았으며, 태의 첨가량이 많아질수록 다소 감소하는 경향을 나타내었다. 파열강도도 소량의 태 첨가에서는 다소 증가하였으나 그 양이 많아지면 감소하였고, 내절도는 태의 첨가에 의해 다소 감소하는 것으로 나타났다. 이상과 같이 태를 첨가하여 흘림뜨기로 초지한 태지의 물성은 소량의 첨가 시 약간 우수해지기도 하나 전체적인 물성의 개선에는 기여하지 못한 것으로 판단되며, 그렇다고 태의 첨가로 인해 크게 종이의 물리적 성질을 크게 손상시키지도 않아 외형상의 아름다움과 독특함을 살린 용도로의 이용을 도모하는 것이 바람직할 것으로 판단된다.
산업과 기술의 발전으로 인해 수계로의 화학물질 배출이 증가하고, 이로 인해 환경오염과 인체 건강에 부정적인 영향을 미치 는 위험이 더욱 증가하였다. 따라서, 수질을 종합적으로 평가할 수 있는 생태독성평가의 중요성이 강조되고 있다. 본 연구에서는 렌즈프 리 그림자 이미징 기술을 활용한 Cellytics 플랫폼을 소개하며, 화학물질에 의한 로티퍼(Brachionus plicatilis)와 미세조류(Dunaliella tertiolecta) 의 생물학적 변화를 신속하게 측정하고 독성을 분석하는 기법을 제안한다. 이를 위해 로티퍼와 미세조류를 톨루엔에 각각 1분과 5분 동 안 노출한 뒤, Cellytics를 이용하여 로티퍼의 이동성과 미세조류의 형태 변화를 측정하여 독성을 평가하였다. 로티퍼의 이동성과 미세조류 의 형태변화는 모두 110.4 mg/L의 농도에서 대조군과 유의미한 차이를 나타내며(p<0.05), 이는 로티퍼의 생존율로 분석한 톨루엔의 LC50(552 mg/L)보다 낮은 농도였다. 본 연구에 따르면, 로티퍼와 미세조류를 전통적인 방식으로 최소 수 일 간 배양하여 얻을 수 있는 생 태독성평가 결과를 매우 짧은 시간(5분 이내)에 분석하고, 두 생물의 독성평가 결과를 신속하게 제공하여 현장에서 활용 가능한 신뢰성 높은 정보를 제공할 수 있음을 보여준다. 이는 독성평가를 이용하는 다양한 연구의 활용에 기여할 수 있으며, 환경보호 및 인체 건강 관 련 정책 수립에 도움이 될 것으로 기대된다.