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혀인두호흡훈련에 따른 척수근위축증 환자의 폐용적 변화 분석 (단일사례연구)
이승엽(Seungyub Lee),이명미(Myeongmi Lee) 대한심장호흡물리치료학회 2020 대한심장호흡물리치료학회지 Vol.8 No.2
Purpose : This study aims to investigate whether glossopharyngeal breathing training can increase lung volume in patients with spinal muscular atrophy, which is a restrictive lung disease. Methods : In this study, the spinal muscular atrophy patients received 15-to-20-minute daily glossopharyngeal breathing training over a period of 6 weeks, and the peak expiratory flow and slow vital capacity were measured before and after training. Results : In this study, the results showed that the peak expiratory flow increased from 240 L/min to 300 L/min and the vital capacity increased from 3.26 L (89.1%) to 3.14 L (93.2%). The inspiratory capacity increased from 2.87 L to 2.99 L, tidal volume increased from 1.17 L to 1.21 L, expiratory reserve volume increased from 0.39 L to 0.42 L, and inspiratory reserve volume increased from 1.70 L to 1.78 L. Conclusion : According to our results, glossopharyngeal breathing is a useful training method to maintain coughing ability by increasing the lung volume in spinal muscular atrophy patients.
상수관망 최적 생애주기 설계를 위한 유전알고리즘의 적용
이승엽(Lee, Seungyub),유도근(Yoo, Do Geun),정동휘(Jung, Donghwi),김중훈(Kim, Joong-Hoon) 한국산학기술학회 2015 한국산학기술학회논문지 Vol.16 No.6
상수관망은 중요 사회기반 시설물 중 하나로, 상수관망을 구성하는 수 많은 관을 통해 각 수요지로 물을 공급 및 배분하는 역할을 한다. 수 많은 관들로 구성된 상수관망의 설계는 여러 수리학적 조건을 고려하여 진행되기에 그리 간단한 문제는 아니다. 이에 많은 연구자들이 최적화 기법을 도입하여 상수관망의 설계에 사용을 하고 있다. 본 연구에서는 생애주기 에너지 분석을 통한 최적 관경을 결정하기 위한 모형을 개발하였다. 개발한 모형은 최적 설계를 위해 유전자 알고리즘을 도입하였고, 수리해석을 위해 EPANET2.0을 연동하고 생애주기 동안에 관의 변화를 모의하기 위한 노후도식과 관 파손확률 공식을 적용하였다. 모형은 총 두 곳의 샘플 관망에 적용하였으며, 두 관망에 대한 에너지 기반 최적 설계를 진행하였다. 에너지 최적 관경 조합에 대한 비용을 계산하여 비용 최적 관경 조합과 비교를 하였으며, 이를 통해 에너지 기반 최적 설계가 비용 측면에서도 큰 불이익이 없이 진행될 수 있음을 보였다. In this study, a model is developed based on Life Cycle Energy Analysis (LCEA) method with Genetic Algorithm (GA) to determine optimal diameter of Water Distribution System (WDS). For hydraulic analysis the EPANET2.0 program is linked with developed model, pipe-aging equation and pipe-breakage equation are built in to developed model to simulate pipe change through life cycle. The model is then applied to two sample WDSs for optimal energy design. After determining optimal diameter for each WDS, the total cost is calculated based on determined diameter and compared with well-known optimal diameter set of each WDS. Results show that optimal energy design of WDSs through the developed model can be an alternative option for optimal design of WDSs for reducing energy with lower in cost.
상수도 관망 내 바이러스 유입 대응을 위한 재염소 시설 설계
김범진,이승엽,Kim, Beomjin,Lee, Seungyub 한국수자원학회 2024 한국수자원학회논문집 Vol.57 No.4
Water distribution system (WDS) is exposed to various water quality incidents during its operation. This study utilized Quantitative Microbial Risk Assessment (QMRA) to analyze the risk associated with potential virus intrusion in WDSs. Additionally, the study determined the location and operation of rechlorination facilities to minimize potential risk. In addition, water quality resilience was calculated to confirm that the chlorine concentration maintains within the target range (0.1-1.0 mg/L) during normal operation. Hydraulic analysis was performed using EPANET, while EPANET-MSX was linked to simulate the reactions between viruses and chlorine. The proposed methodology was applied to the Bellingham network in the United States, where rechlorination facilities capable of injecting chlorine concentrations ranging from 0.5 mg/L to 1.0 mg/L were considered. Results indicated that without rechlorination facilities, the Average risk was 0.0154. However, installing rechlorination facilities and injecting chlorine at a concentration of 1.0 mg/L could reduce the Average risk to 39.1%. It was observed that excessive chlorine injection through rechlorination facilities reduced water quality resilience. Consequently, a rechlorination facility with a concentration of 0.5 mg/L was selected, resulting in a reduction of approximately 20% in average risk. This study provides insights for designing rechlorination facilities to enhance preparedness against potential virus ingress in the future.
신상훈,김원,이승엽,백경록,Shin, Sanghoon,Kim, Won,Lee, Seungyub,Paik, Kyungrock 대한토목학회 2015 대한토목학회논문집 Vol.35 No.1
We investigate the influence of spatial rainfall distribution on hillslope soil erosion through laboratory experiments. Two distinct spatial distributions are examined in this study, i.e., rainfall concentrated on central area versus upper area of hillslope. During the entire period of 8 hours for each experiment, direct runoff, subsurface flow, and sediment yield are measured at high temporal resolution (10 minutes). Compared to the case that rainfalll concentrated on central area, upstream concentrated rainfall results in lower peak of the sediment yield curve while greater cumulative sediment yield. Cumulative sediment yield increases over time linearly but its growth rate shows a sudden decrease at around 2 hours. This should be taken into consideration when temporal variability of sediment yield is estimated from observed total amount, and demonstrates the necessity of measuring sediment yield at high temporal resolution. 본 연구에서는 강우의 공간분포에 따른 토사유출의 특성을 토조 실험을 통해 탐구하였다. 강우의 공간분포는 강우 집중위치를 사면의 중앙부와 상류부로 각각 설정함으로 조정하였다. 토사유출의 시간적 변동성을 충분히 포착하기 위해 장시간(8 시간)의 실험시간 동안 높은 시간해상도(10 분)로 직접유출량, 지하수유출량, 토사유출량을 측정하였다. 그 결과, 강우를 토조의 상류부에 위치시킬수록 토사유출량곡선의 첨둣값은 감소하고 누적토사유출량은 증가하였다. 누적토사유출량은 시간에 따라 선형적으로 증가하였으나, 그 증가율이 2 시간을 기준으로 급격히 감소하였다. 이러한 점은 현재 총량 위주로 기록되어있는 토사유출 실측자료를 사용함에 있어 고려해야 할 사항이라고 결론지을 수 있다. 본 연구 결과는 또한, 향후의 토사유출량 실측은 높은 시간해상도로 측정될 필요가 있음을 시사한다.