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백성하,도은수,김석중 한국지반공학회 2018 한국지반공학회논문집 Vol.34 No.7
유압잭을 통해 지반에 압입 시공되는 압입강관말뚝은 소음 및 진동을 적게 발생시켜 도심지 공사에 적합한 기초형식으로 알려져 있다. 특히 협소한 공간에서 시공이 용이하여 리모델링 혹은 수직증축 공사에 널리 활용될 수 있을 것으로 기대되지만, 연직지지거동이 명확히 규명되지 않아 제한적으로만 적용되고 있는 실정이다. 본 연구에서는 압입강관말뚝의 연직지지거동을 평가하기 위하여 국내의 대표적인 지층인 풍화토 및 풍화암 지반에서 말뚝재하시험을 수행하였다. 재하시험 결과를 통해 각 시험조건 별 주면지지력 및 선단지지력을 평가하였고 이를 항타말뚝을 대상으로 제안된 지지력 평가식과 비교분석하였다. 그 결과, 항타말뚝을 대상으로 제안된 평가식을 통한 예측값은 압입강관말뚝의 주면지지력 및 선단지지력을 각각 57.2% 및 33.8% 과소평가 하는 것으로 나타났다. 이는 기존의 지지력 평가식이 단단한 풍화토 및 풍화암층의 강도를 적절히 고려하지 못하며, 항타공법에 비해 압입공법을 통한 말뚝 설치 시 말뚝주변 지반 교란에 따른 지지력 감소가 더 작게 나타나기 때문으로 판단된다. 추가적으로, 기존의 지지력 평가식을 재하시험 결과를 바탕으로 개선하여 압입강관말뚝의 연직지지거동 평가 및 연직지지력 산정 시 활용 가능하도록 하였다.
백성하,신규범,정충기,Baek, Sung-Ha,Shin, Gyu-Beom,Chung, Choong-Ki 한국지반공학회 2018 한국지반공학회논문집 Vol.34 No.6
차량의 엔진성능에 따라 구동성능이 결정되는 도로주행차량과 달리, 포장되지 않은 지반 위를 주행하는 야지궤도차량의 구동성능은 지반-궤도 접지면에서 발생하는 지반의 전단 및 침하현상에 의해 제한된다. 특히 차량의 중량에 의해 발생하는 정적침하 및 슬립에 의해 유발되는 슬립침하는 지반-궤도 접지면에서 지반저항력을 발현시켜 야지궤도 차량의 구동을 직접적으로 방해하는 요소로 작용한다. 따라서 야지궤도차량의 구동성능을 확보하기 위해서는 정적침하 및 슬립침하를 평가하고 제한할 필요가 있다. 본 연구에서는 야지궤도차량의 중량 및 구동지반의 특성이 슬립침하에 미치는 영향을 종합적으로 평가하기 위하여, 다양한 연직하중 및 지반조건에서 모형궤도시험을 수행하였다. 모형 시험 결과, 모든 시험조건에 대해 슬립율이 증가할수록 슬립침하가 증가했지만, 그 증가량은 점차 감소하는 것으로 나타났다. 또한 궤도시스템에 재하 된 상부 연직하중이 크고 모형지반의 상대밀도가 작을수록 슬립침하가 커지며 이에 따라 지반저항력도 증가하는 것으로 평가되었다. 추가적으로, 평가된 슬립침하를 각 시험조건 별로 산정된 정적침하로 정규화 시킨 뒤 이를 슬립율에 관한 함수로 나타내어 야지궤도차량의 침하량 및 지반저항력 산정 시 활용 가능하도록 하였다. When a tracked vehicle travels off-road, shearing action and ground sinkage occur on the soil-track interface and severely affect tractive performance of the tracked vehicle. Especially, the ground sinkage, which is induced by vehicle's weight (hereinafter referred to as static sinkage) and longitudinal forces in the direction of travel producing slip (hereinafter referred to as slip sinkage), develops soil resistance, directly restricting the tractive performance of an off-road tracked vehicle. Thus, to assess the tractive performance of an off-road tracked vehicle, it is imperative to take both of static sinkage and slip sinkage into consideration. In this research, a series of model track experiments was conducted to investigate the slip sinkage which has not been clarified. Experiment results showed that the slip sinkage increased with increasing the slip ratio, but the increasing rate gradually decreased. Also, the slip sinkage was found to increase as relative density of soil decreased and imposed vertical load increased. From the experiment results, the normalized slip sinkage defined as slip sinkage to static sinkage calculated in the identical condition was investigated, and an empirical equation for the slip sinkage was developed in terms of slip ratio, which allows vehicle operators to predict the slip sinkage in a given soil and operating conditions.
모래지반에서 횡방향 반복하중을 받는 말뚝의 영구수평변위 평가
백성하,김준영,이승환,정충기 한국지반공학회 2017 한국지반공학회논문집 Vol.33 No.2
Pile foundations that support offshore structures or transmission towers are dominantly subjected to cyclic lateral loadsdue to wind and waves, causing permanent displacement which can severely affect stability of the structures. In thisstudy, a series of cyclic lateral load tests were conducted on a pre-installed aluminum flexible pile in sandy soil withthree different relative densities (40%, 70% and 90%) in order to evaluate the permanent displacement of a cyclic laterallyloaded pile. Test results showed that the cyclic lateral loads accumulated the irreversible lateral displacement, so-calledpermanent displacement. As the number of cyclic lateral load increased, accumulated permanent displacement increased,but the permanent displacement due to one loading cycle gradually decreased. In addition, the permanent displacementof a pile increased with decrement of relative density and decreased by soil saturation. From the test results, the normalizedpermanent displacement defined as the cumulative permanent displacement to the initial permanent displacement ratiowas investigated, and empirical equations for predicting the normalized permanent displacement was developed in termsof relative density of the soil and the number of cyclic lateral load.
그라우저 효과를 고려한 야지궤도차량의 지반추력 평가연구
백성하,정충기 한국지반공학회 2018 한국지반공학회논문집 Vol.34 No.9
When an off-road tracked vehicle travels, an engine thrust that is transmitted to the continuous track induces a shearing action on the soil-track interface. Consequently, the relative displacement known as slip displacement takes place on the soil-track interface, which develops an associated soil thrust acting as a traction force. For the loose or soft ground conditions, an excessively large slip displacement can be required for the development of the desired soil thrust which will make the tracked vehicle mobile and therefore the outer surface of the continuous track is generally designed to protrude with grousers. This paper fundamentally studied the effect of grousers on the soil thrust of off-road tracked vehicles. Based on the soil-track interaction theory, a new soil thrust assessment method that properly takes into account the effect of grousers was developed. Also, the soil thrust of off-road tracked vehicles equipped with a number of grousers was evaluated using the developed assessment method. The results showed that grousers increased the soil thrust of the continuous track, enhancing the overall tractive performance of off-road tracked vehicles. These effects were more obvious as the height of grouser increased and the spacing of grouser decreased; thus, it is concluded that the grouser which has smaller shape ratio (span of the grouser to a grouser height) significantly enhances off-road tracked vehicle’s performance.
궤도-지반 상호작용 이론을 활용한 해저궤도차량의 구동성능 평가
백성하,신규범,권오순,정충기 한국지반공학회 2018 한국지반공학회논문집 Vol.34 No.2
Underwater tracked vehicle is employed to perform underwater heavy works on saturated seafloor. When an underwater tracked vehicle travels on the seafloor, shearing action and ground settlement take place on the soil-track interface, which develops the soil thrust and soil resistance, respectively, and they restrict the tractive performance of an underwater tracked vehicle. Thus, unlike the paved road, underwater tracked vehicle performance does not solely rely on its engine thrust, but also on the soil-track interaction. This paper aimed at evaluating the tractive performance of an underwater tracked vehicle with respect to ground conditions (soil type, and relative density or consistency) and vehicle conditions (weight of vehicle, and geometry of track system), based on the soil-track interaction theory. The results showed that sandy ground and silty sandy ground generally provide sufficient tractions for an underwater tracked vehicle whereas tractive performance is very much restricted on clayey ground, especially for a heavy-weighted underwater tracked vehicle. Thus, it is concluded that an underwater tracked vehicle needs additional equipment to enhance the tractive performance on the clayey ground.
조밀한 포화 실트질 모래지반에서 횡방향 반복하중을 받는 말뚝의 p-y 거동 평가
백성하,최창호,조진우,정충기 한국지반공학회 2019 한국지반공학회논문집 Vol.35 No.11
Piles that support offshore wind turbine structures are dominantly subjected to cyclic lateral loads of wind, waves, and tidal forces. For a successful design, it is imperative to investigate the behavior of the cyclic laterally loaded piles; the p-y curve method, in which the pile and soil are characterized as an elastic beam and nonlinear springs, respectively, has been typically utilized. In this study, model pile tests were performed in a 1 g gravitational field so as to investigate the p-y behaviors of cyclic laterally loaded piles installed in saturated dense silty sand. Test results showed that cyclic lateral loads gradually reduced the overall stiffness of the p-y curves (initial stiffness and ultimate soil reaction). This is because the cyclic lateral loads disturbed the surrounding soil, which led to the decrement of the soil resistance. The decrement effects of the overall stiffness of the p-y curves became more apparent as the magnitude of cyclic lateral load increased and approached the soil surface. From the test results, the cyclic p-y curve was developed using a p-y backbone curve method. Pseudo-static analysis was also performed with the developed cyclic p-y curve, confirming that it was able to properly predict the behaviors of cyclic laterally loaded pile installed in saturated dense silty sand.
지능형 다짐 기술 기반 토공사 다짐 품질관리 실증 연구
백성하,김진영,김지선,조진우 한국지반공학회 2023 한국지반공학회논문집 Vol.39 No.11
This study implemented intelligent compaction technology at the construction site of the AY Highway in Gyeonggi Province, with a focus on obtaining the representative intelligent compaction value, CMV. The target CMV for quality control was established through trial construction, and the validation of the compaction quality control process based on intelligent compaction was conducted. The optimal approach for determining the target CMV was confirmed to be through linear regression of the average CMV measured within a 5-m radius from the plate load testing location. Upon assessing compaction quality against the target CMV, it was observed that the quality criteria outlined in the domestic intelligent compaction standard were met. However, the criteria outlined in Austria and the United States were not satisfied. Notably, indicators related to the variability of compaction quality did not meet the specified criteria, suggesting a stringent standard compared to the observed variability of CMV, ranging from 17% to 55%. Consequently, it is recommended to conduct additional field tests to further validate the compaction quality control process based on intelligent compaction. This will aid in confirming and enhancing the appropriateness of the regulations stipulated in each standard.