Effect of water jetting parameters on the penetration behavior of jack-up spudcan in surficial sand condition

IF 0.7 Q4 ENGINEERING, OCEAN Ocean Systems Engineering-An International Journal Pub Date : 2015-03-25 DOI:10.12989/OSE.2015.5.1.001
Dong-Seop Han, Seungjun Kim, Moo-Hyun Kim
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引用次数: 2

Abstract

The water jetting system for a jack-up spudcan requires the suitable design considering the platform/spudcan particulars, environments, and soil conditions, either the surficial clay or surficial sand. The usage of water jetting depends critically on soil conditions. The water jetting is usually used for the smooth and fast extraction of the spudcan in the surficial clay condition. It is also required for inserting spudcan up to the required depth in the surficial sand condition, which is investigated in this paper. Especially, it should be very careful to use the water jetting during an installation of spudcan in the surficial sand condition, because there is a risk of overturning accident related to the punch-through. Therefore, in this study, the effect of water jetting flow rate and time on the change of soil properties and penetration resistance is analyzed to better understand their interactions and correlations when inserting the spudcan with water jetting in surficial sand condition. For the investigation, a wind turbine installation jack-up rig (WTIJ) is selected as the target platform and the multi layered soil (surficial sand overlaying clays) is considered as the soil condition. The environmental loading and soil-structure interaction (SSI) analysis are performed by using CHARM3D and ANSYS. This kind of investigation and simulation is needed to decide the proper water jetting flow rate and time of spudcan for the given design condition.
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水射流参数对自升式钻柱在地表砂条件下穿透行为的影响
自升式铲泥器的喷水系统需要考虑平台/铲泥器的特点、环境和土壤条件,无论是表面粘土还是表面砂,进行合适的设计。喷水的使用主要取决于土壤条件。在表面粘土条件下,水射流通常用于泥浆的顺利、快速提取。在地表砂石条件下,也需要在规定的深度内插入铲管,本文对此进行了研究。特别是,在地面砂条件下安装铲管时,要非常小心使用喷水,因为存在与打孔有关的倾覆事故的风险。因此,本研究通过分析喷水流量和时间对地表砂条件下喷水铲插入时土壤性质和侵彻阻力变化的影响,更好地了解两者之间的相互作用和相关性。研究以风力发电装置自升式钻井平台(WTIJ)为目标平台,土壤条件为多层土(表层砂覆粘土)。利用CHARM3D和ANSYS进行了环境荷载和土-结构相互作用分析。在给定的设计条件下,需要进行这种研究和模拟,以确定合适的喷水流量和喷水时间。
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期刊介绍: The OCEAN SYSTEMS ENGINEERING focuses on the new research and development efforts to advance the understanding of sciences and technologies in ocean systems engineering. The main subject of the journal is the multi-disciplinary engineering of ocean systems. Areas covered by the journal include; * Undersea technologies: AUVs, submersible robot, manned/unmanned submersibles, remotely operated underwater vehicle, sensors, instrumentation, measurement, and ocean observing systems; * Ocean systems technologies: ocean structures and structural systems, design and production, ocean process and plant, fatigue, fracture, reliability and risk analysis, dynamics of ocean structure system, probabilistic dynamics analysis, fluid-structure interaction, ship motion and mooring system, and port engineering; * Ocean hydrodynamics and ocean renewable energy, wave mechanics, buoyancy and stability, sloshing, slamming, and seakeeping; * Multi-physics based engineering analysis, design and testing: underwater explosions and their effects on ocean vehicle systems, equipments, and surface ships, survivability and vulnerability, shock, impact and vibration; * Modeling and simulations; * Underwater acoustics technologies.
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