A simplified algorithm for conceptual estimation of the material quantities of rubble-mound breakwaters

IF 0.7 Q4 ENGINEERING, OCEAN Ocean Systems Engineering-An International Journal Pub Date : 2020-03-01 DOI:10.12989/OSE.2020.10.1.111
K. Sadeghi, Fatemeh Nouban
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Abstract

A simplified algorithm is proposed for fast estimation of the material quantities required for the construction of rubble-mound breakwaters. The proposed algorithm is able to employ only the data available at feasibility study phase such as the maximum draught of the design ship selected to transport the cargos to the harbor despite, because at the feasibility phase, information for the planned harbor is likely to be very limited. A linear-constant waterdepth model together with a proposed section configuration for the breakwaters, which is customary for harbors, is considered to calculate the quantity of materials. The numerical simulation of the wave characteristics has been verified using the recorded wave data collected by a buoy installed near the Neka harbor in Caspian Sea waters. A case study has been also applied to four harbors to validate the proposed algorithm. The estimated weights using the proposed linear-constant and multi-linear waterdepth models were compared using the bathymetry maps and layouts of these harbors. A computer program, written in QBasic language, has been developed to simulate the wave characteristics and to estimate the material quantities needed to construct a rubble-mound breakwater. The obtained results show that taking into account the acceptable accuracies normally applied to the feasibility study and conceptual design phases, the proposed algorithm is sufficiently accurate and highly effective for the conceptual estimation of materials
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碎石丘防波堤材料量概念估算的简化算法
提出了一种快速估算碎石墩防波堤所需材料数量的简化算法。尽管在可行性研究阶段,规划港口的信息可能非常有限,但所提出的算法能够仅使用可行性研究阶段可用的数据,例如选择将货物运输到港口的设计船舶的最大吃水。采用线性不变水深模型,结合港口常用的防波堤断面配置,计算材料的数量。利用里海Neka港附近浮标记录的波浪数据,对波浪特征进行了数值模拟。以四个港口为例,验证了算法的有效性。利用这些港口的测深图和布局,比较了使用所提出的线性常数和多线性水深模型估计的权重。一个用QBasic语言编写的计算机程序已经被开发出来,用来模拟波浪特性和估计建造一个碎石丘防波堤所需的材料数量。结果表明,考虑到通常应用于可行性研究和概念设计阶段的可接受精度,所提出的算法对于材料的概念估计是足够准确和高效的
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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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