{"title":"Application of Offshore HDPE Pipes Route Design in North Maluku Indonesia","authors":"F. Novico, I. Kurniawan, A. Egon, David Merli","doi":"10.14710/IK.IJMS.26.1.45-56","DOIUrl":null,"url":null,"abstract":"The lack of fresh water for the inhabitants of Maitara island is a very urgent problem to be solved. Two main factors at least must be taken into account to deliberate the right of way of subsea High-density polyethylene (HDPE) pipes, namely the hydrodynamic conditions and of a block analysis. This paper presents the study to justify the best route of subsea HDPE pipes based on hydrodynamic model analysis and concrete block strategy. The method used to analyze the best route includes 2 aspects. Firstly, the investigation method consisting of a bathymetric survey conducted by a single beam echosounder, 15 days tidal observations and seabed sediment sampling. Secondly, the hydrodynamic modelling analysis using Mike 21 FMHD and concrete block analysis, all these studies have been completed in August 2018. In the morphological behaviour analysis, three alternative routes are considered for the subsea HDPE pipes from Tidore Island to Maitara Island. The outcome of the analysis shows that the second track line option has the smallest impact by the hydrodynamic conditions, with a current speed of less than 0,5m/sec and a significant wave height of fewer than 1.2 meters. Furthermore, the uniformity of the lithology along the route is the other reason to select the second route. Finally, the concrete block analysis generated a minimum dimension of 75cm x 60cm x 30cm, and a free span of 3 meters is safe to absorb the uplift and drag forces acting on the pipe.","PeriodicalId":13381,"journal":{"name":"ILMU KELAUTAN: Indonesian Journal of Marine Sciences","volume":"480 1","pages":"45-56"},"PeriodicalIF":0.0000,"publicationDate":"2021-03-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ILMU KELAUTAN: Indonesian Journal of Marine Sciences","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14710/IK.IJMS.26.1.45-56","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The lack of fresh water for the inhabitants of Maitara island is a very urgent problem to be solved. Two main factors at least must be taken into account to deliberate the right of way of subsea High-density polyethylene (HDPE) pipes, namely the hydrodynamic conditions and of a block analysis. This paper presents the study to justify the best route of subsea HDPE pipes based on hydrodynamic model analysis and concrete block strategy. The method used to analyze the best route includes 2 aspects. Firstly, the investigation method consisting of a bathymetric survey conducted by a single beam echosounder, 15 days tidal observations and seabed sediment sampling. Secondly, the hydrodynamic modelling analysis using Mike 21 FMHD and concrete block analysis, all these studies have been completed in August 2018. In the morphological behaviour analysis, three alternative routes are considered for the subsea HDPE pipes from Tidore Island to Maitara Island. The outcome of the analysis shows that the second track line option has the smallest impact by the hydrodynamic conditions, with a current speed of less than 0,5m/sec and a significant wave height of fewer than 1.2 meters. Furthermore, the uniformity of the lithology along the route is the other reason to select the second route. Finally, the concrete block analysis generated a minimum dimension of 75cm x 60cm x 30cm, and a free span of 3 meters is safe to absorb the uplift and drag forces acting on the pipe.
麦塔拉岛居民缺乏淡水是一个急需解决的问题。在考虑海底高密度聚乙烯(HDPE)管道的通行权时,至少要考虑两个主要因素,即水动力条件和分段分析。本文介绍了基于水动力模型分析和混凝土砌块策略的海底HDPE管道最佳敷设路径的研究。分析最佳路线的方法包括两个方面。首先,采用单波束测深测深、15 d潮汐观测和海底沉积物采样的调查方法。其次,采用Mike 21 FMHD进行水动力建模分析和混凝土砌块分析,这些研究都已于2018年8月完成。在形态行为分析中,考虑了从Tidore岛到Maitara岛的海底HDPE管道的三种替代路线。分析结果表明,第二轨道线路方案受水动力条件的影响最小,水流速度小于0.5 m/s,显著波高小于1.2 m。此外,路线沿线岩性的均匀性是选择第二路线的另一个原因。最后,混凝土砌块分析产生了75cm x 60cm x 30cm的最小尺寸,3米的自由跨度可以安全地吸收作用在管道上的升力和阻力。