Environmental load modeling for offshore Malaysia regions

M. Azman, K. John, M. Shahir Liew
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Abstract

Rapid expansion of oil and gas industry in 20th century increased the demand for accurate and reliable environmental load prediction. With the increase in natural disasters like tsunami, typhoon, and rise in water level from global warming, it is very important for engineers to model the environmental load accurately. Eight fixed offshore jacket platforms with four, six and eight-legged configurations and with K and X type bracings were chosen for this study. Three sets of environmental data for ten, fifty and hundred year conditions covering three regions in Malaysia were selected. Peninsular region was observed to encounter the highest environmental loading of about 21 MN followed by Sabah region with 3.6 MN and Sarawak region with 3.4 MN. The dominant load direction was from North and North East from the open South China Sea. This was logical since most of the fixed offshore platforms in Malaysia are located at about 30 to 150 km distance from shore. Apart from the location, the size, appurtenances and marine growth of the fixed offshore platforms impacted the load. From these findings, engineers can now use different design approaches and redundancy arrangements for the different regions in Malaysia for reducing the cost without compromising the safety of the structure.
马来西亚近海地区环境负荷建模
20世纪石油和天然气工业的迅速发展,对准确可靠的环境负荷预测提出了更高的要求。随着海啸、台风和全球变暖导致的海平面上升等自然灾害的增加,对环境荷载进行准确的建模对工程师来说非常重要。本研究选择了8个固定的海上导管架平台,分别为4、6和8支腿配置,并采用K型和X型支撑。三组环境数据的十年,五十年和百年条件覆盖马来西亚的三个地区被选中。半岛地区的环境负荷最高,约为21锰,其次是沙巴地区3.6锰,沙捞越地区3.4锰。主要负荷方向为来自南海的北、东北方向。这是合乎逻辑的,因为马来西亚的大多数固定海上平台都位于距离海岸约30至150公里的地方。除位置外,固定海上平台的大小、设备和海洋生长也会影响载荷。根据这些发现,工程师们现在可以在马来西亚的不同地区使用不同的设计方法和冗余安排,在不影响结构安全性的情况下降低成本。
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