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An Introduction to FLNG FEED Study Development
김덕기(Deok-Ki Kim),김재신(Jae-Shin Kim) 한국해양환경·에너지학회 2014 한국해양환경공학회 학술대회논문집 Vol.2014 No.5
A number of offshore gas fields have not been developed due to the lack of a feasible means to access the market. When gas reserves are large enugh to justify a huge capital investment, liquefaction of natural gas has successfully been applied o develop remote gas fields. For exploitation of offshore gas fields, FLNG system has emerged as a potentially feasible approach. The concept of FLNG is considered to be advantageous, for distant offshore gas fields, without the necessity of permanent rigs nor under pipelines, and also feasible for the development of small or medium scale gas reserves, from the view point of flexible towing capability, compared with conventional onshore liquefaction plants. The technology of FLNG has been repeatedly studied, and many engineers found that there were several measures to be solved from both economic and technological aspects. The recent progress technology, however, made it possible to apply a very simple and economical design for the FLNG.
이규봉(Gyu Bong Lee),김태성(Tae Sung Kim),김승욱(Seungwook Kim),최영(Young Choi),조성욱(Seong Wook Cho) 대한기계학회 2012 대한기계학회 춘추학술대회 Vol.2012 No.11
Innovative improvement of the design process and environment has been raised in accordance with the increasing needs from the customers and the reduction of the product life cycle. For the efficient conceptual/basic design and safety assessment of the piping system of the engineering plant, it is necessary to implement the concept of standards and collaboration throughout the front end design process. In this paper, we propose the design process which is based on the ISO-15926 international standard. We introduce the basic concepts and the use of the standard in the piping system design and safety assessment. A simple illustrative piping system is modeled and analysed as an example to show the proposed procedure.