Application of virtual prototype in deep-ocean exploitation was introduced and specific construction virtual prototype method of heave compensation equipment was built by means of parameterized,concurrent and integrated design technology. It provides a reference method for deep-ocean exploitation system design.
However, the reseach of the automatic control system of the deepsea tractor meet a lot of new problems, in the case of that the marine technology is unripe and that deep sea environment is too special and complex.
Learning the advanced experience and technology from others, we are investigating the dynamic characteristics about deep-sea platforms, to provide some theoretical support for our country’s deep-water development as to South China Sea in future.
Floating production systems are applicable to deep-water development, An investigation was made into the forms of storage tankers operating with floating production systems worldwide, Dynamic performances of different ship forms are analysed and discussed.
This paper presents the development background, current technical level and present situation of multiphase flow technique. The economics to develop deep sea satellite well by using this technique is also discussed.
Floating production systems are applicable to deep-water development, An investigation was made into the forms of storage tankers operating with floating production systems worldwide, Dynamic performances of different ship forms are analysed and discussed.
Design studies on the advanced marine reactors have been done continuously since 1983 at Japan Atomic Energy institute (JAERI) in order to devolop attrective marine reactors for the next generation.At present, two concepts of marine reactor are being formulated. One is 100 MWt MRX (Marine Reactor X) for the marine reactor and the other is 150 kWe DRX (Deep Sea-Reactor X) for a deep-sea research vessel.They are characterized by an integral type Pad, built-type control rod drive mechanisms, a water-filledd co...
This paper presents the development background, current technical level and present situation of multiphase flow technique. The economics to develop deep sea satellite well by using this technique is also discussed.