STATIONARY WAVE-RESISTANT AEROSOL COUNTERACTION PLATFORM (ACP) Russian patent published in 2022 - IPC E02B17/00 F41H3/02 

Abstract RU 2785477 C1

FIELD: shipbuilding.

SUBSTANCE: invention relates to shipbuilding, specifically to stationary marine structures and can be used to install MDSH-1 smoke bombs (12 pcs.) on it with remote control using RPZ-8X system, as well as other various water-resistant objects suitable for weight and size indicators that need to be placed on the water surface in the coastal zone, without immersing them in water. The stationary wave-resistant aerosol counteraction platform consists of a monolithic model made entirely of fiberglass. The hull of the platform is made in the form of a cylinder having a cone-shaped damper filled with ballast and a truncated cone on top with a box in which smoke bombs with a remote control system are placed. The weight of the ballast is at least 1.5 times the weight of the smoke bombs. The technical result is the development of a stationary wave-resistant platform with a load capacity of more than 508 kg, heat resistance from -35 to +400 °C; wave resistance and stability, for a given water area.

EFFECT: stationary platform, having a given wave resistance and stability, will withstand the impact of impacts of water masses, while accommodating 508 kg of payload, which includes MDSH-1 marine smoke bombs and the RPZ-8X onshore system, which excludes tipping and tilting of the hull. In addition, the material and thickness of the structure allows for using the invention in a wide temperature range, for the placement of these platforms both in tropical climates and in northern latitudes. The present invention enables automation of the smoke intake system when masking a base point in the waters of naval bases, as well as increasing the decision-making time for the higher command. In addition, due to the possibility of servicing the platform with an advanced chemical, biological and radiological protection boat, cluttering of the water area with marine smoke bombs and their chemical formulations is excluded.

1 cl, 2 dwg

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Authors

Simakov Dmitrij Anatolevich

Zyukin Vitalij Vasilevich

Belikov Sergej Sergeevich

Anisimov Mikhail Nikolaevich

Turovtsev Nikolaj Olegovich

Kolomoets Bogdan Andreevich

Dates

2022-12-08Published

2021-12-22Filed