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An intelligent nitrogen-water mist system to reduce ship implosion damage and subsequent combustion
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An intelligent, nitrogen-based technology, applied to ships, ship weapons, defense equipment, etc., can solve problems such as ship damage, achieve the effects of reducing damage, reducing combustion enhancement effects, and improving protection performance
Active Publication Date: 2022-01-11
WUHAN UNIV OF TECH
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At present, the anti-ship missile with the highest adoption rate in various countries is the semi-armor-piercing implosion warhead. Burning violently in the cabin space, the high temperature, high-speed fragments and shock waves generated will cause huge damage to the interior of the ship
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[0023] The technical solutions of the present invention will be described below in conjunction with the accompanying drawings and embodiments.
[0024] Such as Figure 1 to Figure 4 As shown, an intelligent nitrogen-water mist system for reducing ship implosion damage and subsequent combustion described in the present invention includes a water tank 1, a water pump 2, a base 3, a high-pressure nitrogen cylinder group 4, a control valve 5, and an intelligent console 6. Cabin 7, water mist concentration monitor 8, nitrogen concentration monitor 9, acceleration sensor 10, two-phase flow nozzle a11 and two-phase flow nozzle b12, water mist concentration monitor 8, nitrogen concentration monitor 9, acceleration sensor 10 , The two-phase flow nozzle a11 and the two-phase flow nozzle b12 are set on the cabin 7, the two-phase flow nozzle a11 and the two-phase flow nozzle b12 are connected to the water pump 2 through the water pipe, the water pump 2 is connected to the water tank 1 thr...
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Abstract
The invention relates to nitrogen-water mist explosion suppression technology, in particular to an intelligent nitrogen-water mist system for reducing ship implosion damage and subsequent combustion, including a water tank, a water pump, a base, a high-pressure nitrogen cylinder group, a control valve, an intelligent Console, cabin, water mist concentration monitor, nitrogen concentration monitor, acceleration sensor, two-phase flow nozzle a and two-phase flow nozzle b, water mist concentration monitor, nitrogen concentration monitor, acceleration sensor, two-phase flow nozzle a The two-phase flow nozzle b is installed on the cabin, the two-phase flow nozzle a and the two-phase flow nozzle b are connected to the water pump through the water pipe, the water pump is connected to the water tank through the water pipe, the water pump is fixed on the base, the two-phase flow nozzle a and the two-phase flow Nozzle b is connected to the control valve through the air pipe, the control valve is connected to the high-pressure nitrogen cylinder group through the air pipe, and the water pump, control valve, water mist concentration monitor, nitrogen concentration monitor and acceleration sensor are connected to the intelligent console through wires.
Description
technical field [0001] The invention relates to nitrogen-water mist explosion suppression technology, in particular to an intelligent nitrogen-water mist system for reducing implosion damage and subsequent combustion of ships. Background technique [0002] With the rapid development of anti-ship missile technology, its flight mode is mostly horizontal and sea-skimming. The concealment and hit accuracy have been greatly improved, and ships will also face increasingly Harsh threat of attack. At present, the anti-ship missile with the highest adoption rate in various countries is the semi-armor-piercing implosion warhead. Burning violently in the cabin space, the high temperature, high-speed fragments and shock waves generated caused huge damage to the interior of the ship. [0003] In response to anti-ship missile attacks, modern large surface ships need additional protection for some compartments, such as important compartments such as ammunition compartments and compartmen...
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Application Information
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