CN102464087B - The multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel - Google Patents

The multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel Download PDF

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Publication number
CN102464087B
CN102464087B CN201010537622.XA CN201010537622A CN102464087B CN 102464087 B CN102464087 B CN 102464087B CN 201010537622 A CN201010537622 A CN 201010537622A CN 102464087 B CN102464087 B CN 102464087B
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China
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test
underwater acoustic
acoustic measurement
test vessel
measurement
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CN102464087A (en
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傅江妍
贺懿丽
李光
黄志伟
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China Ship Development and Design Centre
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China Ship Development and Design Centre
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Abstract

The invention discloses the multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel, including step be: first primarily determine that the spacing between the principal dimensions of underwater acoustic measurement test vessel and two lamellar bodies; Determine preliminary General layout Plan, then improve measured zone design and determine measurement well, instrument connection and the number in subtest hole, size, position; Finally carry out structural design and ship performance calculation, reach to meet design drawing and relevant codes and standards requirement. The present invention is compared with prior art, its advantage and providing the benefit that: solve many large-scale, small-sized by rig for testing and test equipment in the correlation technique difficult point hanging, arrange, install and testing of underwater acoustic measurement test vessel, be effectively increased the overall performance of experiment with measuring ship. This invention contributes to promoting China underwater sound equipment and produces and the capacity of scientific research, is conducive to correlation test that the many types of important underwater sound equips and research work, has very huge military benefit and social benefit.

Description

The multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel
Technical field
The present invention relates to marine technology, particularly belong to be applied to the multiple functional measurement optimization of region design of underwater acoustic measurement ship, provide better environment for underwater sound equipment machine debugging, acoustic performance Test And Checkout.
Background technology
It is limited by test facilities in view of China's existing underwater sound inland lake experimental station and natural conditions are limit, there is problems and deficiency, such as measured zone very little, measure well and Large-scale Hoisting equipment etc. without the big opening meeting large-scale underwater sound equipment test requirements document, cannot meet current and future underwater acoustic technology developmental research and the demand of equipment preparation test; Meanwhile, test site capacity and scarce capacity and the bigger contradiction of underwater sound equipment test mission requirements also become increasingly conspicuous, it has also become complete the bottleneck of underwater sound equipment scientific research, production task. Domestic there is no corresponding method for designing so far.
Summary of the invention
The technical problem to be solved in the present invention is to provide the multiple functional measurement region design method of large-scale underwater acoustic measurement ship, the method is utilized to carry out the region layout design to underwater acoustic measurement ship, consider the size of underwater sound equipment, size and Lifting Capacity thereof, and suitable test cabin area is provided, to meet the requirement of underwater sound equipment machine debugging, acoustic performance test and test.
For solving above-mentioned technical problem, the large-scale underwater acoustic measurement test vessel multifunctional measuring region design method of the present invention, its step is as follows;
1) requirement first tested according to underwater acoustic measurement, primarily determines that the spacing between the principal dimensions of underwater acoustic measurement test vessel and two lamellar bodies;
2) preliminary General layout Plan is worked out: coordinate according to the requirement of each specialty and determine;
3) collectivity Scheme Design refinement is carried out, according to by rig for testing and the test test of equipment, test requirements document and flow process, improving measured zone design:
4) measurement well, instrument connection and the number in subtest hole, size, position are determined according to the size of underwater sound equipment, size;
5) structural design and ship performance calculation are carried out: reach to meet design drawing and relevant codes and standards requirement.
Described step 1) in, requiring to include of underwater acoustic measurement test: hanging by rig for testing and test equipment requirements, test jobs district area requirements, test cabinet area requirements, tester lives relaxing area area requirements.
Described step 2) in, the requirement of each specialty is coordinated and is determined, including each the division in functional measurement region and layout optimization.
The present invention adopts multiple functional measurement region design method, compared with prior art, its advantage and providing the benefit that: solve many correlation technique difficult points hanging, arrange, install and testing by rig for testing and test equipment at underwater acoustic measurement test vessel large-scale, small-sized, under the premise comprehensively reaching indices, it is effectively increased the overall performance of experiment with measuring ship. This invention contributes to promoting China underwater sound equipment and produces and the capacity of scientific research, is conducive to correlation test and research work that the many types of important underwater sound equips, has very huge military benefit and social benefit.
Accompanying drawing explanation
Below with reference to drawings and Examples, the present invention is further illustrated.
Fig. 1 is the outline drawing of the large-scale underwater acoustic measurement test vessel of the present invention.
Fig. 2 is exemplary cross sections.
Fig. 3 is the A direction view of Fig. 2.
Fig. 4 is the B direction view of Fig. 2.
In figure, 1 is lamellar body; 2 is cross structure; 3 is movable hanging assembling platform; 4 is hang platform; 5 is 01 superstructure; 6 is 02 superstructure; 7 is ceiling; 8 is overhead crane; 9 is slewing equipment; 10 is revolution cantilever crane, and 11 is measured zone one, and 12 is measured zone two, and 13 is measured zone three, and 14 is measured zone four, and 15 is measured zone five.
Detailed description of the invention
As shown in Figure 1, the underwater acoustic measurement test vessel multifunctional measuring region design method of the present embodiment, the steps include: the requirement first according to underwater acoustic measurement test, considering and hang by rig for testing and test equipment requirements, test jobs district area requirements, test cabinet area requirements, tester's relaxing area area requirements etc. of living primarily determines that the spacing between the principal dimensions of underwater acoustic measurement test vessel and two lamellar bodies 1; Preliminary Profile Design scheme and General Arrangement Scheme are worked out in division and layout in conjunction with each functional measurement region; Then carry out collectivity Scheme Design refinement, according to by rig for testing and the test test of equipment, test requirements document and flow process, improve measured zone design; Finally determine measurement well, instrument connection and the number in subtest hole, size, position according to the size of underwater sound equipment, size; Finally carrying out structural design and ship performance calculation, reach to meet design drawing and relevant codes and standards requirement, exemplary cross sections is as shown in Figure 2.
As shown in Figures 3 and 4, the multiple functional measurement region of large-scale underwater acoustic measurement test vessel of the present embodiment includes: measured zone 1, and it is 24500 �� 7700 that bow measures well (No. 1 basic matrix hangs hole) opening size; Measured zone 2 12, it is 16500 �� 7700 that stern measures well (No. 2 basic matrixs hang hole) opening size; Both test for large-scale experiment basic matrix (sonar green end equipment). Measured zone 3 13, in center line face, longitudinally also has the subtest hole of nineteen �� 300, two 1000 �� 1000 along platform;Measured zone 4 14, the starboard of test vessel is provided with and hangs platform 4, also has the subtest hole of 24 800 �� 600; Measured zone 5 15, five movable hanging assembling platforms 3 is provided with the subtest hole of ten 1000 �� 1000, measured zone 3 13��measured zone 5 15 altogether, tests for small-sized basic matrix, auxiliary transducer and acoustic pressure standard. Key component has: lamellar body 1, cross structure 2, movable hanging assembling platform 3, hangs platform 4,01 superstructure 5,02 superstructure 6, ceiling 7, overhead crane 8, slewing equipment 9, chain block 10. 01 superstructure 5 can as Indoor measurement operation area with cross structure 2, and hanging platform 4 can as measurement operation area, outdoor, and 02 superstructure 6 can as tester's life and rest area; Overhead crane 8, slewing equipment 9 and revolution cantilever crane 10 may be used in combination, and make safely and effectively to be hung to specified measurement region by rig for testing and test equipment.
First the requirement according to underwater acoustic measurement test, determine the overall length of lamellar body 1, molded breadth and moldeed depth, and the width of cross structure 2 (length is identical with lamellar body 1), the width of cross structure 2 is general relevant with by the full-size of rig for testing and test equipment, it is necessary to accomplish that meeting the maximum safety by rig for testing and test equipment in the cross structure 2 big I of upper shed hangs; Then according to the overall length of lamellar body 1, molded breadth and moldeed depth, and the width of cross structure 2 tentatively drafts General layout Plan, wherein 01 superstructure 5 region must is fulfilled for the area requirements of required test cabinet, and the area that 02 superstructure 6 region provides must is fulfilled for all test personnel's life resting spaces. Then collectivity Scheme Design refinement is carried out, according to by rig for testing and the test test of equipment, test requirements document and flow process, improving measured zone design, measured zone 1, it is 24500 �� 7700 that bow measures well (No. 1 basic matrix hangs hole) opening size; Measured zone 2 12, it is 16500 �� 7700 be located on main deck cross structure 2 that stern measures well (No. 2 basic matrixs hang hole) opening size; On center line face, the subtest hole of nineteen �� 300, two 1000 �� 1000 is longitudinally opened in setting area three namely along platform; The starboard of test vessel is provided with region four and hangs platform 4, and has the subtest hole of 24 800 �� 600; In order to improve the utilization measuring functional area further, measure well at bow measurement well and stern and measured zone 5 15 that is five movable hanging assembling platform 3 is set, movable hanging assembling platform 3 can move between two measurement wells, and provide platform for by rig for testing and test equipment assembly and adjustment, it is further provided with the subtest hole of ten 1000 �� 1000.
Large-scale, small-sized hung problem by rig for testing and test equipment at underwater acoustic measurement test vessel to solve, corresponding lifting appliance (overhead crane 8 also need to be set on each functional measurement region; Slewing equipment 9; Revolution cantilever crane 10), with the safety of guarantee test and simplicity.

Claims (3)

1. the multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel, it is characterised in that the step of its method is as follows:
1) requirement first tested according to underwater acoustic measurement, primarily determines that the spacing between the principal dimensions of underwater acoustic measurement test vessel and two lamellar bodies;
2) preliminary General layout Plan is worked out: coordinate according to the requirement of each specialty and determine;
3) carry out General layout Plan refinement, according to by rig for testing and the test test of equipment, test requirements document and flow process, improve measured zone design;
4) measurement well, instrument connection and the number in subtest hole, size, position are determined according to the size of underwater sound equipment, size;
5) structural design and ship performance calculation are carried out: reach to meet design drawing and relevant codes and standards requirement.
2. the multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel according to claim 1, it is characterized in that, step 1) in, requiring to include of underwater acoustic measurement test: hanging by rig for testing and test equipment requirements, test jobs district area requirements, test cabinet area requirements, tester lives relaxing area area requirements.
3. the multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel according to claim 1 and 2, it is characterised in that step 2) in, the requirement of each specialty is coordinated and is determined, including each the division in functional measurement region and layout optimization.
CN201010537622.XA 2010-11-09 2010-11-09 The multiple functional measurement region design method of large-scale underwater acoustic measurement test vessel Active CN102464087B (en)

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CN110077523A (en) * 2019-02-13 2019-08-02 中国舰船研究设计中心 A kind of ship inclination test data instrument for measuring and calculating

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6012406A (en) * 1998-06-08 2000-01-11 Western Atlas International, Inc. Portable seismic vessel
CN1800810A (en) * 2006-01-18 2006-07-12 上海浩顺科技有限公司 Remotely-controlled multilayer water sampler
CN200993649Y (en) * 2006-12-30 2007-12-19 中国舰船研究设计中心 Sound insulation performance measuring device
CN101723056A (en) * 2009-12-18 2010-06-09 武昌船舶重工有限责任公司 Ship multi-beam acoustic equipment mounting process

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2730870B2 (en) * 1994-12-26 1998-03-25 ジェイ・アール・シー特機株式会社 Sound conversion efficiency measuring method and measuring device
JPH0958579A (en) * 1995-08-17 1997-03-04 Mitsubishi Heavy Ind Ltd Oceanographic research ship
JP2001116829A (en) * 1999-10-20 2001-04-27 Ishikawajima Harima Heavy Ind Co Ltd Method of holding position and azimuth for underwater acoustic tester

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6012406A (en) * 1998-06-08 2000-01-11 Western Atlas International, Inc. Portable seismic vessel
CN1800810A (en) * 2006-01-18 2006-07-12 上海浩顺科技有限公司 Remotely-controlled multilayer water sampler
CN200993649Y (en) * 2006-12-30 2007-12-19 中国舰船研究设计中心 Sound insulation performance measuring device
CN101723056A (en) * 2009-12-18 2010-06-09 武昌船舶重工有限责任公司 Ship multi-beam acoustic equipment mounting process

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