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1.
为厘清海底沉积层声学特性信息的水声环境保障需求,构建浅海两层海底环境参数模型,并参考Hamilton海底底质9种分类设置沉积层声速、密度、衰减系数及厚度的参考值及计算采样区间,利用Kraken简振波模型,采用控制变量的方法,研究了浅海沉积层声学特性参数对声传播损失的影响;开展了建模理论推导及数值技术分析,研究了海底沉积层声学特性参数在模型计算过程中调用过程,并从建模计算的角度对仿真计算的结果进行解释,对海底沉积层声学特性调查装备发展及调查重点参数具有一定的参考价值。  相似文献   

2.
利用有限元声场计算软件 COMSOL,仿真实验了 Lamb 波在水下弹性板直角板端反射并发生模态转换时的散射声场,通过对散射声场的分析,结合能量守恒定律,忽略杂散波(如棱角波)近似计算了 Lamb 波在水下弹性板直角板端的模态转换效率,并且与理论值进行了比较。  相似文献   

3.
为了研究海洋锋对声传播的影响,借鉴黑潮引起的台湾海峡南部海洋锋的历史水文观测资料,提出并建立了适合描述台湾海峡南部海洋锋的数学模型及其声速表达式。通过与实测资料对比,建立的海洋锋模型能准确反映客观实际情况,表现出较好的效果。同时,在借鉴了前人研究经验的基础上,采用Argo实测资料,建立了台湾海峡南部海洋锋的数学模型及其声速表达式,利用MMPE水下声场模型进行了海洋声场数值模拟试验,对目标海区典型的声场结构进行了声线路径模拟和传播损失的计算仿真,并将实验结果通过与前人进行的实际大洋声场实验的结果比较,证实了本文的模拟结果是准确可信的,提高了水声数值模拟试验的准确有效性。  相似文献   

4.
浅海均匀层远程混响的垂直相干性   总被引:1,自引:0,他引:1  
周纪浔 《海洋学报》1979,1(2):212-218
混响是主动声纳在浅海环境中的一种干扰,有关其空间相关特性,Urick和Lund发表了两篇实验性报告[7].本文根据浅海平均声场角度谱分析法[3],从理论上计算了浅海均匀层远程混响垂直相关特性与界面反射、散射等环境参数之间的关系,及其随距离、水听器间隔的变化,供声纳设计或在浅海环境中研究低频、小掠角的散射特性时参考.  相似文献   

5.
中层冷水是出现在我国东海西北部和南黄海西部海区的一种特殊海洋现象,其分布规律及形成机制已有较清晰的认识,但这种现象引起的水声传播效应却尚不明确。应用KRAKEN简正波模型对1996-05一处实测中层冷水环境下的声场进行计算与分析,并与均匀声速环境下的声场进行比较,发现声波在冷水层中传播时在较强的陷获作用下能够形成波导型声场,使传播损失相对于常规环境明显减小,对于1kHz的声波2种声场的传播损失差异可达15~20dB。与深海波导不同的是,中层冷水环境引起的浅海波导是特定区域和季节条件下出现的一类特殊现象,其声场特性明显受到海面和海底制约,波导效应引起的声场能量变化与温跃层和逆温层的厚度以及梯度大小有关。  相似文献   

6.
复杂海洋环境导致水声信道呈现随机时-空-频变特性,特别是浅海信道受界面、人为干扰的严重影响,对水声通信造成极大困难。近年来人工智能领域机器学习等技术飞速发展,为提高复杂环境下水声通信可靠性提供了新思路。但是,由于水声信道复杂多变、缺乏普适模型,从机器学习角度而言水声通信数据样本严重不足,传统单次、短时水声通信实验采集的数据无法充分表征水声信道空间、时间特性。通过长期部署水声通信及信号采集设备,可望在一定程度上丰富通信数据,为典型海域下人工智能水声通信研究提供数据支持。 设计并实现了一种浅海水声通信浮标,搭载水声通信系统可实现长时浅海水声通信数据采集、性能评估,同时依托北斗系统具备远程状态显示、功能控制功能。厦门港海域实验表明,依托浮标采集的长时水声通信数据可开展水声通信性能评估、信道特性与通信性能关联度分析,为下一步工作打下了良好的基础。  相似文献   

7.
水声数字通信系统的仿真   总被引:1,自引:0,他引:1  
本文介绍了利用计算机仿真水声数字通信系统。介绍了数字通信系统的组成部分之后,重点介绍水声信道的仿真以及调制方法的选取,通过计算机的仿真提高了水声通信系统设计的有效性,对实际出海实验很有帮助。  相似文献   

8.
本文讨论了在给定海底界面反射参数时,浅海声场简正波本征函数,实本征值,归一因子及筒正波指数衰减因子的数值计算方法,对于高声速海底,给出了由P、Q两个参数描写的小掠射角反射特征的简正波声场数值程序,在程序中采用了“两步分选及黄金分割法”的技巧,最后,文中给出了计算实例以及与实验结果的初步比较。  相似文献   

9.
研究了用于维护和检修中国渤海海域输油管道的浅海管道检测艇的操纵性和运动仿真,提出了浅海海底管道检测艇的水动力学方程。为了更好地了解在配置上与一般潜器不同的浅海海底管线检测艇的动力学性能,通过水动力系数分析,研究了浅海海底管线检测艇的操纵性。最后根据运动方程建立了仿真系统,并通过仿真试验结果验证了仿真试验平台的可行性和可靠性。  相似文献   

10.
针对混响环境非自由声场中声源测量的问题,本文以消声水池和混响水槽为实验环境,以换能器辐射的声场为研究对象,以水听器阵列为测量前端,进行了混响环境非自由声场中声源对象的测量、分析和重构的实验研究。通过单层水听器阵列对非自由声场进行声压分布测量,并对测量结果作声波分离处理,将分离前后的声压分布和在消声水池中测量的声压分布进行比较,给出了声源频率为5 000 Hz和7 000 Hz时,声场重构的误差分析结果。结果表明,基于单层水听器阵列声压测量的声波分离方法,能够较精确地对混响环境中的声场进行重构。  相似文献   

11.
To prevent grounding of ships and collisions between ships in shallow coastal waters, an underwater data collection and communication network (ACME) using underwater sounds to encode and transmit data is currently under development. Marine mammals might be affected by ACME sounds since they may use sound of a similar frequency (around 12 kHz) for communication, orientation, and prey location. If marine mammals tend to avoid the vicinity of the acoustic transmitters, they may be kept away from ecologically important areas by ACME sounds. One marine mammal species that may be affected in the North Sea is the harbour seal (Phoca vitulina). No information is available on the effects of ACME-like sounds on harbour seals, so this study was carried out as part of an environmental impact assessment program. Nine captive harbour seals were subjected to four sound types, three of which may be used in the underwater acoustic data communication network. The effect of each sound was judged by comparing the animals' location in a pool during test periods to that during baseline periods, during which no sound was produced. Each of the four sounds could be made into a deterrent by increasing its amplitude. The seals reacted by swimming away from the sound source. The sound pressure level (SPL) at the acoustic discomfort threshold was established for each of the four sounds. The acoustic discomfort threshold is defined as the boundary between the areas that the animals generally occupied during the transmission of the sounds and the areas that they generally did not enter during transmission. The SPLs at the acoustic discomfort thresholds were similar for each of the sounds (107 dB re 1 microPa). Based on this discomfort threshold SPL, discomfort zones at sea for several source levels (130-180 dB re 1 microPa) of the sounds were calculated, using a guideline sound propagation model for shallow water. The discomfort zone is defined as the area around a sound source that harbour seals are expected to avoid. The definition of the discomfort zone is based on behavioural discomfort, and does not necessarily coincide with the physical discomfort zone. Based on these results, source levels can be selected that have an acceptable effect on harbour seals in particular areas. The discomfort zone of a communication sound depends on the sound, the source level, and the propagation characteristics of the area in which the sound system is operational. The source level of the communication system should be adapted to each area (taking into account the width of a sea arm, the local sound propagation, and the importance of an area to the affected species). The discomfort zone should not coincide with ecologically important areas (for instance resting, breeding, suckling, and feeding areas), or routes between these areas.  相似文献   

12.
为规范水声环境资料质量检核评估工作,开展了水声环境资料质量检核评估标准规范研究,参照水声环境数据后期处理一般程序,梳理分析了原始数据、处理算法、模型运用及处理流程等数据质量误差来源;结合标准化水声环境资料处理程序及成果形式,研究了数据及数据处理全流程检核评估方法,给出数据文件、处理代码及配套文档资料应包含的内容及检查方法;研判了数据质量检核评估要求,给出三级验收制度、检核评估形式及提交的资料清单要求,对开展水声环境资料验收汇交规程及相关标准规范的制定、修订工作,具有较强的参考价值。  相似文献   

13.
重物在落水和着底过程中都会产生瞬态声信号,这类信号可被运用于浅水区域水下目标定位。 针对浅水区域目标定位的问题,提出了一种基于小型立体五元基阵的瞬态声源快速被动定位算法。 在分析重物落水信号特征的基础上,选取合适的广义互相关加权函数求得传声器之间的声程差,运用快速最小二乘搜索算法进行声源定位。 结果表明:运用 5 传声器阵列可以同时兼顾定位精度和鲁棒性,且满足实时性要求,该方法可运用于浅水区域瞬态声源定位等领域。  相似文献   

14.
浅海沉积声学原位探测系统研制及深海功能拓展   总被引:1,自引:0,他引:1  
海底沉积物的声速和声衰减系数等声学特性参数是影响水下声场空间结构、水声通讯、水声设备使用性能、海底目标探测的重要因素。介绍了最新研制的浅海海底沉积声学原位测量系统的工作原理、结构组成和性能特点,并对系统在黄海和南海海底沉积物声学特性调查中的应用情况进行了总结。最后,对系统在满足深海应用方面的功能拓展进行了讨论和展望。  相似文献   

15.
Acoustics have the promise of being able to have a significant impact on our understanding of coastal sedimentary processes, which play such an important role in the dynamics of the coastal and shallow water environment. Due to this, the application of acoustics for remotely measuring suspended sediments, over ranges from metres to tens of metres, is gaining acceptance within the sediment community. This recognition of the use of acoustics to the area of sediment processes is based on advances which have been made decade in the understanding of the interaction of sound with marine suspended sediments, and also due to ongoing field observations which have shown the unique ability of the acoustic technique to measure suspended sediment profiles. In the present work acoustic measurements of suspended sediments have been conducted at 1, 2.5, 3, and 5 MHz in a number of different shallow water environments. The interpretation of the acoustic data to obtain suspended sediment concentration is presented, and some of the difficulties when inverting the acoustic information to obtain the suspended load are considered. Some discussion is also given to future uses of acoustics for studying sediment processes, and how one may utilize the application of underwater sound to manage our coastal environment more effectively  相似文献   

16.
海洋声场环境研究需要对不同深度的海洋声学环境要素进行同步测量,而感应耦合数据传输技术可实现多个单通道水声测量仪之间的同步采集和记录。文中阐述了感应耦合数据传输技术的特点及其在海洋声学环境同步测量中的应用,介绍了一种利用感应耦合数据传输技术实现数据同步测量的声学浮标系统,详细描述了系统的方案设计、结构组成及感应耦合部分的关键技术。实验水池测试表明,该系统工作稳定可靠,数据同步性好,具有良好的应用前景。  相似文献   

17.
A large increase in the reliability of shipboard or stationary underwater acoustic telemetry systems is achievable by using spatially distributed receivers with aperture sizes from 0.35 to 20 m. Output from each receiver is assigned a quality measure based on the estimated error rate, and the data, weighted by the quality measure, are combined and decoded. The quality measure is derived from a Viterbi error-correction decoder operating on each receiver and is shown to perform reliability in a variety of non-Gaussian noise and jamming environments and reduce to the traditional optimal diversity system in a Gaussian environment. The dynamics of the quality estimator allow operation in the presence of high-power impulsive interference by exploiting the signal and noise differential travel times to individual sensors. The spatial coherence structure of the shallow water acoustic channel shows relatively low signal coherence at separations as short as 0.35 m. Increasing receiver spacing beyond 5 m offers additional benefits in the presence of impulsive noise and larger-scale inhomogeneities in the acoustic field. A number of data transmission experiments were carried out to demonstrate system performance in realistic underwater environments  相似文献   

18.
To prevent grounding of ships and collisions between ships in shallow coastal waters, an underwater data collection and communication network is currently under development: Acoustic Communication network for Monitoring of underwater Environment in coastal areas (ACME). Marine mammals might be affected by ACME sounds since they use sounds of similar frequencies (around 12 kHz) for communication, orientation, and prey location. If marine mammals tend to avoid the vicinity of the transmitters, they may be kept away from ecologically important areas by ACME sounds. One marine mammal species that may be affected in the North Sea is the harbour porpoise. Therefore, as part of an environmental impact assessment program, two captive harbour porpoises were subjected to four sounds, three of which may be used in the underwater acoustic data communication network. The effect of each sound was judged by comparing the animals' positions and respiration rates during a test period with those during a baseline period. Each of the four sounds could be made a deterrent by increasing the amplitude of the sound. The porpoises reacted by swimming away from the sounds and by slightly, but significantly, increasing their respiration rate. From the sound pressure level distribution in the pen, and the distribution of the animals during test sessions, discomfort sound level thresholds were determined for each sound. In combination with information on sound propagation in the areas where the communication system may be deployed, the extent of the 'discomfort zone' can be estimated for several source levels (SLs). The discomfort zone is defined as the area around a sound source that harbour porpoises are expected to avoid. Based on these results, SLs can be selected that have an acceptable effect on harbour porpoises in particular areas. The discomfort zone of a communication sound depends on the selected sound, the selected SL, and the propagation characteristics of the area in which the sound system is operational. In shallow, winding coastal water courses, with sandbanks, etc., the type of habitat in which the ACME sounds will be produced, propagation loss cannot be accurately estimated by using a simple propagation model, but should be measured on site. The SL of the communication system should be adapted to each area (taking into account bounding conditions created by narrow channels, sound propagation variability due to environmental factors, and the importance of an area to the affected species). The discomfort zone should not prevent harbour porpoises from spending sufficient time in ecologically important areas (for instance feeding areas), or routes towards these areas.  相似文献   

19.
信道自身的复杂性和现场级试验的高投入、高风险限制了水声通信技术的发展。针对高效率水声通信技术研究的需求,提出1种水声通信半物理仿真平台水声通信半物理仿真平台(A Hardware-in-Loop Simulation Platform for Underwater Acoustic Communication)。水声通信半物理仿真平台以可配置水声Modem为核心,包括现场测试采集系统、算法仿真评估系统、算法实现装载系统、水声波形存储播放系统。基于建立的水声通信半物理仿真平台,进行水声直接序列扩频通信系统的半物理仿真研究,结果表明水声通信半物理仿真平台可有效提高水声通信技术的研究效率。  相似文献   

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