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精密多波束测深系统位置修正方法研究 被引量:19
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作者 赵建虎 刘经南 《武汉大学学报(信息科学版)》 EI CSCD 北大核心 2002年第5期473-477,共5页
在声速剖面或声速函数具备的情况下 ,多波束条带式测深系统的波束归位计算通常采用曲线跟踪法进行声线改正 ,虽然保证了归位计算的高精度 ,但过程复杂繁琐。为此 ,提出了一种新的归位计算方法———位置修正法。该方法引进了深度、水平... 在声速剖面或声速函数具备的情况下 ,多波束条带式测深系统的波束归位计算通常采用曲线跟踪法进行声线改正 ,虽然保证了归位计算的高精度 ,但过程复杂繁琐。为此 ,提出了一种新的归位计算方法———位置修正法。该方法引进了深度、水平位移相对误差以及面积差的概念 ,在不失精度的情况下 ,大大简化了归位计算的精度。 展开更多
关键词 多波束条带式测深系统 相对误差 面积差 常梯度 曲线跟踪 位置修正法 海洋测量 深度 水平位移
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Influence of various volute designs on volute overall performance 被引量:8
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作者 Xiaoqing Qiang Jinfang Teng Zhaohui Du 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第6期505-513,共9页
This paper discusses the influence of various volute designs on volute overall performance for a certain centrifu- gal compressor with both vaned and vaneless diffuser. Firstly, based on a free vortex flow pattern and... This paper discusses the influence of various volute designs on volute overall performance for a certain centrifu- gal compressor with both vaned and vaneless diffuser. Firstly, based on a free vortex flow pattern and the assumption of a circumferentially uniform flow at the design condition, a corrected method for volute design is adopted. By means of this method, corresponding to five geometric parameters affecting the volute overall performance, ten volute cases are designed. Secondly, the numerical simulation is employed and the detailed flow field and losses in different volutes with different geometric parameters are analyzed. The numerical investigation reveals that in all of the five geometric parameters, the radial location of the cross-section has the strongest influence on the performance of the volute. The non-uniform volute inlet formed by the upward vaned diffuser outlet flow is another important factor. Finally a relatively better value of D1/D2 is concluded. 展开更多
关键词 Centrifugal compressor CFD Volute design Total pressure loss Static pressure recovery Speed asymmetry coefficient
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