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Noriyuki Sasaki Mitsunori Murakami Kazuo Nozawa Shunji Soejima Akira Shiraki Takeshi Aono Tomeo Fujimoto Isao Funeno Norio Ishii Hiroshi Onogi 《Journal of Marine Science and Technology》1998,3(1):3-21
A new type of contrarotating propeller (CRP) system has been developed through the cooperative research work of five shipbuilding companies in Japan (Hitachi Zosen Corporation; Kawasaki Heavy Industries, Ltd.; Mitsui Engineering and Shipbuilding Co., Ltd.; NKK Corporation; and Sumitomo Heavy Industries, Ltd.). This paper describes a design system for an optimum CRP, which is one of the numerous outcomes of this work. The optimum design system is composed of three theoretical programs: (1) the design program of the optimum CRP; (2) the steady lifting surface program of the CRP; (3) the unsteady lifting surface program of the CRP. These theoretical programs will be discussed in the first part of the paper, and the design system supported by these theoretical programs will then be verified by comparing calculated and experimental results.Translation of an article that appeared in the Journal of The Society of Naval Architects of Japan, vol. 180 (1996): The original article won the SNAJ prize, which is awarded annually to the best papers selected from the SNAJ Journal, JMST, or other quality journals in the field of naval architecture and ocean engineering. 相似文献
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ABSTRACTThe main purpose of this study is to examine how market participants take risks, in other words, what their risk attitude/preference is, and how their risk attitude could be related to the shipping freight and other markets. To address them, we calibrated the risk attitude of participants in shipping freight markets from 2007 to 2013, and provided an example of the application of risk attitude. For market participants, risk attitude/preference has an important role in understanding shipping freight markets and managing risks under uncertainty. However, risk attitude is not directly observable. To achieve this, we applied a framework that consists of structural model and calibration with market data. We interpreted risk attitude and confirmed that a structural break occurred around 2008 for the calibrated risk attitude parameter. The average risk attitude of market participants tended to be more risk-averse after 2010. We conducted an additional analysis to provide an example of the application of calibrated risk attitude, using structural equation modeling to calculate a latent variable that reflected other commodity markets. We compared the risk attitude parameter and the latent variable, and clarified the relationship between the risk attitude parameter and commodity markets. 相似文献
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Thet(l4;18)chromosomaltranslocationsarerecognizedasacytogeneticabnormalityinB-celllymphomas,especiallyinfollicularlymphomas',>.Aputativeoncogeneonchromosome18bandq2ltermedB-cellleukemia-lymphoma-2(bcl-2)isjux-taposedtosegmentsoftheimmunog1obulin(Ig)heavy-chaingenelocatedonchromosome14bandq32.Bcl-2rearrangementsarecommonlyfoundinfollicularlymphomasintheAmericant2i.Howev-er,theconflictingresultsregardtoincidenceofthetranslocationinJapaneseB-ce1llymphomashasyieldedusingcytogeneticana1ysisandSo… 相似文献
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Akihisa Konno Kazuaki Wakabayashi Hajime Yamaguchi Masatsugu Maeda Norio Ishii Shunji Soejima Koyu Kimura 《Journal of Marine Science and Technology》2002,6(4):181-192
The bursting phenomenon of tip vortex cavitation of a propeller sometimes causes severe high-frequency vibration, but its
mechanism has not yet been elucidated. In this study, we carried out model experiments by changing the propellers, wake distributions,
thrust coefficients, and cavitation numbers parametrically, examined the bursting phenomenon with a high-speed video camera,
and measured the pressure fluctuations caused by the phenomenon. We also measured flow distribution around the tip vortex.
As a result, we found that in the bursting phenomenon, large pressure fluctuations occurred twice, and that they strongly
depended on the wake distribution. Two means were suggested to suppress the bursting phenomenon, other than changing the wake
distribution: stabilizing tip vortex cavitation or reducing the cavity volume.
Numerical fluid simulations around a propeller in noncavitating, unsteady conditions were also conducted, and the strength
of the tip vortex along the circumference and its derivative were examined. As a result, the phenomena were parameterized
by the time derivative of the strength of the tip vortex, and if it was higher than a threshold value, the tip vortex cavitation
burst. Therefore, it is possible to predict the occurrence of the bursting phenomenon by numerical analysis.
Received: November 6, 2001 / Accepted: January 24, 2002 相似文献
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Yoshihisa Takekoshi Takafumi Kawamura Hajime Yamaguchi Masatsugu Maeda Norio Ishii Koyu Kimura Tadashi Taketani Akihiko Fujii 《Journal of Marine Science and Technology》2005,10(2):70-81
A new method for designing propeller blade sections is presented. A vortex lattice method is used to evaluate the performance and the time-dependent pressure distribution on the blade surface in a non-uniform flow, while efficient optimization algorithms are used to modify the blade sections. Two different designs were carried out in this study. The first was a design to realize a target pressure distribution in a rotating three-dimensional flow. A two-dimensional wing theory was used to obtain the target pressure distribution. The predicted increase in efficiency and the reduction in the cavity volume were confirmed by model experiments. The second was a design to maximize the propeller efficiency. By this method, the propeller efficiency was improved by 1.2% under the constrains of constant thrust and a prescribed margin for face cavitation. 相似文献
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