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18篇 您的检索式:作者名="Anyoji"
    题名 作者 年代 出处 被引量
1Improvement ofsaline water use under drip irrigation system显示文摘Dehghanisanij H Agassi M Anyoji H 2006Agricultural Water Management2006,85,3:1
2Improvement of saline water use under drip irrigation system显示文摘Dehghanisanij H Agassi M Anyoji H 2006Agricultural Water Management2006,85,:1
3HVI tests on CFRP laminates at low temperature 显示文摘Numata D Ohtani K Anyoji K 2008International Journal of Impact Engineering2008,35,:1
4De novo peptide sequencing using ion peak intensity and amino acid cleavage intensity ratio 显示文摘KANAZAWA M ANYOJI H OGIWARA A 2007Bioinformatics2007,23,9:1
5Normal distribution water application fordrip irrigation schedules显示文摘Anyoji H Wu I P 1994Transactions of the ASAE1994,37,1:1
6Statistical approach for drip lateral design显示文摘Anyoji H Wu I P 1987Transactions of the ASAE1987,30,1:1
7Poten- tial of low cost close-range photogrammetry system in soil microtopography quantification 显示文摘Abd Elbasit M A M Anyoji H Yasuda H 2009Hydrological Proces- ses2009,23,10:1
8Improvement of saline water use under drip irrigation system 显示文摘Dehghanisanij H AgassiM Anyoji H 2006Agricultural Water Management2006,85,:1
9Improvement of saline water use under drip irrigation system显示文摘Dehghanisanij H Agassi M Anyoji H 0,,03:1
10HVI tests on CFRP laminates at low temperature显示文摘NUMATAD OHTANI K ANYOJI M 2008International Journal of Impact Engineering2008,35,12:1
11Fixed and variable light extinction coefficients for estimating plant transpiration and soil evaporation under irrigated maize显示文摘Adel Z T Anyoji H Yasuda H 2006Agricultural water management2006,84,:1
12Improvement of saline water use under drip irrigation system显示文摘Dehghanisanig H Agassi M Anyoji H 2006Ag- riculture Water Management2006,85,3:1
13Improvement of saline water use under drip irrigation显示文摘Dehghanisanig H Agassi M Anyoji H 2006Agriculture Water Management2006,5,:1
14Improvement of saline water use under drip irrigation system 显示文摘Dehghanisanij H Agassi M Anyoji H 2006Agricultural Water Management2006,85,:1
15Improvement of saline water use under drip irrigation 显示文摘Dehghanisanij H Agassi M Anyoji H 2006Agricultural Wa- ter Management2006,85,:1
16Improvement of saline water use under drip irrigation system 显示文摘Dehghanisanij H Agassi M Anyoji H 2006Agricultural Water Management2006,85,3:1
17Design of Electrohydrodynamic Devices with Consideration of Electrostatic Energy显示文摘The importance of actuators that can be integrated with flexible robot structures and mechanisms has increased in recent years with the advance of soft robotics.In particular,electrohydrodynamic(EHD)actuators,which have expandable integrability to adapt to the flexible motion of soft robots,have received much attention in the field of soft robotics.Studies have deepened the understanding of steady states of EHD phenomena but nonsteady states are not well understood.We herein observe the development process of fluid in a microchannel adopting a Schlieren technique with the aid of a high-speed camera.In addition,we analyze the behavior of fluid flow in a microchannel that is designed to have pairs of parallel plate electrodes adopting a computational fluid dynamics technique.Results indicate the importance of considering flow generated by electrostatic energy,which tends to be ignored in constructing and evaluating EHD devices,and by the body force generated by the ion-drag force.By considering these effects,we estimate the development process of EHD flow and confirm the importance of considering the generation of vortices and their interactions inside the microchannel during the development of EHD devices.Tasuku Sato Shinya Sakuma Masato Hijikuro Shingo Maeda Masayuki Anyoji Yoko Yamanishi 2021Cyborg and Bionic Systems2021,,1:0
18Effect of Boundary Layer Trip on Reduction of Jet Noise in Over-Expanded Nozzle Flow显示文摘A flow resonance accompanied by the emission of acoustic tones occurs in an over-expanded convergent-divergent(C-D) nozzle when operated at comparatively low pressure ratios. This phenomenon is distinguished from conventional screech tones and is referred to as 'transonic tones'. In contrast to screech tones, the peak resonant frequency for transonic tones increases with pressure ratio; the peak sound pressure level exceeds 110 d B. In this study, we investigated the basic characteristics of transonic resonance and tones using a circular C-D nozzle in an anechoic room. The effects of the boundary layer trip were also evaluated using a tripping wire for the suppressing transonic resonance and tones. The results of acoustic measurements show that several predominant peaks correspond to transonic tones. However, the boundary layer trip inside the nozzle effectively eliminated these tones and suppressed the unsteadiness of the flow inside the nozzle.Masayuki ANYOJI Issei TABARU 2017Journal of Thermal Science2017,26,5:0
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