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44篇 您的检索式:作者名="Rowshanzamir"
    题名 作者 年代 出处 被引量
1捏积疗法的形成与发展显示文摘捏积疗法起源于晋朝,在其后1 800年的时间里,手法从拈、夹、推、摩到如今的捏积七法;治疗从卒腹痛到殗殜、夜惊、感寒,再到儿科、呼吸、消化、妇科、骨科、保健中的广泛应用;操作方向从下向上,发展到从上向下及往返操作;从家族手法到进入全国及行业规划教材;从一个流派应用到医院聘请、再到被儿科多个流派吸收接纳;从一个手法到一种疗法。捏积疗法是当今儿科推拿领域里的重要手法,也是重要的流派。Ezzat Rowshanzamir 沈熠 于天源 吕桃桃 邵帅 罗宇婷 莫岩君 张羽墨 2019中华中医药杂志2019,34,6:6
2Axial response and material efficiency of tapered helical piles显示文摘Different techniques have been proposed to increase the bearing capacity of open-ended piles.Welding helices to the shaft and tapering the pile shaft could be used simultaneously to enhance the static and dynamic behaviors of these piles.This paper subjects the bearing capacity,stiffness,frictional behavior,and material efficiency of the tapered helical piles to scrutiny.Tapered helical piles are introduced herein as an alternative option to improve the material efficiency of hollow piles.Based on the Taguchi method,a series of experiments was designed and conducted.The axial responses of tapered helical piles are also investigated using finite element analyses.The results derived from loadedisplacement curves and strain gages are used to characterize the axial compression responses of tapered helical piles.The effects of tapered angle,helices diameter and helices distance are examined using dimensionless parameters,and the degree of contribution of these factors is calculated on each of the enumerated variables individually.Experimental results show that the shaft friction resistance of tapered helical piles increases continuously with the pile head settlement.Furthermore,the effect of tapered wall on the shaft friction resistance is more tangible at low stress levels.The results showed that the relative material efficiency factor of the optimum pile could be 2.5 times that of unoptimized pile with a similar quantity of material.Hamid Mortazavi Bak Amir M.Halabian Hamid Hashemolhosseini Mohammadali Rowshanzamir 2021Journal of Rock Mechanics and Geotechnical Engineering2021,13,1:3
3Review of the proton exchange membranes for for fuel cell appli- cations 显示文摘Peighambardoust S J Rowshanzamir S Amjadi M International Jouranl of Hydrogen Energy0,35,:1
4Review of the proton exchange membranes for fuel cell applications显示文摘Peighambardoust S J Rowshanzamir S Amjadi M 0,,17:1
5Effects of Operating Parameters on Performance of a Proton Exchange Membrane Fuel Cell显示文摘Amirinejad M Rowshanzamir S Eikani M H 0,,02:1
6Effects of Operating Parameters on Performance of a Proton Exchange Membrane Fuel Cell显示文摘Mehdi Amirinejad Soosan Rowshanzamir Mohammad H Eikani 2006Journal of Power Sources In Press Corrected Proof2006,,:1
7Experimental evaluation of bearing capacity of skirted footings 显示文摘GOLMOGHANI-EBRAHIMI S ROWSHANZAMIR M A 2013Civil Engineering and Architecture2013,1,4:1
8Review of the proton exchange membranes for fuel cell applications显示文摘S.J. Peighambardoust S. Rowshanzamir M. Amjadi 2010International Journal of Hydrogen Energy2010,,17:1
9Investigation of physical properties and cell performance of Nafion/TiO 2 nanocomposite membranes for high temperature PEM fuel cells显示文摘M. Amjadi S. Rowshanzamir S.J. Peighambardoust M.G. Hosseini M.H. Eikani 2010International Journal of Hydrogen Energy2010,,17:1
10Non-precious metal nanoparticles sup- ported on nitrogen-doped graphene as a promising cata- lyst for oxygen reduction reaction: Synthesis, characteriza- tion and electrocatalytic performance 显示文摘GHANBARLOU H ROWSHANZAMIR S KAZEMI- NASAB B 2015J Power Source2015,273,:1
11Review of the proton exchange membranes for fuel cell applications 显示文摘PeighambardoustSJ RowshanzamirS AmjadiM 2010Inter- national Journal of Hydrogen Energy2010,35,:1
12Autothermal reforming of methane to synthesis gas: Modeling and simulation显示文摘M. Zahedi nezhad S. Rowshanzamir M.H. Eikani 2008International Journal of Hydrogen Energy2008,,3:1
13Effects of operating parameters on performance of a pro- ton exchange membrane fuel cell 显示文摘AMIRINEJAD M ROWSHANZAMIR S EIKANI M H 2006Power Sources2006,161,2:1
14Review of the proton exchange membrane fuel cell applications显示文摘Peighambardoust S Rowshanzamir S Amjadi M 2010Int J Hydrogen Energy2010,35,:1
15CDF simulation of PEM fuel cell performance: Effect of straight and serpentine flow fields 显示文摘Hashemi F Rowshanzamir S Rezakazemi M 2012Mathematical and Computer Modeling2012,55,:1
16Autothermal reforming of methane to synthesis gas: Modeling and simulation显示文摘M. Zahedi nezhad S. Rowshanzamir M.H. Eikani 2008International Journal of Hydrogen Energy2008,,3:1
17Review of the proton exchange membranes for fuel cell applications 显示文摘PEIGHAMBARDOUST S J ROWSHANZAMIR S AM- JADI M 2010Journal of Hydrogen Energy2010,35,17:1
18Hydrothermal synthesis of nano-size zirconia using commercial zirconia powder: Process optimization through response surface methodology显示文摘ESMAEILIFAR A ROWSHANZAMIR S BEHBAHANI A 2014Iranian Journal of Hydrogen & Fuel Cell2014,1,3:1
19Autothermal reforming of methane to synthesis gas: Modeling and simulation显示文摘Zahedi Nezhad M Rowshanzamir S Eikani M H 2009lnternational Journal of Hydrogen Energy2009,34,3:1
20Review of the proton exchange membranes for fuel cell applications显示文摘S.J. Peighambardoust S. Rowshanzamir M. Amjadi 2010International Journal of Hydrogen Energy2010,,17:1
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