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Online since: September 2011
Authors: Chun Ying Long, Hui Zhang
From the existing material and see, at present domestic for highway reconstruction ecological system, soil moisture which is limited, but in the red soil region and throughout the country, to many other different ecological system of the dynamic monitoring soil moisture have a comprehensive and in-depth.The dynamic changes of soil moisture the focus is the influence of factor research, among them, the typical have : Guo Yan among 91-93 years used the neutron instrument to positioning monitoring in subtropical area LuoDe with compartmentalized red soil and the soil moisture monitoring of dynamic positioning under the condition of different plant ,and on the base of which have analysis of the dynamic characteristics of soil moisture in anniversary.
This study is aim to analyze more highway vegetation reconstruction in dynamic and soil moisture, dynamic change, This study aims to analysis the dynamic change of the soil moisture in highway revegetation zone in one year and one day, reveals the ecological process between restoration and reconstruction of expressway ecological.And provide the theory basis for the water management science in the greening engineering maintenance ,since the time is limit, this paper only analyzed the results measured in spring ,the anniversary dynamic change regulation of the soil moisture still needs to be studied further.
Acknowledgements This work was financially supported by Department of Education Jiangxi Province Youth Science Foundation (GJJ10077).
Journal of soil.
The red soil region of hubei compartmentalized dry land soil moisture variation law of nature and the Science, the hunan agriculture Vol. 5 (1995),P. 31-33.
This study is aim to analyze more highway vegetation reconstruction in dynamic and soil moisture, dynamic change, This study aims to analysis the dynamic change of the soil moisture in highway revegetation zone in one year and one day, reveals the ecological process between restoration and reconstruction of expressway ecological.And provide the theory basis for the water management science in the greening engineering maintenance ,since the time is limit, this paper only analyzed the results measured in spring ,the anniversary dynamic change regulation of the soil moisture still needs to be studied further.
Acknowledgements This work was financially supported by Department of Education Jiangxi Province Youth Science Foundation (GJJ10077).
Journal of soil.
The red soil region of hubei compartmentalized dry land soil moisture variation law of nature and the Science, the hunan agriculture Vol. 5 (1995),P. 31-33.
Online since: October 2013
Authors: Zheng Liu, Xue Han
Numerical Simulation on the Form of Reinforcement of Reinforced Concrete Beam with Openings
Xue Han1,a and Zheng Liu1,b
1Faculty of Civil and Architectural Engineering, Kunming University of Science and Technology Kunming, Yunnan, 650500, China
a442046768@qq.com, bkmliuzheng@yahoo.com.cn
Keywords: beam with openings, damaged plasticity model, form of reinforcement, stress performance
Abstract.
The parameters of concrete material needed to input in the damage plasticity model for concrete can be obtained by the uniaxial tension stress-strain curve and the uniaxial compression stress-strain curve of concrete which is selected from the appendix C in the Code for Design of Concrete Structures. [3]The relationship between stress and strain can be expressed as Eq.1 and Eq.2
Journal of Hunan City University, Natural Science, 2010, 1 [2] Jianjing Jiang, Xinzheng Lu, Lieping Ye: Finite Element Analysis of Concrete Structures.
Tsinghua University Press, 2005 [3] GB50010-2010: Code for Design of Concrete Structures [4] Jinfeng Cao, Yiping Shi: Finite Element Analysis of the ABAQUS FAQ, China Machine Press, 2009 [5] Dongbin Li: Method of Strengthening Reinforced Concrete Beam with Opening in Japan, Building Science, 1991, 04
The parameters of concrete material needed to input in the damage plasticity model for concrete can be obtained by the uniaxial tension stress-strain curve and the uniaxial compression stress-strain curve of concrete which is selected from the appendix C in the Code for Design of Concrete Structures. [3]The relationship between stress and strain can be expressed as Eq.1 and Eq.2
Journal of Hunan City University, Natural Science, 2010, 1 [2] Jianjing Jiang, Xinzheng Lu, Lieping Ye: Finite Element Analysis of Concrete Structures.
Tsinghua University Press, 2005 [3] GB50010-2010: Code for Design of Concrete Structures [4] Jinfeng Cao, Yiping Shi: Finite Element Analysis of the ABAQUS FAQ, China Machine Press, 2009 [5] Dongbin Li: Method of Strengthening Reinforced Concrete Beam with Opening in Japan, Building Science, 1991, 04
Online since: October 2013
Authors: Zhan Min Yang, Guo Qing Zhang, Jiu Jun Zhen
Design of the robot body.The robot body adopts aluminum alloy material.
Acknowledgment This work is financially supported by National Natural Science Foundation (NNSF) of China under Grant( 61074115 and 11271194).
Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2003,35(9):1095-1097 [3] Glen Bright, Deven Ferreira.
Development of In-Pipe operation micro robots[C]// Proceedings International Symposium on Micro Machine and Human Science.
The running characteristics of a screw-principle micro robot in a small bent pipe[C]//Proceedings of International Symposium On Micro Machine and Human Science, Oct. 4-6,1995,Nagoya,Japan Nagoya: IEEE, 1995: 225-228
Acknowledgment This work is financially supported by National Natural Science Foundation (NNSF) of China under Grant( 61074115 and 11271194).
Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2003,35(9):1095-1097 [3] Glen Bright, Deven Ferreira.
Development of In-Pipe operation micro robots[C]// Proceedings International Symposium on Micro Machine and Human Science.
The running characteristics of a screw-principle micro robot in a small bent pipe[C]//Proceedings of International Symposium On Micro Machine and Human Science, Oct. 4-6,1995,Nagoya,Japan Nagoya: IEEE, 1995: 225-228
Study on Cycle Economic and Ecological Innovation System under the Perspective of Ecological Capital
Online since: May 2012
Authors: Jia Lin Liu
Study on Cycle economic and ecological innovation system under the perspective of ecological capital
Jia-lin Liu
Human Institute of Humanities, Science and Technology School of Economics and Business ,Hunan Loudi 417100
Email:liujialin0738@163.com
Keywords: Ecological capital; Circular Economy; Eco-innovation; System
Abstract.
Eco-efficiency is between individuals, groups and subsystems within the ecosystem material and energy conversion and utilization efficiency, to enhance and improve the structure and function of ecosystems.
(D) cycle economic and ecological financial innovation Cycle of economic and financial eco-innovation is the cycle economic and ecological innovation system of circular economy and financial innovation in an organic system, focusing on the organic link between the two to explore to improve environmental quality, the transfer of environmental risks, the development cycle economic, financial market-based eco-innovation, the circular economy and financial innovation between the well and do not interact with each other and coordinated development, to better establish the relationship between man and nature to promote the sustainable development of society emerging financial crossover study of science, ecological economics and circulation economics areas; study how to assess the risk of environmental resources in order to develop successful environmental financial products, and the formation of the product structure, access to the funds of the development of recycling economy, protect ecological
China Soft Science,2007,(9):56-60
Journal of Zhongnan University of Economics and Law,2008,(1):20-26.
Eco-efficiency is between individuals, groups and subsystems within the ecosystem material and energy conversion and utilization efficiency, to enhance and improve the structure and function of ecosystems.
(D) cycle economic and ecological financial innovation Cycle of economic and financial eco-innovation is the cycle economic and ecological innovation system of circular economy and financial innovation in an organic system, focusing on the organic link between the two to explore to improve environmental quality, the transfer of environmental risks, the development cycle economic, financial market-based eco-innovation, the circular economy and financial innovation between the well and do not interact with each other and coordinated development, to better establish the relationship between man and nature to promote the sustainable development of society emerging financial crossover study of science, ecological economics and circulation economics areas; study how to assess the risk of environmental resources in order to develop successful environmental financial products, and the formation of the product structure, access to the funds of the development of recycling economy, protect ecological
China Soft Science,2007,(9):56-60
Journal of Zhongnan University of Economics and Law,2008,(1):20-26.
Online since: May 2010
Authors: Anatoly M. Shalagin, Anton V. Dyshlyuk, Sergey A. Babin, Yuriy Nikolaevich Kulchin, Oleg B. Vitrik, Alexander A. Vlasov
Vlasov
2
1
Institute for Automation and Control Processes (IACP)
Far-Eastern Branch of Russian Academy of Sciences (FEB RAS)
5, Radio str., Vladivostok, 690041, Russia
2
Institute of Automation and Electrometry (IAE)
Siberian Branch of Russian Academy of Sciences (SB RAS)
1, Academician Koptyug Avenue, Novosibirsk, 630090, Russia
a
anton_dys@iacp.dvo.ru
Keywords: Fiber Bragg Grating, Fiber Bragg Grating Interrogation, Optical Time Domain
Reflectometry, Optical Time Domain Reflectometer
Abstract.
The calculation of PR1(∆λ)/PR2(∆λ) was performed based on the following expression: ( ) ( ) ( ) λλλλλ dRS P iRi ∫ ∞ ∆=∆ 0 , , i = 1, 2, (1) where S(λ,∆λ) - spectrum of the pulse reflected from an FBG sensor, Ri(λ) - reflection spectrum of the corresponding reference FBG, ( )T neff ∆+Λ=∆ 21mod2 αεα λ - strain (ε) and temperature (Т) induced wavelength shift of an FBG sensor, α1, α2 - coefficients determined by optical fiber material properties, neff - effective refraction index of the optical fiber's fundamental mode, Λmod - refraction index modulation depth of the FBG.
Acknowledgements The work was supported by the grant of the President of Russian Federation (МК-2429.2008.2), Russian Foundation for Basic Research (grants №08-02-00064-а, 09-02-98504, 08-02-99084, 0802-92213) as well as by the Far-Eastern and Siberian Branches of Russian Academy of Sciences.
Journal of Lightwave Technology.
The calculation of PR1(∆λ)/PR2(∆λ) was performed based on the following expression: ( ) ( ) ( ) λλλλλ dRS P iRi ∫ ∞ ∆=∆ 0 , , i = 1, 2, (1) where S(λ,∆λ) - spectrum of the pulse reflected from an FBG sensor, Ri(λ) - reflection spectrum of the corresponding reference FBG, ( )T neff ∆+Λ=∆ 21mod2 αεα λ - strain (ε) and temperature (Т) induced wavelength shift of an FBG sensor, α1, α2 - coefficients determined by optical fiber material properties, neff - effective refraction index of the optical fiber's fundamental mode, Λmod - refraction index modulation depth of the FBG.
Acknowledgements The work was supported by the grant of the President of Russian Federation (МК-2429.2008.2), Russian Foundation for Basic Research (grants №08-02-00064-а, 09-02-98504, 08-02-99084, 0802-92213) as well as by the Far-Eastern and Siberian Branches of Russian Academy of Sciences.
Journal of Lightwave Technology.
Online since: June 2014
Authors: Wei Qiao Zhu, Tian Yun Shi, Peng Sun, Chao Li, Yu Xin Liu
Research on Smart Urban Metro Transport Enterprise Asset Management System
Weiqiao Zhu1, a *, Tianyun Shi1, b , Peng Sun1,c, Chao Li1,d, Yuxin Liu1,e
1 Institute of Computing Technology, China Academy of Railway Sciences, Beijing,100081,China
a wqzhu@rails.cn, b tyshi@rails.cn, c supercher@163.com, d lichao301@163.com, e liuyx@rails.cn
Keywords: Smart Urban Metro Transport, Enterprise Asset Management (EAM), Information Cost, IoT (internet of things), smart.
We must establish operational asset full life-cycle management system, which take the asset life as a starting point , such as planning, design, construction, purchasing, operation, maintenance, renewal and retirement; The resources and capabilities of assets(human, material, intellectual, financial and information, etc.), through scientific planning, organizing, directing, coordinating and controlling functions, achieve comprehensive asset performance optimization, and improve operational asset operation and maintenance, logistics management, efficiency and level of leadership decisions, and reduce operating costs and protect operational security. 4.
Acknowledgement It is a project supported by the Innovation Fund of Institute of Computing Technologies, China Academy of Railway Sciences (DZYF14-05).
References [1] Ze Liu, Jianxun Zhang: Science and Technology of West China Vol.164(2009), p. 31-34, in Chinese
[3] Gang Fu, Chunhua Liu et.al: Journal of Intelligence Vol.26(2007), p. 83-86, in Chinese
We must establish operational asset full life-cycle management system, which take the asset life as a starting point , such as planning, design, construction, purchasing, operation, maintenance, renewal and retirement; The resources and capabilities of assets(human, material, intellectual, financial and information, etc.), through scientific planning, organizing, directing, coordinating and controlling functions, achieve comprehensive asset performance optimization, and improve operational asset operation and maintenance, logistics management, efficiency and level of leadership decisions, and reduce operating costs and protect operational security. 4.
Acknowledgement It is a project supported by the Innovation Fund of Institute of Computing Technologies, China Academy of Railway Sciences (DZYF14-05).
References [1] Ze Liu, Jianxun Zhang: Science and Technology of West China Vol.164(2009), p. 31-34, in Chinese
[3] Gang Fu, Chunhua Liu et.al: Journal of Intelligence Vol.26(2007), p. 83-86, in Chinese
Online since: May 2012
Authors: Gang Liu, Li Hua Lin, Rui Tian
Influence factors
Factors that affect road traffic noise can be divided into three categories: first, the intensity of the sound source, including traffic volume, speed, light/heavy truck scale, road gradient, width, flatness, surface nature material; second, the mode and the path of noise transmission, including the distance of forecast point to road, green ground state, the block effect on the noise of all kinds of surface features (such as sound barriers, buildings, large undulating ground, etc.)and the air temperature, humidity and mobility, etc;Third, the space location of the sound point, including the view of the sound point to the sound source and the reflection effect of the noise, etc[7].
Acknowledgements The authors gratefully acknowledge the sponsorship of Inner Mongolia Natural Science Fund of China(Project No. 2010zd06,NMRS200803) References [1] Liu Shu-tao .The expressway environment protection and green.
Research of Environmental Sciences ,2002(02)
Environmental Science and Management. 2006(05)
[7] Yuan Ling .Neural network for predicting traffic noise[J] Chang-an university journal. 2003(02)
Acknowledgements The authors gratefully acknowledge the sponsorship of Inner Mongolia Natural Science Fund of China(Project No. 2010zd06,NMRS200803) References [1] Liu Shu-tao .The expressway environment protection and green.
Research of Environmental Sciences ,2002(02)
Environmental Science and Management. 2006(05)
[7] Yuan Ling .Neural network for predicting traffic noise[J] Chang-an university journal. 2003(02)
Fundamental Reactor Design Considerations for Reducing TiCl4 Metallothermically to Produce Ti Powder
Online since: August 2012
Authors: D.S. van Vuuren
Ono, Titanium powder prepared by magnesiothermic reduction of Ti2+ in molten salt, Metallurgical and Materials Trans. 30B (1999) 403-410
Tomii, Reduction of TiCl4 gas by Ca dissolved in molten calcium chloride, Ti-2007 Science and Technology, The Japan Institute of Metals (2007) 103-106
Scott, Rheology of suspensions, SA Journal of Chem.
Okabe, Fundamental study on synthesis and enrichment of titanium subchloride, Journal of Alloys and Compounds 457 (2008) 376–383
Ohno, Rotating disk electrode of a Ti3+/Ti electrode in LiCl-KCl eutectic and NaCl-MgCl2-KCl melt, Materials Trans., JIM 40(12) (1999) 1429-1435.
Tomii, Reduction of TiCl4 gas by Ca dissolved in molten calcium chloride, Ti-2007 Science and Technology, The Japan Institute of Metals (2007) 103-106
Scott, Rheology of suspensions, SA Journal of Chem.
Okabe, Fundamental study on synthesis and enrichment of titanium subchloride, Journal of Alloys and Compounds 457 (2008) 376–383
Ohno, Rotating disk electrode of a Ti3+/Ti electrode in LiCl-KCl eutectic and NaCl-MgCl2-KCl melt, Materials Trans., JIM 40(12) (1999) 1429-1435.
Online since: July 2015
Authors: Tatag Lindu Bhakti, Adhi Susanto, Paulus Insap Santosa, Diah Tri Widayati
INDONESIA
4Faculty of Animal Science, Gadjah Mada University.
Variable reluctance stepper motor worked using magnetic induction to rotating ferromagnetic (soft iron) materials which located on its rotator and hybrid stepper motor combines working principles of PM and VR.
Hong, Won-Pyo, Lee, Seok-Woo and Choi, Hon-Zong. 1, January 2013, International Journal Of Precision Engineering And Manufacturing, Vol. 14, pp. 147-151.
Brown, Matthew and Lowe, David G. 1, 2007, International Journal of Computer Vision, Vol. 74, pp. 59–73.
Lowe, David G. 2004, International Journal of Computer Vision, pp. 1-28
Variable reluctance stepper motor worked using magnetic induction to rotating ferromagnetic (soft iron) materials which located on its rotator and hybrid stepper motor combines working principles of PM and VR.
Hong, Won-Pyo, Lee, Seok-Woo and Choi, Hon-Zong. 1, January 2013, International Journal Of Precision Engineering And Manufacturing, Vol. 14, pp. 147-151.
Brown, Matthew and Lowe, David G. 1, 2007, International Journal of Computer Vision, Vol. 74, pp. 59–73.
Lowe, David G. 2004, International Journal of Computer Vision, pp. 1-28
Online since: September 2013
Authors: Wei Hong Li
On the one hand, there is a close relationship between the factors affecting the quality innovation capability in manufacturing enterprises; on the other hand, analyzing from the new perspective of quality innovation in manufacturing enterprises, it is found that the current problems are more companies, and the material and financial resources in manufacturing enterprises used for quality innovation capacity are limited.
Business leaders have made scientific, reasonable quality innovative strategies for enterprises, lay emphasis on the investment in science and technology, the creation of the brand, raising reputation and other measures, which is important to enhance quality innovation capability, and they are able to give the corresponding funding guarantee to financial management, capital operation.
Journal of Engineering Design, 2004(8),169-173
Journal of Management, 1991(1), 99-120
Journal of Industrial Engineering /Engineering Management, 2010 (supplement), 86-93 [7] Liao Quanwen, Introduction to Systems Engineering[M].
Business leaders have made scientific, reasonable quality innovative strategies for enterprises, lay emphasis on the investment in science and technology, the creation of the brand, raising reputation and other measures, which is important to enhance quality innovation capability, and they are able to give the corresponding funding guarantee to financial management, capital operation.
Journal of Engineering Design, 2004(8),169-173
Journal of Management, 1991(1), 99-120
Journal of Industrial Engineering /Engineering Management, 2010 (supplement), 86-93 [7] Liao Quanwen, Introduction to Systems Engineering[M].