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Online since: July 2012
Authors: Li Bing Chi, Jian Wang
Transit OD Generation Based on Information Technology LIBING CHI1,a , JIAN WANG2,b 1School of Transportation Science and Engineering, Harbin Institute of Technology, Harbin, China 2 School of Transportation Science and Engineering, Harbin Institute of Technology, Harbin, China a16725684@qq.com , bWang_jian@hit.edu.cn Keywords: GPS data; IC card data; Transit OD matrix Abstract: As developing in computer and information technology, data access and collection have becom more and more convenient.
Tab.1 Example of GPS data for transit vehicles Company Line Vehicle number Uplink and downlink Site number Name of the station Arrival time The second company 62 3847 Uplink 1 Garden Road Liuzhuang 7:28:18 The second company 62 3847 Uplink 2 Lu gang xiao zhen 7:30:37 The second company 62 3847 Uplink 3 Tian Rong international building materials Port 7:32:12 The second company 62 3847 Uplink 4 New LiuLu garden road station 7:33:59 Public transportation IC card data can record detailed information of each riding on transit vehicle, and the information tables are consisted of six fields: the card number, card type, using card date, using card time, using bus line, the vehicle number.
Journal of Jilin University [D], 2004, 11-39
Online since: October 2012
Authors: Cui Ma, Hai Yu Liu, Jing Li
Smelting Period Shortening Practices in Process of Electric Arc Furnace Steelmaking Haiyu Liu1, a, Jing Li1, b, Cui Ma2, c 1 School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, 100083, Beijing, China 2 National Engineering Research Center of Flat Rolling Equipment, University of Science and Technology Beijing, Beijing 100083, China askylau@126.com , blijing@metall.ustb.edu.cn, cmacui@ustb.edu.cn Keywords: EAF steelmaking; Smelting period; Intergraded control theory Abstract.
We should make use of the research achievement of HSLC steel and ultra-fine grained steel of 973 project Fundamental Project on New Generation of Iron and Steel Materials, produce pearlite-ferrite 400MPa thin plate and long length plate, may be another important approach of the development of EAF steel.
Fu: Journal of Iron and Steel Research, Vol. 18 (2006), No.5, p.1 (In Chinese) [3].
Online since: June 2010
Authors: Shi Hua Luo
Step 1: Determine the value of t In the iron making process, solid raw material such as iron ore, coke and limestone are charged to the top of the blast furnace, and preheated air is blown into the furnace from the bottom through the tuyeres.
The time cost from solid raw material to molten hot metal is about 6h and the time sample [Si] is about interval of 2h.
Acknowledgment This research is supported by the National Natural Science Foundation of China (no. 60964005, 70961001) and the Natural Science Foundation of Jiangxi Province (No. 2008GZS0014).
Yang: Asian Journal of Control Vol. 6 (2008), p. 632 [2] C.H.
Online since: July 2011
Authors: Hong Wei Li, Hui Ming Peng, Jia Wen Bian
Acknowledgement The study is supported by the National Nature Science Foundation of China (No. 61071188), the Nature Science Foundation of Hubei Province of China (No. 2009CDB077), and the Special Fund for Basic Scientific Research of Central Colleges, China University of Geosciences (Wuhan) (No.
PLoS ONE, 2011, 6(3): e14750. doi:10.1371/journal.pone.0014750
Infection at the site of implanted materials with and without Preadhered Bacteria.
Online since: August 2013
Authors: Guo Feng Zhang, Jing Jing Yan, Wen Lan Ke, Jing Hua Sha
However, the heavy industries oriented by resources, did not fully push forward other industries on the transition process from profit to industrial capital so that the other industries are lake of science and technology.
The potential economic value of energy minerals, non-metallic mineral, salt chemical and building materials accounts for more than 52% of that of the Inner Mongolia Province.
Dynamic Simulation and Policy Regulation of the Development of Regional Social and Economic System [M].Hefei: Publisher of University of Science and Technology of China, 2008.2.
Journal of Natural Resources.Vol.24 No.18 2009(8):1334-1342.
Online since: May 2012
Authors: Ying Wei Yun, Feng Li Fan, Hee Su Lim, Tae Oh Kim
Risk Assessments of Exposure to Airborne Volatile Organic Compounds in Gumi Industrial Complex Area, Korea Ying-wei Yun1,a, Feng-li Fan1,b, Hee-su Lim2,c, Tae-oh Kim2,d 1 Dept. of Civil Engineering, Luoyang Institute of Science and Technology, No.90, Wangcheng Str., Luoyang, Henan, 471023, P.R.
Materials and Methods A.
The Science of the Total Environment 298, 5–64
Journal of the Korean Society of Safety, 14(2), 103-108.
Online since: December 2013
Authors: Pei Xin Shi, Ting Xue, De Fa Cai
These figures show that the consumption of China's energy is in the situation of "high-carbon consumption,", coupled with the number of fossil fuels accounted for 92% of the total energy, of which the coal accounted for 68%, 78% of the production of electricity depends on the coal-fired, meanwhile, the accelerated development of the six large energy-intensive industries (energy, automobile, steel, transport, chemicals, building materials) makes China become a typical representative of the "high-carbon economy".
* The project for philosophy and social science research base of Heilongjiang Province, Supported by the Social Science Foundation of Heilongjiang province(13G002), The doctor Foundation in Harbin University of Commercial (13DW001).
Journal of the National School of Administration.
Online since: November 2012
Authors: Wen Liang Lai, Jen Jeng Chen, Meei Fang Shue, Li Ho Tseng, Yu Ru Li
Nitrogen and Phosphorus Removal and Biomass Production by the Green Microalgae in Piggery Wastewater Jen-Jeng Chen1,a*, Yu-Ru Li2,b, Meei-Fang Shue1,c, Li-Ho Tseng1,d, Wen-Liang Lai1,e 1 Graduate Institute of Environmental Management, Tajen University, Pingtung 90741, Taiwan. 2 Graduate Institute of Bioresources, National Pingtung University of Science and Technology, Pingtung 91201, Taiwan.
Materials and Methods Microalgal Culture.
Acknowledgements The authors would like to thank the National Science Council of Taiwan for financially supporting this research under grants NSC 99-2221-E-127 -004 and NSC 100-2221-E-127 -002.
Endo: Journal of Bioscience and Bioengineering Vol. 98 (2004), p. 437.
Online since: December 2014
Authors: Xin Zheng Zhang, Ya Juan Zhang
Data-centric Cloud Computing platform can integrate and distribute processing capacity in service-oriented architecture (SOA) from an abundance of server clusters and other network materials. [3] Security Concerns.
Acknowledgements This work was financially supported by Chinese National 863 Plan Foundation (2013AA7074002M), Science Technology Complex Land Systems Simulation Laboratory Open Foundation (TXSY1301).
(In Chinese) [2] Hui An: Development Status and Innovation of Cloud Computing in China (PPT), P. 25 (In Chinese) [3] Peter Mell and Timothy Grance: The NIST Definition of Cloud Computing. http://docs.ismgcorp.com/files/external/Draft-SP-800-145_cloud-definition.pdf [4] DeYi Li: Cloud Computing Technology Development Report 2012, Chapter 2, Mission of Cloud Computing, p.13-48 (In Chinese) [5] Puneet Jai Kaur and Sakshi Kaushal: Security Concerns in Cloud Computing, Communication in Computer and Information Science Vol. 169(2011), p. 103-112
Wright: The evolution of the Advanced Encryption Standard, Network Security, Vol. 11(1999), p. 11-14 [9] James Nechvatal, Elaine Barker and Lawrence Bassham: Report on the Development of the Advanced Encryption Standard (AES), NIST, October 2, 2000, p. 21 [10] Ming Xing He and Lin Hao: Implementation of the Advanced Encryption Standard (AES),Computer Employment Research, Vol. 12(2002), p.16-36(In Chinese) [11] Hong Xu and GangQiang Tang: Data Security and Encrypting Arthmetic, Technological Development of Enterprise, Vol. 25(2006), p.16-18(In Chinese) [12] Vanstone Scott: A ECC system—The Answer to Strong, Fast Public-Key Cryptography for Securing Constrained Environment, Information Security Technical Report, Vol. 2(1997), p.78-87 [13] Zhen Song: Cryptography (China WaterPower Press, Chinese 2002), p.3-129(In Chinese) [14] Tao Sui: Discussion on DES and AES Data Encryption Algorithm, Journal of Hubei University of Education, Vol. 30:8 (2013), p.66-68(In Chinese) [15] XingYe Han
Online since: April 2014
Authors: Jia Ping Liu, Ning Bo Zhang, Yan Ming Kang, Ke Zhong
Numerical Modeling of the Flow and Pollutant Dispersion in Street Canyons with Ground Thermal Effect Ningbo Zhang1, a, Yanming Kang1, b, Ke Zhong1, c, * and Jiaping Liu2, d 1School of Environmental Science and Engineering, Donghua University, Shanghai 201620, China 2College of Architecture, Xi’an University of Architecture and Technology, Xi’an 710055, China azhang.ningbo@hotmail.com, bymkang@dhu.edu.cn, czhongkeyx@dhu.edu.cn, dliujiaping@xauat.edu.cn Keywords: Street canyon, Ground thermal effect, Flow pattern, Particle dispersion, Secondary flow.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 51278094), the Innovation Foundation of Shanghai Education Commission (Grant No. 13ZZ054), the Chinese Universities Scientific Fund (Grant No.
Yang: Journal of Hazardous Materials Vol. 166 (2009), p. 394 [13] S.
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