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Online since: September 2013
Authors: Wan Ying Qu
Field survey on occupant thermal comfort of cold regions
in transition season
QU Wan-ying
College of Urban Construction, Wuhan University of Science & Technology, Wuhan 430065, China
qwyhello@163.com
Keywords: transition season; thermal sensation; clothing; thermal neutral temperature
Abstract: A thermal comfort field study was investigated in residential buildings of cold regions in transition season during which the indoor thermal environment conditions are measured, the thermal sensation value of the occupants is questioned and recorded.
The questionnaire focused on several aspects such as background information, building materials, clothing, the state of motion before five minutes, air conditioning and heating equipment, windows habits,thermal sensation, humidity sensation, wind speed sensation, thermal comfort , adaptive mode to improve the thermal environment and so on.
Acknowledgements This work was financially supported by Humanities and Social Science Research Projects of Hubei Provincial Department of Education (13d012).
International Journal of Biometerorology 1981;25:109-22 [7] Thermal environmental conditions for human occupancy , ASHRAE55-1992[S].
The questionnaire focused on several aspects such as background information, building materials, clothing, the state of motion before five minutes, air conditioning and heating equipment, windows habits,thermal sensation, humidity sensation, wind speed sensation, thermal comfort , adaptive mode to improve the thermal environment and so on.
Acknowledgements This work was financially supported by Humanities and Social Science Research Projects of Hubei Provincial Department of Education (13d012).
International Journal of Biometerorology 1981;25:109-22 [7] Thermal environmental conditions for human occupancy , ASHRAE55-1992[S].
Online since: September 2003
Authors: Andrei A. Istratov, Eicke R. Weber, Hele Väinölä, Peng Zhang
Journal Citation (to be inserted by the publisher)
Copyright by Trans Tech Publications
Re-dissolution of Gettered Iron Impurities in Czochralski-grown Silicon
Peng Zhang
1, Andrei Istratov
1, Hele Väinölä 1,2 and Eicke R.
Weber 1 1 Department of Materials Science and Engineering, University of California at Berkeley and Lawrence Berkeley National Laboratory, MS 62R0203, 1 Cyclotron Road, Berkeley CA 94720, USA (Email: pzhang@lbl.gov; istratov@socrates.berkeley.edu) 2 Electron Physics Laboratory, Helsinki University of Technology, P.O.BOX 3500, FIN-02015 HUT, Finland (Email: hele.vainola@hut.fi) Keywords: gettering, thermal stability, dissolution, iron, oxide precipitates Abstract.
Acknowledgement This work was supported by SiWEDS (the NSF-I/UCRC Si Wafer Engineering and Defect Science consortium (www.siweds.org)).
Weber 1 1 Department of Materials Science and Engineering, University of California at Berkeley and Lawrence Berkeley National Laboratory, MS 62R0203, 1 Cyclotron Road, Berkeley CA 94720, USA (Email: pzhang@lbl.gov; istratov@socrates.berkeley.edu) 2 Electron Physics Laboratory, Helsinki University of Technology, P.O.BOX 3500, FIN-02015 HUT, Finland (Email: hele.vainola@hut.fi) Keywords: gettering, thermal stability, dissolution, iron, oxide precipitates Abstract.
Acknowledgement This work was supported by SiWEDS (the NSF-I/UCRC Si Wafer Engineering and Defect Science consortium (www.siweds.org)).
Online since: August 2013
Authors: Wan Nor Suhaila Wan Aziz, Mohd Helmy Hashim, Rosly Jaafar, Mohd Ikhwan Hadi Yaacob, Shahrul Kadri
Materials and Methods
In order to conduct this experiment, two loads m1=18.92 g, and m2=21.97 g were prepared.
The authors also would like to thank PhyKIR, Universiti Pendidikan Sultan Idris (UPSI), Ministry of Science, Technology and Innovation (MOSTI), National Space Agency of Malaysia (ANGKASA), Japan Aerospace and Exploration Agency (JAXA) and Diamond Air Service (DAS) for financial and facilities support.
Biological Sciences in Space Vol. 17 No.3 (2003), p. 238-239 [2] S.
European Journal of Mechanics A/Solid Vol. 26 (2007), p. 286-297.
The authors also would like to thank PhyKIR, Universiti Pendidikan Sultan Idris (UPSI), Ministry of Science, Technology and Innovation (MOSTI), National Space Agency of Malaysia (ANGKASA), Japan Aerospace and Exploration Agency (JAXA) and Diamond Air Service (DAS) for financial and facilities support.
Biological Sciences in Space Vol. 17 No.3 (2003), p. 238-239 [2] S.
European Journal of Mechanics A/Solid Vol. 26 (2007), p. 286-297.
Online since: April 2011
Authors: Hong Xia Guo, Shao Gui Wu
Computer Simulation of Vesicle Fusion
Shaogui Wu1, a, Hongxia Guo2,b
1College of Chemistry and Materials Sciences, Sichuan Normal University, 610068, Chengdu, China.
2Institute of Chemistry, Chinese Academy of Sciences, 100190, Beijing, China.
Liu: The Journal of chemical physics 122, 174909 (2005)
Liu: The Journal of chemical physics 122, 174909 (2005)
Online since: October 2012
Authors: Xin Zheng, Shuang Shuang Li, Ling Hua Zhang, Wei Wei Fan, Ying Ying Liu, Ling Jian Meng
Efficient Expression of Mussel Adhesive Protein in Pichia pastoris
GS115 Promoted by Ectoine
Xin Zheng1,a, Weiwei Fan1,b, Lingjian Meng1,c, Shuangshuang Li1,d, Yingying Liu1,e, Linghua Zhang1,f*
1Environmental science and engineering college, Dalian Maritime University, Dalian, 116026, China
agreeting@126.com, b15942816567@126.com, c809343200@qq.com, dlishuangs1989@163.com, eliuyingyingsd@163.com, f*dlzlh2008@163.com (corresponding author)
Keywords: Mussel adhesive protein, Pichia pastoris, Methanol, Ectoine.
Materials and methods Strain and reagents.
Fig.4 Promotion of Ectoine on the protein expression of P. pastoris GS115 with methanol Fig.3 Promotion of Ectoine on the cell growth of P. pastoris GS115 with methanol Acknowledgements This research was financially supported by Dalian Municipal Science and Technology Bureau (Grant NO. 2009E11SF223), China.
Chinese Journal of Biotechnology. 20(2004) 932-936.
Materials and methods Strain and reagents.
Fig.4 Promotion of Ectoine on the protein expression of P. pastoris GS115 with methanol Fig.3 Promotion of Ectoine on the cell growth of P. pastoris GS115 with methanol Acknowledgements This research was financially supported by Dalian Municipal Science and Technology Bureau (Grant NO. 2009E11SF223), China.
Chinese Journal of Biotechnology. 20(2004) 932-936.
Online since: August 2012
Authors: Zhi Guang Wang, Yan Hua Xue, Xiao Hong Li, Xin Jiang
Fig.5 indicates the structure parameters (material properties: Poisson ratio of 0.29, mass density of 7.82E-6(Kg/mm3), modulus of elasticity of 2.068E+8(mN/mm2))
Fig.5 The geometry and material parameters of a stiffened plate steel structure
Fig.6 Shows us the effect of eccentricity of beam element on modal frequency (based on the result of regular hexahedron element)The effect of eccentricity of beam element on modal frequency
As can be seen from the Fig.6, while shell element and beam element are used to simulate stiffened plate steel structure, eccentricity of beam element greatly affects the precision.
(in Chinese) [2] Yu Chun, Zhou Xionghui, Zhang Yongqing, “Research on feature-based mesh generation,” Mechanical Science and Technology, vol. 18, no. 2, pp. 210-212, March 1999.
[4] Zhang Xiaojun, Xie Yonghe, Wu Guorong, “FEM mesh constructing for multi-surfaces structure,” Journal of Zhejiang Ocean University (nature science), vol. 26, no. 2, pp. 51-55, February 2007.
(in Chinese) [2] Yu Chun, Zhou Xionghui, Zhang Yongqing, “Research on feature-based mesh generation,” Mechanical Science and Technology, vol. 18, no. 2, pp. 210-212, March 1999.
[4] Zhang Xiaojun, Xie Yonghe, Wu Guorong, “FEM mesh constructing for multi-surfaces structure,” Journal of Zhejiang Ocean University (nature science), vol. 26, no. 2, pp. 51-55, February 2007.
Online since: October 2010
Authors: Ding Fan, Li Hui Lu, Xiao Liang Wu, Yu Shi, Jian Kang Huang
Research of Welding Deformation Measurement Based on Visual
Method
Jiankang HUANG 1, a, Lihui LU
1, b, Xiaoliang Wu 1, Yu SHI 2
, Ding Fan
2
1
Key Laboratory of Non-ferrous Metal Alloys and processing, The Ministry of Education, Lanzhou
University of Technology, Lanzhou 730050, China
2
State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Lanzhou University of
Technology, Lanzhou 730050, China
a
sr2810@163.com, b lulihui@126.com
Keywords: Welding deformation, Machine vision, Image processing
Abstract.
Peng: Journal of Anhui Vocational College of Metallurgy and Technology, Vol. 18 (2008) No.3, pp.16-18
Li: The Science Education Article Collects, Vol. 18 (2008), pp.279
Luo: Science & Technology Information, Vol. 30 (2008), pp.34-39
Peng: Journal of Anhui Vocational College of Metallurgy and Technology, Vol. 18 (2008) No.3, pp.16-18
Li: The Science Education Article Collects, Vol. 18 (2008), pp.279
Luo: Science & Technology Information, Vol. 30 (2008), pp.34-39
Online since: March 2014
Authors: Deng Yu Li, Jun Xiao, Xiao Xu Leng
3D Reconstruction of Rock Mass based on Point Cloud Library
Xiao Jun, Leng Xiao-xu and Li Deng-yu
University of the Chinese Academy of Sciences, China
No.19A Yuquan Road, Beijing 100049
xiaojun@ucas.ac.cn
Keywords: 3D reconstruction, rock mass, point cloud library, laser passing, image
Abstract.
Acknowledgments This work is supported by National Natural Science Foundation of China (No. 61003275) and President Fund of UCAS.
Applied Mechanics and Materials. vol.159 (2012), p.186-190
Journal of Computer-Aided Design & Computer Graphics, vol. 21(8) (2009), p. 1035-1041
Acknowledgments This work is supported by National Natural Science Foundation of China (No. 61003275) and President Fund of UCAS.
Applied Mechanics and Materials. vol.159 (2012), p.186-190
Journal of Computer-Aided Design & Computer Graphics, vol. 21(8) (2009), p. 1035-1041
Online since: July 2011
Authors: Bin Yao, Zhi Huang Shen, Ru Sheng Lu, Zhe Shan Zhang
International Journal of Advanced Manufacturing Technology.
Advanced Materials Research.
International Conference on Manufacturing Science and Technology (2010.11), p. 236-239
Computer Aided Geometry Modeling [M].Science Press. 2004.2.
Advanced Materials Research.
International Conference on Manufacturing Science and Technology (2010.11), p. 236-239
Computer Aided Geometry Modeling [M].Science Press. 2004.2.
Online since: December 2012
Authors: Hui Xing Liang
Isolation, Identification and Degradation Characterization of synthetic dyes Degrading Strain
Huixing Liang
School of Environmental Science and Engineering, Yancheng Institute of Technology, Yancheng, 224051, China
13056185666@163.com
Keywords: Synthetic Dyes, Decoloration, Cultural conditions
Abstract.
Materials And Methods Soil samples taken in April 2010 from Yancheng printworks; Malachite Green, AR(The maximum absorption wavelength is 616.9nm).
C Qiao: Journal of China University of Mining & Technology.
Zhang: Environmental Science and Technology.
Materials And Methods Soil samples taken in April 2010 from Yancheng printworks; Malachite Green, AR(The maximum absorption wavelength is 616.9nm).
C Qiao: Journal of China University of Mining & Technology.
Zhang: Environmental Science and Technology.