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document
Sislian, J.P. (author), Jiang, L.-Y. (author), Cusworth, R.A. (author)
report 1986
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Jiang, L.-Y. (author), Sislian, J.P. (author)
report 1987
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Sharma, S.D. (author), Jiang, T. (author), Schellin, T.E. (author)
conference paper 1989
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Schauer, T. (author), Romberg, B. (author), Jiang, C. (author), Troesch, A.W. (author)
journal article 1995
document
Jiang, Lei (author)
journal article 1996
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Jiang, Changben (author)
journal article 1996
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Jiang, X.R. (author)
doctoral thesis 1996
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Jiang, Lei (author)
journal article 1998
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Jiang, Lei (author)
conference paper 1998
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Jiang, Lei (author)
journal article 1999
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Jiang, Tao (author)
conference paper 2000
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Jiang, Liping (author)
conference paper 2000
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Chen, T. (author), Jiang, S. (author), Ma, S. (author), Ros, C.H. (author), Pfeiffer, T.V. (author), Suijker, J.M. (author), Wichmann, A. (author)
report 2003
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Chen, T. (author), Jiang, S. (author), Ma, S. (author), Ros, C.H. (author), Pfeiffer, T.V. (author), Suijker, J.M. (author), Wichmann, A. (author)
report 2004
document
Tang, J.H. (author), Jiang, B. (author)
A numerical calculation procedure based on the least-squares finite element method (LSFEM) is employed to study the fluid flow and heat transfer in a 3-D heat exchangers with in-lined and staggered multiple-row (4 rows) tubes. In this study, the fin pitch of the heat exchanger is 8 fins per inch and the fluid flow is assumed steady,...
conference paper 2006
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Jiang, L. (author), Pandraud, G. (author), French, P.J. (author), Spearing, S.M. (author), Kraft, M. (author)
journal article 2007
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Jiang, L. (author)
master thesis 2008
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Jiang, C. (author)
master thesis 2009
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Jiang, L. (author)
Frequency up-conversion is an integral part of the (sub)mm wave integrated radar system that is currently developed at the TUDelft in the context of the MEMPIS program. The proposed up-converter IC allows the necessary signal modulation for the radar to be generated at a relative low frequency, after up-conversion to W-band takes place. In our...
master thesis 2009
document
De Hoop, A.T. (author), Jiang, L. (author)
The response of a thin, high-contrast, finely layered structure with dielectric and conductive properties to an incident, pulsed, electromagnetic field is investigated theoretically. The fine layering causes the standard spatial discretization techniques to solve Maxwell's equations numerically to be practically inapplicable. To overcome this...
journal article 2009
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