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Nuove prospettive per la produzione energeticaTerzi, Luigi Andrea <1972> 25 June 2007 (has links)
No description available.
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Classical and quantum features of the inhomogeneous mixmaster modelBenini, Riccardo <1979> 11 May 2007 (has links)
No description available.
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The nature of dark energy: theoretical assumptions and experimental testsCasarini, Luciano <1978> 11 May 2007 (has links)
No description available.
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Higher-order theories of gravitationFabbri, Luca <1978> 11 May 2007 (has links)
No description available.
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Experimental and Numerical Analysis of Gas Forced Convection through Microtubes and Micro Heat ExchangersYang, Yahui <1984> 24 May 2013 (has links)
The last decade has witnessed very fast development in microfabrication technologies. The increasing industrial applications of microfluidic systems call for more intensive and systematic knowledge on this newly emerging field. Especially for gaseous flow and heat transfer at microscale, the applicability of conventional theories developed at macro scale is not yet completely validated; this is mainly due to scarce experimental data available in literature for gas flows. The objective of this thesis is to investigate these unclear elements by analyzing forced convection for gaseous flows through microtubes and micro heat exchangers.
Experimental tests have been performed with microtubes having various inner diameters, namely 750 m, 510 m and 170 m, over a wide range of Reynolds number covering the laminar region, the transitional zone and also the onset region of the turbulent regime. The results show that conventional theory is able to predict the flow friction factor when flow compressibility does not appear and the effect of fluid temperature-dependent properties is insignificant.
A double-layered microchannel heat exchanger has been designed in order to study experimentally the efficiency of a gas-to-gas micro heat exchanger. This microdevice contains 133 parallel microchannels machined into polished PEEK plates for both the hot side and the cold side. The microchannels are 200 µm high, 200 µm wide and 39.8 mm long. The design of the micro device has been made in order to be able to test different materials as partition foil with flexible thickness.
Experimental tests have been carried out for five different partition foils, with various mass flow rates and flow configurations. The experimental results indicate that the thermal performance of the countercurrent and cross flow micro heat exchanger can be strongly influenced by axial conduction in the partition foil separating the hot gas flow and cold gas flow.
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Simulation of gas breakdown and plasma dynamics in plasma focus devicesFrignani, Michele <1978> 25 June 2007 (has links)
No description available.
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Multi-objective optimization of microgas turbine recuperatosPieri, Stefano <1977> 25 June 2007 (has links)
No description available.
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Application of evolutionary techniques to energy transfer efficiency in heat transfer problems and low consumption buildingsPinto, Francesco <1978> 25 June 2007 (has links)
No description available.
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Wordline approach to higher spin fieldsLatini, Emanuele <1978> 19 May 2008 (has links)
The main object of this thesis is the analysis and the quantization of spinning particle
models which employ extended ”one dimensional supergravity” on the worldline, and their
relation to the theory of higher spin fields (HS).
In the first part of this work we have described the classical theory of massless spinning
particles with an SO(N) extended supergravity multiplet on the worldline, in flat and more
generally in maximally symmetric backgrounds. These (non)linear sigma models describe,
upon quantization, the dynamics of particles with spin N/2.
Then we have analyzed carefully the quantization of spinning particles with SO(N)
extended supergravity on the worldline, for every N and in every dimension D. The physical
sector of the Hilbert space reveals an interesting geometrical structure: the generalized higher
spin curvature (HSC). We have shown, in particular, that these models of spinning particles
describe a subclass of HS fields whose equations of motions are conformally invariant at the
free level; in D = 4 this subclass describes all massless representations of the Poincar´e group.
In the third part of this work we have considered the one-loop quantization of SO(N)
spinning particle models by studying the corresponding partition function on the circle.
After the gauge fixing of the supergravity multiplet, the partition function reduces to an
integral over the corresponding moduli space which have been computed by using orthogonal
polynomial techniques.
Finally we have extend our canonical analysis, described previously for flat space, to
maximally symmetric target spaces (i.e. (A)dS background). The quantization of these
models produce (A)dS HSC as the physical states of the Hilbert space; we have used an
iterative procedure and Pochhammer functions to solve the differential Bianchi identity in
maximally symmetric spaces.
Motivated by the correspondence between SO(N) spinning particle models and HS gauge
theory, and by the notorious difficulty one finds in constructing an interacting theory for fields
with spin greater than two, we have used these one dimensional supergravity models to study
and extract informations on HS.
In the last part of this work we have constructed spinning particle models with sp(2) R
symmetry, coupled to Hyper K¨ahler and Quaternionic-K¨ahler (QK) backgrounds.
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Perturbative and non perturbative effects in the Standard Model and orbifolded ADS/CFT based theoriesIafelice, Pasquale Luca <1980> 19 May 2008 (has links)
We study some perturbative and nonperturbative effects in the framework of the
Standard Model of particle physics. In particular we consider the time dependence
of the Higgs vacuum expectation value given by the dynamics of the StandardModel
and study the non-adiabatic production of both bosons and fermions,
which is intrinsically non-perturbative. In theHartree approximation, we analyze
the general expressions that describe the dissipative dynamics due to the backreaction
of the produced particles. Then, we solve numerically some relevant
cases for the Standard Model phenomenology in the regime of relatively small
oscillations of the Higgs vacuum expectation value (vev). As perturbative effects,
we consider the leading logarithmic resummation in small Bjorken x QCD, concentrating
ourselves on the Nc dependence of the Green functions associated to
reggeized gluons. Here the eigenvalues of the BKP kernel for states of more than
three reggeized gluons are unknown in general, contrary to the large Nc limit
(planar limit) case where the problem becomes integrable. In this contest we consider
a 4-gluon kernel for a finite number of colors and define some simple toy
models for the configuration space dynamics, which are directly solvable with
group theoretical methods. In particular we study the depencence of the spectrum
of thesemodelswith respect to the number of colors andmake comparisons
with the planar limit case. In the final part we move on the study of theories
beyond the Standard Model, considering models built on AdS5 S5/Γ orbifold
compactifications of the type IIB superstring, where Γ is the abelian group Zn.
We present an appealing three family N = 0 SUSY model with n = 7 for the order
of the orbifolding group. This result in a modified Pati–Salam Model which
reduced to the StandardModel after symmetry breaking and has interesting phenomenological
consequences for LHC.
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