439 research outputs found
Climate Smart Fortaleza
With the urban population growing exponentially the challenges associated with urban development are numerous. The urban heat island effect, rising energy demands and floods are only a few of the problems that large cities face today. With climate change it is becoming urgent to build climate smart cities. The objective of this research project is to identify how the design of a city, based on the height-to-width ratio of buildings and streets (referred to as aspect ratio), street orientation and vegetation, can improve thermal comfort and reduce energy demands. The project also investigates if a 10-year rainfall can be retained through the use of floodplains.Genom att designa hållbara städer med optimerad höjd-bredd av byggnader och gator, samt rikligt med urban vegetation kan temperaturen i tropiska städer minskas avsevärt vilket skulle leda till minskad energiförbrukning och minskad risk för översvämningar
Climate Smart Fortaleza
With the urban population growing exponentially the challenges associated with urban development are numerous. The urban heat island effect, rising energy demands and floods are only a few of the problems that large cities face today. With climate change it is becoming urgent to build climate smart cities. The objective of this research project is to identify how the design of a city, based on the height-to-width ratio of buildings and streets (referred to as aspect ratio), street orientation and vegetation, can improve thermal comfort and reduce energy demands. The project also investigates if a 10-year rainfall can be retained through the use of floodplains.Genom att designa hållbara städer med optimerad höjd-bredd av byggnader och gator, samt rikligt med urban vegetation kan temperaturen i tropiska städer minskas avsevärt vilket skulle leda till minskad energiförbrukning och minskad risk för översvämningar
Probing Spin-Charge Separation in Tunnel-Coupled Parallel Quantum Wires
Interactions in one-dimensional (1D) electron systems are expected to cause a
dynamical separation of electronic spin and charge degrees of freedom. A
promising system for experimental observation of this non-Fermi-liquid effect
consists of two quantum wires coupled via tunneling through an extended uniform
barrier. Here we consider the minimal model of an interacting 1D electron
system exhibiting spin-charge separation and calculate the differential
tunneling conductance as well as the density-density response function. Both
quantities exhibit distinct strong features arising from spin-charge
separation. Our analysis of these features within the minimal model neglects
interactions between electrons of opposite chirality and applies therefore
directly to chiral 1D electron systems realized, e.g., at the edge of integer
quantum-Hall systems. Physical insight gained from our results is useful for
interpreting current experiment in quantum wires as our main conclusions still
apply with nonchiral interactions present. In particular, we discuss the effect
of charging due to applied voltages, and the possibility to observe spin-charge
separation in a time-resolved experiment.Comment: 9 pages, 3 figures, expanded version with many detail
A measurement of the Z0 leptonic partial widths and the vector and axial vector coupling constants
We have measured the partial widths of the Z0 into lepton pairs, and the forward-backward charge asymmetry for the process e+e--->[mu]+[mu]- using the L3 detector at LEP. We obtain an average [Gamma]ll of 83.0+/-2.1+/-1.1 MeV.From this result and the asymmetry measurement, we extract the values of the vector and axial vector couplings of the Z0 to leptons: grmv=-0.066-0.027+0.046 and grmA= -0.495-0.007+0.007.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/28666/3/0000483.pd
Measurement of Z0 decays to hadrons, and a precise determination of the number of neutrino species
We have made a precise measurement of the cross section for e+e--->Z0-->hadrons with the L3 detector at LEP, covering the range from 88.28 to 95.04 GeV. From a fit to the Z0 mass, total width, and the hadronic cross section to be MZ0=91.160 +/- 0.024 (experiment) +/-0.030(LEP) GeV, [Gamma]Z0=2.539+/-0.054 GeV, and [sigma]h(MZ0)=29.5+/-0.7 nb. We also used the fit to the Z0 peak cross section and the width todetermine [Gamma]invisible=0.548+/-0.029 GeV, which corresponds to 3.29+/-0.17 species of light neutrinos. The possibility of four or more neutrino flavors is thus ruled out at the 4[sigma] confidence level.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/28683/3/0000500.pd
Управление системой электрохимической защиты магистрального газопровода в условиях вечной мерзлоты
Объектом исследования подсистема коррозионного мониторинга электрохимической зашиты магистрального газопровода. Цель работы – проанализировать управление системой электрохимической зашиты магистрального газопровода в условиях вечной мерзлоты. В результате анализа установлено, что ПКМ-ТСТ-КонтКорр удовлетворяет требованиям системы управления техническим состоянием и целостностью площадных объектов организации.The object of study is the subsystem of corrosion monitoring of electrochemical protection of the main gas pipeline. The purpose of the work is to analyze the management of the system of electrochemical protection of the main gas pipeline in permafrost conditions. As a result of the analysis, it was established that PKM-TST-KontKorr satisfies the requirements of the system for managing the technical condition and integrity of the organization’s area facilities
Measurement of electroweak parameters from hadronic and leptonic decays of the Z 0
We have studied the reactions e + e − →hadrons, e + e − , μ + μ − and τ + τ − , in the energy range 88.2 GeV. A total luminosity of 5.5 pb −1 , corresponding to approximately 115000 hadronic and 10000 leptonic Z 0 decays, has been recorded with the L3 detector. From a simultaneous fit to all of our measured cross section data, we obtain assuming lepton universality:Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/47890/1/10052_2005_Article_BF01475788.pd
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