918 resultados para 290207 Satellite, Space Vehicle and Missile Design
Resumo:
Les défis associés au phénomène du vieillissement démographique de la population se manifestent sous plusieurs formes et à de nombreux égards. Il y a des questions générales comme celles qui touchent l’économique et d’autres, plus spécifiques et situées, comme celles des modalités assurant des services et des soins adéquats aux personnes vulnérables. Par exemple, le colloque « La qualité de l’expérience des usagers et des proches : vers la personnalisation des soins et des services sociaux », programmé dans le cadre des Entretiens Jacques Cartier à l’automne 2014, s’était donné comme objectif d’examiner l’expérience personnelle des usagers relativement aux prestations de soins de santé et à l’organisation des services sociaux. L’origine de ces réflexions réside dans la nécessité de trouver un meilleur équilibre des pouvoirs dans les relations d’aide ou la prestation de soin. Cette problématique sous-entend l’idée de rendre les usagers capables d’un certain contrôle par l’adoption d’approches permettant aux professionnels de faire des ajustements personnalisés. Cette thèse de doctorat s’inscrit directement dans le prolongement de cette problématique. La recherche vise à examiner les conditions en mesure de rendre possible, dans les Centres d’hébergement et de soins de longue durée (CHSLD), un rapport au monde catégorisé par ce que le sociologue Laurent Thévenot nomme le régime de la familiarité. Le régime de la familiarité fait référence aux réalités où l’engagement des personnes se déploie dans l’aisance. Autrement dit, ce régime d’engagement correspond à un rapport au milieu où la personne est en mesure de déployer ses habitudes, d’habiter le moment et de se sentir chez elle. Comme le montre Thévenot, ce type d’engagement commande la conception d’un monde qui offre aux personnes la possibilité d’articuler les modalités de leurs actions sur des repères qui font sens personnellement pour eux. Ainsi, l’objet de la recherche consiste à mieux comprendre la participation du design à la conception d’un milieu d’hébergement capable d’accueillir ce type d’engagement pragmatique. Les orientations associées à la conception de milieux d’hébergement capables de satisfaire de telles exigences correspondent largement aux ambitions qui accompagnent le développement des approches du design centrées sur l’usager, du design d’expériences et plus récemment du design empathique. Cela dit, malgré les efforts investis en ce sens, les capacités d’appropriation des usagers restent un problème pour lequel les réponses sont précaires. La thèse interroge ainsi le fait que les développements des approches de design, qui ont fait de l’expérience des usagers une préoccupation de premier plan, sont trop souvent restreints par des questions de méthodes et de procédures. Le développement de ces connaissances se serait fait au détriment de l’examen précis des savoir-être également nécessaires pour rendre les designers capables de prendre au sérieux les enjeux associés aux aspirations de ces approches. Plus spécifiquement, la recherche précise les qualités de l’expérience des établissements dont le design permet l’engagement en familiarité. L’enquête s’appuie sur une analyse des jugements posés par des équipes d’évaluation de la qualité du milieu de vie des CHSLD présents sur le territoire Montréalais. L’analyse a mené à la caractérisation de cinq qualités : l’accueillance, la convivialité, la flexibilité, la prévenance et la stabilité. Finalement, sous la forme d’un essai réflexif, un tableau de savoir-être est suggéré comme manière de rendre les designers capables de mettre en œuvre des milieux d’hébergement présentant les qualités identifiées. Cet essai est également l’occasion du développement d’un outil réflexif pour une pédagogie et une pratique vertueuse du design.
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Le campus de l’Université de Montréal est composé de bâtiments et d’aménagements paysagers hautement significatifs, dont la présence contribue à faire comprendre son évolution spatiale. Parmi eux, les espaces libres des années 1960 méritent une attention particulière pour plusieurs raisons historiques : ils font l’objet d’une réflexion pour la toute première fois dans l’histoire du campus ; l’Université de Montréal vit une phase d’expansion sans précédent ; les disciplines de l’aménagement et la pratique de planification émergent au Québec. Cet article présente de manière contextuelle les principes de planification qui ont mené à leur réalisation par La Haye et associés, firme d’urbanisme de premier plan au Québec. Il expose les qualités et les défauts des espaces libres de cette période moderne, soit l’innovation sur le plan de la vision planificatrice et du design, d’un côté, et la trop grande importance accordée aux automobiles au détriment de la sécurité et de la convivialité, de l’autre côté.
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Soil moisture plays a cardinal role in sustaining eclological balance and agricultural development – virtually the very existence of life on earth. Because of the growing shortage of water resources, we have to use the available water most efficiently by proper management. Better utilization of rainfall or irrigation management depends largely on the water retention characteristics of the soil.Soil water retention is essential to life and it provides an ongoing supply of water to plants between periods of irrigation so as to allow their continued growth and survival.It is essential to maintain readily available water in the soil if crops are to sustain satisfactory growth. The plant growth may be retarded if the soil moisture is either deficient or excessive. The optimum moisture content is that moisture which leads to optimum growth of plant. When watering is done, the amount of water supplied should be such that the water content is equal to the field capacity that is the water remained in the saturated soil after gravitational drainage. Water will gradually be utilized consumptively by plants after the water application, and the soil moisture will start falling. When the water content in the soil reaches the value known as permanent wilting point (when the plant starts wilting) fresh dose of irrigation may be done so that water content is again raised to the field capacity of soil.Soil differ themselves in some or all the properties depending on the difference in the geotechnical and environmental factors. Soils serve as a reservoir of the nutrients and water required for crops.Study of soil and its water holding capacity is essential for the efficient utilization of irrigation water. Hence the identification of the geotechnical parameters which influence the water retention capacity, chemical properties which influence the nutrients and the method to improve these properties have vital importance in irrigation / agricultural engineering. An attempt in this direction has been made in this study by conducting the required tests on different types of soil samples collected from various locations in Trivandrum district Kerala, with and without admixtures like coir pith, coir pith compost and vermi compost. Evaluation of the results are presented and a design procedure has been proposed for a better irrigation scheduling and management.
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In this Letter we numerically investigate the dynamics of a system of two coupled chaotic multimode Nd:YAG lasers with two mode and three mode outputs. Unidirectional and bidirectional coupling schemes are adopted; intensity time series plots, phase space plots and synchronization plots are used for studying the dynamics. Quality of synchronization is measured using correlation index plots. It is found that for laser with two mode output bidirectional direct coupling scheme is found to be effective in achieving complete synchronization, control of chaos and amplification in output intensity. For laser with three mode output, bidirectional difference coupling scheme gives much better chaotic synchronization as compared to unidirectional difference coupling but at the cost of higher coupling strength. We also conclude that the coupling scheme and system properties play an important role in determining the type of synchronization exhibited by the system.
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This work identifies the importance of plenum pressure on the performance of the data centre. The present methodology followed in the industry considers the pressure drop across the tile as a dependant variable, but it is shown in this work that this is the only one independent variable that is responsible for the entire flow dynamics in the data centre, and any design or assessment procedure must consider the pressure difference across the tile as the primary independent variable. This concept is further explained by the studies on the effect of dampers on the flow characteristics. The dampers have found to introduce an additional pressure drop there by reducing the effective pressure drop across the tile. The effect of damper is to change the flow both in quantitative and qualitative aspects. But the effect of damper on the flow in the quantitative aspect is only considered while using the damper as an aid for capacity control. Results from the present study suggest that the use of dampers must be avoided in data centre and well designed tiles which give required flow rates must be used in the appropriate locations. In the present study the effect of hot air recirculation is studied with suitable assumptions. It identifies that, the pressure drop across the tile is a dominant parameter which governs the recirculation. The rack suction pressure of the hardware along with the pressure drop across the tile determines the point of recirculation in the cold aisle. The positioning of hardware in the racks play an important role in controlling the recirculation point. The present study is thus helpful in the design of data centre air flow, based on the theory of jets. The air flow can be modelled both quantitatively and qualitatively based on the results.
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There are only a few attempts in the Indian ocean to evolve reliable climatic models of energy exchange fluxes and to study their inter annul variations. Large space scale and time history of the flux fields could be estimated by the bulk aerodynamic exchange and radiation equation, making use of the climatic normal’s of the related parameters derived from the remarkably good amount of surface marine observations compiled and made available on magnetic tape TDF II by the national climatic centre of NOAA for the period of years 1854 –early 1973. In this thesis the author has made an attempt to calculate the thermal energy exchange fluxes in a meaningful way, using the bulk aerodynamic coefficients which depend on the changes in the wind speed. The spatial and temporal distribution of the exchanges of energy between the ocean and atmosphere , are presented and their impact on the climatic variations of the Indian ocean are discussed from the point of view of predominating air sea interaction processes.
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The objective of the preset work is to develop optical fiber sensors for various physical and chemical parameters. As a part of this we initially investigated trace analysis of silica, ammonia, iron and phosphate in water. For this purpose the author has implemented a dual wavelength probing scheme which has many advantages over conventional evanescent wave sensors. Dual wavelength probing makes the design more reliable and repeatable and this design makes the sensor employable for concentration, chemical content, adulteration level, monitoring and control in industries or any such needy environments. Use of low cost components makes the system cost effective and simple. The Dual wavelength probing scheme is employed for the trace analysis of silica, iron, phosphate, and ammonia in water. Such sensors can be employed for the steam and water quality analysers in power plants. Few samples from a power plant are collected and checked the performance of developed system for practical applications.
Assessment of Convective Activity Using Stability Indices as Inferred from Radiosonde and MODIS Data
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The combined use of both radiosonde data and three-dimensional satellite derived data over ocean and land is useful for a better understanding of atmospheric thermodynamics. Here, an attempt is made to study the ther-modynamic structure of convective atmosphere during pre-monsoon season over southwest peninsular India utilizing satellite derived data and radiosonde data. The stability indices were computed for the selected stations over southwest peninsular India viz: Thiruvananthapuram and Cochin, using the radiosonde data for five pre- monsoon seasons. The stability indices studied for the region are Showalter Index (SI), K Index (KI), Lifted In-dex (LI), Total Totals Index (TTI), Humidity Index (HI), Deep Convective Index (DCI) and thermodynamic pa-rameters such as Convective Available Potential Energy (CAPE) and Convective Inhibition Energy (CINE). The traditional Showalter Index has been modified to incorporate the thermodynamics over tropical region. MODIS data over South Peninsular India is also used for the study. When there is a convective system over south penin-sular India, the value of LI over the region is less than −4. On the other hand, the region where LI is more than 2 is comparatively stable without any convection. Similarly, when KI values are in the range 35 to 40, there is a possibility for convection. The threshold value for TTI is found to be between 50 and 55. Further, we found that prior to convection, dry bulb temperature at 1000, 850, 700 and 500 hPa is minimum and the dew point tem-perature is a maximum, which leads to increase in relative humidity. The total column water vapor is maximum in the convective region and minimum in the stable region. The threshold values for the different stability indices are found to be agreeing with that reported in literature.
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Tourism being a smokeless industry is now a multi-billion, multi-sectoral and multi-dimensional activity in the world. Twenty first century tourism has reached up to space when a Russian rocket carried the space vehicle of Dennis Tito, an American businessman and the world’s first space tourist, to the space station. Time is not too far to carry tourists to moon and other planets in specially launched vehicles. Tourism is being considered as an agent of social change bridging gaps among nations, regions and people and helping them to open up. It is a promoter of development-material and spiritual both at macro and micro level. The General Assembly of the United Nations, in designating the year 1967 as ‘International Tourism Year’ recognized the importance of international travel as a means of fostering understanding among people, and giving them a knowledge of the rich heritage of the past civilizations, a better appreciation of the values of different cultures, thus contributing to the strengthening of world peace. It adopted the theme “Tourism-Passport to peace”. Our veteran national leader and the first Prime Minister of India, Jawaharlal Nehru had said” welcome a tourist and send back a friend” which indicates the need for extending friendly hospitality to the in bound tourists. Modern transportation has removed the obstacles of distance enabling people to appreciate each other engage in the exchange of ideas and commerce. Tourism can help overcome real prejudices and foster bonds. Tourism can be a real force of world peace. Considering the vast and varied potential of tourism in the state and its impact on the economic, social and cultural environment of the state, a detailed study is found to be relevant and imperative
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One of the interesting consequences of Einstein's General Theory of Relativity is the black hole solutions. Until the observation made by Hawking in 1970s, it was believed that black holes are perfectly black. The General Theory of Relativity says that black holes are objects which absorb both matter and radiation crossing the event horizon. The event horizon is a surface through which even light is not able to escape. It acts as a one sided membrane that allows the passage of particles only in one direction i.e. towards the center of black holes. All the particles that are absorbed by black hole increases the mass of the black hole and thus the size of event horizon also increases. Hawking showed in 1970s that when applying quantum mechanical laws to black holes they are not perfectly black but they can emit radiation. Thus the black hole can have temperature known as Hawking temperature. In the thesis we have studied some aspects of black holes in f(R) theory of gravity and Einstein's General Theory of Relativity. The scattering of scalar field in this background space time studied in the first chapter shows that the extended black hole will scatter scalar waves and have a scattering cross section and applying tunneling mechanism we have obtained the Hawking temperature of this black hole. In the following chapter we have investigated the quasinormal properties of the extended black hole. We have studied the electromagnetic and scalar perturbations in this space-time and find that the black hole frequencies are complex and show exponential damping indicating the black hole is stable against the perturbations. In the present study we show that not only the black holes exist in modified gravities but also they have similar properties of black hole space times in General Theory of Relativity. 2 + 1 black holes or three dimensional black holes are simplified examples of more complicated four dimensional black holes. Thus these models of black holes are known as toy models of black holes in four dimensional black holes in General theory of Relativity. We have studied some properties of these types of black holes in Einstein model (General Theory of Relativity). A three dimensional black hole known as MSW is taken for our study. The thermodynamics and spectroscopy of MSW black hole are studied and obtained the area spectrum which is equispaced and different thermo dynamical properties are studied. The Dirac perturbation of this three dimensional black hole is studied and the resulting quasinormal spectrum of this three dimensional black hole is obtained. The different quasinormal frequencies are tabulated in tables and these values show an exponential damping of oscillations indicating the black hole is stable against the mass less Dirac perturbation. In General Theory of Relativity almost all solutions contain singularities. The cosmological solution and different black hole solutions of Einstein's field equation contain singularities. The regular black hole solutions are those which are solutions of Einstein's equation and have no singularity at the origin. These solutions possess event horizon but have no central singularity. Such a solution was first put forward by Bardeen. Hayward proposed a similar regular black hole solution. We have studied the thermodynamics and spectroscopy of Hay-ward regular black holes. We have also obtained the different thermodynamic properties and the area spectrum. The area spectrum is a function of the horizon radius. The entropy-heat capacity curve has a discontinuity at some value of entropy showing a phase transition.
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Designing is a heterogeneous, fuzzily defined, floating field of various activities and chunks of ideas and knowledge. Available theories about the foundations of designing as presented in "the basic PARADOX" (Jonas and Meyer-Veden 2004) have evoked the impression of Babylonian confusion. We located the reasons for this "mess" in the "non-fit", which is the problematic relation of theories and subject field. There seems to be a comparable interface problem in theory-building as in designing itself. "Complexity" sounds promising, but turns out to be a problematic and not really helpful concept. I will argue for a more precise application of systemic and evolutionary concepts instead, which - in my view - are able to model the underlying generative structures and processes that produce the visible phenomenon of complexity. It does not make sense to introduce a new fashionable meta-concept and to hope for a panacea before having clarified the more basic and still equally problematic older meta-concepts. This paper will take one step away from "theories of what" towards practice and doing and try to have a closer look at existing process models or "theories of how" to design instead. Doing this from a systemic perspective leads to an evolutionary view of the process, which finally allows to specify more clearly the "knowledge gaps" inherent in the design process. This aspect has to be taken into account as constitutive of any attempt at theory-building in design, which can be characterized as a "practice of not-knowing". I conclude, that comprehensive "unified" theories, or methods, or process models run aground on the identified knowledge gaps, which allow neither reliable models of the present, nor reliable projections into the future. Consolation may be found in performing a shift from the effort of adaptation towards strategies of exaptation, which means the development of stocks of alternatives for coping with unpredictable situations in the future.
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Zwischennutzungen sind ein Alltagsphänomen, das seit Ende der 1990er Jahre im wissenschaftlichen Kontext und der kommunalen Praxis der Stadt- und Freiraumentwicklung auffallend an Aufmerksamkeit gewinnt. Die vorliegende Arbeit widmet sich dem Phänomen aus der Perspektive der Freiraumentwicklung als kommunaler Aufgabe. Im Zentrum des Interesses steht die Frage, welche aktuelle Bedeutung Zwischennutzungen, verstanden als die vorübergehende Freiraumnutzung brachliegender Baugrundstücke, für freiraumbezogene öffentliche Aufgaben und Handlungsansätze haben bzw. welche Potentiale sie dafür bieten. Vor dem Hintergrund heterogener gesellschaftlicher und räumlicher Gegebenheiten, der Erkenntnis um eine begrenzte hoheitliche Steuerbarkeit der weiteren stadträumlichen Entwicklung und angesichts knapper Haushaltsmittel ist die kommunale Freiraumentwicklung gefordert, sich bezüglich ihrer Kernaufgaben aber auch bezüglich ihrer Rolle bei der Erfüllung dieser Aufgaben neu zu positionieren. Vermehrt werden Forderungen nach einem Abgehen von „allgemeingültigen“ Versorgungsstandards und traditionellen „Produktionsprozessen“ laut. Flexiblere Freiraumangebote sollen Gestaltungsspielräume für eigeninitiatives Handeln und wechselhafte oder neuartige Nutzungen eröffnen. Mit dem Setzen von Prioritäten, einer verstärkten Kundenorientierung und aktivierenden bzw. kooperativen Handlungsansätzen soll der schlechten Haushaltslage begegnet werden. Zwischennutzungen deuten aufgrund ihrer funktionalen, räumlichen und zeitlichen Flexibilität Möglichkeiten an, auf diese Anforderungen einzugehen. Der Blick in die Verwaltungspraxis einzelner Städte zeigt, dass Zwischennutzungen in der kommunalen Freiraumentwicklung in verschiedenen Zusammenhängen gezielt aufgegriffen werden und dabei diverse Bezüge zu diesen aktuellen Anforderungen herstellen lassen. Der Stellenwert, der ihnen beigemessen wird, reicht dabei vom Ausnahmefall bis zum bewährten Ansatz. Mit den Maßnahmen werden häufig akute bzw. kurzfristige Ziele verfolgt, etwa die vorübergehende Schaffung zusätzlicher Spiel- und Aufenthaltsmöglichkeiten oder die Aufwertung brachliegender Flächen durch extensive Gestaltungsmaßnahmen. Die Projekte sind häufig charakterisiert durch intensive Kooperationen mit anderen öffentlichen und mit nicht-öffentlichen Akteuren. Die Einbindung von Zwischennutzungen in das alltägliche Verwaltungshandeln ist allerdings auch mit diversen Schwierigkeiten verbunden, wie erste Institutionalisierungsansätze in manchen Städten zeigen. Die Verknüpfung unterschiedlicher Zeithorizonte im Planungsgeschehen, die Verbindung des temporären Phänomens Zwischennutzung mit dem traditionellerweise auf Dauerhaftigkeit ausgerichteten Aufgabenverständnis der kommunalen Freiraumentwicklung verlangt nach einer Modifizierung bisheriger Positionen und Herangehensweisen. Ein solcher Anpassungsprozess im Verwaltungshandeln lässt sich nur langfristig und schrittweise bewältigen und ist als Teil der – angesichts aktueller Entwicklungen notwendigen – Weiterentwicklung freiraumbezogener Aufgaben und Handlungsansätze zu verstehen. Zwischennutzungen können neben ihren kurzfristig umsetzbaren Funktionen einen Beitrag dazu leisten.
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KAM is a computer program that can automatically plan, monitor, and interpret numerical experiments with Hamiltonian systems with two degrees of freedom. The program has recently helped solve an open problem in hydrodynamics. Unlike other approaches to qualitative reasoning about physical system dynamics, KAM embodies a significant amount of knowledge about nonlinear dynamics. KAM's ability to control numerical experiments arises from the fact that it not only produces pictures for us to see, but also looks at (sic---in its mind's eye) the pictures it draws to guide its own actions. KAM is organized in three semantic levels: orbit recognition, phase space searching, and parameter space searching. Within each level spatial properties and relationships that are not explicitly represented in the initial representation are extracted by applying three operations ---(1) aggregation, (2) partition, and (3) classification--- iteratively.
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The Aitchison vector space structure for the simplex is generalized to a Hilbert space structure A2(P) for distributions and likelihoods on arbitrary spaces. Central notations of statistics, such as Information or Likelihood, can be identified in the algebraical structure of A2(P) and their corresponding notions in compositional data analysis, such as Aitchison distance or centered log ratio transform. In this way very elaborated aspects of mathematical statistics can be understood easily in the light of a simple vector space structure and of compositional data analysis. E.g. combination of statistical information such as Bayesian updating, combination of likelihood and robust M-estimation functions are simple additions/ perturbations in A2(Pprior). Weighting observations corresponds to a weighted addition of the corresponding evidence. Likelihood based statistics for general exponential families turns out to have a particularly easy interpretation in terms of A2(P). Regular exponential families form finite dimensional linear subspaces of A2(P) and they correspond to finite dimensional subspaces formed by their posterior in the dual information space A2(Pprior). The Aitchison norm can identified with mean Fisher information. The closing constant itself is identified with a generalization of the cummulant function and shown to be Kullback Leiblers directed information. Fisher information is the local geometry of the manifold induced by the A2(P) derivative of the Kullback Leibler information and the space A2(P) can therefore be seen as the tangential geometry of statistical inference at the distribution P. The discussion of A2(P) valued random variables, such as estimation functions or likelihoods, give a further interpretation of Fisher information as the expected squared norm of evidence and a scale free understanding of unbiased reasoning