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The present thesis studies the effects of rice husk ash (RHA) as a pozzolanic admixture and the combination of RHA and ground granulated blast-furnace slag (GGBS) on properties of ultra-high performance concrete (UHPC). The ultimate purpose of this study is to replace completely silica fume (SF) and partially Portland cement by RHA and GGBS to achieve sustainable UHPC. To reach this aim, characteristics of RHA in dependence of grinding period, especially its pozzolanic reactivity in saturated Ca(OH)2 solution and in a cementitious system at a very low water binder ration (w/b) were assessed. The influences of RHA on compatibility between superplasticizer and binder, workability, compressive strength, shrinkage, internal relative humidity, microstructure and durability of UHPC were also evaluated. Furthermore, synergic effects of RHA and GGBS on the properties of UHPC were investigated to produce more sustainable UHPC. Finally, various heat treatments were applied to study the properties of UHPC under these conditions. All the characteristics of these UHPCs containing RHA were compared to those of mixtures containing SF.
Die historische Entwicklung frühneuzeitlicher Wohngebäude (1450 bis 1637) der Stadt Meißen wird hier vorwiegend mit bauarchäologischen und baugeschichtlichen Methoden unter zusätzlicher Nutzung farbarchäologischer, dendrochronologischer und archivalischer Quellen untersucht. Eine bau- und raumstrukturelle Differenzierung der Wohnformen unterschiedlicher sozialer Gruppierungen- Handwerker, frühes Bürgertum sowie hoher und niederer Klerus- scheint dabei möglich zu sein. Die Untersuchung fußt auf der teilweise sehr detaillierten Auswertung von Befunden, die in zwanzig Wohngebäuden gewonnen wurden.
The aim of this doctoral thesis was to investigate whether the German term “shrinking city” is appropriate to depopulating Polish cities. In order to do so an attempt to define the currently still vague notion of “shrinking city” was made. The urban development of Eastern Germany was thoroughly examined both in a short term perspective and in a wide historical as well as international context, with the Polish urban development used as reference. 25 cities (kreisfreie Städte) in Eastern Germany and depopulating Polish cities: Łódź and the Metropolis Silesia were chosen as case studies.
On the basis of the gathered information a “shrinking city” in Eastern Germany was defined as a city with a long-lasting population decrease coupled with over-dimensioned, growth-oriented development policies carried out for decades. Such a development path is triggering negative consequences in the spatial, economic and also demographic dimension, which tend to intensify each other.
The thesis postulates that the definition of the “shrinking city in Eastern Germany” is not appropriate to depopulating cities in Poland. Polish cities are characterized by a short-lasting population decrease and this trend is not triggering negative spatial and economic consequences. Oversized growth development policies were never present in the cities and they still suffer from great deficiencies in housing and other basic infrastructure, which derive from the socialist period. Furthermore, radical de-economization, known from Eastern German cities, did not occur in the Polish cities. Both Łódź and the Metropolis Silesia remain main production centers of the country.
This doctoral thesis presents a contradictory view to contemporary publications on “shrinking cities”, in which this phenomenon is regarded as having occurred suddenly after the collapse of the socialism. It proved that “shrinking cities” in Eastern Germany are not the outcome of short-lasting processes, but are deeply rooted in the past. Moreover, they represent a very distinct development pattern that highly differentiates from the one found in Central Eastern Europe and the one in Western Europe. In this way the doctoral thesis provided a new, critical approach to the discourse on “shrinking cities” in Germany. It also draws attention to the importance of the historical analysis in cities’ development research, particularly in cross border studies. In time of European integration peculiarities resulting from centuries of different spatial, economic and social development paths should not be underestimated.
Die Arbeit zeigt die wesentlichen Gründe auf, warum betahalbhydratreiche Niederbranntgipsbinder (industriell als Stuckgips bezeichnet) oft sehr unterschiedliche Eigenschaften aufweisen.
Der Anteil an Halbhydrat, welches aus dem stark hygroskopischen Anhydrit III (A III) durch die Reaktion mit Luftfeuchtigkeit entsteht, stellt einen erheblichen, bislang vollkommen unbeachteten Einfluss dar. Dieses Halbhydrat aus A III zeigt andere Oberflächeneigenschaften und ein Reaktionsverhalten, das von frisch gebranntem Betahalbhydrat abweicht.
Es zeigt sich, wie weitreichend der Einfluss physiko-chemischer Oberflächenprozesse wie Adsorption und Kondensation ist. Hierdurch wird nicht nur die Oberflächenenergie der Partikel abgebaut, sondern auch eine Verminderung der Hydratationswärme verursacht. Somit wirken sich physikalische Vorgänge thermodynamisch aus. Einwirkende und resultierende Parameter einer Alterung wirken wie folgt äußerst komplex zusammen:
Die dominierenden Bindemitteleigenschaften Abbindeverhalten und Wasseranspruch verändern sich durch eine Alterung sowohl aufgrund der Phasenumwandlungen als auch infolge der Veränderungen der Kristallite. Ebenso einflussreich ist die Veränderung der Oberflächencharakteristik. Die Auswirkung der Alterung auf die Reaktivität geht deutlich über den Abbau von Anhydrit III, die Dezimierung von abbindefähigem Material und die beschleunigende Wirkung von Alterungsdihydrat hinaus. Das Wachstum der Kristallite von Halbhydrat und die Verringerung der inneren Energie sowie die energetisch günstige spontane Beladung der Kristallgitterkanäle kleinster Anhydrit III-Kristallite mit dampfförmigem Wasser müssen als maßgebliche Ursachen für die Abnahme der Reaktivität infolge der Alterung herausgestellt werden. Die Abnahme der spezifischen Oberfläche und der Oberflächenenergie wirken sich außerdem auf den Lösungs- und den Hydratationsprozess aus. Der auf der Oberfläche von Anhydrit III kristallisierte Anhydrit II wirkt sich auch nach der Umwandlung von A III in Halbhydrat lösungshemmend aus. Infolge der alterungsbedingten Dihydratbildung, die bei anhaltender Feuchteeinwirkung einsetzt, wird diese Wirkung aufgehoben bzw. vermindert. Obgleich Dihydrat für seinen Beschleunigungseffekt bekannt ist, entfaltet Alterungsdihydrat infolge seiner besonderen Ausbildung innerhalb der wenige Moleküllagen umfassenden Kondenswasserschicht nur eine geringe keimbildende Wirkung.
Eine wesentliche Erkenntnis betrifft den Bindungscharakter des Überstöchiometrischen Wassers. Diesbezüglich ist eine rein physikalische Bindung nachweisbar. Das in der Arbeit als stärker adsorptiv gebunden bezeichnete Wasser kommt neben der Freien Feuchte ausschließlich bei Anwesenheit von Halbhydrat vor. Dieser Zusammenhang wird erstmalig hergestellt und mit Hilfe der kristallchemisch bedingten höheren Oberflächenenergie von Halbhydrat erklärt.
Text classification deals with discovering knowledge in texts and is used for extracting, filtering, or retrieving information in streams and collections. The discovery of knowledge is operationalized by modeling text classification tasks, which is mainly a human-driven engineering process. The outcome of this process, a text classification model, is used to inductively learn a text classification solution from a priori classified examples. The building blocks of modeling text classification tasks cover four aspects: (1) the way examples are represented, (2) the way examples are selected, (3) the way classifiers learn from examples, and (4) the way models are selected.
This thesis proposes methods that improve the prediction quality of text classification solutions for unseen examples, especially for non-standard tasks where standard models do not fit. The original contributions are related to the aforementioned building blocks: (1) Several topic-orthogonal text representations are studied in the context of non-standard tasks and a new representation, namely co-stems, is introduced. (2) A new active learning strategy that goes beyond standard sampling is examined. (3) A new one-class ensemble for improving the effectiveness of one-class classification is proposed. (4) A new model selection framework to cope with subclass distribution shifts that occur in dynamic environments is introduced.
The automotive industry requires realistic virtual reality applications more than other domains to increase the efficiency of product development. Currently, the visual quality of virtual invironments resembles reality, but interaction within these environments is usually far from what is known in everyday life. Several realistic research approaches exist, however they are still not all-encompassing enough to be usable in industrial processes. This thesis realizes lifelike direct multi-hand and multi-finger interaction with arbitrary objects, and proposes algorithmic and technical improvements that also approach lifelike usability. In addition, the thesis proposes methods to measure the effectiveness and usability of such interaction techniques as well as discusses different types of grasping feedback that support the user during interaction. Realistic and reliable interaction is reached through the combination of robust grasping heuristics and plausible pseudophysical object reactions. The easy-to-compute grasping rules use the objects’ surface normals, and mimic human grasping behavior. The novel concept of Normal Proxies increases grasping stability and diminishes challenges induced by adverse normals. The intricate act of picking-up thin and tiny objects remains challenging for some users. These cases are further supported by the consideration of finger pinches, which are measured with a specialized finger tracking device. With regard to typical object constraints, realistic object motion is geometrically calculated as a plausible reaction on user input. The resulting direct finger-based
interaction technique enables realistic and intuitive manipulation of arbitrary objects. The thesis proposes two methods that prove and compare effectiveness and usability. An expert review indicates that experienced users quickly familiarize themselves with the technique. A quantitative and qualitative user study shows that direct finger-based interaction is preferred over indirect interaction in the context of functional car assessments. While controller-based interaction is more robust, the direct finger-based interaction provides greater realism, and becomes nearly as reliable when the pinch-sensitive mechanism is used. At present, the haptic channel is not used in industrial virtual reality applications. That is why it can be used for grasping feedback which improves the users’ understanding of the grasping situation. This thesis realizes a novel pressure-based tactile feedback at the fingertips. As an alternative, vibro-tactile feedback at the same location is realized as well as visual feedback by the coloring of grasp-involved finger segments. The feedback approaches are also compared within the user study, which reveals that grasping feedback is a requirement to judge grasp status and that tactile feedback improves interaction independent of the used display system. The considerably stronger vibrational tactile feedback can quickly become annoying during interaction. The interaction improvements and hardware enhancements make it possible to interact with virtual objects in a realistic and reliable manner. By addressing realism and reliability, this thesis paves the way for the virtual evaluation of human-object interaction, which is necessary for a broader application of virtual environments in the automotive industry and other domains.
In this research work, an energy approach is employed for assessing quality in dynamic soil-structure interaction (SSI) models, and energy measures are introduced and investigated as general indicators of structural response.
Dynamic SSI models with various abstraction levels are then investigated according to different coupling scenarios for soil and structure models.
The hypothesis of increasing model uncertainty with decreasing complexity is investigated and a mathematical framework is provided for the treatment of model uncertainty. This framework is applied to a case study involving alternative models for incorporating dynamic SSI effects. In the evaluation process, energy measures are used within the framework of the \textit{adjustment factor} approach in order to quantitatively assess the uncertainty associated with SSI models. Two primary types of uncertainty are considered, namely the uncertainty in the model framework and the uncertainty in the model input parameters.
Investigations on model framework uncertainty show that the more complex three-dimensional FE model has the best quality of the models investigated, whereas the Wolf SSI model produces the lowest model uncertainty of the simpler models. The fixed-base model produces the highest estimated uncertainty and accordingly the worst quality of all models investigated.
These results confirm the hypothesis of increasing model uncertainty with decreasing complexity only when the assessment is based on the ratio of structural hysteretic energy to input energy as a response indicator.
Increasingly powerful hard- and software allows for the numerical simulation of complex physical phenomena with high levels of detail. In light of this development the definition of numerical models for the Finite Element Method (FEM) has become the bottleneck in the simulation process. Characteristic features of the model generation are large manual efforts and a de-coupling of geometric and numerical model. In the highly probable case of design revisions all steps of model preprocessing and mesh generation have to be repeated. This includes the idealization and approximation of a geometric model as well as the definition of boundary conditions and model parameters. Design variants leading to more resource-efficient structures might hence be disregarded due to limited budgets and constrained time frames.
A potential solution to above problem is given with the concept of Isogeometric Analysis (IGA). Core idea of this method is to directly employ a geometric model for numerical simulations, which allows to circumvent model transformations and the accompanying data losses. Basis for this method are geometric models described in terms of Non-uniform rational B-Splines (NURBS). This class of piecewise continuous rational polynomial functions is ubiquitous in computer graphics and Computer-Aided Design (CAD). It allows the description of a wide range of geometries using a compact mathematical representation. The shape of an object thereby results from the interpolation of a set of control points by means of the NURBS functions, allowing efficient representations for curves, surfaces and solid bodies alike. Existing software applications, however, only support the modeling and manipulation of the former two. The description of three-dimensional solid bodies consequently requires significant manual effort, thus essentially forbidding the setup of complex models.
This thesis proposes a procedural approach for the generation of volumetric NURBS models. That is, a model is not described in terms of its data structures but as a sequence of modeling operations applied to a simple initial shape. In a sense this describes the "evolution" of the geometric model under the sequence of operations. In order to adapt this concept to NURBS geometries, only a compact set of commands is necessary which, in turn, can be adapted from existing algorithms. A model then can be treated in terms of interpretable model parameters. This leads to an abstraction from its data structures and model variants can be set up by variation of the governing parameters.
The proposed concept complements existing template modeling approaches: templates can not only be defined in terms of modeling commands but can also serve as input geometry for said operations. Such templates, arranged in a nested hierarchy, provide an elegant model representation. They offer adaptivity on each tier of the model hierarchy and allow to create complex models from only few model parameters. This is demonstrated for volumetric fluid domains used in the simulation of vertical-axis wind turbines. Starting from a template representation of airfoil cross-sections, the complete "negative space" around the rotor blades can be described by a small set of model parameters, and model variants can be set up in a fraction of a second.
NURBS models offer a high geometric flexibility, allowing to represent a given shape in different ways. Different model instances can exhibit varying suitability for numerical analyses. For their assessment, Finite Element mesh quality metrics are regarded. The considered metrics are based on purely geometric criteria and allow to identify model degenerations commonly used to achieve certain geometric features. They can be used to decide upon model adaptions and provide a measure for their efficacy. Unfortunately, they do not reveal a relation between mesh distortion and ill-conditioning of the equation systems resulting from the numerical model.
Der Film BERLIN – DIE SINFONIE DER GROSSTADT (1927, Walter Ruttman) gilt bis heute als der Sinfonische Dokumentarfilm schlechthin. Er präsentiert nicht nur die Traditionslinien, die ihre Wurzeln in der neuen Sachlichkeit und den ersten Dokumentarfilmtheorien fanden, sondern auch die künstlerische und filmische Vorstellung von Ruttmann. Um den höchsten Grad an Objektivität in der Realitätsdarstellung zu erreichen, hat dieser Film einerseits treu alle theoretischen und ästhetischen Gedanken der neusachlichen Kunst zum ersten Mal filmisch in einem DOKUMENTARFILM dargestellt. Noch dazu drückt der Berlin-Film seinen kulturellen Beitrag mit ausschliesslich filmischen Mitteln aus, also mit rein visuellen Mitteln, oder anders gesagt mit FILMSPRACHE.
Im Gegensatz zur ersten Ankündigung des Films und der Filmliteratur, die den Film als Dokumentarfilm ansehen, ist er in Wirklichkeit einer der ersten innovativen Musikfilme in seinem historischen Kontext, welcher mit der Montage von Wirklichkeitsabbilden autonome Musik zu interpretieren versucht. Seine sachlichen, dokumentarischen Reportage-Bilder ordnen sich der abstrakten Struktur und dem Taktmaß der Musik unter. Als Folge entsteht laut Ruttmann eine VISUELLE SINFONIE, die eigentlich vielmehr eine Vision von Berlin darstellte, als zukünftige industrielle Musterstadt. Mit anderen Worten ist Berlin in diesem Film eine realistische Illusion, aber keineswegs ein reales Bild. Er bildet ein neues Filmgenre, den KUNSTDOKUMENTARFILM, das den Grundprinzipien des Dokumentarfilms nicht folgt.
Dies unterscheidet ihn aber auch von den KÜNSTLERISCHEN DOKUMENTARFILMEN, die einerseits dem Film BERLIN – DIE SINFONIE DER GROSSTADT zwar formalstilistisch und ästhetisch ähneln. Aber im Gegensatz zu ihm erfüllen diese die elementaren Voraussetzungen für einen Dokumentarfilm. Beispiele dafür sind: DER MANN MIT DER KAMERA (1929, Dsiga Vertov), KOYAANISQATSI (1982,Godfry Reggio) und das Remake BERLIN, SINFONIE EINER GROßSTADT (2002, Thomas Schadt).
BERLIN – DIE SINFONIE DER GROSSTADT von Walter Ruttmann stellt nicht nur ein neues Filmgenre dar, er ist auch eine singuläre Erscheinung in der Filmgeschichte. In diesem Sinne spielte er, laut dem Filmkritiker Helmut Korte, eine entscheidende Rolle in der Weiterentwicklung des absoluten Films „als Musterbeispiel für die Möglichkeiten des künstlerisch-dokumentarischen Films“ (Korte 1991: 76).
Post Conflict Reconstruction is a very complex topic, whether it is to be undertaken by the Local or the International Community. The process of the Post Conflict Development is to be very hard to investigate, primarily for the combination of socio-cultural phenomena, war and political instability; having difficulties of conducting solid empirical analysis (obtaining reliable data) and dealing with war-torn communities. The multifaceted process of the reconstruction is ought to touch a lot of countries vital segments, whereas each of them requires different approach; coordination with one another; and unification in their common aim.
The emergency of the assistance programs are not equal, same as with the priority and weight when compared with each other, therefore occasionally there are programs for the success of which the other less important actions are violated or neglected.
The case is with the International Community presence ( the set up), which aside from their mission and projects, it is considered to play a very important role on the urban development of a post conflict city; the setting was never planned or considered in a holistic manner, therefore IC establishment was done ad hoc and it was guided by issues which did not help at its greatest to the urban development of the city and more over to the citizens who were most in need.
The study is about the Urban Development, due to the fact that the biggest concentration of the International Community is likely to be in the urban centers, and the experienced changes are of a much considerable magnitude. The reconstruction phase is likely to be lasting at about 10 years and more , consequently the International Community for that time being tends to be recognized as temporary citizens of the city, and it is inevitably that they will be having an impact on the urban development of the city; in that basis it is considered to be significant that the International Community Establishment/Set Up be included into the International Organizations mission and assist in the overall mission of the reconstruction.