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One of the main criteria determining the thermal comfort of occupants is the air temperature. To monitor this parameter, a thermostat is traditionally mounted in the indoor environment for instance in office rooms in the workplaces, or directly on the radiator or in another location in a room. One of the drawbacks of this conventional method is the measurement at a certain location instead of the temperature distribution in the entire room including the occupant zone. As a result, the climatic conditions measured at the thermostat point may differ from those at the user's location. This not only negatively impacts the thermal comfort assessment but also leads to a waste of energy due to unnecessary heating and cooling. Moreover, for measuring the distribution of the air temperature under laboratory conditions, multiple thermal sensors should be installed in the area under investigation. This requires high effort in both installation and expense.
To overcome the shortcomings of traditional sensors, Acoustic travel-time TOMography (ATOM) offers an alternative based on measuring the transmission sound velocity signals. The basis of the ATOM technique is the first-order dependency of the sound velocity on the medium's temperature. The average sound velocity, along the propagation paths, can be determined by travel-times estimation of a defined acoustic signal between transducers. After the travel-times collection, the room is divided into several volumetric grid cells, i.e. voxels, whose sizes are defined depending on the dimension of the room and the number of sound paths. Accordingly, the spatial air temperature in each voxel can be determined using a suitable tomographic algorithm. Recent studies indicate that despite the great potential of this technique to detect room climate, few experiments have been conducted.
This thesis aims to develop the ATOM technique for indoor climatic applications while coupling the analysis methods of tomography and room acoustics. The method developed in this thesis uses high-energy early reflections in addition to the direct paths between transducers for travel time estimation. In this way, reflections can provide multiple sound paths that allow the room coverage to be maintained even when a few or even only one transmitter and receiver are used.
In the development of the ATOM measurement system, several approaches have been employed, including the development of numerical methods and simulations and conducting experimental measurements, each of which has contributed to the improvement of the system's accuracy. In order to effectively separate the early reflections and ensure adequate coverage of the room with sound paths, a numerical method was developed based on the optimization of the coordinates of the sound transducers in the test room. The validation of the optimal positioning method shows that the reconstructed temperatures were significantly improved by placing the transducers at the optimal coordinates derived from the developed numerical method. The other numerical method developed is related to the selection of the travel times of the early reflections. Accordingly, the detection of the travel times has been improved by adjusting the lengths of the multiple analysis time-windows according to the individual travel times in the reflectogram of the room impulse response. This can reduce the probability of trapping faulty travel times in the analysis time-windows.
The simulation model used in this thesis is based on the image source model (ISM) method for simulating the theoretical travel times of early reflection sound paths. The simulation model was developed to simulate the theoretical travel times up to third-order reflections.
The empirical measurements were carried out in the climate lab of the Chair of Building Physics under different boundary conditions, i.e., combinations of different room air temperatures under both steady-state and transient conditions, and different measurement setups. With the measurements under controllable conditions in the climate lab, the validity of the developed numerical methods was confirmed.
In this thesis, the performance of the ATOM measurement system was evaluated using two measurement setups. The setup for the initial investigations consists of an omnidirectional receiver and a near omnidirectional sound source, keeping the number of transducers as few as possible. This has led to accurately identify the sources of error that could occur in each part of the measuring system. The second measurement setup consists of two directional sound sources and one omnidirectional receiver. This arrangement of transducers allowed a higher number of well-detected travel times for tomography reconstruction, a better travel time estimation due to the directivity of the sound source, and better space utilization. Furthermore, this new measurement setup was tested to determine an optimal selection of the excitation signal. The results showed that for the utilized setup, a linear chirp signal with a frequency range of 200 - 4000 Hz and a signal duration of t = 1 s represents an optimal selection with respect to the reliability of the measured travel times and higher signal-to-noise ratio (SNR).
To evaluate the performance of the measuring setups, the ATOM temperatures were always compared with the temperatures of high-resolution NTC thermistors with an accuracy of ±0.2 K. The entire measurement program, including acoustic measurements, simulation, signal processing, and visualization of measurement results are performed in MATLAB software.
In addition, to reduce the uncertainty of the positioning of the transducers, the acoustic centre of the loudspeaker was determined experimentally for three types of excitation signals, namely MLS (maximum length sequence) signals with different lengths and duration, linear and logarithmic chirp signals with different defined frequency ranges. For this purpose, the climate lab was converted into a fully anechoic chamber by attaching absorption panels to the entire surfaces of the room. The measurement results indicated that the measurement of the acoustic centre of the sound source significantly reduces the displacement error of the transducer position.
Moreover, to measure the air temperature in an occupied room, an algorithm was developed that can convert distorted signals into pure reference signals using an adaptive filter. The measurement results confirm the validity of the approach for a temperature interval of 4 K inside the climate lab.
Accordingly, the accuracy of the reconstructed temperatures indicated that ATOM is very suitable for measuring the air temperature distribution in rooms.
Urban heritage is at the core of the process of many changes observable in the cities today. The pace of urban change in heritage contexts, however, differs widely across the globe. In some areas, it goes slowly, in others it is astonishingly rapid. In some cases, change is coupled with risks of erosion of heritage and urban areas of value and in others change is synonymous with prosperity and positive impacts. Change in urban heritage areas is not only confined to the physical and tangible aspects, but needs to be regarded as mirroring changes related socio-political practices, economic implications, and cultural impacts. In this regard, the present thematic issue looks at various patterns of the interrelationship between heritage and urban change from both the physical and the non-physical perspectives. This editorial presents the topic of urban heritage and patterns of physical and non-physical transformation in urban heritage contexts and introduces the thematic issue “Urban Heritage and Patterns of Change: Spatial Practices of Physical and Non-Physical Transformation.”
Materialsparende Holzkonstruktionen, die insbesondere während der Kriegs- und Nachkriegszeit im 20. Jahrhundert entwickelt und optimiert wurden, erlangen aktuell aus konstruktionshistorischer Sicht, aber auch aus ökonomischer Sicht erneut Interesse. Der vorliegende Beitrag gibt einen Überblick angefangen von den ersten Konstruktionen Ende der 1920er Jahre bis hin zu Typenbindern der DDR, die noch bis 1990 über Landwirtschaftsbauten errichtet wurden und heute oft als Tragkonstruktionen für Photovoltaikanlagen weiterverwendet werden. Der Fokus liegt auf der chronologischen Vorstellung ausgewählter Konstruktionsweisen für Hallen- und Hausdächer unterschieden nach Fachwerk- und Vollwandbindern. Sowohl die verantwortlichen Ingenieure und deren Herkunft, sowie wesentliche Anwendungsfelder und Beispielbauten kommen in der Überblicksdarstellung zur Sprache. Eine wesentliche Erkenntnis ist die im Betrachtungszeitraum 1930 bis 1990 zu verzeichnende Reduzierung einer Vielzahl genagelter Spar- hin zu Typenkonstruktionen, die im wesentlichen äußerst materialeffiziente Fachwerkbinder für Satteldächer hervorbrachte.
Der Nagel als tragendes Holzverbindungsmittel ist heute gut bekannt. Doch noch vor 100 Jahren war das anders: sein statisch konstruktiver Gebrauch war verboten. Das änderte sich mit Beginn dessen Erforschung Ende der 1920er Jahre. Seit 1933 ist der Nagel Bestandteil der deutschen Regelwerke und findet seitdem breite Verwendung. Über weite Teile des 20. Jahrhunderts diente er in Not- und Sparkonstruktionen wie Brett- und Bohlenbindern als hocheffizientes Verbindungsmittel der Wahl. Diese materialsparenden Tragwerke waren bei der periodisch im-mer wiederkehrenden Ressourcenknappheit sehr gefragt und sind ein wichtiger Bestandteil der Konstruktionsgeschichte des Holzbaus. In dem folgenden Beitrag wird die Erforschung des Na-geltragverhaltens und die einhergehende fortlaufende Normierung behandelt. Die Errungen-schaften einzelner Forschungsvorhaben werden vorgestellt. Anhand eines Zeitstrahls werden Zusammenhänge zwischen Forschung und Normung gezeigt. Tabellen und Grafiken verdeutli-chen die Änderungen innerhalb der Normen von der ersten DIN 1052 im Jahr 1933 über die erste eigenständige Holzbaunorm in der DDR, der TGL 112-0730, aus 1963 bis zur DIN 1052- 1988. Dabei wird immer Bezug zum derzeitigen Entwurf des Eurocode 5 genommen. Allgemein zeigt sich, dass ein Großteil der heutigen Kenntnisse immer noch auf die Grundlagenforschung der 1930er Jahre zurückgeht.
In this work, practice-based research is conducted to rethink the understanding of aesthetics, especially in relation to current media art. Granted, we live in times when technologies merge with living organisms, but we also live in times that provide unlimited resources of knowledge and maker tools. I raise the question: In what way does the hybridization of living organisms and non-living technologies affect art audiences in the culture that may be defined as Maker culture? My hypothesis is that active participation of an audience in an artwork is inevitable for experiencing the artwork itself, while also suggesting that the impact of the umwelt changes the perception of an artwork. I emphasize artistic projects that unfold through mutual interaction among diverse peers, including humans, non-human organisms, and machines. In my thesis, I pursue collaborative scenarios that lead to the realization of artistic ideas: (1) the development of ideas by others influenced by me and (2) the materialization of my own ideas influenced by others. By developing the scenarios of collaborative work as an artistic experience, I conclude that the role of an artist in Maker culture is to mediate different types of knowledge and different positions, whereas the role of the audience is to actively engage in the artwork itself. At the same time, aesthetics as experience is triggered by the other, including living and non-living actors. It is intended that the developed methodologies could be further adapted in artistic practices, philosophy, anthropology, and environmental studies.
Care of ageing adults has become a dominant field of application for assistive robot technologies, promising support for ageing adults residing in care homes and staff, in dealing with practical routine tasks and providing social and emotional relieve. A time consuming and human intensive necessity is the maintenance of high hygiene quality in care homes. Robotic vacuum cleaners have been proven effective for doing the job elsewhere, but—in the context of care homes—are counterproductive for residents’ well-being and do not get accepted. This is because people with dementia manifest their agency in more implicit and emotional ways, while making sense of the world around them. Starting from these premises, we explored how a zoomorphic designed vacuum cleaner could better accommodate the sensemaking of people with dementia. Our design reconceptualises robotic vacuum cleaners as a cat-like robot, referring to a playful behaviour and appearance to communicate a non-threatening and familiar role model. Data from an observational study shows that residents responded positively to our prototype, as most of them engaged playfully with it as if it was a pet or a cat-like toy, for example luring it with gestures. Some residents simply ignored the robot, indicating that it was not perceived as frightening or annoying. The level of activity influenced reactions; residents ignored our prototype if busy with other occupations, which proves that it did not cause significant disturbance. We further report results from focus group sessions with formal and informal caregivers who discussed a video prototype of our robot. Caregivers encouraged us to enhance the animal like characteristics (in behaviour and materiality) even further to result in richer interactions and provoke haptic pleasure but also pointed out that residents should not mistake the robot for a real cat.
We present a physics-informed deep learning model for the transient heat transfer analysis of three-dimensional functionally graded materials (FGMs) employing a Runge–Kutta discrete time scheme. Firstly, the governing equation, associated boundary conditions and the initial condition for transient heat transfer analysis of FGMs with exponential material variations are presented. Then, the deep collocation method with the Runge–Kutta integration scheme for transient analysis is introduced. The prior physics that helps to generalize the physics-informed deep learning model is introduced by constraining the temperature variable with discrete time schemes and initial/boundary conditions. Further the fitted activation functions suitable for dynamic analysis are presented. Finally, we validate our approach through several numerical examples on FGMs with irregular shapes and a variety of boundary conditions. From numerical experiments, the predicted results with PIDL demonstrate well agreement with analytical solutions and other numerical methods in predicting of both temperature and flux distributions and can be adaptive to transient analysis of FGMs with different shapes, which can be the promising surrogate model in transient dynamic analysis.
Die Form der Datenbank
(2023)
Datenbanken sind heute die wichtigste Technik zur Organisation und Verarbeitung von Daten. Wie wurden sie zu einer der allgegenwärtigsten und gleichzeitig unsichtbarsten Praxis, die menschliche Zusammenarbeit ermöglicht? Diese Studie beginnt mit einer historiographischen Erkundung der zentralen medialen Konzepte von Datenbanken und mündet in das praxeologische Konzept der "Daten als Formation", kurz: In-Formation.
Der erste Hauptteil befasst sich mit der Formatierung von Daten durch die Verarbeitung strukturierter Daten mittels relationaler Algebra. Es wird erarbeitet, auf welche Weise Struktur neues Wissen schafft. Im zweiten Teil wird erörtert, wie Datenbanken durch den diagrammatisch-epistemischen Raum der Tabelle operationalisiert werden. Drittens untersucht die Studie Transaktionen als Erklärungen dafür, wie Daten und reale Handlungen koordiniert und synchronisiert werden können.
Im zweiten Hauptteil wird untersucht, wie relationale Datenbanken zunehmend zum Zentrum von Softwareanwendungen und Infrastrukturen wurden, wobei der Schwerpunkt auf wirtschaftlichen Praktiken liegt. In einem vergleichenden Ansatz wird anhand von Fallstudien in der DDR der 1970er bis 1990er Jahren die Frage gestellt, ob es eine „sozialistische“ Datenbankmanagement-Software gegeben hat. Dabei werden die „westlichen“ Produktionsdatenbanken BOMP, COPICS und MAPICS (IBM) sowie R2 (SAP) im Zusammenspiel mit den ostdeutschen Sachgebietsorientierten Programmiersystemen (SOPS) von Robotron diskutiert. Schließlich untersucht dieser Teil, wie die DDR ihr eigenes relationales Datenbankmanagementsystem, DABA 1600, entwickelte und dabei „westliche“ Technologie neu interpretierte.
Das abschließende Kapitel fasst die Konzepte der relationalen Datenbanken als heute wichtigsten Datenorganisationstechnik zusammen. Es erörtert, inwiefern es möglich ist, die historiographische Erzählung über die Entstehung von Datenbankmanagementsystemen und ihre Folgen für die Geschichte der Informatik zu dezentrieren. Es schließt mit der Erkenntnis, dass östliche und westliche Medien der Kooperation sich in Form und Funktion erstaunlich ähnlich sind, beide wurzeln in den tiefen Genealogien von organisatorischen und wissensbildenden Datenpraktiken.
Neben dieser medienwissenschaftlichen Arbeit besteht die Dissertation aus einem künstlerischen Teil, der dokumentiert wird: Anhand einer Reihe von Vlogs erkundet die fiktionale Figur „Data Proxy“ aktuelle Datenökologien.
Due to the development of new technologies and materials, optimized bridge design has recently gained more attention. The aim is to reduce the bridge components materials and the CO2 emission from the cement manufacturing process. Thus, most long-span bridges are designed to be with high flexibility, low structural damping, and longer and slender spans. Such designs lead, however, to aeroelastic challenges. Moreover, the consideration of both the structural and aeroelastic behavior in bridges leads to contradictory solutions as the structural constraints lead to deck prototypes with high depth which provide high inertia to material volume ratios. On the other hand, considering solely the aerodynamic requirements, slender airfoil-shaped bridge box girders are recommended since they prevent vortex shedding and exhibit minimum drag. Within this framework comes this study which provides approaches to find optimal bridge deck cross-sections while considering the aerodynamic effects. Shape optimization of deck cross-section is usually formulated to minimize the amount of material by finding adequate parameters such as the depth, the height, and the thickness and while ensuring the overall stability of the structure by the application of some constraints. Codes and studies have been implemented to analyze the wind phenomena and the structural responses towards bridge deck cross-sections where simplifications have been adopted due to the complexity and the uniqueness of such components besides the difficulty of obtaining a final model of the aerodynamic behavior. In this thesis, two main perspectives have been studied; the first is fully deterministic and presents a novel framework on generating optimal aerodynamic shapes for streamlined and trapezoidal cross-sections based on the meta-modeling approach. Single and multi-objective optimizations were both carried out and a Pareto Front is generated. The performance of the optimal designs is checked afterwards. In the second part, a new strategy based on Reliability-Based Design Optimization (RBDO) to mitigate the vortex-induced vibration (VIV) on the Trans-Tokyo Bay bridge is proposed. Small changes in the leading and trailing edges are presented and uncertainties are considered in the structural system. Probabilistic constraints based on polynomial regression are evaluated and the problem is solved while applying the Reliability Index Approach (RIA) and the Performance Measure Approach (PMA). The results obtained in the first part showed that the aspect ratio has a significant effect on the aerodynamic behavior where deeper cross-sections have lower resistance against flutter and should be avoided. In the second part, the adopted RBDO approach succeeded to mitigate the VIV, and it is proven that designs with narrow or prolonged bottom-base length and featuring an abrupt surface change in the leading and trailing edges can lead to high vertical vibration amplitude. It is expected that this research will help engineers with the selections of the adequate deck cross-section layout, and encourage researchers to apply concepts of optimization regarding this field and develop the presented approaches for further studies.
Der Erfahrung auf der Spur
(2023)
Dieselbe Zeit, derselbe Raum - zwei, grundverschiedene Regisseure und damit Erfahrungswelten. Aleksandr Rastorguevs und Sergei Loznitsas Dokumentarfilme der 90er und 2000er Jahre sind politische, poetische, punktgenaue Interventionen in die Gegenwart der „kleinen Menschen“. Das Buch widmet sich dokumentarfilmischen Meisterwerken, die methodisch Verdrängtes und Übersehenes, planmäßig Vergessenes sichtbar machen – nach dem Krieg ist vor dem Krieg. Ästhetik in ihrer sozial-, geschichts- und kulturwissenschaftlichen Relevanz.
Im post- und kontrafaktischen Zeitalter des allgegenwärtigen medialen Überflusses, inmitten der Fernseh-, YouTube- und virtuellen Realität, erfüllen, begründen, ermöglichen oder schlichtweg erkämpfen die Filme und ihre Autoren verloren gegangene Räume für Widersprüche, Fragen, die mal in ihrer Ambivalenz, mal in ihrer spröden Eindeutigkeit ihren Aussagewert haben. Wider die marginale Rezeption rückt die Publikation sie in den Raum der interdisziplinären wissenschaftlichen Forschung und stellt sie als gleichwertige Formen der Wissens- und Erfahrungsproduktion vor.
Bei all ihrer Unterschiedlichkeit, katapultieren die Filme den Zuschauer in ebenjene bekannte, aber nicht erkannte, weil nicht gesehene, übersehene, nicht wahrgenommene Hyperrealität ihrer Alltagswirklichkeit. Weder der Autor noch das Werk noch der Zuschauer sind aus dem jeweiligen historischen oder soziopolitischen Diktum herauslösbar oder gar gänzlich frei.
Diese Arbeit soll einen Beitrag zum Neuen Steuerungsmodell der Öffentlichen Verwaltung auf staatlicher Ebene in Deutschland leisten. Sie dient der Untersuchung zum Aufbau eines ökonomischen Modells zur Koordination von Dienstliegenschaften auf staatlicher Ebene.
Die Untersuchung der Dienstliegenschaften zeigt, dass diese eine interne Dienstbarkeit des Staates als Wirtschaftssubjekt an den Staat als Hoheitsträger fingieren.
Die Untersuchung der Liegenschaftsverwaltung belegt, dass sie vor allem ein Controlling-Instrument für den Informationsfluss zu Entscheidungen über Dienstliegenschaften zwischen dem Hoheitsträger und dem Wirtschaftssubjekt darstellt.
Die Untersuchung der Transaktionskosten beweist, dass eine Koordination am effizientesten über die eigene Organisation mittels dezentraler Aufgabenkonzentration in Form eines SSC erreicht werden kann.
Die Untersuchung der Handlungs- und Verfügungsrechte ergab, dass die Verfügungsrechte an den Dienstliegenschaften weiter den Ressorts bzw. Nutzern obliegen. Allein das Handlungsrecht der Aufgabenwahrnehmung ist an die Liegenschaftsverwaltung übergegangen.
Die Untersuchung der Prinzipal-Agent-Verhältnisse teilt der Liegenschaftsverwaltung die Rolle eines Erfüllungsgehilfen des Wirtschaftssubjektes zu. Die monetäre Abwicklung der Ge-schäfte zwischen dem Wirtschaftssubjekt und dem Hoheitsträger obliegt als zuarbeitende Organisationseinheit ohne eigene Entscheidungsgewalt der Liegenschaftsverwaltung.
Aus diesen Thesen ergeben sich monetäre Handlungsmöglichkeiten, die in den Aufbau des Modells einfließen. Es rückt das Wirtschaftssubjekt als Entscheidungsträger über den Ressourceneinsatz in den Mittelpunkt der Betrachtung. Der Hoheitsträger ist hierbei nur der Forderungsberechtigte an das Wirtschaftssubjekt und die Liegenschaftsverwaltung dessen immobilienwirtschaftlicher Vertreter.
Diese Konstellation berücksichtigend erfolgt dem Credo des NPM gemäß die Beschreibung des Modells und des institutionellen Arrangements nach den gängigen Modellen aus der Privatwirtschaft. Anhand der Untersuchungsergebnisse wird eine Liegenschaftsverwaltung skizziert, welche einerseits den tatsächlichen betriebswirtschaftlichen Anforderungen der Immobilienwirtschaft und andererseits den Gegebenheiten des haushaltswirtschaftlichen Umfeldes der öffentlichen Verwaltung gerecht werden kann.
Das aufgebaute Realmodell dient gleichzeitig dem Vergleich mit dem bestehenden und in der Praxis angewandten Mieter-Vermieter-Modell als Idealmodell. Der Vergleich zeigt, dass sich aus der Untersuchung zivilrechtlicher Institutionen zwar kein schuldrechtliches, wohl aber ein dingliches Recht ableiten lässt. Damit einher geht die Vermutung, dass es sich bei dem Mieter-Vermieter-Modell im staatlichen Bereich um einen Fall von Modellplatonismus handelt.
Dieser Handlungsleitfaden möchte die gemeinwohlorientierte Vergabe von Räumen und Flächen an zivilgesellschaftliche Gruppen stärken. Er ist als Inspirationssammlung zu verstehen, die den Weg zu neuen Kooperationen zwischen öffentlichen und zivilgesellschaftlichen Akteuren erleichtern soll. Wissenswertesund inspirierende Beispiele bieten eine Starthilfe, um nicht nur einzelne stadträumliche Experimente zu wagen, sondern die gemeinwohlorientierte Flächen- und Raumvergabe an zivilgesellschaftliche Gruppen kommunal zu verankern. Denn öffentliche Liegenschaften sind nach vielen Jahren der Privatisierung eine rare Ressource, die umso mehr dem Gemeinwohl dienen sollte.
In this paper we propose a novel and efficient rasterization-based approach for direct rendering of isosurfaces. Our method exploits the capabilities of task and mesh shader pipelines to identify subvolumes containing potentially visible isosurface geometry, and to efficiently extract primitives which are consumed on the fly by the rasterizer. As a result, our approach requires little preprocessing and negligible additional memory. Direct isosurface rasterization is competitive in terms of rendering performance when compared with ray-marching-based approaches, and significantly outperforms them for increasing resolution in most situations. Since our approach is entirely rasterization based, it affords straightforward integration into existing rendering pipelines, while allowing the use of modern graphics hardware features, such as multi-view stereo for efficient rendering of stereoscopic image pairs for geometry-bound applications. Direct isosurface rasterization is suitable for applications where isosurface geometry is highly variable, such as interactive analysis scenarios for static and dynamic data sets that require frequent isovalue adjustment.
Für die einen also „Bausünde“, für die anderen ein erhaltenswertes Bauwerk – wie geht man damit um? Für wen gilt wann etwas als „Bausünde“ und wann als erhaltenswert, welche Ziele werden damit verfolgt und Konzepte aufgezeigt? Inwieweit spielen beispielsweise Aspekte wie Ästhetik, Funktionalität oder der allgemeine gesellschaftliche Kontext bzw. Wandel sowie das jeweils aktuelle und bauzeitliche planerische Leitbild bzw. Verständnis eine Rolle bei der Verwendung des Begriffs und den Umgang für konkrete Bauwerke? Und inwieweit steht der Erhaltungswert bzw. eine Denkmalwürdigkeit damit im Verhältnis und wie kann damit planerisch umgegangen werden?
Der Diskussion über den Umgang mit verschmähten Bauwerken will sich die vorliegende Abschlussarbeit nähern. Als Bauwerke werden hierbei sowohl Gebäude und Plätze als auch zur Erinnerung gesetzte Objekte wie Statuen verstanden.
The study presents a Machine Learning (ML)-based framework designed to forecast the stress-strain relationship of arc-direct energy deposited mild steel. Based on microstructural characteristics previously extracted using microscopy and X-ray diffraction, approximately 1000 new parameter sets are generated by applying the Latin Hypercube Sampling Method (LHSM). For each parameter set, a Representative Volume Element (RVE) is synthetically created via Voronoi Tessellation. Input raw data for ML-based algorithms comprises these parameter sets or RVE-images, while output raw data includes their corresponding stress-strain relationships calculated after a Finite Element (FE) procedure. Input data undergoes preprocessing involving standardization, feature selection, and image resizing. Similarly, the stress-strain curves, initially unsuitable for training traditional ML algorithms, are preprocessed using cubic splines and occasionally Principal Component Analysis (PCA). The later part of the study focuses on employing multiple ML algorithms, utilizing two main models. The first model predicts stress-strain curves based on microstructural parameters, while the second model does so solely from RVE images. The most accurate prediction yields a Root Mean Squared Error of around 5 MPa, approximately 1% of the yield stress. This outcome suggests that ML models offer precise and efficient methods for characterizing dual-phase steels, establishing a framework for accurate results in material analysis.
Antimicrobial resistances (AMR) are ranked among the top ten threats to public health and societal development worldwide. Toilet wastewater contained in domestic wastewater is a significant source of AMR entering the aquatic environment. The current commonly implemented combined sewer systems at times cause overflows during rain events, resulting in the discharge of untreated wastewater into the aquatic environment, thus promoting AMR. In this short research article, we describe an approach to transform combined sewer systems into source separation-modified combined sewer systems that separately treat toilet wastewater. We employ simulations for demonstrating that source separation-modified combined sewer systems reduce the emission of AMR- causing substances by up to 11.5 logarithm levels. Thus, source separation- modified combined sewer systems are amongst the most effective means of combating AMR.
KEYWORDS
Due to the significant number of immigrants in Europe, especially Germany, integration is an ongoing subject of debate. Since the 1970s, with the emergence of the discussions on ‘place,’ it has also been realized that the immigrant experience is associated with location. Nevertheless, due to the challenges in capturing the place and migration relevance, there is a gap in understanding the role of the migrant’s geography of experiences and its outcomes (Phillips & Robinson, 2015).
This research aims to investigate the extent to which both the process of objective integration and the socio-spatial practices of high-skilled Iranian immigrants in Berlin outline and influence their sense of belonging to Berlin as the new “home.” The embedded mixed-method design had employed for this study. The quantitative analysis through Pearson’s correlation technique measured the strength of the association between Iranians’ settlement distribution and the characteristics of Berlins’ districts. The quantitative analysis provides contextual data to get a greater level of understanding of the case study’s interaction with place. The units of place intend to demonstrate the case study’s presence and possible interaction with places around their settlement location that relatively shapes their perception. The qualitative analysis comprises ethnographic fieldwork and semi-structured in-depth interviews with a homogeneous sample of Iranian immigrants in Berlin that provide data on individual and ethnic behaviors and trajectories and analyze the complex interactions between the immigrant’s experience and the role of place.
This research uncovers that Iranian highly skilled immigrants are successful in integrating objectively; However, in regards to their state of belonging, it illustrated the following: The role of socio-ethnic culture of the case study in denotation of home and belonging; Iranian high-skilled immigrants’ efforts towards reaching a level of upward mobility overshadow their attempt to shape social and spatial interaction with Berliners and Berlin itself, which manifests both in their perception and use of urban space; and finally, the identification practice and the boundary-making as an act of reassurance and self-protection against the generalization of adjacent nationalities, demonstrated in the intersection of demographical settlement distribution of Iranians in Berlin and the ethnic diversity, impact the sense of belonging and place-making.
This dissertation presents three studies on the design and implementation of interactive surface environments. It puts forward approaches to engineering interactive surface prototypes using prevailing methodologies and technologies. The scholarly findings from each study have been condensed into academic manuscripts, which are conferred herewith.
The first study identifies a communication gap between engineers of interactive surface systems (i.e., originators of concepts) and future developers. To bridge the gap, it explores a UML-based framework to establish a formal syntax for modeling hardware, middleware, and software of interactive surface prototypes. The proposed framework targets models-as-end-products, towards enabling a shared view of research prototypes thereby facilitating dialogue between concept originators and future developers.
The second study positions itself to support developers with an open-source solution for exploiting 3D point clouds for interactive tabletop applications using CPU architectures. Given dense 3D point-cloud representations of tabletop environments, the study aims toward mitigating high computational effort by segmenting candidate interaction regions as a preprocessing step. The study contributes a robust open-source solution for reducing computational costs when leveraging 3D point clouds for interactive tabletop applications. The solution itself is flexible and adaptable to variable interactive surface applications.
The third study contributes an archetypal concept for integrating mobile devices as active components in augmented tabletop surfaces. With emphasis on transparent development trails, the study demonstrates the utility of the open-source tool developed in the second study. In addition to leveraging 3D point clouds for real-time interaction, the research considers recent advances in computer vision and wireless communication to realize a modern, interactive tabletop application. A robust strategy that combines spatial augmented reality, point-cloud-based depth perception, CNN-based object detection, and Bluetooth communication is put forward. In addition to seamless communication between adhoc mobile devices and interactive tabletop systems, the archetypal concept demonstrates the benefits of preprocessing point clouds by segmenting candidate interaction regions, as suggested in the second study.
Collectively, the studies presented in this dissertation contribute; 1—bridging the gap between originators of interactive surface concepts and future developers, 2— promoting the exploration of 3D point clouds for interactive surface applications using CPU-based architectures, and 3—leveraging 3D point clouds together with emerging CNN-based object detection, and Bluetooth communication technologies to advance existing surface interaction concepts.
Audiovisuelles Cut-Up
(2023)
Diese Forschungsarbeit bezeichnet und analysiert ein ästhetisches Phänomen audiovisueller Arbeiten mit sehr schnellen Schnitten. Der Begriff „Audiovisuelles Cut-Up“ wird vorgeschlagen um dieses Phänomen zu bezeichnen. Verschiedenste audiovisuelle Arbeiten aus unterschiedlichen Kontexten werden analysiert, welche das formale Kriterium von extrem kurzen Einstellungen erfüllen – einschließlich der eigenen Forschungsbeiträge des Autors. Die Werkzeuge und Technologien, welche die neuartige Ästhetik ermöglichten werden vorgestellt. Oftmals wurden diese von den Künstlern selbst geschaffen, da fertige Lösungen nicht verfügbar waren. Audiovisuelle Cut-Ups werden nach Kontext und Medium systematisiert und verortet. Es schließen sich Beobachtungen an, in wie fern Audio und Video sich in ihrem Charakter unterscheiden, was die kleinste wahrnehmbare Einheit ist und welche Rolle Latenzen und Antizipation bei der Wahrnehmung von audiovisuellen Medien spielen.
Drei Hauptthesen werden Aufgestellt: 1. Audiovisuelles Cut-Up hat die Kraft winzige, vormals überdeckte Details deutlich zu machen. Damit kann es das Quellmaterial verdichten aber auch den Inhalt manipulieren. 2. Technische Entwicklungen haben das audiovisuelle Cut-Up hervorgerufen. 3. Heute ist die Ästhetik als ein Stilmittel im Werkzeugkasten audiovisueller Gestaltung etabliert.
Calcined clays are interesting starting materials to be used as SCMs (supplementary cementitious materials) in cements or to be converted to geopolymers by activation with a high alkaline activator. The adjustment of the properties in the fresh state, especially regarding the consistency of these binders, is almost exclusively achieved by the addition of water, since commercially available superplasticizers seem to be ineffective in low-calcium geopolymer systems. The aim of this study was a systematic investigation of various PCE (polycarboxylate ester/ether) superplasticizers (methacrylate ester PCE: MPEG, isoprenol ether PCE: IPEG, methallyl ether PCE: HPEG) with respect to their stability in different alkaline activators (NaOH, KOH, sodium and potassium silicate solutions). The effectiveness of superplasticizers (SPs) in low-calcium geopolymer binders was verified by rheological tests. Size exclusion chromatography was used to investigate if structural degradation of the superplasticizers occurs. The investigated PCE superplasticizers showed a thickening effect in the low-calcium geopolymer system. Depending on the alkalinity of the activator solution, a degradation process was detected for all the PCEs investigated. The side chains of the PCEs are cleaved off the backbone by basic ester and ether hydrolysis. The highest degree of degradation was found in sodium and potassium silicate solutions. In alkaline hydroxide solutions, the degradation process increases with increasing alkalinity.