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Wind energy is a growing concern over the present awareness of lethal impact of green house gas emission. This energy source has been proven a promising alternative to fossil fuel based energy. Increased onshore wind capacity and decreased amount of low roughness wind sites has inspired the wind energy researchers to explore the possibilities of wind energy from high roughness sites such as urban area. Moreover, exhausted grid capacity between the wind energy producer from remote area and the consumer at city is also a major constrain for wind energy expansion. Driven by such motivation, this thesis has explored possibilities of wind energy conversion from buildings where energy is needed the most. Urban topography is known to be highly turbulent region considering its roughness characteristics.
Wind energy yield from urban aerodynamics is a vast arena of experimental research. Within the time frame of the thesis period and available opportunities, a brief description about the wind energy assessment modelling approach from urban flow was outlined. There are several possibilities of wind energy yield from the built structure, but only building integrated duct was focused in this thesis.
Time-averaged and global wind speed on the building integrated ducts, flow around the buildings was measured from wind tunnel and numerical analysis. Available wind energy yield and turbulence present in the locations measured from the flow was calculated based on the wind tunnel data and summarized with the pros and cons of the particular geometry. Elliptical duct configuration was found to achieve maximum energy yield from the omnidirectional free stream flow. However, simple rectangular duct configuration was determined as most efficient and optimized considering its simplicity, financial feasibility and relative energy yield with other duct configuration. The thesis also showed that on roof configuration is also very promising for wind energy exploration from the omnidirectional free stream flow.
Necessary recommendations were made based on available result for future development of the research approach. Scope and opportunities was mentioned. This investigation has proved that it is possible to extract limited amount of wind energy from building augmented ducts using concentrator effect of the building exterior. Thus, the thesis concluded that the wind energy yield from building augmented ducts using the concentrator effect of the building exterior is a promising renewable energy source.
In the time of increased awareness about the environment problems by the public opinion and also intensive international efforts to reduce emissions of greenhouse gases, as well increase of the generation of electrical energy to facilitate industrial growth, the conference offers broad contribution towards achieving the goals of diversification and sustainable development.
Focus of the student conference is to promote the discussion of views from scientists and students from Wroclaw University of Technology, Technical University of Ostrava and Brandenburg Technical University of Cottbus.
The conference offers prominent academics and industrial practitioners from all over the world the forum for discussion about the future of electrical energy and environmental issues and presents a base for identifying directions for continuation of research.
The global regulations and policies of the foundational UNESCO World Heritage (WH) are by far unable to solve the management threefold relationship conflicts between Heritage, Tourism activities, and urban needs as integral components of a Heritage site. Besides, fundamental scholars as well have not explored this existing relationship comprehensively. Instead, the conflict is discussed in a twofold manner. So, both existing international regulations and latest literature contributions have failed to understand the obstacles to bring out applicable on-site approaches for Heritage site management.
This research provides a novel lens with which to understand the conflicting demands of Heritage sites management. It does not only delve into bringing forward the predominant reasons for failure particularly for Luxor city in Egypt as an overarching question, but also the long-term impact on Tourism management and society overall from an urban perspective. The key research questions are: (1) how definitions and conceptions of Heritage Value by foundational resources are reflected in the Tourism field; (2) how the Egyptian Heritage protection laws regulate the stated conflict; and (3) focusing on Luxor city, how the history of Tourism, Heritage policies, and urban planning in Egypt, which favoured tourism-oriented projects, impacted the morphology of the city and its urban and social networks.
The investigation of Heritage Value definitions revealed a broad spectrum of views and even contradicting notions. The quandary nature of Value is evident in the Egyptian Heritage protection regulations. Additionally, they are not on the same pace as the international discourse about the complexity of Heritage protection. It viewed Value resources of Luxor city that were destinated for tourism-oriented development plans from the Heritage and Tourism points of view to come up with increasing concerns and unsolved plights.
For realistic and sustainable Heritage management, the UNESCO WH Centre's insufficient relation to WH sites needs local community representatives as an equal third party instead of maintaining it primarily through experts from its Advisory Bodies and State Parties. Egyptian Heritage protection laws should be reformed to identify the urban context as an integral component of Heritage sites, provide the local communities with technical and financial incentives, and integrate Historic Urban Landscapes recommendations. Heritage sites management and urban planning of cities of Heritage Value in Egypt should be restructured to be on the local level, where the power and interest landscape of stakeholders are the most balanced. The regulatory reorganisations that acknowledge the broader urban milieu at the international, national and local levels are a chief factor for sustainable Heritage site management.
In the time of increased awareness about the environment problems by the public opinion and also intensive international efforts to reduce emissions of greenhouse gases, as well increase of the generation of electrical energy to facilitate industrial growth, the conference offers broad contribution towards achieving the goals of diversification and sustainable development.
Focus of the student conference is to promote the discussion of views from scientists and students from Wroclaw University of Technology, Technical University of Ostrava and Brandenburg Technical University of Cottbus.
The conference offers prominent academics and industrial practitioners from all over the world the forum for discussion about the future of electrical energy and environmental issues and presents a base for identifying directions for continuation of research.
Detection and behavior of iron-cyanide complexes in soils of a former Manufactured Gas Plant site
(2014)
Soils and groundwater on sites of the former Manufactured Gas Plants (MGPs) are contaminated with various complex iron-cyanides (Fe-CN). The aim of this thesis was to evaluate a new method for the CN detection and to investigate the stability and retardation of Fe-CN complexes in soils. This study seeks for enhancing the efficiency of phytoremediation as a proper approach to decontaminate Fe-CN complexes and thus tries to make a contribution to environmental protection.
Feasibility of Field Portable Near Infrared (FP NIR) Spectrometry to determine CN concentrations in soil was evaluated in order to develop a rapid and non-destructive in-situ method. The study revealed that FP NIR could be a reliable device for detecting CN concentrations >2400 mg kg−1 in the field and >1750 mg kg−1 after sample preparation in the laboratory, however the limits of detection are too high to replace the traditional methods.
The applicability of neutral solution extraction to determine the water soluble CN fraction and the stability of Prussian Blue under saturated and unsaturated water conditions was studied in a column and batch experiments. Study revealed continuous solubility of Prussian Blue, in acidic and slightly alkaline MGP soils. Dissolution of ferric ferrocyanide under circum-neutral pH and oxic water conditions was proposed to be a function of time, where the released amount is dependent on the soil pH and total CN content.
Modeling the long-term release of Fe-CN complexes from the MGP soils revealed two-phase-process. The fast released phase was attributed to the transport process of readily dissolved hexacyanoferrats that is taking place in the liquid phase combined with desorption of CN bound to heterogeneous surfaces that are in direct contact with aqueous phase (outer-sphere complexation). The CN release rates increased with increasing pH, decreased with low initial CN concentration and were retarded by the increase in OM content.
The retardation of Fe-CN in soil was investigated in batch and column experiments. Experiments revealed that the excess of the available iron, which induced the formation of the Prussian Blue colloids despite the circum-neutral pH, was a very important factor in decreasing the CN concentration. Additionally, despite the chemical factors influencing the potential reaction with manganese oxides, the physical factors like pore size distribution, variation in the grain size etc. can reduce the CN concentration due to mechanical retention of the vertical colloidal ferric ferrocyanide movement. This study proposes colloidal vertical transport of the solid Fr-CN complexes as a potential alternative process influencing the CN mobility in the circum-neutral pH and under the excess of available iron conditions.
The results presented in this thesis revealed limitations of the FP, but advancing the sample pretreatment procedures can improve the feasibility of the spectrometer in detecting CN signal. Long-term extraction with the distilled water provides reliable assessment of the potential environmental hazard due to continuous dissolution of the solid Fe-CN complexes. Inconsistency of the Prussian Blue stability reported in the literature to the one obtained in this study imply usage of the CN contaminated MGP soils, instead of synthetic solutions, to advance the knowledge concerning the solid Fe-CN dissolution behavior. Furthermore, in the non-acidic soils the CN solubility might be influenced by the equilibrium with manganese Fe-CN mineral.
The method of microscopic imaging using X-rays and diffractive lenses was developed at synchrotron radiation facilities and it was recently transferred to systems with laboratory X-ray sources. The first part of this thesis focuses on instrumentation, in particular on the fabrication, characterization, and application of multilayer Laue lenses (MLL). The second part describes a micromechanical in-situ test that is used to study crack propagation with X-ray microscopy in microchips in a dedicated fracture mechanics experiment called micro double cantilever beam test (MicroDCB).
MLLs were fabricated from WSi2/Si multilayer coatings using mechanical preparation and focused ion beam milling. Initial characterization of the obtained lenses using scanning electron microscopy and X-ray microscopy was used to evaluate the quality of the multilayer stack and particularly to identify geometrical imperfections of individual lens elements. Crossed partial MLLs were assembled as a compact lens device for two-dimensional operation, i.e. point focusing of synchrotron radiation or full-field transmission imaging. The optical properties were simulated using a geometrical optics approximation and a physical optics model. Experimental results verify full-field imaging using crossed partial MLLs with a focal length of 8.0 mm for Cu-Ka radiation in a laboratory X-ray microscope. Sub-100 nm resolution is shown and remaining aberrations are discussed. So-called wedged MLLs employ dynamic diffraction to increase the diffraction efficiency. A fabrication process is presented that allows a subsequent geometrical modification of the lens element using a stress layer. Thus, the wedged geometry is realized independently of the multilayer coating. The resulting layer tilt is measured using a laboratory X-ray microscope. First investigations of such wedged MLLs with synchrotron radiation at a photon energy E=15.25 keV show an enhancement of the diffraction efficiency of 57 % in comparison to a tilted MLL with the same dimensions.
The long working distance of the X-ray microscope facilitates the integration of customized equipment to perform in-situ experiments. The MicroDCB tester was designed and built to drive a crack in an appropriately prepared specimen. It is compatible with the X-ray microscope and it allows tomographic studies under load. In particular, the method was applied to investigate crack propagation in the on-chip interconnect stack of advanced microelectronics products. Stable crack propagation at this location was achieved. Subsequent tomographies were acquired at several load steps. The reconstructed datasets show no critical distortions. This test is assumed to provide valuable information about crack propagation such heterogeneous structures, what is of interest to address reliability issues.
Community-Based Adaptation (CBA) to climate change is a people-centred approach designed for the enablement of communities to collectively develop strategies to respond to local impacts that directly affect their lives and livelihoods. Nevertheless, CBA requires political support and the integration into larger-scale adaptation plans and policies; as the scope of local initiatives is rather small, they cannot substitute national or city-level adaptation efforts, but they may be a supplement as short- or medium-term response measures. Despite the success of single CBA pilot projects, the institutionalisation of CBA and its integration as a bottom-up approach into larger-scale adaptation plans and policies is definitely a challenge: firstly, the potential of CBA is still overlooked by decision-makers and planners; secondly, the decentralisation of decision-making is still underdeveloped in many countries and communities are not yet empowered and enabled to actively participate; and thirdly, there is lack of approaches to 'scale-out' and 'scale-up' successful CBA pilot projects.
Consequently, this doctoral thesis aims at going beyond the work of theorists and focuses on the identification of ways to institutionalise CBA. In the theoretical section of this thesis, an academic concept of CBA is formulated; the scope of CBA is defined and challenges for taking CBA beyond the pilot stage are identified. In a further step, a governance and management concept for the integration of CBA as a bottom-up approach into top-down planning approaches is developed. In order to do that, suitable existing governance and management concepts are identified and transferable concept components are combined.
The first result of this concept development step is an ideal-typical 'CBA Governance Management Model' (CBA-GMM), which combines concepts for a policy instrument and a pro-poor funding mechanism, for a governance approach, based on multi-level and network governance, as well as for a management approach that altogether may theoretically help to enable CBA activities. In a next step, the CBA-GMM is applied to the real case of Vietnam. After the assessment of the political and institutional framework, its strengths, constraints and challenges with regard to the institutionalisation of CBA, an 'Applied CBA Governance Management Model' for Vietnam (CBA-AGMM) is developed, which proposes a concept for the integration of CBA into the strongly hierarchical structure of the Vietnamese administrative and decision-making structure. This doctoral thesis shows that it is theoretically possible to integrate CBA as a bottom-up approach into larger-scale adaptation efforts, while it honestly reflects the constraints for putting it into practice.
Conventional semiconductor memories are facing many challenges concerning their yield, reliability, testability, and manufacturability as the feature size decreases. Although they are used in the vast majority of electronic devices, their applicability for upcoming digital systems is questionable. On the other hand, due to unprecedented development of mobile devices even faster, denser, and more power-efficient semiconductor memories are required. As a consequence, many researchers and system designers are seeking new memory solutions. The greatest attention is paid to solid-state, non-volatile memories (NVMs) such as PCRAMs, MRAMs/STT-MRAMs, FeRAMs, and RRAMs. Due to their promising features like non-volatility, low-power consumption, and great scalability they are expected to meet the challenging demands of future digital systems.
Unfortunately, despite all advantages they offer, emerging NVMs pose some peculiar characteristics like limited endurance, variable data retention time, or vulnerability to external factors. On top of that, they are still in early-maturity state where their fabrication processes are not of high quality and are prone to high variations. Because of that, emerging NVMs may suffer from permanent faults which can occur right after production or in the field, during their operational time. As a consequence, the reliability of new memory technologies requires special management and great improvement.
The thesis introduces system-level approach aimed at comprehensive reliability management of existing and emerging NVMs. It presents novel on-line repair techniques which focus on specific issues of NVMs. The block-level repair manages post-production faults in the memory array. The word-level repair aims at hard faults caused by wear-out memory cells. Finally, the error-correcting code with increased hard-error correction capability handles soft and hard errors in the memory array.
Because proposed techniques are based on similar principles, they can be combined into a consistent system. Depending on the way how they are connected, different repair schemes can be achieved. Moreover, by merging them into the system a synergistic effect can be produced where the achieved memory reliability improvement is greater than the sum of reliability improvements achieved with their standalone implementations.
Further in the thesis, such a consistent repair system is presented. Next, its effectiveness, repair capabilities, and applicability for an embedded system are evaluated. In addition, the achieved synergistic effect is described and quantified
Intensive coal mining over the region of Lusatia covers a large area in southern Brandenburg and Saxony. Post mining this region has been filled with water resulting in lake formation. People living in the vicinity of mining area believe that the lake formation will increase convective precipitation in the neighboring area which shall lead to weathering of their structures. This was the prime reason to investigate the Lusatia region. The study about the impact of lake was carried out using data and CCLM simulation analyses.
For data analysis, stations Senftenberg, Cottbus and Elsterheide-Geierswalde were selected. For the analysis, six 10 years running time series, CPDF were analyzed for all the three stations. Last three time series included the period of lake formation at station Elsterheide-Geierswalde. The CPDF time series showed little deviation for station Elsterheide-Geierswalde as compared to that for other two stations during lake formation periods. But in absence of parameters (temperature, wind data) data analysis was inconclusive.
To observe effect of LULC (Land use and land cover) change on precipitation, three different simulations have been carried out,
1. VAT010: This simulation represents the potential vegetation of the whole domain. This describes the pre mining stage of the area when there was no mining.
2. VAT020: This simulation represents the introduction of lake points in the model domain. This describes the situation of area post mining, when lakes are formed.
The European X-Ray Free-Electron Laser (E-XFEL), currently under construction in Hamburg, Germany, is intended to be an international linear accelerator (linac) based user facility. Its electron beam can carry maximal average power of 600 kW. A beam with such a high power needs to be carefully transmitted through the machine and safely dumped after utilization. This is supported by various diagnostics tools. A Beam Halo Monitor (BHM) based on synthetic diamond and sapphire sensors has been designed.
Diamond sensors are developed by the company element6 for the detection of ionizing radiation and used previously elsewhere. Sapphire sensors are in this thesis applied for the first time.
The BHM concept has been applied already at the Free-electron Laser in Hamburg (FLASH). A module with four diamond and four sapphire sensors was designed, installed inside the beam pipe, commissioned, calibrated and has been successfully operated for 4 years. The system contributed significantly to safe and efficient operation of FLASH.
Both types of the sensors for the BHM were characterized. Measurements of radiation tolerance are done in a 10 MeV electron beam for polycrystalline CVD (pCVD) diamond sensors for the first time up to a dose of 10 MGy and for sapphire sensors up to 5 MGy. The charge collection efficiency (CCE) drops as a function of the absorbed dose, is however still sufficient for application as a BHM.
To improve a main sensor characteristic, the charge collection efficiency, for sapphire sensors the impurity concentration was reduced and different growth techniques were compared. Finally, charge collection efficiency of about 5 % for a bias voltage of 500 V was reached.
The BHM concept for the XFEL is designed and in the construction phase.