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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
381

Δυναμική συμπεριφορά απαγωγέων υπερτάσεων

Νασιοπούλου, Χρυσούλα 16 June 2011 (has links)
Το θέμα της παρούσας διπλωματικής εργασίας είναι η μελέτη της συμπεριφοράς απαγωγέων υπερτάσεων (SPD), όταν αυτοί αποτελούν μέρος του εσωτερικού συστήματος αντικεραυνικής προστασίας για μια οικιακή εγκατάσταση. Αρχικά γίνεται μια αναφορά στα αίτια δημιουργίας κρουστικών υπερτάσεων στο δίκτυο διανομής, ενώ στη συνέχεια δίνεται έμφαση στις υπερτάσεις που προκαλούνται από άμεσα ή έμμεσα κεραυνικά πλήγματα στο σύστημα. Στα πλαίσια της μελέτης δημιουργήθηκε ένα μοντέλο προσομοίωσης που αναπαριστά ένα δίκτυο χαμηλής τάσης TN-C-S με δύο πανομοιότυπους οικιακούς καταναλωτές, όσον αφορά τη δομή της εσωτερικής ηλεκτρικής εγκατάστασής τους παρουσία ή μη διατάξεων αντικεραυνικής προστασίας. Σκοπός της προκειμένης μελέτης είναι να δειχθεί η βέλτιστη συνδεσμολογία των διατάξεων προστασίας μέσα σε εσωτερικές ηλεκτρικές εγκαταστάσεις έτσι ώστε να αποτρέπεται η ανάπτυξη επικίνδυνων τάσεων και ρευμάτων για τον άνθρωπο και τον εξοπλισμό της οικιακής εγκατάστασης. / The subject of this project is a study upon the dynamic performance of surge arresters as a part of the internal lightning protection system for a residential electrical installation. At first, a reference about the actions or the natural phenomena that cause surge overvoltages in low voltage systems is given in detail and is followed by an essential theoretical approach on the lighning phenomenon. Both the causes, the consequences and the conditions in which a lightning occurs are being analysed. Furthermore, the characteristics and the qualifications a Lightning Protection System needs to comply with, are given, according to the Greek Standard ΕΛΟΤ-1197 and the European Standards IEC 62305-2, IEC 61643-12. Along with writing this essay, a simulation model using Simulink-Matlab was produced. The model represents a LV TN-C-S system that distributes power to two households with identical internal electrical installation. The aim of the present study is to indicate the optimal connection of the surge protective devices (SPDs) in the domestic electrical installation in order to prevent the appearance of potentially dangerous overvoltages to the humans or to the household equipment.
382

Implementação computacional para avaliar os níveis de sobretensões atmosféricas induzidas em linhas de distribuição /

Thomazella, Rogério. January 2004 (has links)
Orientador: André Nunes de Souza / Banca: Ivan Nunes da Silva / Banca: Luiz Gonzaga Campos Porto / Resumo: O presente trabalho visa o desenvolvimento de uma ferramenta computacional confiável na análise e estimação dos níveis de tensões induzidas em linhas de distribuição. Neste contexto, utilizam-se ferramentas computacionais consolidadas, como o ATP (Alternative Transients Program), que combinado a um software desenvolvido em Visual Basic, permitem quantificar e avaliar o nível de sobretensões nas linhas de distribuição. Por meio de modificações nas técnicas clássicas de modelagem das descargas atmosféricas, foi possível a construção de um software em Visual Basic capaz de quantificar os valores das tensões induzidas em linhas de distribuição finitas. A avaliação dos níveis de sobretensões induzidas nas mesmas foi implementada pela associação deste software a um programa de simulação (ATP), a fim de se obter resultados fidedignos deste transitório. Tais resultados foram utilizados para se avaliar o desempenho das... (Resumo completo, clicar acesso eletrônico abaixo) / Abstract: The present work aims at the development of a trustworthy computacional tool in the analysis and estimate of the levels of induced overvoltage in distribution network. In this context, consolidated computacional tools are used, as ATP (Alternative Transients Program), that combined with a software developed in Visual Basic (beginner's all-purpose symbolic instruction code), they allow to quantify and to evaluate the level of overvoltage in the distribution network. By the means of modifications in the classic techniques of modeling of the atmospheric discharges, the construction of a software in Visual Basic was possible to quantify the values of the induced overvoltage in a finite... (Complete abstract click electronic access below) / Mestre
383

Modelo para avaliação técnico-econômica e otimização de investimentos na proteção de redes de distribuição de energia elétrica contra descargas atmosféricas / A model for technical-economic evaluation and optimization of investments in lightning protection of power distribution networks

Paulo Sergio Milano Bernal 26 April 2018 (has links)
As descargas atmosféricas causam prejuízos às concessionárias de energia elétrica, aos consumidores e à sociedade como um todo. Diferentes métodos podem ser utilizados para melhorar a confiabilidade do sistema elétrico e a qualidade da energia fornecida aos consumidores. Entretanto, as sobretensões atmosféricas variam em função de diversos parâmetros, de modo que a eficácia de determinada alternativa de proteção depende não apenas da configuração da rede, mas também das características da região, especialmente da densidade de descargas atmosféricas e da resistividade do solo. Consequentemente a relação custo-benefício correspondente a cada alternativa também depende das características de cada região. É importante, portanto, dispor de um modelo para realizar essas avaliações levando em conta todos os fatores envolvidos no processo, de forma a auxiliar as empresas de energia na tomada de decisões sobre investimentos em proteção contra descargas atmosféricas. Entretanto, modelos de análise de viabilidade que permitam a obtenção de conclusões econômicas amplas para dar suporte à tomada de decisões não são normalmente utilizados em função da complexidade dos fenômenos associados às descargas atmosféricas e à dificuldade na construção de modelagens econômicas neste contexto. Para preencher esta lacuna, este trabalho propõe um modelo para análise do custo e benefício da implantação de sistemas de proteção contra descargas atmosféricas em redes de distribuição considerando os investimentos, a redução da indisponibilidade e os custos evitados para a distribuidora e a sociedade. A análise financeira é feita com base na taxa interna de retorno dos investimentos e na razão entre custos e benefícios, o que facilita a análise de sensibilidade e permite determinar as condições nas quais a alternativa será viável. O modelo considera a indisponibilidade de energia e a inconfiabilidade do sistema a partir dos indicadores de duração equivalente de interrupção por unidade consumidora (DEC) e da frequência equivalente de interrupção por unidade consumidora (FEC), respectivamente. Os custos evitados devido à redução da indisponibilidade são tratados como benefícios. É utilizado para analisar as condições nas quais a aplicação de um determinado método de proteção em uma determinada rede é técnica e economicamente viável. Faz-se também uma análise de sensibilidade, sendo discutidas as influências de vários parâmetros nas relações custo-benefício correspondentes às regiões estudadas. O que na realidade não limita o modelo à análise de investimentos para melhoria do desempenho de redes de distribuição frente a descargas atmosféricas, mostrou-se prático e de grande utilidade na tomada de decisões quanto à realização de determinado investimento considerando as características da região e a efetividade do método de proteção analisado. / Lightning causes damages and losses to power companies, consumers, and the society as a whole. Different methods can be used to improve the power quality and the reliability of the electrical system. However, lightning overvoltages depend upon several parameters, so that the effectiveness of a certain protection alternative depends not only on the network configuration but also on the characteristics of the region, especially the ground flash density and the soil resistivity. Consequently, the cost-benefit ratio corresponding to each alternative depends also on the characteristics of each region. It is important, therefore, that the model for conducting these assessments be capable of taking into account all the factors involved in the process so that it can assist power companies in making decisions on investments in lightning protection. However, models of feasibility analysis that enable to obtain broad economic conclusions to support decision-making are not normally used due to the complexity of the phenomena associated with lightning overvoltages and the difficulty in constructing economic models in this context. For this reason this work proposes a model for the analysis of the cost and benefit of the implantation of lightning protection systems in distribution networks considering the investments, the reduction of the unavailability, and the costs avoided for the distribution power company and the society. The financial analysis is based on the internal rate of return on investments and the cost-benefit ratio, which facilitates the sensitivity analysis and allows for the determination of the conditions under which the alternative will be feasible. The model considers the energy unavailability and the unreliability of the system from the indicators of equivalent duration of interruption per consumer unit (DEC) and the equivalent frequency of interruption per consumer unit (FEC), respectively. The costs avoided due to the reduction of unavailability are treated as benefits. The model is used to analyze the conditions under which the application of a given protection method in a given network is technically and economically feasible. A sensitivity analysis is also done and the influences of several parameters on the cost-benefit ratios corresponding to the regions studied are discussed. However the model, which actually is not limited to the analysis of investments to improve the lightning performance of power distribution networks, has proved to be practical and very useful in the decision-makingregarding the realization of a given investment taking into account the characteristics of the region and the effectiveness of the protection method analyzed.
384

Lightning Threat to Cables on Tall Towers and the Question of Electrical Isolation

Kunkolienker, Govind Ramrao January 2013 (has links) (PDF)
Electromagnetic effects of lightning currents during a direct hit to tall communication towers, other instrumented towers and chimneys can be hazardous to associated cables, as well as, electrical and electronics systems. The standard practice in telecommunication and other related fields is to bond the cable sheath to the tower and ground connection is made before it enters the base station. However, in some specific cases when power, signal and data logging cables are to be supported on the same tower, isolation of power cables is demanded. In a totally different situation, attempts are also made to have a dedicated isolated down conductor. A critical review of the situation demanded a more quantitative answer to the following questions: (i) whether it is possible to electrically isolate a dedicated down conductor, (ii) is it possible to electrically isolate the cables and their terminal equipment both mounted on towers serving as down conductor and if so, what will be the nature of current induced in the cables and (iii) as per the standard practice, if the cable sheaths are connected to the tower/structure, what will be the nature of the current shared by them. Addressing these important issues formed the scope of the present work. For the tall structures considered in this work, for the critical time periods, wave nature of the current dominates. This called for electromagnetic modeling covering Transverse Magnetic (TM) mode of the wave propagation. Owing to the complex geometrical features involved with the problem, both experiments on electromagnetically scaled laboratory models, as well as, theoretical simulation is attempted. An electromagnetically scaled laboratory model is employed for the time domain experimental investigation. This approach, which has been validated earlier, is further scrutinized to ensure its adequacy. In order to achieve generality and noting the fact that the associated parameters are rather difficult to be varied in the experimentation, theoretical investigation is also employed. For this, both NEC-2, as well as, an in-house thin wire time domain code developed for this work is employed. NEC-2 could handle multi-wire multi-radius junctions, while in-house time domain code could handle proximity and non-cylindrical shapes encountered with tower lattice elements. The investigation of induction to isolated cables on simple down conductors and towers is considered first. The induced current is shown to be bipolar oscillatory with the period of oscillation governed by the length of the cable. It is shown that the level of induction for good earth termination is below 5 – 10 % while that with moderate inductance in the earth termination can enhance the induction to higher levels. The level of induction is shown to be not critically dependent on the length of the cable, gap between cable and down conductor/tower. When multiple cables are mounted, they seem to influence each other and individually carry currents of lower amplitude. Also, the effect of shape and proximity of the tower lattice elements on induction is investigated. If the cable is housed inside a metallic tray, the amplitude of induced current is shown to be quite small. Subsequently, the evaluation of electrical stress between the isolated down conductor on tower and simplified representation of the structure is considered. A suitable definition of the electric stress for the wave regime is evolved and then it is shown that, at present, the voltage difference defined by the path integral of electric field across shortest path between the two entities is the best indicator for the stress. The electrical stress in the case of isolated down conductor on tower, as well as, down conductor with isolated cable is shown to reach very dangerous levels. On the other hand, the stress on the isolated cables on towers also serving as down conductors is shown to be relatively moderate. Interestingly, it is shown that the electrical stress and the voltage difference is dependent on the gap and for the critical time period, can be much lower than that calculated as a product of equivalent tower surge impedance and the stroke current, even before the arrival of ground end reflections. Finally, the current shared by cables connected to the down conductor is investigated. For the case of simple cylindrical down conductor with cable connected to it at the top, it is shown that the amount of current shared by the cable is not dependent on its length and the relative radii (cross section) have only a weak influence. For the case with down conductor formed by L and + angles, it is shown that the placement of cable at their interior corner can reduce the initial current shared by the cable. In order to model best possible situation with towers, experiments are conducted with cable inside an aluminum pipe. Even in this case, cable current builds up with successive reflections to become comparable with the current through the pipe itself. Subsequent investigation with 1:40 and 1:20 tower models lead to several interesting observations. Cables running along leg/face of the tower whether placed inside or outside the tower, always shares good amount of current. Further, frequent bonding of the sheath to the tower increases the current shared by the cable. Cable when housed in a metallic tray shares less than 50% of the current shared without the tray. Even though a complete quantification is not to be achieved in this work, it has made a good beginning with some significant contribution towards lightning protection issues pertaining to tall towers and structures.
385

Impact of lightning on evolution, structure and function of bacterial communities / Impact de la foudre sur l'évolution; la structure et la fonction des communautés bactériennes

Blanchard, Laurine 30 September 2013 (has links)
Pour diversifier leur matériel génétique, s’adapter aux perturbations environnementales et coloniser de nouvelles niches, les bactéries utilisent plusieurs processus évolutifs dont l’acquisition de matériel génétique par transfert horizontal de gènes comme la conjugaison, la transduction et la transformation. À ces trois mécanismes naturels s’ajoute l’électrotransformation due aux phénomènes électriques liés à la décharge de foudre. La présence dans les nuages de bactéries aérosolisées capables de former des noyaux de glace à l’origine des précipitations et impliquées dans le déclenchement de la foudre, telles que la bactérie phytopathogène à répartition mondiale Pseudomonas syringae, nous a conduit à proposer que l’électrotransformation naturelle dans les nuages pouvait affecter les bactéries, contribuant ainsi à augmenter leur potentiel adaptatif. Dans un premier temps, nous avons déterminé si la bactérie glaçogène P. syringae pouvait survivre à des électroporations simulant des décharges de foudre et acquérir du matériel génétique exogène dans les nuages. Comparée à deux autres bactéries, P. syringae se révèle être mieux adaptée pour la survie et l’électrotransformation génétique, ce qui suggère qu’elle serait capable de survivre et d’évoluer durant son transport dans les nuages. Nous avons ensuite évalué l’impact d’électroporations simulant les décharges de foudre sur la survie, le potentiel d’électrotransformation et la diversité de bactéries présentes dans des échantillons de pluie comme substitut des communautés bactériennes des nuages. Ces dernières étaient plus résistantes que les souches de laboratoire et certaines étaient capables d’acquérir de l’ADN exogène par électrotransformation. Les bactéries de la pluie isolées provenaient de différentes origines et présentaient différents modes de vie, représentatifs des sources probables d’émissions de bactéries terrestres. Cette étude montre que les bactéries aérosolisées de divers écosystèmes terrestres sont susceptibles de se disséminer dans de nouveaux habitats grâce aux nuages tout en étant capable d’acquérir de nouveaux gènes par éléctrotransformation, et d’augmenter ainsi potentiellement leur diversité génétique. La dernière partie de mon travail a évalué si l’électrotransformation appliquée aux bactéries indigènes du sol pouvait être employée pour dépolluer les sols contaminés par un pesticide largement utilisé autrefois, le lindane. L’optimisation des expériences met en évidence l’incorporation par les bactéries indigènes d’un plasmide contenant le gène codant les premières déchlorinations du lindane au travers d’une combinaison de transformation naturelle et d’électrotransformation. En conclusion, nous avons montré que l’électrotransformation naturelle liée aux décharges électriques, comme celles se produisant dans les nuages ou atteignant le sol, peut être impliquée dans le transfert horizontal de gènes chez les bactéries et, considérant l’importance de la foudre à travers le monde, pourrait jouer un rôle dans l’adaptation et l’évolution de ces organismes. / To diversify their genetic material, allowing adaptation to environmental disturbances and colonization of new ecological niches, bacteria use various evolutionary processes, including the acquisition of new genetic material by horizontal transfer mechanisms such as conjugation, transduction and transformation. Electrotransformation mediated by lightningrelated electrical phenomena may constitute an additional gene transfer mechanism occurring in nature. The presence in clouds of bacteria capable of forming ice nuclei that lead to precipitations and are involved in the triggering of lightning, such as the global phytopathogen Pseudomonas syringae, led us to postulate that natural electrotransformation in clouds may affect bacteria, by contributing to increase their adaptive potential. We first determined if the ice nucleator bacterium P. syringae could survive when in clouds and acquire exogenous genetic material through lightning shock-simulating in vitro electroporation. In comparison to two other bacteria, P. syringae appears to be best adapted for survival and for genetic electrotransformation under these conditions, which suggests that this bacterium would be able to survive and evolve whilst being transported in clouds. Secondly, we evaluated the impact of lightning shock-simulating in vitro electroporation on the survival, the electrotransformation potential and the diversity of bacteria collected from rain samples. These isolates better resisted lightning than the laboratory strains and some were able to electrotransform exogenous DNA. The rain bacteria we isolated were of different origins and were representative of life modes of the various sources of bacterial emissions on Earth. Our study suggests that bacteria aerosolized from diverse terrestrial ecosystems can spread to new habitats through clouds whilst also being able to acquire new genetic material via lightning-based electrotransformation, thereby potentially enhancing their genetic diversity. The final part of our work consisted of evaluating whether electrotransformation could be applied to the engineering of indigenous soil bacteria in order to develop a tool for the bioremediation of lindane, a once widely used pesticide. Optimized experiments revealed that both natural and electrotransformation contributed to the incorporation of a plasmid harboring a gene encoding the first lindane dechlorination steps by indigenous soil bacteria. In conclusion, we showed that natural electrotransformation mediated by electrical discharges such as those occurring in clouds or reaching soils can be involved in the horizontal gene transfer process among bacteria and, considering the importance of lightning worldwide, may play a role in the adaptation and evolution of these organisms.
386

Lightning induced voltages in cables of power production centers / Tensions Induites par une agression foudre dans les câbles de contrôle-mesure des centres de production d'énergie

Diaz Pulgar, Luis Gerardo 29 November 2016 (has links)
Lorsqu’un bâtiment d’un centre de production d’électricité est frappé par la foudre, il se produit une dangereuse circulation de courants dans tous les composants connectés au bâtiment: les murs, le réseau de terre, et les câbles sortant du bâtiment. L’intérêt du présent travail est d’étudier les tensions transitoires aux extrémités de ces câbles, en particulier des câbles contrôle mesure, dans la mesure où ces câbles sont connectés à des équipements électroniques susceptibles d’être endommagés par des perturbations électromagnétiques engendrées par la foudre. Une approche basée sur la résolution numérique des équations de Maxwell via une méthode FDTD est adoptée. Notamment le formalisme de Holland et Simpson est utilisé pour modéliser toutes les structures constituées d’un réseau de fils minces: l’armature métallique du bâtiment, la grille en cuivre du réseau de terre, la galerie de béton et le câble coaxial de contrôle mesure. Une validation des modèles électromagnétiques développés pour chaque composant du site industriel est présentée. Une analyse de sensibilité est conduite pour déterminer l’influence des paramètres du système. En outre, la technique des plans d’expérience est utilisée pour générer un méta-modèle qui prédit la tension maximale induite aux extrémités du câble en fonction des paramètres les plus influents. Cela représentent un outil de calcul précis et informatiquement efficace pour évaluer la performance foudre des câbles de contrôle et de mesure. / When lightning strikes a building in a Power Generation Center, dangerous currents propagates through all the components connected to the building structure: The walls, the grounding grid, and the cables leaving the building. It is the interest of this work to study the transient voltages at the terminations of these cables external to the building.Particularly, the Instrumentation and Measure (IM) cables, since they are connected to electronic equipment susceptible of damage or malfunctioning due to lightning ElectroMagnetic perturbations. A full wave approach based on the numerical solution of Maxwell’s equations through the FDTD algorithm is adopted. Notably, the formalism of Holland and Simpson is used to model all the structures composed of thin wires: the building steel structure, the grounding copper grid, the concrete cable ducts and the coaxial IM cables. A validation of the model developed for each component is presented. A sensitivity analysis is performed in order to the determine the main parameters that configure the problem. Also, the Design of Experiments (DoE) technique is used to generate a meta-model that predicts the peak induced voltages in the cable terminations, as a function of the main parameters that configure the industrial site. This represents an accurate, and computationally efficient tool to assess lightning performance of IM cables.
387

Features of the Electric Fields Generated by Lightning with Special Attention to Positive Ground Flashes

Johari, Dalina January 2017 (has links)
This thesis focuses on the main processes in positive ground flashes and the distant lightning environment for both positive and negative ground flashes. It presents the characteristics of the preliminary breakdown pulses (PBPs), the characteristics of the electric field pulses observed during leader propagation, and the characteristics of the electric fields produced by the first and the subsequent return strokes. It also features the observations of distant positive and negative ground flashes at distances up to 1000 km. The results were based on electric field measurements conducted remotely during summer thunderstorms in Sweden in 2014. We found that the majority of the positive ground flashes were preceded by PBPs. Some were preceded by more than one PBP train, and the parameter values for the subsequent PBP trains were found to be smaller than the values for the first PBP train. Three types of PBPs were also identified. The results suggest that the PBPs in positive ground flashes during summer thunderstorms in Sweden are weak, and the inverted dipole charge cloud configuration is consistent with our observation. A small percentage of these positive ground flashes were observed to be preceded by pronounced leader pulses. The presence of these pulses suggests that the leaders propagate in a stepped manner. We inferred that these pulses were due to the upward-connecting negative leader since their characteristics were similar to those of a negative stepped leader. On the basis of the leader pulses’ time of initiation and the average speed of the leader, we estimated the distance travelled by the leader. One case of positive return stroke preceded by negative leader pulses was also observed, and the occurrence of these pulses was the first in positive ground flashes to be reported. The majority of these positive ground flashes were found to be single-stroke. Comparison between the first and the subsequent return strokes showed that the average durations of the subsequent stroke parameters were smaller than that of the first strokes. The distances reported by the lightning location system suggest that the subsequent strokes probably created new terminations to ground. Two possible reasons were given to explain the reason for the shorter duration of the subsequent return strokes parameters compared to the first strokes. Finally, observations of distant positive and negative ground flashes showed that the electric field waveforms have a typical shape, like a distorted ‘W’ (or distorted ‘M’ for negative ground flashes) followed by small oscillations. These small oscillations were more pronounced in negative ground flashes, especially at a greater distance. The heights of the ionospheric reflections estimated for both ground flashes were found to likely correspond to a D-layer of the ionosphere. Two possible reasons were suggested for the small oscillations observed in the waveforms.
388

Mateřská školka v Jihlavě / Kindergarten in Jihlava

Vystrčil, Jan January 2020 (has links)
In diploma thesis is elaborated project documentation for the construction of an building of kindergarten. The building is situated in peryphery of Jihlava city. The building is two-storey kindergarten building with a basement. There aure two classes for children 3 - 6 years old in the building. In diploma thesis is elaborated architect-building solutions, building – construction solutions, fire safety solutions and physics qualities of constructions.
389

Modeling gap dynamics, succession, and disturbance regimes of mangrove forests: MANDY (MANgrove DYnamics)

Vogt, Juliane 16 May 2012 (has links)
Despite their important ecosystem benefits for terrestrial and marine flora and fauna and the human livelihood mangrove forests suffer a high loss rate mainly due to human activity. Aside from these impacts, natural forest disturbances exist more commonly in mangroves compared to other forests as a direct consequence of their exposed coastal location. Within this thesis I investigate the influence of natural disturbance regimes on the mangrove forest dynamics focusing in particular on the ecological role of disturbances, disturbance patterns, forest structure, succession behavior and long-term vulnerability evaluation. The study areas were set in the Indian River Lagoon in Florida (USA) and in Can Gio an UNESCO Biosphere Reserve (Vietnam). In addition, theoretical simulation studies were carried out to complement the field studies. Thereby, in our study at the Indian River Lagoon site I investigated the ecosystem response to hurricane events of an artificially impounded mangrove forest. In Can Gio, the suitability of lightning strike – caused gaps for setting a homogenous plantation into more natural-like state according to species composition and forest structure was analyzed. Finally, a theoretical simulation study was carried out to compare lightning strike and hurricane events regarding their homogenization and heterogenization effects on the spatio-temporal forest structure. The findings of the field study in the Indian River Lagoon indicate that hurricane events had a severe impact on forest areas in higher successional stages by creating open patches, whereas areas in lower successional stages remained largely undisturbed. Furthermore, the impoundment determines the species selection of the post-hurricane succession by favoring flooding-tolerant species. However, regeneration was found to be impaired by the artificially high inundation regime at some disturbed patches. The lightning-strike disturbances enhance the species composition in the monospecific plantation in Can Gio by providing a sufficient light regime for entering seeds to establish. In addition, lightning-strike gaps increased the plantation structure complexity. Regenerating lightning-strike gaps remained as “green islands” within windthrow sites in the plantation due to their low stature and provided seeds for surrounding disturbed areas thereby accelerating their recolonization. The results of the simulation analysis of a theoretical landscape showed that in the simulated highly complex natural mature forests all disturbance regimes entail homogenization on the spatial structure compared to an undisturbed scenario. The hurricane scenario showed an increased temporal variation of the forest dynamics whereas lightning-strike gaps were not able to contribute to additional heterogeneity in the simulated area, despite of having the same tree mortality probability during disturbances. The interaction of the large-scale impoundment in the Indian River Lagoon and medium-sized hurricane events is characterized by partially impeded post-hurricane regeneration. In contrast, small-scaled lightning strikes influenced the regeneration of medium-sized windthrow sites positively within the homogenous plantation. We therefore suggest management activities aimed at creating small clearances within the plantation in Can Gio to simulate additional small-scale disturbances in order to facilitate heterogenization of the plantation structure. Natural disturbances are found to be able to enhance the species diversity and the interactions of ecological processes. In particular, where sustainable management strategies focused on maintaining ecosystem services especially in restored sites or plantations act as a supportive part. Natural disturbances are an integral component of mangrove forests and fulfill specific ecological functions. However, our findings indicate that these disturbances, on top of altered environmental conditions associated with climate change and direct human impacts, might jeopardize the natural development in unnatural forest structures as on plantations or restored sites. This thesis gives an extensive overview about the effect of various disturbances in different mangrove forest systems, including semi-natural forests and strongly modified plantations, on species composition and forest structure. Field studies and simulation analyses contribute in equal parts to the results of the thesis.
390

Energeticky vyspělá budova penzionu v Lednici / Energy-efficient guest house in the city of Lednice

Joch, Tomáš January 2022 (has links)
My Masters project is titled Energy-efficient guest house in the city of Lednice. The assignment is to design a building, which meets contemporary standards of energy efficiency. There are three parts of the project. The first part consists of designing the structure of the building. The building is L-shaped with pitched roof, single-storey with attic. There is a pool with sauna, restaurant with kitchen and main hall with entrance and reception on the ground floor. At the attic there are twenty two dwelling units for guests, common room and staff facilities. The main entrance is oriented towards east. The building is masonry system from sand-lime blocks with prefabricated reinforced concrete floor slabs and roof is made of timber roof truss. The building facade is insulated by ETICS. In the second part, there are designed HVAC, lightning and shading, rainwater usage and photovoltaic power station. In the third, there is a calculation of energy need for heating and cooling using monthly balance mehtod. The project is designed with support of AutoCAD, Revit and DEKsoftT softwares.

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