910 resultados para Scientific societies


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A two-stage mission to place a spacecraft (SC) below the Jovian radiation belts, using a spinning bare tether with plasma contactors at both ends to provide propulsion and power,is proposed. Capture by Lorentz drag on the tether, at the periapsis of a barely hyperbolic equatorial orbit, is followed by a sequence of orbits at near-constant periapsis, drag finally bringing the SC down to a circular orbit below the halo ring. Although increasing both tether heating and bowing, retrograde motion can substantially reduce accumulated dose as compared with prograde motion, at equal tether-to-SC mass ratio. In the second stage,the tether is cut to a segment one order of magnitude smaller, with a single plasma contactor, making the SC to slowly spiral inward over severalmonths while generating large onboard power, which would allow multiple scientific applications, including in situ study of Jovian grains, auroral sounding of upper atmosphere, and space- and time-resolved observations of surface and subsurface.

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Workflow technology continues to play an important role as a means for specifying and enacting computational experiments in modern science. Reusing and re-purposing workflows allow scientists to do new experiments faster, since the workflows capture useful expertise from others. As workflow libraries grow, scientists face the challenge of finding workflows appropriate for their task, understanding what each workflow does, and reusing relevant portions of a given workflow.We believe that workflows would be easier to understand and reuse if high-level views (abstractions) of their activities were available in workflow libraries. As a first step towards obtaining these abstractions, we report in this paper on the results of a manual analysis performed over a set of real-world scientific workflows from Taverna, Wings, Galaxy and Vistrails. Our analysis has resulted in a set of scientific workflow motifs that outline (i) the kinds of data-intensive activities that are observed in workflows (Data-Operation motifs), and (ii) the different manners in which activities are implemented within workflows (Workflow-Oriented motifs). These motifs are helpful to identify the functionality of the steps in a given workflow, to develop best practices for workflow design, and to develop approaches for automated generation of workflow abstractions.

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El ruido es un contaminante que cada vez va tomando más importancia por ser un tipo de contaminación propio de las sociedades modernas. Su estudio en tanto su origen y efectos en la población, ha sido objeto de numerosas líneas de investigación en el mundo, siendo una de las herramientas más utilizadas las encuestas de percepción de molestias realizadas en numerosos países y de variados diseños metodológicos. Sin embargo, la profusa información recolectada por muchos años y por distintos países por medio de estas herramientas no permite obtener datos relacionados entre ellos para estudiar las distintas condiciones de exposición a distintos tipos de fuentes de ruido, dado que responden a diseños de instrumentos de recolección de datos (encuestas) distintos y, aún más, a escalas de mediciones distintas. Un esfuerzo por generar datos y estudios que puedan ser relacionados para contribuir a mayor conocimiento del ruido y sus efectos en la salud de la población, es la iniciativa desarrollada por el ICBEN (International Commission of Biological Effects on Noise) que desde el año 1997 un grupo de investigadores se ha propuesto generar estudios e investigaciones bajo una metodología que permita comparar los diferentes estudios que se realicen y que sus conclusiones permitan ser utilizadas por el resto y así generar nuevos conocimientos y validar dichos resultados. Uno de los problemas que en la actualidad se tiene es que las encuestas que se utilizan en distintos países, e incluso en ellos mismos, no sólo incorporan preguntas de diversas modalidades y estilos, sino que además para las respuestas que entregan los encuestados se utilizan una variedad de métodos y escalas que no permiten ser extrapolados o comparados con otros estudios. Dado que las escalas que algunos estudios utilizan, para conocer el grado de molestia que presenta la población, sin verbales, las líneas de investigación y recomendaciones internacionales sugieren que cada país desarrolle sus propias escalas y que no se remitan sólo a traducir aquellas utilizadas en otros idiomas. Esto debido que cada palabra que se utilice en las escalas encierra un concepto metrológico, esto es, que las personas le asignan un valor específico de intensidad en el continuo de grados de molestia, por lo que deben ser obtenidas para cada población bajo estudio. Esta investigación, siguiendo las recomendaciones internacionales, ha obtenido una escala verbal para ser utilizada en encuestas de percepción subjetiva de molestias por ruido en Chile, para una población de entre 15 a 65 años de edad. Se ha podido desarrollar un test para obtener dicha escala siguiendo la metodología internacional, lo que ha permitido además discutir y analizar su utilización en futuras investigaciones. Del mismo modo, se ha podido analizar la equivalencia que tiene con otras escalas que podrían ser obtenidas con esta misma metodología, así como la escala que la recomendación internacional ISO propone para el idioma español. Los resultados obtenidos permiten comprobar la necesidad de que cada país hispanoparlante desarrolle sus propias escalas lo que podría explicar, entre otros aspectos, del por qué la norma internacional aún no tiene características de oficial a falta de mayor consenso en la comunidad científica, por lo que los datos aportados en esta investigación permitirán profundizar estos y otros aspectos a los investigadores en esta materia. ABSTRACT Noise is considered as a pollutant that it is growing in importance because it has become recognized as a major annoyance in modern societies. The study of its origin and effects on populations has been the objective of numerous lines of investigation all over the world. The annoyance questionnaire is a tool that is frequently utilized in numerous countries using a variety of design methods. Nevertheless, the quantity of information collected over several years in different countries using these tools has not allowed an interrelated correlation of data because the data indicates that the different study tools designed to collect data have used varying collection techniques and measurement scales that define the exposure to different types and sources of noise pollution. In an effort to generate data and studies then can be combined to better the understanding of noise and its effects on public health, an initiative that was developed by ICBEN (International Commission of Biological Effects on Noise) was proposed in 1997 and is designed to generate and investigate studies under methodologies that allow the comparisons of different studies already undertaken and the coordination of their conclusions. These investigative tools can be used by other investigators who will be able to generate additional information and validates results. One of the currently existing problems is that the questionnaires utilized by different countries and within the same countries not only use questions based on different models and styles, but also the answers given by the subjects being interviewed are interpreted using different methods and measurement scales which do not permit direct comparison of relationship with other studies. Given the measurement tools used to obtain the reported levels of annoyance that the population experiences (without verbal response) the lines of investigation and international recommendations are that each country develops its own scale that does not rely only on verbal responses in the corresponding language. This is because each word utilized in the measurement scale has a numeric concept with which interview subjects will assign a specific numeric intensity from the continuum of levels of annoyance and must be obtained for each population under study. This investigation, which follows international recommendations, has obtained a verbal scale to be utilized in subjective perception questionnaires of noise annoyance in Chile, for a subject population of subjects between 15 and 65 years of age. It has been able to develop a test to obtain said measurement scale following the international methodology guidelines which has permitted discussion and analysis of their use by other investigators. By the same token, it has been possible to analyze the equivalency that exists between other scales that could be obtained with the same methodology including the scale as recommended by international ISO for Spanish Language. The results obtained allows proof of the necessity that each Spanish Speaking Country develop their own measurement scales which could explain, the reason why the international norm still does not have the official characteristics because of a failure of a majority consensus in the scientific community, by which the data contribution from this investigation will allow the investigator to deepen these and other aspects of the subject.

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We derive a semi-analytic formulation that permits to study the long-term dynamics of fast-rotating inert tethers around planetary satellites. Since space tethers are extensive bodies they generate non-keplerian gravitational forces which depend solely on their mass geometry and attitude, that can be exploited for controlling science orbits. We conclude that rotating tethers modify the geometry of frozen orbits, allowing for lower eccentricity frozen orbits for a wide range of orbital inclination, where the length of the tether becomes a new parameter that the mission analyst may use to shape frozen orbits to tighter operational constraints.

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El químico norteamericano Eugene Garfield es considerado por muchos investigadores como el "santón" de la documentación científica en el mundo. Bajo el prisma de Garfield y a través de publicaciones tan prestigiosas como "Current Contents" o "Science Citation Index", cualquier investigador puede conocer el índice de impacto que ha alcanzado su trabajo en la comunidad científica.

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Scientific missions constitute fundamental cornerstones of space agencies such as ESA and NASA. Modern astronomy could not be understood without the data provided by these missions. Scientists need to design very carefully onboard instruments. Payloads have to survive the crucial launch moment and later perform well in the really harsh space environ-ment. It is very important that the instrument conceptual idea can be engineered to sustain all those loads

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Reproducibility of published results is a cornerstone in scientific publishing and progress. Therefore, the scientific community has been encouraging authors and editors to publish their contributions in a verifiable and understandable way. Efforts such as the Reproducibility Initiative [1], or the Reproducibility Projects on Biology [2] and Psychology [3] domains, have been defining standards and patterns to assess whether an experimental result is reproducible.

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An electrodynamic bare tether is shown to allow carrying out scientific observations very close to Jupiter, for exploration of its surface and subsurface, and ionospheric and atmospheric in-situ measurements. Starting at a circular equatorial orbit of radius about 1.3/1.4 times the Jovian radius, continuous propellantless Lorentz drag on a thin-tape tether in the 1-5 km length range would make a spacecraft many times as heavy as the tape slowly spiral in, over a period of many months, while generating power at a load plugged in the tether circuit for powering instruments in science data acquisition and transmission. Lying under the Jovian radiation belts, the tape would avoid the most severe problem facing tethers in Jupiter, which are capable of producing both power and propulsion but, operating slowly, could otherwise accumulate too high a radiation dose . The tether would be made to spin in its orbit to keep taut; how to balance the Lorentz torque is discussed. Constraints on heating and bowing are also discussed, comparing conditions for prograde versus retrograde orbits. The system adapts well to the moderate changes in plasma density and motional electric field through the limited radial range in their steep gradients near Jupiter.

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Understanding the radio signal transmission characteristics in the environment where the telerobotic application is sought is a key part of achieving a reliable wireless communication link between a telerobot and a control station. In this paper, wireless communication requirements and a case study of a typical telerobotic application in an underground facility at CERN are presented. Then, the theoretical and experimental characteristics of radio propagation are investigated with respect to time, distance, location and surrounding objects. Based on analysis of the experimental findings, we show how a commercial wireless system, such as Wi-Fi, can be made suitable for a case study application at CERN.

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La arquitectura histórica constituye un ámbito de notable singularidad dentro del patrimonio cultural, ya que representa uno de los máximos exponentes de la cultura material de las sociedades precedentes. Su adecuada conservación y preservación debe ir necesariamente precedida de un riguroso y profundo conocimiento de sus valores culturales, de ahí la importancia de las investigaciones en este campo. Entre todos los elementos que configuran las edificaciones históricas, son probablemente las bóvedas los elementos más singulares, dada su relevancia desde un punto de vista tanto estético como estructural y constructivo. Hasta la fecha, los estudios centrados en los abovedamientos medievales góticos han aportado visiones generales del conjunto de obras, estableciendo las pertinentes clasificaciones y poniendo de manifiesto la notable variedad de tipos de bóvedas de crucería. La presente investigación tiene su origen en la necesidad de profundizar en el conocimiento de este sistema constructivo mediante el estudio específico y sistemático de un tipo concreto de abovedamiento: las bóvedas de crucería rebajadas que sustentan los coros altos de los templos. En concreto, el análisis se ha centrado en aquellos abovedamientos construidos en la Corona de Castilla durante los reinados de los Reyes Católicos y Carlos I, puesto que es en este momento de transición entre el mundo medieval y la Edad Moderna con una coexistencia de la tradición medieval y las nuevas ideas renacentistas cuando se crean las más singulares obras. Por lo tanto, el trabajo desarrollado se ha centrado en el estudio e interpretación de los procesos de diseño, trazado y construcción específicos de cada una de las bóvedas. Más allá de un enfoque descriptivo o basado en una visión actual, se ha tratado de profundizar en los métodos, sistemas y recursos que los maestros canteros emplearon, lo que ha obligado a adoptar en la medida de lo posible la mentalidad y conocimiento bajomedievales. Con estas premisas se ha desarrollado una investigación que necesariamente se ha apoyado en la contextualización histórica de cada una de las bóvedas, generándose un catálogo completo de las obras. Posteriormente, se ha desarrollado una toma de datos y un análisis individualizado de cada una de ellas, para poder obtener una interpretación de su proceso de diseño y construcción. Finalmente, se ha abordado un estudio comparativo del conjunto de las obras, poniendo en relación sus características históricas, geométricas, constructivas y estructurales. Ello ha permitido obtener unos resultados novedosos respecto a las principales cuestiones sobre el diseño y construcción de las bóvedas de crucería rebajadas, poniendo de relieve su singularidad y el profundo conocimiento de los maestros canteros que las crearon. De este modo, se ha pretendido avanzar en la investigación y sentar las bases para posteriores trabajos en el ámbito de los abovedamientos de crucería. Historical architecture is a quite singular field when considering cultural heritage, because it is one of the most important exponents of the material culture previous societies. Its proper conservation and restoration must be preceded of a rigorous and deep knowledge of the cultural values, and that is why researches in this fi eld are very important. The study of historical architecture has been developed traditionally from the viewpoint of History of Art and Architecture. Thanks to such discipline, it has been possible to establish and systematize several architectonical types and styles. However, there has been a lack in relationship with the analyses focused on the structural and constructive historical systems, which has been recently compensated by the gradual development of the discipline of Construction History. Among the several elements which form the historical buildings, the vaults are probably the most singular elements, thanks to their aesthetic, constructive and structural relevance. To date, the studies focused on the medieval gothic vaults have provided general visions of the whole group of works, which has allowed defi ning the proper classifi cations and underlining the great variety of kinds of ribbed vaults. The present research has its origin in the need of a deeper knowledge of this specific constructive system. For that reason, a specifi c and systematic analysis of a particular kind of vaults has been developed. It is focused on the surbased ribbed vaults which support the elevated choirs of some churches. In particular, it includes the works built in the Crown of Castille during the kingdoms of Catholic Kings and Carlos I, because at this precise moment of transition from the medieval world into de Modern Age with a coexistence of the medieval tradition and the new classicistic ideas the most singular and relevant surbased vaults were built. In this way, the analysis has been focused in the study and interpretation of the design, tracing and construction methods of each vault. More than a descriptive approach or an analysis based on our contemporary point of view and knowledge, this research has studied the methods, systems and resources of master masons in depth. Then, it has been necessary to adopt as much as possible their mentality, as well as the late medieval knowledge. With the above mentioned premises, the research has been developed including the historical contextualization of each vault, providing also a complete catalogue of such works. After obtaining the proper survey, measurements and other complementary data, each one has been analyzed in order to develop a hypothesis of the design and construction process. Finally, a comparative study has been carried out, which has allowed putting in relationship the historical, geometrical, constructive and structural features of the whole group of vaults. This research has provided novel results about de design and construction of surbased ribbed vaults, underlining their singularity as well as the deep knowledge of master masons who created them. In this way, we have tried to go further in this scientific field and to set the basis for latter researches focused on ribbed vaults.

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This thesis presents a task-oriented approach to telemanipulation for maintenance in large scientific facilities, with specific focus on the particle accelerator facilities at European Organization for Nuclear Research (CERN) in Geneva, Switzerland and GSI Helmholtz Centre for Heavy Ion Research (GSI) in Darmstadt, Germany. It examines how telemanipulation can be used in these facilities and reviews how this differs from the representation of telemanipulation tasks within the literature. It provides methods to assess and compare telemanipulation procedures as well a test suite to compare telemanipulators themselves from a dexterity perspective. It presents a formalisation of telemanipulation procedures into a hierarchical model which can be then used as a basis to aid maintenance engineers in assessing tasks for telemanipulation, and as the basis for future research. The model introduces a new concept of Elemental Actions as the building block of telemanipulation movements and incorporates the dependent factors for procedures at a higher level of abstraction. In order to gain insight into realistic tasks performed by telemanipulation systems within both industrial and research environments a survey of teleoperation experts is presented. Analysis of the responses is performed from which it is concluded that there is a need within the robotics community for physical benchmarking tests which are geared towards evaluating the dexterity of telemanipulators for comparison of their dexterous abilities. A three stage test suite is presented which is designed to allow maintenance engineers to assess different telemanipulators for their dexterity. This incorporates general characteristics of the system, a method to compare kinematic reachability of multiple telemanipulators and physical test setups to assess dexterity from a both a qualitative perspective and measurably by using performance metrics. Finally, experimental results are provided for the application of the proposed test suite onto two telemanipulation systems, one from a research setting and the other within CERN. It describes the procedure performed and discusses comparisons between the two systems, as well as providing input from the expert operator of the CERN system.

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This paper describes a corpus-based analysis of the humanizing metaphor and supports that constitutive metaphor in science and technology may be highly metaphorical and active. The study, grounded in Lakoff’s Theory of Metaphor and in Langacker’s relational networks, consists of two phases: firstly, Earth Science metaphorical terms were extracted from databases and dictionaries and, then, contextualized by means of the “Wordsmith” tool in a digitalized corpus created to establish their productivity. Secondly, the terms were classified to disclose the main conceptual metaphors underlying them; then, the mappings and the relational networks of the metaphor were described. Results confirm the systematicity and productivity of the metaphor in this field, show evidence that metaphoricity of scientific terms is gradable, and support that Earth Science metaphors are not only created in terms of their concrete salient properties and attributes, but also on abstract human anthropocentric projections.

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En los últimos años, y a la luz de los retos a los que se enfrenta la sociedad, algunas voces están urgiendo a dejar atrás los paradigmas modernos —eficiencia y rendimiento— que sustentan a las llamadas prácticas sostenibles, y están alentando a repensar, en el contexto de los cambios científicos y culturales, una agenda termodinámica y ecológica para la arquitectura. La cartografía que presenta esta tesis doctoral se debe de entender en este contexto. Alineándose con esta necesidad, se esfuerza por dar a este empeño la profundidad histórica de la que carece. De este modo, el esfuerzo por dotar a la arquitectura de una agenda de base científica, se refuerza con una discusión cultural sobre el progresivo empoderamiento de las ideas termodinámicas en la arquitectura. Esta cartografía explora la historia de las ideas termodinámicas en la arquitectura desde el principio del siglo XX hasta la actualidad. Estudia, con el paso de los sistemas en equilibrio a los alejados del equilibrio como trasfondo, como las ideas termodinámicas han ido infiltrándose gradualmente en la arquitectura. Este esfuerzo se ha planteado desde un doble objetivo. Primero, adquirir una distancia crítica respecto de las prácticas modernas, de modo que se refuerce y recalibre el armazón intelectual y las herramientas sobre las que se está apoyando esta proyecto termodinámico. Y segundo, desarrollar una aproximación proyectual sobre la que se pueda fundamentar una agenda termodinámica para la arquitectura, asunto que se aborda desde la firme creencia de que es posible una re-descripción crítica de la realidad. De acuerdo con intercambios de energía que se dan alrededor y a través de un edificio, esta cartografía se ha estructurado en tres entornos termodinámicos, que sintetizan mediante un corte transversal la variedad de intercambios de energía que se dan en la arquitectura: -Cualquier edificio, como constructo espacial y material inmerso en el medio, intercambia energía mediante un flujo bidireccional con su contexto, definiendo un primer entorno termodinámico al que se denomina atmósferas territoriales. -En el interior de los edificios, los flujos termodinámicos entre la arquitectura y su ambiente interior definen un segundo entorno termodinámico, atmósferas materiales, que explora las interacciones entre los sistemas materiales y la atmósfera interior. -El tercer entorno termodinámico, atmosferas fisiológicas, explora los intercambios de energía que se dan entre el cuerpo humano y el ambiente invisible que lo envuelve, desplazando el objeto de la arquitectura desde el marco físico hacia la interacción entre la atmósfera y los procesos somáticos y percepciones neurobiológicas de los usuarios. A través de estos tres entornos termodinámicos, esta cartografía mapea aquellos patrones climáticos que son relevantes para la arquitectura, definiendo tres situaciones espaciales y temporales sobre las que los arquitectos deben actuar. Estudiando las conexiones entre la atmósfera, la energía y la arquitectura, este mapa presenta un conjunto de ideas termodinámicas disponibles —desde los parámetros de confort definidos por la industria del aire acondicionado hasta las técnicas de acondicionamiento pasivo— que, para ser efectivas, necesitan ser evaluadas, sintetizadas y recombinadas a la luz de los retos de nuestro tiempo. El resultado es un manual que, mediando entre la arquitectura y la ciencia, y a través de este relato histórico, acorta la distancia entre la arquitectura y la termodinámica, preparando el terreno para la definición de una agenda termodinámica para el proyecto de arquitectura. A este respecto, este mapa se entiende como uno de los pasos necesarios para que la arquitectura recupere la capacidad de intervenir en la acuciante realidad a la que se enfrenta. ABSTRACT During the last five years, in the light of current challenges, several voices are urging to leave behind the modern energy paradigms —efficiency and performance— on which the so called sustainable practices are relying, and are posing the need to rethink, in the light of the scientific and cultural shifts, the thermodynamic and ecological models for architecture. The historical cartography this PhD dissertation presents aligns with this effort, providing the cultural background that this endeavor requires. The drive to ground architecture on a scientific basis needs to be complemented with a cultural discussion of the history of thermodynamic ideas in architecture. This cartography explores the history of thermodynamic ideas in architecture, from the turn of the 20th century until present day, focusing on the energy interactions between architecture and atmosphere. It surveys the evolution of thermodynamic ideas —the passage from equilibrium to far from equilibrium thermodynamics— and how these have gradually empowered within design and building practices. In doing so, it has posed a double-objective: first, to acquire a critical distance with modern practices which strengthens and recalibrates the intellectual framework and the tools in which contemporary architectural endeavors are unfolding; and second, to develop a projective approach for the development a thermodynamic agenda for architecture and atmosphere, with the firm belief that a critical re-imagination of reality is possible. According to the different systems which exchange energy across a building, the cartography has been structured in three particular thermodynamic environments, providing a synthetic cross-section of the range of thermodynamic exchanges which take place in architecture: -Buildings, as spatial and material constructs immersed in the environment, are subject to a contiuous bidirectional flow of energy with its context, defining a the first thermodynamic environment called territorial atmospheres. -Inside buildings, the thermodynamic flow between architecture and its indoor ambient defines a second thermodynamic environment, material atmospheres, which explores the energy interactions between the indoor atmosphere and its material systems. -The third thermodynamic environment, physiological atmospheres, explores the energy exchanges between the human body and the invisible environment which envelopes it, shifting design drivers from building to the interaction between the atmosphere and the somatic processes and neurobiological perceptions of users. Through these three thermodynamic environments, this cartography maps those climatic patterns which pertain to architecture, providing three situations on which designers need to take stock. Studying the connections between atmosphere, energy and architecture this map presents, not a historical paradigm shift from mechanical climate control to bioclimatic passive techniques, but a range of available thermodynamic ideas which need to be assessed, synthesized and recombined in the light of the emerging challenges of our time. The result is a manual which, mediating between architecture and science, and through this particular historical account, bridges the gap between architecture and thermodynamics, paving the way to a renewed approach to atmosphere, energy and architecture. In this regard this cartography is understood as one of the necessary steps to recuperate architecture’s lost capacity to intervene in the pressing reality of contemporary societies.

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Se analiza la función de las definiciones en los textos científicos como elemento esencial para crear coherencia y dotar de comprensibilidad al texto. Se presentan varios ejemplos en textos de divulgación y en artículos dirigidos a pares.

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Scientific workflows provide the means to define, execute and reproduce computational experiments. However, reusing existing workflows still poses challenges for workflow designers. Workflows are often too large and too specific to reuse in their entirety, so reuse is more likely to happen for fragments of workflows. These fragments may be identified manually by users as sub-workflows, or detected automatically. In this paper we present the FragFlow approach, which detects workflow fragments automatically by analyzing existing workflow corpora with graph mining algorithms. FragFlow detects the most common workflow fragments, links them to the original workflows and visualizes them. We evaluate our approach by comparing FragFlow results against user-defined sub-workflows from three different corpora of the LONI Pipeline system. Based on this evaluation, we discuss how automated workflow fragment detection could facilitate workflow reuse.