403 resultados para Ballistic missiles


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Fluidized bed spray granulators (FBMG) are widely used in the process industry for particle size growth; a desirable feature in many products, such as granulated food and medical tablets. In this paper, the first in a series of four discussing the rate of various microscopic events occurring in FBMG, theoretical analysis coupled with CFD simulations have been used to predict granule–granule and droplet–granule collision time scales. The granule–granule collision time scale was derived from principles of kinetic theory of granular flow (KTGF). For the droplet–granule collisions, two limiting models were derived; one is for the case of fast droplet velocity, where the granule velocity is considerable lower than that of the droplet (ballistic model) and another for the case where the droplet is traveling with a velocity similar to the velocity of the granules. The hydrodynamic parameters used in the solution of the above models were obtained from the CFD predictions for a typical spray fluidized bed system. The granule–granule collision rate within an identified spray zone was found to fall approximately within the range of 10-2–10-3 s, while the droplet–granule collision was found to be much faster, however, slowing rapidly (exponentially) when moving away from the spray nozzle tip. Such information, together with the time scale analysis of droplet solidification and spreading, discussed in part II and III of this study, are useful for probability analysis of the various event occurring during a granulation process, which then lead to be better qualitative and, in part IV, quantitative prediction of the aggregation rate.

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Numerical optimization is a technique where a computer is used to explore design parameter combinations to find extremes in performance factors. In multi-objective optimization several performance factors can be optimized simultaneously. The solution to multi-objective optimization problems is not a single design, but a family of optimized designs referred to as the Pareto frontier. The Pareto frontier is a trade-off curve in the objective function space composed of solutions where performance in one objective function is traded for performance in others. A Multi-Objective Hybridized Optimizer (MOHO) was created for the purpose of solving multi-objective optimization problems by utilizing a set of constituent optimization algorithms. MOHO tracks the progress of the Pareto frontier approximation development and automatically switches amongst those constituent evolutionary optimization algorithms to speed the formation of an accurate Pareto frontier approximation. Aerodynamic shape optimization is one of the oldest applications of numerical optimization. MOHO was used to perform shape optimization on a 0.5-inch ballistic penetrator traveling at Mach number 2.5. Two objectives were simultaneously optimized: minimize aerodynamic drag and maximize penetrator volume. This problem was solved twice. The first time the problem was solved by using Modified Newton Impact Theory (MNIT) to determine the pressure drag on the penetrator. In the second solution, a Parabolized Navier-Stokes (PNS) solver that includes viscosity was used to evaluate the drag on the penetrator. The studies show the difference in the optimized penetrator shapes when viscosity is absent and present in the optimization. In modern optimization problems, objective function evaluations may require many hours on a computer cluster to perform these types of analysis. One solution is to create a response surface that models the behavior of the objective function. Once enough data about the behavior of the objective function has been collected, a response surface can be used to represent the actual objective function in the optimization process. The Hybrid Self-Organizing Response Surface Method (HYBSORSM) algorithm was developed and used to make response surfaces of objective functions. HYBSORSM was evaluated using a suite of 295 non-linear functions. These functions involve from 2 to 100 variables demonstrating robustness and accuracy of HYBSORSM.

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This work aims to study and investigate the use of a hybrid composite polymer formed with blanket aramid (Kevlar 29) fiber blanket flax fiber and particulate dry endocarp of coconut (Cocos nucifera Linn), using as matrix an epoxy resin based thermoset for use in areas of protective equipment. Besides such material is used an aluminum plate, joined to the composite by means of glue based on epoxy and araldite commercial. The manufacturing process adopted was manual lamination (Hand Lay Up) to manufacture the hybrid composite. After the composite is prepared, an aluminum plate is subjected to pressure and glued to cure the adhesive. Layers of veil will also be used to separate the particulate from the linen blanket layer without disturbing the alignment of the fibers of the blankets. To characterize the mechanical and physical behavior was manufactured a plate of 800 x 600 mm of the hybrid composite, which were removed specimens for tests of water absorption to saturation; density; impact test (Charpy) and two test specimens for ballistic testing 220 mm x 200 mm to make a comparative study between the dry state and saturated water absorption and thus see the ballistic performance of these two conditions. The test was applied to make a comparative study of fracture in these two conditions, caused by penetrating ballistic missile (38 and 380). To test the impact (Charpy) will analyze the absorbed energy, fracture appearance and lateral contraction, also in dry condition and saturation of absorbed water, thereby analyzing situations where the impact load is relevant, such as bumps and shocks produced by stone, metal or wooden bars among others. The proposed configuration, along with the tests, has the purpose, application in the fields of equipment against ballistic impact, such as helmets; bullet proof vests; shields; protective packaging and other items to be identified in this research.

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In this paper we analyze the structure of Fe-Ga layers with a Ga content of ∼30 at.% deposited by the sputtering technique under two different regimes. We also studied the correlation between the structure and magnetic behavior of the samples. Keeping the Ar pressure fixed, we modified the flow regime from ballistic to diffusive by increasing the distance between the target and the substrate. X-ray diffraction measurements have shown a lower structural quality when growing in the diffusive flow. We investigated the impact of the growth regime by means of x-ray absorption fine structure (XAFS) measurements and obtained signs of its influence on the local atomic order. Full multiple scattering and finite difference calculations based on XAFS measurements point to a more relevant presence of a disordered A2 phase and of orthorhombic Ga clusters on the Fe-Ga alloy deposited under a diffusive regime; however, in the ballistic sample, a higher presence of D0_3/B2 phases is evidenced. Structural characteristics, from local to long range, seem to determine the magnetic behavior of the layers. Whereas a clear in-plane magnetic anisotropy is observed in the film deposited under ballistic flow, the diffusive sample is magnetically isotropic. Therefore, our experimental results provide evidence of a correlation between flow regime and structural properties and its impact on the magnetic behavior of a rather unexplored compositional region of Fe-Ga compounds.

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Photoacoustic tomography (PAT) is an emerging imaging modality that shows great potential for preclinical research and clinical practice. As a hybrid technique, PAT is based on the acoustic detection of optical absorption from either endogenous chromophores, such as oxy-hemoglobin and deoxy-hemoglobin, or exogenous contrast agents, such as organic dyes and nanoparticles. Because ultrasound scatters much less than light in tissue, PAT generates high-resolution images in both the optical ballistic and diffusive regimes. Over the past decade, the photoacoustic technique has been evolving rapidly, leading to a variety of exciting discoveries and applications. This review covers the basic principles of PAT and its different implementations. Strengths of PAT are highlighted, along with the most recent imaging results.

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An up to 2-cm thick Chicxulub ejecta deposit marking the Cretaceous-Paleogene (K-Pg) boundary (the "K-T" boundary) was recovered in six holes drilled during ODP Leg 207 (Demerara Rise, tropical western Atlantic). Stunning features of this deposit are its uniformity over an area of 30 km2 and the total absence of bioturbation, allowing documentation of the original sedimentary sequence. High-resolution mineralogical, petrological, elemental, isotopic (Sr-Nd), and rock magnetic data reveal a distinct microstratigraphy and a range of ejecta components. The deposit is normally graded and composed predominantly of rounded, 0.1- to max. 1-mm sized spherules. Spherules are altered to dioctahedral aluminous smectite, though occasionally relict Si-Al-rich hydrated glass is also present, suggesting acidic precursor lithologies. Spherule textures vary from hollow to vesicle-rich to massive; some show in situ collapse, others include distinct Fe-Mg-Ca-Ti-rich melt globules and lath-shaped Al-rich quench crystals. Both altered glass spherules and the clay matrix (Site 1259B) display strongly negative epsilon-Nd (T=65Ma) values (-17) indicating uptake of Nd from contemporaneous ocean water during alteration. Finally, Fe-Mg-rich spherules, shocked quartz and feldspar grains, few lithic clasts, as well as abundant accretionary and porous carbonate clasts are concentrated in the uppermost 0.5-0.7 mm of the deposit. The carbonate clasts display in part very unusual textures, which are interpreted to be of shock-metamorphic origin. The preservation of delicate spherule textures, normal grading with lack of evidence for traction transport, and sub-millimeter scale compositional trends provide evidence for this spherule deposit representing a primary air-fall deposit not affected by significant reworking. The ODP Leg 207 spherule deposit is the first known dual-layer K-Pg boundary in marine settings; it incorporates compositional and stratigraphic aspects of both proximal and distal marine sites. Its stratigraphy strongly resembles the dual-layer K-Pg boundary deposits in the terrestrial Western Interior of North America (although there carbonate phases are not preserved). The occurrence of a dual ejecta layer in these quite different sedimentary environments - separated by several thousands of kilometers - provides additional evidence for an original sedimentary sequence. Therefore, the layered nature of the deposit may document compositional differences between ballistic Chicxulub ejecta forming the majority of the spherule deposit, and material falling out from the vapor (ejecta) plume, which is concentrated in the uppermost part.

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Les manifestations de crise, en Côte d'Ivoire, ont été extrêmement violentes. Au cours des quinze dernières années, plus de 400 personnes sont mortes, tuées dans des affrontements avec les forces de sécurités ou des contre-manifestants. Malgré la gravité du problème, peu d’études scientifiques y sont consacrées et les rares analyses et enquêtes existantes portent, de façon unilatérale, sur l’identité et la responsabilité pénale des auteurs et commanditaires putatifs de cette violence. La présente étude s’élève contre le moralisme inhérent à ces approches pour aborder la question sous l’angle de l’interaction : cette thèse a pour objectif de comprendre les processus et logiques qui sous-tendent l’usage de la violence au cours des manifestations. Le cadre théorique utilisé dans cette étude qualitative est l’interactionnisme symbolique. Le matériel d’analyse est composé d’entrevues et de divers documents. Trente-trois (33) entrevues semi-dirigées ont été réalisées avec des policiers et des manifestants, cooptés selon la technique de la boule de neige, entre le 3 janvier et le 15 mai 2013, à Abidjan. Les rapports d’enquête, de l’ONG Human Rights Watch, sur les manifestations de crise, les manuels de formation de la police et divers autres matériaux périphériques ont également été consultés. Les données ont été analysées suivant les principes et techniques de la théorisation ancrée (Paillée, 1994). Trois principaux résultats ont été obtenus. Premièrement, le système ivoirien de maintien de l'ordre est conçu selon le modèle d’une « police du prince ». Les forces de sécurité dans leur ensemble y occupent une fonction subalterne d’exécutant. Elles sont placées sous autorité politique avec pour mandat la défense inconditionnelle des institutions. Le style standard de gestion des foules, qui en découle, est légaliste et répressif, correspondant au style d’escalade de la force (McPhail, Schweingruber, & Carthy, 1998). Cette « police du prince » dispose toutefois de marges de manœuvre sur le terrain, qui lui permettent de moduler son style en fonction de la conception qu’elle se fait de l’attitude des manifestants : paternaliste avec les foules dites calmes, elle devient répressive ou déviante avec les foules qu’elle définit comme étant hostiles. Deuxièmement, à rebours d’une conception victimaire de la foule, la violence est une transaction situationnelle dynamique entre forces de sécurité et manifestants. La violence suit un processus ascendant dont les séquences et les règles d’enchainement sont décrites. Ainsi, le premier niveau auquel s’arrête la majorité des manifestations est celui d’une force non létale bilatérale dans lequel les deux acteurs, protestataires et policiers, ont recours à des armes non incapacitantes, où les cailloux des premiers répondent au gaz lacrymogène des seconds. Le deuxième niveau correspond à la létalité unilatérale : la police ouvre le feu lorsque les manifestants se rapprochent de trop près. Le troisième et dernier niveau est atteint lorsque les manifestants utilisent à leur tour des armes à feu, la létalité est alors bilatérale. Troisièmement, enfin, le concept de « l’indignité républicaine » rend compte de la logique de la violence dans les manifestations. La violence se déclenche et s’intensifie lorsqu’une des parties, manifestants ou policiers, interprète l’acte posé par l’adversaire comme étant en rupture avec le rôle attendu du statut qu’il revendique dans la manifestation. Cet acte jugé indigne a pour conséquence de le priver de la déférence rattachée à son statut et de justifier à son encontre l’usage de la force. Ces actes d’indignités, du point de vue des policiers, sont symbolisés par la figure du manifestant hostile. Pour les manifestants, l’indignité des forces de sécurité se reconnait par des actes qui les assimilent à une milice privée. Le degré d’indignité perçu de l’acte explique le niveau d’allocation de la violence.

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Single-walled carbon nanotubes (SWNTs) have been studied as a prominent class of high performance electronic materials for next generation electronics. Their geometry dependent electronic structure, ballistic transport and low power dissipation due to quasi one dimensional transport, and their capability of carrying high current densities are some of the main reasons for the optimistic expectations on SWNTs. However, device applications of individual SWNTs have been hindered by uncontrolled variations in characteristics and lack of scalable methods to integrate SWNTs into electronic devices. One relatively new direction in SWNT electronics, which avoids these issues, is using arrays of SWNTs, where the ensemble average may provide uniformity from device to device, and this new breed of electronic material can be integrated into electronic devices in a scalable fashion. This dissertation describes (1) methods for characterization of SWNT arrays, (2) how the electrical transport in these two-dimensional arrays depend on length scales and spatial anisotropy, (3) the interaction of aligned SWNTs with the underlying substrate, and (4) methods for scalable integration of SWNT arrays into electronic devices. The electrical characterization of SWNT arrays have been realized by polymer electrolyte-gated SWNT thin film transistors (TFTs). Polymer electrolyte-gating addresses many technical difficulties inherent to electrical characterization by gating through oxide-dielectrics. Having shown polymer electrolyte-gating can be successfully applied on SWNT arrays, we have studied the length scaling dependence of electrical transport in SWNT arrays. Ultrathin films formed by sub-monolayer surface coverage of SWNT arrays are very interesting systems in terms of the physics of two-dimensional electronic transport. We have observed that they behave qualitatively different than the classical conducting films, which obey the Ohm’s law. The resistance of an ultrathin film of SWNT arrays is indeed non-linear with the length of the film, across which the transport occurs. More interestingly, a transition between conducting and insulating states is observed at a critical surface coverage, which is called percolation limit. The surface coverage of conducting SWNTs can be manipulated by turning on and off the semiconductors in the SWNT array, leading to the operation principle of SWNT TFTs. The percolation limit depends also on the length and the spatial orientation of SWNTs. We have also observed that the percolation limit increases abruptly for aligned arrays of SWNTs, which are grown on single crystal quartz substrates. In this dissertation, we also compare our experimental results with a two-dimensional stick network model, which gives a good qualitative picture of the electrical transport in SWNT arrays in terms of surface coverage, length scaling, and spatial orientation, and briefly discuss the validity of this model. However, the electronic properties of SWNT arrays are not only determined by geometrical arguments. The contact resistances at the nanotube-nanotube and nanotube-electrode (bulk metal) interfaces, and interactions with the local chemical groups and the underlying substrates are among other issues related to the electronic transport in SWNT arrays. Different aspects of these factors have been studied in detail by many groups. In fact, I have also included a brief discussion about electron injection onto semiconducting SWNTs by polymer dopants. On the other hand, we have compared the substrate-SWNT interactions for isotropic (in two dimensions) arrays of SWNTs grown on Si/SiO2 substrates and horizontally (on substrate) aligned arrays of SWNTs grown on single crystal quartz substrates. The anisotropic interactions associated with the quartz lattice between quartz and SWNTs that allow near perfect horizontal alignment on substrate along a particular crystallographic direction is examined by Raman spectroscopy, and shown to lead to uniaxial compressive strain in as-grown SWNTs on single crystal quartz. This is the first experimental demonstration of the hard-to-achieve uniaxial compression of SWNTs. Temperature dependence of Raman G-band spectra along the length of individual nanotubes reveals that the compressive strain is non-uniform and can be larger than 1% locally at room temperature. Effects of device fabrication steps on the non-uniform strain are also examined and implications on electrical performance are discussed. Based on our findings, there are discussions about device performances and designs included in this dissertation. The channel length dependences of device mobilities and on/off ratios are included for SWNT TFTs. Time response of polymer-electrolyte gated SWNT TFTs has been measured to be ~300 Hz, and a proof-of-concept logic inverter has been fabricated by using polymer electrolyte gated SWNT TFTs for macroelectronic applications. Finally, I dedicated a chapter on scalable device designs based on aligned arrays of SWNTs, including a design for SWNT memory devices.

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Quantum sensors based on coherent matter-waves are precise measurement devices whose ultimate accuracy is achieved with Bose-Einstein condensates (BECs) in extended free fall. This is ideally realized in microgravity environments such as drop towers, ballistic rockets and space platforms. However, the transition from lab-based BEC machines to robust and mobile sources with comparable performance is a challenging endeavor. Here we report on the realization of a miniaturized setup, generating a flux of 4x10(5) quantum degenerate Rb-87 atoms every 1.6 s. Ensembles of 1 x 10(5) atoms can be produced at a 1 Hz rate. This is achieved by loading a cold atomic beam directly into a multi-layer atom chip that is designed for efficient transfer from laser-cooled to magnetically trapped clouds. The attained flux of degenerate atoms is on par with current lab-based BEC experiments while offering significantly higher repetition rates. Additionally, the flux is approaching those of current interferometers employing Raman-type velocity selection of laser-cooled atoms. The compact and robust design allows for mobile operation in a variety of demanding environments and paves the way for transportable high-precision quantum sensors.

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We discuss decoherence in discrete-time quantum walks in terms of a phenomenological model that distinguishes spin and spatial decoherence. We identify the dominating mechanisms that affect quantum-walk experiments realized with neutral atoms walking in an optical lattice. From the measured spatial distributions, we determine with good precision the amount of decoherence per step, which provides a quantitative indication of the quality of our quantum walks. In particular, we find that spin decoherence is the main mechanism responsible for the loss of coherence in our experiment. We also find that the sole observation of ballistic-instead of diffusive-expansion in position space is not a good indicator of the range of coherent delocalization. We provide further physical insight by distinguishing the effects of short- and long-time spin dephasing mechanisms. We introduce the concept of coherence length in the discrete-time quantum walk, which quantifies the range of spatial coherences. Unexpectedly, we find that quasi-stationary dephasing does not modify the local properties of the quantum walk, but instead affects spatial coherences. For a visual representation of decoherence phenomena in phase space, we have developed a formalism based on a discrete analogue of the Wigner function. We show that the effects of spin and spatial decoherence differ dramatically in momentum space.

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Les manifestations de crise, en Côte d'Ivoire, ont été extrêmement violentes. Au cours des quinze dernières années, plus de 400 personnes sont mortes, tuées dans des affrontements avec les forces de sécurités ou des contre-manifestants. Malgré la gravité du problème, peu d’études scientifiques y sont consacrées et les rares analyses et enquêtes existantes portent, de façon unilatérale, sur l’identité et la responsabilité pénale des auteurs et commanditaires putatifs de cette violence. La présente étude s’élève contre le moralisme inhérent à ces approches pour aborder la question sous l’angle de l’interaction : cette thèse a pour objectif de comprendre les processus et logiques qui sous-tendent l’usage de la violence au cours des manifestations. Le cadre théorique utilisé dans cette étude qualitative est l’interactionnisme symbolique. Le matériel d’analyse est composé d’entrevues et de divers documents. Trente-trois (33) entrevues semi-dirigées ont été réalisées avec des policiers et des manifestants, cooptés selon la technique de la boule de neige, entre le 3 janvier et le 15 mai 2013, à Abidjan. Les rapports d’enquête, de l’ONG Human Rights Watch, sur les manifestations de crise, les manuels de formation de la police et divers autres matériaux périphériques ont également été consultés. Les données ont été analysées suivant les principes et techniques de la théorisation ancrée (Paillée, 1994). Trois principaux résultats ont été obtenus. Premièrement, le système ivoirien de maintien de l'ordre est conçu selon le modèle d’une « police du prince ». Les forces de sécurité dans leur ensemble y occupent une fonction subalterne d’exécutant. Elles sont placées sous autorité politique avec pour mandat la défense inconditionnelle des institutions. Le style standard de gestion des foules, qui en découle, est légaliste et répressif, correspondant au style d’escalade de la force (McPhail, Schweingruber, & Carthy, 1998). Cette « police du prince » dispose toutefois de marges de manœuvre sur le terrain, qui lui permettent de moduler son style en fonction de la conception qu’elle se fait de l’attitude des manifestants : paternaliste avec les foules dites calmes, elle devient répressive ou déviante avec les foules qu’elle définit comme étant hostiles. Deuxièmement, à rebours d’une conception victimaire de la foule, la violence est une transaction situationnelle dynamique entre forces de sécurité et manifestants. La violence suit un processus ascendant dont les séquences et les règles d’enchainement sont décrites. Ainsi, le premier niveau auquel s’arrête la majorité des manifestations est celui d’une force non létale bilatérale dans lequel les deux acteurs, protestataires et policiers, ont recours à des armes non incapacitantes, où les cailloux des premiers répondent au gaz lacrymogène des seconds. Le deuxième niveau correspond à la létalité unilatérale : la police ouvre le feu lorsque les manifestants se rapprochent de trop près. Le troisième et dernier niveau est atteint lorsque les manifestants utilisent à leur tour des armes à feu, la létalité est alors bilatérale. Troisièmement, enfin, le concept de « l’indignité républicaine » rend compte de la logique de la violence dans les manifestations. La violence se déclenche et s’intensifie lorsqu’une des parties, manifestants ou policiers, interprète l’acte posé par l’adversaire comme étant en rupture avec le rôle attendu du statut qu’il revendique dans la manifestation. Cet acte jugé indigne a pour conséquence de le priver de la déférence rattachée à son statut et de justifier à son encontre l’usage de la force. Ces actes d’indignités, du point de vue des policiers, sont symbolisés par la figure du manifestant hostile. Pour les manifestants, l’indignité des forces de sécurité se reconnait par des actes qui les assimilent à une milice privée. Le degré d’indignité perçu de l’acte explique le niveau d’allocation de la violence.

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En estas páginas, el autor pretende aportar alguna luz al debate de la denominada “Revolución Militar” y señalar cómo la introducción de la artillería de pólvora dentro de los trenes de asedio tuvo lugar ya a fines del siglo XIV y comienzos del XV. Para ello, se buscan los primeros ejemplos del empleo de piezas artilleras en la frontera con Granada, se apuntan algunas de las limitaciones que tenía la neurobalística y se analiza, sobre todo, un caso concreto: las grandes campañas efectuadas por el regente de Castilla don Fernando de Trastámara contra el emirato granadino en 1407 y 1410, examinándose cuestiones tales como la verdadera efectividad táctica de la paleoartillería, el aprendizaje de su empleo por experiencia acumulada o las necesidades logísticas que demandaba el uso de un arma que, en esos momentos, era bastante novedosa.

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No âmbito do Trabalho de Investigação Aplicada foi elaborada uma caracterização fisiológica do soldado nas operações em áreas edificadas, tendo como objetivo geral contribuir para o quadro teórico e prático na área da motricidade humana, relativamente às aptidões fisiológicas, designadamente: a Frequência Cardíaca, o Consumo de Oxigénio máximo (VO2max) e o Lactato Sanguíneo. Neste estudo foi executada uma pista de combate em áreas edificadas, com o nível de dificuldade crescente, inicialmente sem e com carga (colete balístico) de seguida com o inimigo armado com airsoft e para finalizar, a esquadra de assalto com armas de airsoft. A pista desenrolou-se na Aldeia de Camões em Mafra. Para medição dos parâmetros em estudo, utilizou os monitores cardíacos Garmin Forerunner 310XT, que fornecem os valores das Frequências Cardíacas e o Lactete Plus, que nos dão os valores dos níveis de Lactato Sanguíneo. Verificou-se que não existe uma doutrina de referência que evidencie o treino físico orientado para o combate em áreas edificadas nos dias de hoje. Da análise dos resultados obtidos verificámos que a intensidade do esforço, durante a execução das pistas de combate, foi predominantemente realizada no regime anaeróbio. Com os resultados alcançados durante a realização da pista de combate, identificámos algumas das tarefas mais críticas na sua execução. Apurámos através dos níveis de lactato que a função do comandante de esquadra é de uma intensidade de esforço físico superior a exigida na restante esquadra de assalto.