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51.
A central research topic in the area of knowledge engineering is the reuse of problem-solving methods for developing knowledge based systems. For being able to reuse a problem-solving method it is important to know under which restrictions a problem-solving method is appropriate to solve a given problem. This paper describes the problem-solving method propose-and-revise as well as the way this problem-solving method searches in its problem space for a solution. A quantitative analysis of the efficiency of this search process is given. Additionally, task and domain specific properties and restrictions and their influence on the efficiency of the search process are considered. For these purposes an instance of the problem-solving method is transformed to a corresponding instance of a Stanford Research Institute Problem Solver (STRIPS) planning system. Then the problem-solving method is considered as an additional control strategy for such a planning system. By this way the various insights and analysis results which are available in the area of planning systems may be exploited for the analysis of problem-solving methods. ©1999 John Wiley & Sons, Inc.  相似文献   
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A complete and accurate model for the symmetric gas–solid turbulent round jet is accomplished using the Reynolds Averaged Navier–Stokes (RANS) equations. The two-fluid model was used to describe the averaged characteristics of the two phases, including the particle mass concentration, the turbulent kinetic energy and its dissipation in the mixture. Particle–turbulence interaction (turbulence modulation) is described by a two-way coupling model. The drag, lift and gravitation forces are incorporated into the system of equations using appropriate closure equations. A finite difference numerical scheme was used for the solution of the set of the governing equations and the results of the model were validated by comparison with data from several experiments. The influence of two types of particles, namely glass and electrocorundum, of different sizes and different loadings on the velocity and turbulence structure of the jet is examined. The computational results show the influence of the particulate phase on the velocity and turbulence structure of the jet.The significance of this study is that for the first time it presents explicitly the full RANS equations for a fluid jet with particles in an unabridged way and specifies the entire set of closure relations that are used for fluid–particle interactions including the equations for the extended kε model, the two-way particle–turbulence interactions and turbulence modulation as well as the inclusion of a lateral Saffman force.  相似文献   
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A model for the simulation of kinetic sorption processes in heterogeneous aquifer material is presented. Sorption kinetics is responsible for the long persistence of many organic contaminants in the subsurface. Therefore, reliable model predictions of these processes are of major importance concerning, for instance, the design of efficient remediation strategies. The modeling approach presented here recognizes sorption kinetics as retarded diffusion within the intra-particle pore space and, in particular, takes into account the sedimentological and petrographical composition of the aquifer material. This is in accordance with results from laboratory experiments quantifying sorption/desorption processes. For solving the model equations a finite-difference scheme is applied which incorporates several features proven to be relevant in practical model applications (mass balance, flexible choice of boundary conditions, easy handling). The simulation results shown here focus on the impact of aquifer heterogeneity (lithological composition, grain size distribution) on sorption and desorption kinetics of organic contaminants. Furthermore, this approach can be straightforwardly coupled to existing software for simulating multi-dimensional solute transport.  相似文献   
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An experimental investigation of boiling phenomena in inductively heated particle beds has been performed. The major aim of these experiments is to provide data for validating numerical codes used in reactor safety. The experiments can be divided in three parts: boiling experiments, dryout experiments and quenching experiments. In boiling experiments, the pressure gradients have been measured along the bed height for different flow modes, different heat inputs and different system pressures. In dryout experiments, the minimum heat input has been determined for which the particle bed starts to superheat significantly above the saturation temperature. The final test series deals with the cool down behaviour of strongly superheated particles by flooding them with cold water. The initial temperatures ranged from 200 up to 900 °C in top-quenching experiments and from 230 up to 450 °C in bottom-quenching experiments. All experiments were performed with pre-oxidised stainless steel balls of 6 and 3 mm diameter in a cylindrical crucible. The bed height was 640 mm and the bed diameter was 125 mm for boiling and dryout experiments, respectively 150 mm for quenching experiments. The experimental results are compared with various available dryout models.  相似文献   
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数值模拟与极限平衡方法在复杂边坡优化中的应用研究   总被引:1,自引:0,他引:1  
露天矿山最终边坡角的设计是否合理,将对边坡的稳定性、矿山的生产安全和经济效益产生重大影响。结合一露天矿山的二期扩采需要,采用大型非线性固-流耦合FLAC数值模拟方法进行了边坡多种方案的应力场、破坏场、监测点位移、位移速度变化趋势等多种指标分析,并采用传统的极限平衡分析方法对数值模拟分析推荐的边坡设计方案进行稳定性计算, 最后,综合分析得出最佳方案。研究表明,数值模拟方法和极限平衡方法相结合是进行复杂边坡优化的一条合理有效途径,该方法可为矿山提出安全、经济、切实可行的边坡设计方案。  相似文献   
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岩体边坡渐进破坏的物理模拟和数值模拟研究   总被引:12,自引:0,他引:12  
为了揭示岩体边坡渐进破坏的机理,在对边坡渐进破坏进行物理模拟的同时,应用FLAC软件对边坡渐进破坏过程进行了数值模拟。研究表明,只有将物理模拟和FLAC数值模拟相结合,才能既从表象上又从本质上揭示出边坡渐进破坏的机理。  相似文献   
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We present the design and the performance of the FAST (Fast Acquisition of SPM Timeseries) module, an add-on instrument that can drive commercial scanning probe microscopes (SPM) at and beyond video rate image frequencies. In the design of this module, we adopted and integrated several technical solutions previously proposed by different groups in order to overcome the problems encountered when driving SPMs at high scanning frequencies. The fast probe motion control and signal acquisition are implemented in a way that is totally transparent to the existing control electronics, allowing the user to switch immediately and seamlessly to the fast scanning mode when imaging in the conventional slow mode. The unit provides a completely non-invasive, fast scanning upgrade to common SPM instruments that are not specifically designed for high speed scanning. To test its performance, we used this module to drive a commercial scanning tunneling microscope (STM) system in a quasi-constant height mode to frame rates of 100 Hz and above, demonstrating extremely stable and high resolution imaging capabilities. The module is extremely versatile and its application is not limited to STM setups but can, in principle, be generalized to any scanning probe instrument.  相似文献   
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