Multi‐slicing strategy for the three‐dimensional discontinuity layout optimization (3D DLO)
نویسنده
چکیده
Discontinuity layout optimization (DLO) is a recently presented topology optimization method for determining the critical layout of discontinuities and the associated upper bound limit load for plane two-dimensional and three-dimensional (3D) problems. The modelling process (pre-processing) for DLO includes defining the discontinuities inside a specified domain and building the target function and the global constraint matrix for the optimization solver, which has great influence on the the efficiency of the computation processes and the reliability of the final results. This paper focuses on efficient and reliable pre-processing of the discontinuities within the 3D DLO and presents a multi-slicing strategy, which naturally avoids the overlapping and crossing of different discontinuities. Furthermore, the formulation of the 3D discontinuity considering a shape of an arbitrary convex polygon is introduced, permitting the efficient assembly of the global constraint matrix. The proposed method eliminates unnecessary discontinuities in 3D DLO, making it possible to apply 3D DLO for solving large-scale engineering problems such as those involving landslides. Numerical examples including a footing test, a 3D landslide and a punch indentation are considered, illustrating the effectiveness of the presented method. © 2016 The Authors. International Journal for Numerical and Analytical Methods in Geomechanics published by John Wiley & Sons Ltd.
منابع مشابه
Hierarchical Synthesis System with Hybrid DLO-MOGA Optimization
PurposeThe purpose of this paper is to present a hierarchical circuit synthesis system with a Hybrid DLO-MOGA (Deterministic Local Optimization Multi-Objective Genetic Algorithm) optimization scheme for system level synthesis. Design/methodology/approachThe use of a local optimization with a deterministic algorithm based on linear equations which is computationally efficient and improves the fe...
متن کاملManipulating Deformable Linear Objects: Characteristics in Force Signals for Detecting Contact State Transitions
This paper deals with the handling of deformable linear objects (DLOs), such as hoses, wires or leaf springs. It investigates the a priori knowledge about the 6-dimensional force/torque signal for a changing contact situation between a DLO and a rigid polyhedral obstacle. The result is a complete list, containing for each contact change the most significant combination of force/torque signal co...
متن کاملManipulation of Deformable Linear Objects: Analysis of Two-dimensional Static Approximation Functions
In this paper we analyze different models of deformable linear objects (DLOs) in terms of efficient computation and preciseness. Our approach is to minimize the potential energy (computed as the sum of gravitational and bending energy) of the DLO. To model our DLOs, we approximate the bending of the DLO using a weighted sum of approximation functions. Our objective is to identify the optimal ty...
متن کاملAutomatic yield-line analysis of slabs using discontinuity layout optimization
The yield-line method of analysis is a long established and extremely effective means of estimating the maximum load sustainable by a slab or plate. However, although numerous attempts to automate the process of directly identifying the critical pattern of yield-lines have been made over the past few decades, to date none has proved capable of reliably analysing slabs of arbitrary geometry. Her...
متن کاملMicrosoft Word - NO1_WA_1-www4.DOC
Instead of ‘researching’ for perfected (yet rejected) solutions, IMAG-DLO stresses the need for a farmer participatory approach towards: local development of less perfect, yet accepted practical and low-cost technologies; based on simple and durable equipment designs suitable for local manufacture.
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 41 شماره
صفحات -
تاریخ انتشار 2017