This book comprehensively explores the messy and contested relationship between everyday practices of remittance sending and receiving, processes of market making, and operations of micro- and global finance. Remittances and Financial Inclusion critically investigates a global migration-development agenda that aims to harness remittances for development by incorporating remittance flows and households into global financial circuits. The book develops a multidisciplinary perspective and combines insights from economic, development, and financial geography as well as international political economy and economic anthropology. It sets out a geographies of remittance marketisation approach to investigate the intricate and grounded ways in which remittance markets are constructed, the extent to which remittance flows and households can be (re)configured and incorporated into global finance, and why such processes are always fragile, contested, and in need of constant renegotiation. Drawing on extensive fieldwork research, the book provides an in-depth critical interrogation of the policies and initiatives that underpin remittance marketisation in Senegal, Ghana, and beyond. This volume will be especially useful to those researching and working in the areas of international development, contemporary geographies of finance and market making, and migration and remittances. It should also prove of interest to policymakers, practitioners, and activists concerned with the relation between migration, remittances, and finance in the Global South.
The book provides basic and recent research insights concerning the small scale modeling and simulation of turbulent multi-phase flows. By small scale, it has to be understood that the grid size for the simulation is smaller than most of the physical time and space scales of the problem. Small scale modeling of multi-phase flows is a very popular topic since the capabilities of massively parallel computers allows to go deeper into the comprehension and characterization of realistic flow configurations and at the same time, many environmental and industrial applications are concerned such as nuclear industry, material processing, chemical reactors, engine design, ocean dynamics, pollution and erosion in rivers or on beaches. The work proposes a complete and exhaustive presentation of models and numerical methods devoted to small scale simulation of incompressible turbulent multi-phase flows from specialists of the research community. Attention has also been paid to promote illustrations and applications, multi-phase flows and collaborations with industry. The idea is also to bring together developers and users of different numerical approaches and codes to share their experience in the development and validation of the algorithms and discuss the difficulties and limitations of the different methods and their pros and cons. The focus will be mainly on fixed-grid methods, however adaptive grids will be also partly broached, with the aim to compare and validate the different approaches and models.
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