Tracking trade transactions in water resource systems: A node-arc optimization formulation

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Abstract

We formulate and apply a multicommodity network flow node-arc optimization model capable of tracking trade transactions in complex water resource systems. The model uses a simple node to node network connectivity matrix and does not require preprocessing of all possible flow paths in the network. We compare the proposed node-arc formulation with an existing arc-path (flow path) formulation and explain the advantages and difficulties of both approaches. We verify the proposed formulation model on a hypothetical water distribution network. Results indicate the arc-path model solves the problem with fewer constraints, but the proposed formulation allows using a simple network connectivity matrix which simplifies modeling large or complex networks. The proposed algorithm allows converting existing node-arc hydroeconomic models that broadly represent water trading to ones that also track individual supplier-receiver relationships (trade transactions). ©2013. American Geophysical Union. All Rights Reserved.

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Erfani, T., Huskova, I., & Harou, J. J. (2013). Tracking trade transactions in water resource systems: A node-arc optimization formulation. Water Resources Research, 49(5), 3038–3043. https://doi.org/10.1002/wrcr.20211

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