RO-TRACE: An Identifiability-First Simulation Model for Reverse-Osmosis Fouling Decisions

This deposit presents the RO-TRACE mathematical model and its Python implementation for exploring whether a bounded hydraulic response could provide useful information about reverse-osmosis membrane fouling beyond conventional indicators. The paper and code use a virtual, fully synthetic scenario. Their purpose is to make the proposed innovation concrete, clarify its assumptions and measurement requirements, and provide a reproducible way to test when the approach may offer an advantage. The reported results are simulation outcomes; they do not establish performance or safety in an operating plant.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23039773
Primary Topic
Membrane Separation Technologies
Type
preprint
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preprint

RO-TRACE: An Identifiability-First Simulation Model for Reverse-Osmosis Fouling Decisions

M. Fakharany, Sana Abdulkream Alharbi, Reima Daher Alsemiry
Zenodo (CERN European Organization for Nuclear Research)
Membrane Separation Technologies
preprint

RO-TRACE: An Identifiability-First Simulation Model for Reverse-Osmosis Fouling Decisions

M. Fakharany, Sana Abdulkream Alharbi, Reima Daher Alsemiry
preprint en

Abstract

This deposit presents the RO-TRACE mathematical model and its Python implementation for exploring whether a bounded hydraulic response could provide useful information about reverse-osmosis membrane fouling beyond conventional indicators. The paper and code use a virtual, fully synthetic scenario. Their purpose is to make the proposed innovation concrete, clarify its assumptions and measurement requirements, and provide a reproducible way to test when the approach may offer an advantage. The reported results are simulation outcomes; they do not establish performance or safety in an operating plant.

Zenodo (CERN European Organization for Nuclear Research)
Taibah University (SA)
Industry, innovation and infrastructure
Membrane Separation Technologies
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