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			<titleStmt><title level='a'>Code and data for "Theory and simulation of elastoinertial rectification of oscillatory flows in two-dimensional deformable rectangular channels"</title></titleStmt>
			<publicationStmt>
				<publisher>Purdue University Research Repository</publisher>
				<date>03/31/2026</date>
			</publicationStmt>
			<sourceDesc>
				<bibl> 
					<idno type="par_id">10675534</idno>
					<idno type="doi">10.4231/50c7-hk87</idno>
					
					<author>Uday M Rade</author><author>Shrihari D Pande</author><author>Ivan C Christov</author>
				</bibl>
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			<abstract><ab><![CDATA[Oscillatory flows between deformable boundaries frequently occur in various processes within engineered and biological systems. The fluid–structure interaction problem, and specifically the two-way pressure-deformation coupling that arises due to the flow in a compliant channel, is central to applications. A complete understanding of oscillatory flow in a compliant 2D channel (a canonical configuration) has not been achieved; specifically, developing the elastoinertial theory and benchmarking its predictions against detailed simulation data remains a knowledge gap. The goal of this work is to address these knowledge gaps.]]></ab></abstract>
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