dorsal/arxiv
View SchemaTo the Fluid Motion Dynamics
| Authors | S. L. Arsenjev |
|---|---|
| Categories | |
| ArXiv ID | physics/0605175 |
| URL | https://arxiv.org/abs/physics/0605175 |
Abstract
A fluid motion through the flow element is presented in the kind of an autooscillating system with the distributed parameters: mass, elasticity, viscosity. The system contains a self-excited oscillator and possesses a self-regulation on base of the intrinsic voluntary negative servo output feedback. The interaction dynamics of the submerged jet, out-flowing out of a flow element, with the homogeneous for it surrounding medium as well as dynamics of evolution of the spiral-vortex structures, appearing at the relative motion of fluids, are described for the first time. The conceptual model of a flow in the kind of the completed system of the cause and effect relationship, that presents the fluid motion process as a result in interaction of the motive power, applied from without, and the internal wave mechanism, selfregulating the flow structure and its intensity, is created.
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"date_created": "2026-03-02T18:01:07.217000Z",
"date_modified": "2026-03-02T18:01:07.217000Z",
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"abstract": "A fluid motion through the flow element is presented in the kind of an\nautooscillating system with the distributed parameters: mass, elasticity,\nviscosity. The system contains a self-excited oscillator and possesses a\nself-regulation on base of the intrinsic voluntary negative servo output\nfeedback. The interaction dynamics of the submerged jet, out-flowing out of a\nflow element, with the homogeneous for it surrounding medium as well as\ndynamics of evolution of the spiral-vortex structures, appearing at the\nrelative motion of fluids, are described for the first time. The conceptual\nmodel of a flow in the kind of the completed system of the cause and effect\nrelationship, that presents the fluid motion process as a result in interaction\nof the motive power, applied from without, and the internal wave mechanism,\nselfregulating the flow structure and its intensity, is created.",
"arxiv_id": "physics/0605175",
"authors": [
"S. L. Arsenjev"
],
"categories": [
"physics.flu-dyn"
],
"title": "To the Fluid Motion Dynamics",
"url": "https://arxiv.org/abs/physics/0605175"
},
"schema_id": "dorsal/arxiv",
"source": {
"execution_id": "cc3fb097-1d5d-4d13-a793-a86a81fc4716",
"id": "arXiv Dataset IDs",
"type": "Model",
"variant": "snapshot-2026-03-01",
"version": "0.1.0"
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