[
    {
        "id": "authors:954sp-jzm45",
        "collection": "authors",
        "collection_id": "954sp-jzm45",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20141015-142028989",
        "type": "monograph",
        "title": "Viscous Effects in Inception and Development of Cavitation on Axi-Symmetric Bodies Part I - Cavitation Inception Part II - A Semi-Empirical Method to Predict Cavitation Separation on Smooth Bodies",
        "author": [
            {
                "family_name": "Arakeri",
                "given_name": "Vijay H.",
                "clpid": "Arakeri-V-H"
            }
        ],
        "abstract": "The schlieren method was developed as a flow visualization\ntechnique for use in water tunnels. The process of cavitation development on two axi-symmetric bodies was studied using this approach and found to be greatly influenced by the presence of a previously unreported\nviscous laminar separation. On these bodies, cavitation inception was observed to take place within this separated region which occurs far downstream of the minimum pressure point. On one of these bodies, the incipient cavitation index was found to be closely correlated with the\nnegative value of the pressure coefficient at the point of laminar separation. Approximate computations of the position of transition on a body without laminar separation indicate that the incipient cavitation index\nis closely correlated with the negative value of the pressure coefficient at the predicted point of transition.\n\nCavitation separation under fully developed conditions is found to be preceded by a viscous laminar boundary layer separation on bodies which possess the latter separation under fully wetted conditions. An empirical method is proposed to compute the position of cavitation\nseparation on such bodies and the method applied to a sphere and a cylinder showed good agreement with experiments.",
        "publisher": "California Institute of Technology",
        "publication_date": "1973-01"
    },
    {
        "id": "authors:4w54w-nwk56",
        "collection": "authors",
        "collection_id": "4w54w-nwk56",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20141014-132257280",
        "type": "monograph",
        "title": "Water Tunnel Investigations of Scale Effects in Cavitation Detachment from Smooth Slender Bodies and Characteristics of Flow Past a Bi-Convex Hydrofoil",
        "author": [
            {
                "family_name": "Arakeri",
                "given_name": "Vijay H.",
                "clpid": "Arakeri-V-H"
            }
        ],
        "abstract": "Experimental results concerning force coefficients and cavity detachment points under various cavitating conditions on two geometrically similar bi-convex hydrofoils are presented. A linearized cavity\nflow theory with cavitation separation points determined from the assumption of smooth separation at the detachment point is presented and a comparison is made of these theoretical results with the experiments.\nScaling problems with cavitation separation from smooth\nslender bodies are discussed. With the help of photographic studies three different types of cavitation separation from smooth bodies are proposed.",
        "publisher": "California Institute of Technology",
        "publication_date": "1971-01"
    }
]