[
    {
        "id": "authors:0hmk7-84a62",
        "collection": "authors",
        "collection_id": "0hmk7-84a62",
        "cite_using_url": "https://resolver.caltech.edu/CaltechAUTHORS:20141020-155658655",
        "type": "book_section",
        "title": "On the instability of inviscid, compressible free shear layers",
        "author": [
            {
                "family_name": "Zhuang",
                "given_name": "Mei",
                "clpid": "Zhuang-M"
            },
            {
                "family_name": "Kubota",
                "given_name": "Toshi",
                "clpid": "Kubota-T"
            },
            {
                "family_name": "Dimotakis",
                "given_name": "Paul E.",
                "clpid": "Dimotakis-P-E"
            }
        ],
        "abstract": "The linear spatial instability of inviscid\ncompressible laminar mixing of two parallel\nstreams, comprised of the same gas, has been\ninvestigated with respect to two-dimensional wave\ndisturbances. The effects of the velocity ratio,\ntemperature ratio, and the temperature profile\nacross the shear layer have been examined. A\nnearly universal dependence of the normalized\nmaximum amplification rate on the convective Mach\nnumber is found, with the normalized maximum\namplification rate decreasing significantly with\nincreasing convective Mach number in the subsonic\nregion. These results are in accord with those of\nrecent growth rate experiments in compressible\nturbulent free shear layers and other similar\nrecent calculations.",
        "doi": "10.2514/6.1988-3538",
        "publisher": "AIAA",
        "publication_date": "1988"
    }
]