\Pressure distribution over the upper and lower surfaces of the wing w terjemahan - \Pressure distribution over the upper and lower surfaces of the wing w Bahasa Indonesia Bagaimana mengatakan

\Pressure distribution over the upp

\Pressure distribution over the upper and lower surfaces of the wing was examined in the
previous chapter. As high pressure exists
underneath the wing and low pressure on top of the wing, the one place where these
pressures will attempt to equalize is around the wing tip. The high pressure underneath the wing moves upwards towards the low
pressure on the upper surface and in doing so assumes a rotary motion. This rotary motion spirals back from the wing tip, moving in an anticlockwise direction from the right-hand wing tip as viewed from behind and in a
clockwise direction from the left-hand wing tip Energy is required to produce this rotational vortex from each wing tip and this energy can come only from thrust. The vortices therefore create drag and this drag is called induced drag


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Hasil (Bahasa Indonesia) 1: [Salinan]
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\Pressure distribution over the upper and lower surfaces of the wing was examined in the previous chapter. As high pressure exists underneath the wing and low pressure on top of the wing, the one place where these pressures will attempt to equalize is around the wing tip. The high pressure underneath the wing moves upwards towards the low pressure on the upper surface and in doing so assumes a rotary motion. This rotary motion spirals back from the wing tip, moving in an anticlockwise direction from the right-hand wing tip as viewed from behind and in a clockwise direction from the left-hand wing tip Energy is required to produce this rotational vortex from each wing tip and this energy can come only from thrust. The vortices therefore create drag and this drag is called induced drag
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Hasil (Bahasa Indonesia) 2:[Salinan]
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\ Distribusi tekanan di atas permukaan atas dan bawah sayap diperiksa di
bab sebelumnya. Sebagai tekanan tinggi ada
di bawah sayap dan rendah tekanan di atas sayap, satu tempat di mana ini
tekanan akan berusaha untuk menyamakan sekitar ujung sayap. Tekanan tinggi di bawah sayap bergerak ke atas menuju rendah
tekanan pada permukaan atas dan dengan berbuat demikian mengasumsikan gerakan berputar. Gerakan berputar ini spiral kembali dari ujung sayap, bergerak dalam arah berlawanan arah jarum jam dari sayap ujung kanan seperti yang terlihat dari belakang dan dalam
searah jarum jam dari kiri ujung sayap Energi diperlukan untuk menghasilkan pusaran rotasi ini dari masing-masing ujung sayap dan energi ini hanya datang dari dorong. Oleh karena itu vortisitas membuat drag dan tarik ini disebut induced drag


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