Estimation of Perturbations Due to Flow Around Blast Gauges With Spheroidal Shap

Cover Estimation of Perturbations Due to Flow Around Blast Gauges With Spheroidal Shap
Estimation of Perturbations Due to Flow Around Blast Gauges With Spheroidal Shap
S a Schaaf
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The proper avorarre to u^e over the tot) and bottom faces might at first thought be taken to be the simple unweighted average of C (P) over the equatorial plane circle of the corresponding p J o spheroid. However (see Fig. 5^, the spheroid which , f >^ Pig, 5 Gauge and anproxirrating spheroid most nearly approximates the gan. Ge extends beyond the top and bottom faces of the tourmaline crystal. This suggests that we take the average of C (?) over only a part of the area of the corresponding equ
...atorial circle. Inspection of of Fig. 2 and 3 shavs that C (p) is quite constant over a p, o large portion of the equatorial circle, changing appreciably only near the leading and trailing edges - i. E. In just the regions to be om. Itted in calculating the average C, Accordingly, we expect C q to have values something like -, 35 and -, 60 for t = 3/13 and 3/7 respectively. These are the values used in calculating Table I.
(cl In the case of a true spheroidal gauge, we v;ould Fig. 6 Spheroidal Gauge expect C to be the average of C (P) over the entire p, o P, o equatorial circle.


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