Improvement of measurement methods for surface heat flux under water jet impinging
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摘要: 為了準確測量水射流沖擊冷卻過程靶面熱流密度,提出在靶體背側增加絕熱材料,采用單點測溫,使用一維導熱反問題計算靶體表面熱流密度的方法.實驗數據分析顯示,采用該方法對靶體背側溫度預測的相對誤差±5%以內的概率為93%以上,由于靶體背側僅是近似的絕熱條件,導熱反問題計算的靶體背側溫度略高于實測溫度.結果表明,通過在靶體背側增加絕熱材料,即便采用單點測溫,仍然可以很容易地獲得足夠精確的靶體溫度和表面熱流密度.Abstract: To accurately measure target surface heat flux under water jet impinging, a new experimental method to calculate the heat flux of a target plate was introduced, which included adding a heat adiabatic material under the target plate, measuring the target plate temperature at one-point only, and using a one-dimensional inverse heat transfer. Experimental data analysis indicates that the probability of the relative error within ±5% is 93%. Because the bottom surface of the target plate is approximated to adiabatic condition, the inverse heat transfer calculated temperature of the bottom surface is slightly higher than the measured one. It is concluded that by adding a heat adiabatic material under the target plate, the accurate results of temperature and heat flux distribution of the target plate can be obtained easily even using a single-point temperature measurement method.
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Key words:
- cooling /
- water jet impinging /
- surfaces /
- heat flux /
- heat transfer /
- inverse problems
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