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      • 애구(艾灸)의 연소(燃燒) 특성(特性)에 관한 실험적(實驗的) 연구(硏究)(II) - 애주(艾炷)의 밀도(密度)를 중심(中心)으로 -

        Park, Young-Bae,Kang, Sung-Keel,Huh, Wung 제3의학회 1996 제3의학 Vol.1 No.1

        It is thought that the quantity and quality of the heat stimulation and the mechanism of heating process are important to understand the moxa-combustion. In order to get the basic data on the effective moxa-combustion method, combustion temperature changes (average temperature, peak temperature, average gradient temperature and maximum gradient temperature) of the heating period were measured respectively by the density of moxa material. For the experiment, samples of $300mg/0.26cm^3$ , $400mg/0.26cm^3$ and $500mg/0.26cm^3$ of moxa material were molded in a conical mold with each 10mm in diameter and height. 1. The average temperature and peak temperature of heating period on the moxa-combustion showed higher in the $400mg/0.26cm^3$ and $300mg/0.26cm^3$ than in the $500mg/0.26cm^3$ sample respectively. 2. The average gradient temperature of heating period on the moxa-combustion rose quickly in the $300mg/0.26cm^3$, $400mg/0.26cm^3$ and $500mg/0.26cm^3$ in that order and the maximum gradient temperature rose more quickly in the $300mg/0.26cm^3$ and $400mg/0.26cm^3$ than in the $500mg/0.26cm^3$ sample respectively. According to the above results, it is concluded that the density of moxa material is (the) more important (factor) than <either> the weight or volume of moxa material on the combustion temperature changes of the heating period for the evaluation of the quality and quantity of moxa-combustion.

      • 艾灸의 燃燒 特性에 관한 實驗的 硏究(Ⅱ) : 艾炷의 密度를 中心으로 On the Density of Moxa Material

        朴英培 현곡학회 1996 제3의학 Vol.1 No.1

        It is thought that the quantity and quality of the heat stimulation and the .mechanism of heating process are important to understand the moxa-combustion. In order to get the basic data on the effective. moxa-combustion method, combustion temperature changes (average temperature, peak temperature, average gradient temperature and maximum gradient temperature) of the heating period were measured respectively by the density of moxa material. For the experiment; samples of 300mg/0.26cm3 , 400mg/0.26cm3 and 500mg/0.26cm3 of rioxz material were molded in a 'conical mold with each 10mm in diameter and height. 1. The average temperature and peak temperature of heating period on the moxa-combustion showed higher in the 400mg/0.26cm3 and 300mg/0.26cm3 than in the 500mg/0.26cm3 sample respectively. 2. The average gradient temperature of heating period on the moxa-combustion rose quickly in the 300mg/0.26cm3, 400mg/0.26cm3 and 500mg/0.26cm3 in that order and the maximum gradient temperature rose more quickly in the 300mg/0.26cm3 and 400mg/0.26cm3 than in the 500mg/0.26cm3 sample respectively. According to the above results, it is concluded that the density of moxa material is (the) more important (factor) than <either> the weight or volume of moxa material on the combustion temperature changes of the heating period for the evaluation of the quality and quantity of moxa-combustion.

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