CD Skripsi
Konduksi Termal Jaringan Sapi Dalam Interval Waktu Penyerapan Radiasi Terahertz Dari Milidetik Sampai Pikodetik Menggunakan Komputasi Biofisika
This research solves the partial differential equation of 1-D thermal conduction to predict distribution model of cow’s tissue temperature such as skin, fat, tumor, and muscle during Terahertz radiation absorption as a function of depth position and as a function of time from millisecond to picosecond. The modeling of tissue temperature patterns from Terahertz radiation absorption was examined theoretically with biophysical computation method using software Wolfram Mathematica 9. The utilization of physical parameters in thermal conduction is at the depth of cow’s biological tissue from 0,1 mm to 0,3 mm, and Terahertz radiation absorption power from 2,5 mW to 5,5 mW with frequency range from 0,1 THz to 1 THz. The result of this radiation indicated that Terahertz radiation absorption with power variation has its own characteristics in millisecond to picosecond. High power and large amount of time of the Terahertz radiation absorption produce a high temperature in each cow’s tissue. The temperature as a function of depth is influenced by the water in cow’s tissue, the water content as the tissue constituent in a large amount of time will produce a small temperature. Comparison between modeling and experiment showed that prediction of Terahertz temperature thermal radiation transfer is quite accurate to the uncertainty of the deployment error for derived parameters is 0.8 %. Keywords: Modeling Computer Analog, Terahertz Radiation, Thermal Distribution, Absorption, Tissue Cow’s
Tidak tersedia versi lain