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Title: | Pengaruh Bahan Dan Ketebalan Dinding Heater Terhadap Temperatur Dan Tekanan Udara Yang Dihasilkan Mesin Stirling Dengan Metode Eksperimen |
Other Titles: | The Effect of Heater Material and Wall Thickness on the Temperature and Air Pressure Generated by a Stirling Engine Using an Experimental Method |
Authors: | Ritonga, Anggi Harapan |
metadata.dc.contributor.advisor: | Jufrizal |
Keywords: | heater mesin stiring;pengaruh ketebalan heater;the effect of heater thickness |
Issue Date: | 19-Mar-2025 |
Publisher: | Universitas Medan Area |
Series/Report no.: | NPM;198130042 |
Abstract: | Tujuan penelitian ini yaitu (1) Menganalisi pengaruh jenis bahan dinding heater terhadap temperatur dan tekanan udara yang dihasilkan oleh mesin stirling engine. (2) Menentukan pengaruh ketebalan dinding heater terhadap performa temperatur dan tekanan mesin stirling engine, dan (3)Mengidentifikasi kombinasi bahan dan ketebalan dinding heater yang paling optimal untuk mencapai temperatur dan tekanan udara yang maksimal. Metode yang digunakan ialah metode kualitatif. Bahan yang digunakan tabung gas 3kg, pompa angin .Alat yang digunakan heater, timbangan digital, flow meter, regulator, pipa stik, burner, stopwatch, thermometer, thermowell NPT stainless, kabel thermocouple sensor, dan thermogun. Hasil penelitian ini ialah Dimensi heater yaitu dengan berbahan besi baja carbon sm5c, diameter dalam dengan ukuran 45 mm, diameter luar dengan ukuran 55 mm, diameter tutup 16 mm Tinggi dengan ukuran 90 mm, dan ketebalan dengan ukuran 4 mm. Dimensi heater stainless steel 304, diameter dalam dengan ukuran 45 mm, diameter luar 55 mm, diameter tutup 16 mm, tinggi dengan ukuran 90mm, dan ketebalan dengan ukuran 3mm. Nilai rata- rata berbahan besi baja carbon sm5c, T1 sebesar 720,8°C, T2 rata- rata sebesar 33,3°C, T3 rata- rata sebesar 510,8°C. Dan nilai rata- rata T4 sebesar 406,8°C. Dan nilai rata- rata berbahan stainless steel 304, T1 sebesar 748,6°C, T2 rata- rata sebesar 42,1°C, T3 rata- rata sebesar 334,5°C , dan nilai rata-rata T4 sebesar 316,3°C. Dengan pengujian selama 30 menit dengan pencatatan waktu T1 T2 selama persatu menit sekali, dan pencatatan T3 T4 selama perlima menit sekali untuk mengetahui perubahan suhu yang di dapat. The objectives of this study were: (1) To analyze the effect of heater wall material type on the temperature and air pressure produced by a Stirling engine. (2) To determine the effect of heater wall thickness on the temperature and pressure performance of the Stirling engine. (3) To identify the optimal combination of heater materials and wall thickness to achieve maximum temperature and air pressure. The method used was a qualitative one. The materials used were a 3kg gas cylinder and an air pump. The tools used were a heater, digital scale, flow meter, regulator, stick pipe, burner, stopwatch, thermometer, stainless steel NPT thermowell, thermocouple sensor cable, and a thermogun. The dimensions of the heater were SM5C carbon steel, with an inner diameter of 45 mm, an outer diameter of 55 mm, a cap diameter of 16 mm, a height of 90 mm, and a thickness of 4 mm. The heater dimensions are made of 304 stainless steel: an inner diameter of 45 mm, an outer diameter of 55 mm, a lid diameter of 16 mm, a height of 90 mm, and a thickness of 3 mm. For SM5C carbon steel, the average T1 is 720.8°C, the average T2 is 33.3°C, and the average T3 is 510.8°C. The average T4 is 406.8°C. For 304 stainless steel, the average T1 is 748.6°C, the average T2 is 42.1°C, the average T3 is 334.5°C, and the average T4 is 316.3°C. The test lasted 30 minutes, with T1 and T2 recorded every minute, and T3 and T4 every fifth minute to determine the temperature changes. |
Description: | 66 Halaman |
URI: | https://repositori.uma.ac.id/handle/123456789/27943 |
Appears in Collections: | SP - Mechanical Engineering |
Files in This Item:
File | Description | Size | Format | |
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198130042 - Anggi Harapan Ritonga - Chapter IV.pdf Restricted Access | Chapter IV | 780.43 kB | Adobe PDF | View/Open Request a copy |
198130042 - Anggi Harapan Ritonga - Fulltext.pdf | Cover, Abstract, Chapter I, II, III, V, Bibliography | 1.84 MB | Adobe PDF | View/Open |
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