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Hasil Pencarian

Ditemukan 6 dokumen yang sesuai dengan query
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Abstrak :
Research to nanofluida have a lot of conducted to indicate that nanofluida has a great potency for better heat transfer. Nanofluida is mixture between solid particle of nanosize with the based-fluid. Nano particle suspended in based-fluid permanently which is because of eristence of Brownian eject. Before nanofluida can be applied in commercial purpose, the furthermore experiment is needed. In this research conducted the measurement of heat transfer coefficient jilm condensation which used vertical condenser and nanofluids Al2O3-water as cooling fluids With variation of flow rote of cooling fluid and volume concentration of nanofluid as well, the experimental result shows the enhancement of condensation heat transfer coefficient with nanofluid compared to base fluids : 12- 19% for 1% particles concentration and 23-33 % for 4% particles concentration.
Jurnal Teknologi, 19 (1) Maret 2005 : 1-9, 2005
JUTE-19-1-Mar2005-1
Artikel Jurnal  Universitas Indonesia Library
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Gerry Julian
Abstrak :
Heat exchanger merupakan bagian vital dalam sebuah perangkat elektronik yang dapat menjaga suhu optimum dari alat tersebut. Penelitian tentang microchannel heat exchanger telah sangat berkembang untuk aplikasi kearah pendingin elektronik pada satu dekade terakhir ini. Microchannel heat exchanger memiliki beberapa keunggulan yakni memiliki dimensi yang lebih kecil dan memiliki koefisien perpindahan kalor yang lebih baik daripada alat penukar kalor lainnya. Dalam pengujian ini, peneliti akan mencoba membuktikan performa dari koefisien perpindahan kalor dari microchannel heat exchanger tersebut beserta efek negatifnya. Peneliti akan mencoba menguji pengaruh pressure drop pada saluran microchannel heat exchanger. Kemudian dalam pengujian ini juga digunakan fluida kerja air,nano fluida Al2O3 1%, dan nano fluida SnO2 1% dengan fluida dasar air. Dari hasil pengujian ini didapatkan bahwa perpindahan kalor akan lebih baik jika menggunakan nano fluida sebagai fluida kerja pendingin. ......Heat exchanger is a vital part in an electronic devices that can maintain the optimum operation temperature of that devices. Research on microchannel heat exchanger application has been highly developed on electronics cooling towards the last decade. Microchannel heat exchanger has several advantages which have smaller dimensions and heat transfer coefficient better than the other heat exchanger. The experiment also want to measure the pressure drop in microchannel. It used water, nanofluids Al2O3 1%,and nanofluids SnO2 1% as working fluids in cold side microchannel heat exchanger. Result from this research indicate that heat transfer would be better if we use nanofluids as cooling working fluids.
Depok: Fakultas Teknik Universitas Indonesia, 2012
S42955
UI - Skripsi Open  Universitas Indonesia Library
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Rian Saputra
Abstrak :
Peningkatan flux kalor yang dihasilkan oleh peralatan elektronik khususnya komponen dari CPU komputer harus selalu diiringi dengan pendinginan yang baik. Flux kalor pada komponen CPU komputer harus dapat direduksi secara maksimal agar bisa mencapai kemampuan operasi yang optimal dengan tingkat reliability yang tinggi. Penggunaan straight heat pipe dalam pendinginan tersebut menjadi salah satu solusi alternatif guna menyerap kalor yang dihasilkan. Penelitian ini memperlihatkan pengaruh number of screen mesh wick terhadap kinerja straight heat pipe yang menggunakan pipa tembaga. Screen mesh wick yang digunakan adalah screen 100, 200, 250, dan 300 mesh. Pengujian dilakukan menggunakan pipa tembaga dengan panjang 200 mm dan berdiameter 6 mm, 8 mm, dan 10 mm dengan fluida kerja air. Hambatan termal diukur melalui wick dengan variasi input daya yang diberikan oleh pemanas elektrik dengan 6 titik pengukuran temperatur sepanjang heat pipe menggunakan termokopel. Didapatkan bahwa semakin besar number of screen mesh wick yang digunakan, dapat meningkatkan kinerja heat pipe dimana temperatur di bagian evaporator dapat direduksi paling besar hingga 20,63% untuk screen 300 mesh dibanding screen 100 mesh. Hal ini dikarenakan hambatan termal pada straight heat pipe semakin kecil dengan meningkatnya number of screen mesh wick yang digunakan. Semakin besar number of screen mesh wick, straight heat pipe yang diuji menunjukkan nilai Heat Transfer Coefficient yang semakin besar pula.
Increased of heat flux generated by electronic equipment in particular componentsof a computer CPU should always be accompanied with a good cooling. Heat fluxon the computer CPU components must be reduced to maximum in order toachieve optimal operating capability with a high level of reliability. The use ofstraight heat pipes in the cooling of it become one of alternative solution in orderto absorb the heat generated. This experiment shows the influence of number of screen mesh wick on performance of straight heat pipe that use copper pipe. Screen mesh wick that used is screen 100, 200, 250, and 300 mesh. The experiment use copper pipe with a length of 200 mm and diameter 6 mm, 8 mm, and 10 mm with working fluid water. Thermal resistant is measured through the wick with a variety of input power supplied by electric heaters with 6 points along the heat pipe temperature measurement using thermocouples. It was found that the greater the number of screen mesh wick which is used, can improve the performance of heat pipes where the temperature at the evaporator can be reduced to the most up to 20.63% for the screen 300 mesh compare to the screen 100 mesh. This is because the thermal resistance on the straight heat pipe decreased with increasing number of screen mesh wick which is used. The greater the number of screen mesh wick, straight heat pipes that are tested show the number of Heat Transfer Coefficient is greater as well.
Depok: Fakultas Teknik Universitas Indonesia, 2011
S1114
UI - Skripsi Open  Universitas Indonesia Library
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Kwang-Il Choi
Abstrak :
Experimental investigation on two-phase flow boiling heat transfer of R-410A and R-134A in horizontal small tubes is reported. The pressure drop and local heat transfer coefficients were obtained over heat flux range of 5 to 40 kW/m2 , mass flux range of 70 to 600kg/ m2 s, saturation temperature range of 2 to 12°C, and quality up to 1.0 in test section with inner tube diameters of 3.0 and 0.5mm, and lengths of 2000 and 330mm, respectively. The section was heated uniformly by applying a direct electric current to the tubes. The effects of mass flux, heat flux, and inner tube diameter on pressure drop and heat transfer coefficients are presented. The experimental results are compared against several existing correlations. A new boiling heat transfer coefficient correlation based on the superposition model for refrigerants in small tubes is also presented.
Depok: Faculty of Engineering, Universitas Indonesia, 2011
UI-IJTECH 2:2 (2011)
Artikel Jurnal  Universitas Indonesia Library
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Panjaitan, Peter Lewis Hamonangan
Abstrak :
Penelitian ini membahas tentang karakteristik perpindahan kalor aliran dua fasa yang didapat berdasarkan pengujian dan dibandingkan dengan prediksi korelasi yang terdapat pada literatur. Percobaan ini dilakukan dengan menggunakan refrijeran R-22 dan R-290 yang dilakukan dalam pipa konvesional berdiameter 7,6 mm dengan bahan stainless steel (SS 316) dan panjang 1,07 m. Pengujian dilakukan dengan variasi fluks kalor (q), fluks massa (G), dan temperatur saturasi. Hasil yang didapat pada penelitian ini adalah nilai fluks massa yang tinggi cenderung memiliki nilai koefisien perpindahan kalor yang tinggi pada awal evaporasi dan jika diberikan fluks kalor yang tinggi maka nilai koefisien perpindahan kalor juga akan naik, dan sistem dengan nilai temperatur saturasi yang tinggi maka akan dipengaruhi oleh koefisien perpindahan panas nucleat boiling. Perbandingan refrijeran mengindikasikan bahwa nilai koefisien perpindahan kalor R-290 lebih tinggi daripada R-22. ...... This study discusses about the characteristics of two-phase flow which obtained by experiment and the data is compared with predictions data of correlations in the literature. This experiment was conducted using refrijeran R-22 and R-290 in a conventional 7,6 mm pipe with stainless steel (SS 316) material and length of 1,07 m. Tests carried out with variations of heat flux (q), mass flux (G), and the saturation temperature. The result of this study is high value of the mass flux values tend to have a high coefficient of heat transfer at the beginning of evaporation and high heat flux will increase the heat transfer coefficient value. Systems with a high value of the saturation temperature will be influenced by nucleat boiling heat transfer coefficient. Refrijeran comparison indicates that the value of heat transfer coefficient of R-290 is higher than R-22.
Depok: Fakultas Teknik Universitas Indonesia, 2014
S55395
UI - Skripsi Membership  Universitas Indonesia Library