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Tikkos Oscar Margorga
Abstrak :
Skripsi ini membahas tentang termoelektrik generator yang merupakan alat untuk merubah beda temperatur menjadi daya listrik. Termoelektrik generator ini menggunakan modul Peltier yang bekerja sesuai prinsip efek Seebeck. Untuk menjaga temperatur digunakan sistem pemanasan yang baik untuk menerima kalor pada sisi panas modul Peltier dan juga sistem pendingin yang baik untuk menjaga agar tetap terdapat beda suhu pada modul termoelektrik. Pada penelitian ini digunakan sistem pendingin dengan heatsink dan air pendingin. Termoelektrik generator yang menggunakan heatsink menghasilkan tegangan terbesar yaitu 6.9 Volt dengan daya 0,72 Watt. Termoelektrik generator yang menggunakan air pendingin menghasilkan tegangan maksimum 0.459 Volt, dengan daya 0.0105 Watt.
This thesis is disccused about thermoelectric generator that are the device that can convert the difference of temperature to electrical power. Thermoelectric generator is using Peltier modules which works with the Seebeck Effect rsquo s law. In order to keep the delta temperature between hot junction and cold junction there are some system that being needed to supply some calor and to keep the calor being thrown away. In this research is using cooling system such are heatsink and water coolant. Thermoelectric generator with heatsink is produced the highest voltage output is 6.9 Volt and power 0.72 Watt. Thermoelectric generator with water cooling is produced the highest voltage output is 0.459 Volt and power 0.0105 Watt.
Depok: Fakultas Teknik Universitas Indonesia, 2017
S69616
UI - Skripsi Membership  Universitas Indonesia Library
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Bony Budiman
Abstrak :
Close Cooling Water (CCW) digunakan di Fasilitas Produksi Terapung untuk keperluan pertukaran panas. Cairan yang digunakan adalah Fresh Water yang berasal dari kegiatan reverse osmosis air laut. Sebagian besar material yang digunakan untuk perpipaan adalah baja karbon. Tidak ada rancangan penanganan resiko korosi internal sejak CCW beroperasi pada bulan Mei 2017. Hasil pemantauan laju korosi menunjukkan terjadi kenaikan yang mendekati ambang batas maksimal 3.94 mils penetration per year (mpy) sehingga dilakukan penelitian untuk mengurangi laju korosi menggunakan bahan kimia. Pada bulan Agustus 2019, bahan kimia Corrosion Inhibitor (CI) jenis nitrit ditambahkan ke dalam system CCW dan pada pemantauan berikutnya terjadi penurunan laju korosi dibawah 1 mpy. Penggunaan CI jenis nitrit perlu memperhatikan beberapa hal agar hasilnya optimum seperti pemantauan komposisi kimia dalam air, kegiatan pengurasan dan penambahan Fresh Water. ...... Close Cooling Water (CCW) is used in Floating Production Facilities for heat exchange purposes. The liquid used is Fresh Water which comes from reverse osmosis seawater activities. Most of the materials used for piping are carbon steel. There has been no plan to address internal corrosion risks since CCW began operating in May 2017. The results of monitoring the corrosion rate showed an increase approaching the threshold maximum 3.94 mils penetration per year (mpy) so research was carried out to reduce the corrosion rate using chemicals. In August 2019, the nitrite type Corrosion Inhibitor (CI) chemical was injected to the CCW system and in subsequent monitoring the corrosion rate decreased below 1 mpy. The use of nitrite type CI requires paying attention to several things so that the results are optimal, such as monitoring the chemical composition of the water, draining activities and adding fresh water.
Depok: Fakultas Teknik Universitas Indonesia, 2023
TA-pdf
UI - Tugas Akhir  Universitas Indonesia Library
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Rene Indrawan Pratamora
Abstrak :
[ABSTRAK
Sistem air pendingin merupakan sistem resirkulasi terbuka yang berfungsi untuk mendinginkan air yang berasal dari proses suatu industri. Salah satu permasalahan yang timbul pada sistem air pendingin resirkulasi terbuka adalah pertumbuhan mikroba. Untuk mengendalikan pertumbuhan mikrobia pada sistem pendingin ditambahkan isothiazoline biocide dan dilakukan pemantauan terhadap pertumbuhan mikroba pada air dalam sistem pendingin. Dari hasil pengamatan dapat dilihat pertumbuhan mikroorganisme akan semakin cepat sehubungan dengan lama waktu terutama apabila menara pendingin berada dalam kondisi diam (stagnan). Pertumbuhan mikroba ini dapat menyebabkan terjadi korosi pada sistem menara pendingin. Untuk mencegah proses korosi akibat mikroba ini, maka dilakukan inhibisi dengan menggunakan inhibitor phosphoric acid. Hasil pengamatan menunjukkan bahwa konsentrasi optimum 100 ppm inhibitor phosphoric acid dengan penambahan 100 ppm isothiazoline biocide untuk menurunkan laju pertumbuhan mikroba. Kemampuan inhibisi korosi diinvestigasi melalui simulasi pengujian korosi yang terjadi pada sampel kupon yang direndam dalam kurun waktu tertentu dengan menggunakan air sistem menara pendingin. Pengujian ini dievaluasi dengan metode pengujian Tafel Polarisasi dan Electrochemical Impedance Spectroscopy (EIS).
ABSTRACT
Cooling water system is an open recirculation system which serves to cool water from an industrial process. One of the problems that arise in open recirculating cooling water systems is the growth of microbial. To control the growth of microbial in the cooling system added isothiazoline biocide chemicals and monitoring the growth of microbial in the water in the cooling system. From the observation can be seen to be the faster growth of microbial in relation to the length of time, especially if the cooling tower is at rest (stagnant). The growth of these microbial can cause corrosion in cooling water systems. To prevent the formation of corrosion due to these microbial, the inhibition is done by using the phosphoric acid inhibitor. The results showed that the optimum concentration of 100 ppm phosphoric acid inhibitor with the addition of 100 ppm isothiazoline biocide to reduce the rate of growth of microbial. Corrosion inhibition ability investigated through the simulation testing of corrosion that occurs on the coupon samples were immersed in a certain period of time by using water cooling tower systems. This test was evaluated by Tafel polarization test methods and Electrochemical Impedance Spectroscopy (EIS).;Cooling water system is an open recirculation system which serves to cool water from an industrial process. One of the problems that arise in open recirculating cooling water systems is the growth of microbial. To control the growth of microbial in the cooling system added isothiazoline biocide chemicals and monitoring the growth of microbial in the water in the cooling system. From the observation can be seen to be the faster growth of microbial in relation to the length of time, especially if the cooling tower is at rest (stagnant). The growth of these microbial can cause corrosion in cooling water systems. To prevent the formation of corrosion due to these microbial, the inhibition is done by using the phosphoric acid inhibitor. The results showed that the optimum concentration of 100 ppm phosphoric acid inhibitor with the addition of 100 ppm isothiazoline biocide to reduce the rate of growth of microbial. Corrosion inhibition ability investigated through the simulation testing of corrosion that occurs on the coupon samples were immersed in a certain period of time by using water cooling tower systems. This test was evaluated by Tafel polarization test methods and Electrochemical Impedance Spectroscopy (EIS)., Cooling water system is an open recirculation system which serves to cool water from an industrial process. One of the problems that arise in open recirculating cooling water systems is the growth of microbial. To control the growth of microbial in the cooling system added isothiazoline biocide chemicals and monitoring the growth of microbial in the water in the cooling system. From the observation can be seen to be the faster growth of microbial in relation to the length of time, especially if the cooling tower is at rest (stagnant). The growth of these microbial can cause corrosion in cooling water systems. To prevent the formation of corrosion due to these microbial, the inhibition is done by using the phosphoric acid inhibitor. The results showed that the optimum concentration of 100 ppm phosphoric acid inhibitor with the addition of 100 ppm isothiazoline biocide to reduce the rate of growth of microbial. Corrosion inhibition ability investigated through the simulation testing of corrosion that occurs on the coupon samples were immersed in a certain period of time by using water cooling tower systems. This test was evaluated by Tafel polarization test methods and Electrochemical Impedance Spectroscopy (EIS).]
2015
T43714
UI - Tesis Membership  Universitas Indonesia Library