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Hasil Pencarian

Ditemukan 211 dokumen yang sesuai dengan query
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Wickert, Jonathan
Singapore : Cengage Learning, 2013
621 WIC i (1)
Buku Teks  Universitas Indonesia Library
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Wickert, Jonathan
Mason, OH: Cengage Learning, 2017
621 WIC i
Buku Teks  Universitas Indonesia Library
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Rahmat Sandi Siddik
"Fluida memerlukan suatu media penghantar untuk dipindahkan dari suatu tempat ke tempat lainnya, salah satunya menggunakan sistem perpipaan. Kerugian aliran dalam pipa terjadi akibat pergesekan antara lapian-lapisan fluida yang mempunyai kecepatan berbeda. Turunan formula Navier-stokes dipakai untuk menghitung kerugian tekanan dalam pipa. Panjang pipa, diameter pipa, kecepatan fluida, kekasaran permukaan dan koefisien gesek adalah faktor yang mempengaruhi nilai kerugian tekanan. Formula ini tidak berlaku untuk belokan atau percabangan, setelah katup, adanya perubahan diameter dan getaran. Pada penelitian ini fluida akan dialirkan dengan bantuan pompa sentrifugal dan dialirkan melewati pipa bulat berukuran ½inch lalu alirannya akan dicabangkan dengan pipa arcrylic berdiameter 12mm berprofil bulat dan pipa berpenampang persegi dengan aspek rasio 1. Fluida yang digunakan adalah air tape ketan dan air murni sebagai pembandingnya. Umumnya pipa berpenampang persegi memiliki faktor gesek yang lebih kecil dibanding pipa berprofil kotak pada reynold number yang sama, dikarenakan aliran yang mengalir pada pipa persegi diduga mengalami penundaan kondisi transisi aliran laminar ke turbulen. Drag reduction pada Re 5000-74000 di pipa bulat yaitu sebesar 2-10%, sedangkan pada pipa persegi sebesar 1-6% (Re 5000¬47000) dengan fluida kerja air tape ketan.

Fluid requiered a medium conductor to be moved from one place to another, one of them using a piping system. Flow losses in pipes due to friction between layers of fluid who having a different speed. Between the flow with low speed and flow with higher speed (speed of distribution). The vertical flow to the axis (secondary flow) that occur will increase the pressure loss. Differential Navier-Stokes formula is used to calculate a pressure lost in a pipe. The pressure lost influence by the pipe length, the pipe diameter, the fluid of velocity, surface roughness of pipe, and friction coefficient. This formula could not be applied to the turning or branch of the pipe, after the valve, pipe in which its diameter has changed and shock or vibration occurs. In this study, the fluid will flow with the aid of centrifugal pump and flowed through the pipe size of ½ inch round and then the flow will directed of divarication with 12 mm diameter pipe that the profile is acrylic round and square pipes, incorporating the ratio of 1. The fluid used is Tape Ketan water and pure water as a comparison. Generally, pipe square, incorporating a friction factor which is smaller than the round pipe at the same of Reynold Number, because the flow that flows in a squrae pipe in suspected respite transition of condition the laminar flow to turbulent flow. Drag reduction in circular pipe with Re 5000-74000 is 2-10%, and in a square pipe is 1-6% (Re 5000-47000) used biopolymer glutinous water. "
Depok: Fakultas Teknik Universitas Indonesia, 2011
S374
UI - Skripsi Open  Universitas Indonesia Library
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Eka Sutrisna
"Data centre memiliki kriteria kondisi kerja yang optimal suhu dan kelembaban relatif guna menjaga performa kerja sebuah server. Kondisi kerja optimum sebuah data centre menurut ASHRAE, 2004 adalah pada suhu 20-25°C dan kelembaban 40-55%. Selama ini proses pendinginan sebuah data centre dilakukan dengan metode Hot-Cold Aisle namun metode tersebut dinilai belum mampu mengakomodir kebutuhan pendinginan akibat area pendinginan yang dicakup terlalu besar. Maka dari itu, diperlukan suatu penerapan sistem pendinginan tersendiri pada sebuah kabinet server. Sistem pendinginan tersendiri tersebut dinamakan AC presisi. Sistem AC Presisi memungkinkan terjadinya pengaturan nilai kelembaban relatif yang dikontrol melalui variasi bukaan katup kondenser reheat yang diparalelkan ke dalam sistem utama. Udara terdinginkan yang biasanya memiliki nilai RH yang tinggi kemudian dilewatkan pada koil kondenser reheat sehingga kelembabannya menurun. Melalui pengujian sistem pada massa refrigeran R 134a 200gram didapatkan kondisi optimum yang memenuhi syarat suhu dan kelembaban udara terpenuhi pada variasi bukaan katup 75% dengan pencapaian nilai suhu 22.8 °C dengan kelembaban relatif 49.8%.

The data center have an criteria condition of temperature and humidity to work optimally. Basic on ASHRAE Publication, 2004, a data centre must be maintained at 20-25°C (68-77°F) and relative humidity at 40-55% for the device can work optimally. In the beginning the cooling process of data center is a comprehensive to data center room by directing air flow evenly to all corners of the room and next with Hot-Cold Aisle concept. Hot-Cold Aisle is still considered not yet able to overcome heat problem of data centre because the area which covered by the cooling load is still too broad. Therefore, to handle this problem needed an application of a separate air conditioning in the data center cabinet. Air conditioning machines, named AC-precision. This refrigeration system can control the value of temperature and humidity the output air. With varying the value of opening valve to the reheat condensor, the humidity air output can controlled. Cooling air which cooled by evaporator must be warmed by the coil condenser reheat to reduce the humidity. AC-precision used R134a as a refrigerant with 200 gram of mass. In this research, the variation opening valve reheat condenser of 75% have the most optimum performance which temperature 22.8 °C and 49.8% of relative rumidity (RH). "
Depok: Fakultas Teknik Universitas Indonesia, 2011
S925
UI - Skripsi Open  Universitas Indonesia Library
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Muhammad Fachrur Rozi
"Pengeringan beku vakum merupakan metode pengeringan yang terbaik, tetapi tidak hemat energi karena proses pengeringan yang relatif lama. Skripsi ini membahas mengenai efek penambahan udara panas sebagai usaha untuk mempercepat laju pengeringan material dari sistem refrijerasi dengan vacuum freezing pada proses penurunan tekanan material uji pada pengeringan beku vakum. Hasil penelitian membuktikan bahwa pemanfaatan penambahan udara panas dapat mempercepat laju pengeringan. Selain itu dengan penambahan udara panas, dapat menghemat konsumsi energi listrik. Penambahan udara panas ini hemat biaya karena tidak ada perangkat tambahan pada sistem refrijerasi. Udara panas diambil dari udara lingkungan yang masuk ke dalam reservoir dengan temperatur 35°C yang dipanaskan dengan menggunakan panas buang kondenser.

Freeze Vacuum Drying is the best method of drying, but not energy efficient because of the relatively long drying process. This thesis discusses the effects of the addition of hot air in an effort to accelerate the rate of drying of the material with a vacuum refrijeration system freezing on the pressure drop of test material in a freeze vacuum drying. The research proves that the use of additional heat can accelerate the rate of drying. Additionally, with the addition of hot air, can save electricity consumption. The addition of hot air is cost effective because no additional devices on the refrijeration system. Hot air taken from ambient air into the reservoir with a temperature of 35oC is heated using waste heat condenser."
Depok: Fakultas Teknik Universitas Indonesia, 2012
S42320
UI - Skripsi Open  Universitas Indonesia Library
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Ahmad Faqih
"Banyak aplikasi dan proses-proses di industri yang membutuhkan temperatur pendinginan sangat rendah, bahkan bidang biomedis membutuhkan cold storage yang mampu mendinginkan hingga temperatur -80°C. Penggunaan sistem refrigerasi siklus tunggal pada aplikasi temperatur sangat rendah menjadi tidak ekonomis karena tinggi nya rasio tekanan dan juga menghasilkan efek pendinginan yang tidak efektif karena rendah nya tekanan evaporasi, sehingga digunakan sistem refrigerasi cascade. Penggunaan refrigeran alamiah, seperti campuran karbon dioksida dan hidrokarbon merupakan alternatif dari penggunaan refrigeran yang mengandung bahan perusak lapisan ozon dan pemanasan global. Pada penelitian ini, dilakukan analisis termodinamika untuk menentukan komposisi campuran karbon dioksida dan hidrokarbon yang optimum. Selanjutnya, dilakukan optimisasi secara termoekonomi untuk menentukan kondisi operasi yang optimum dari sistem refrigerasi cascade, dimana peningkatan efisiensi exergy merupakan sasaran optimisasi secara termodinamika, sedangkan meminimumkan pengeluaran biaya tahunan merupakan sasaran optimisasi secara ekonomi.

There are many industrial applications and processes in which ultra-low temperature is necessary, even the biomedical preservation that needs cold storage providing temperature about -80°C. The use of single cycle refrigeration system for ultra-low temperature application is economically unacceptable caused by the high pressure ratio and results the ineffective evaporating effect as the low evaporating pressure, hence the cascade refrigeration system is applied. Natural refrigerants, such as carbon dioxide and hydrocarbon will be the alternative solutions of the used of ozon depleting and global warming effect refrigerants. In this research, thermodynamic analysis is applied to decide the optimum composition of the mixtures between carbon dioxide and hydrocarbon. Furthermore, thermoeconomic optimization results the optimum operating conditions of the cascade refrigeration system where the increasing of exergetic efficiency is the thermodynamic objective, while the minimization of the annual cost is the economic objective."
Depok: Fakultas Teknik Universitas Indonesia, 2012
S43282
UI - Skripsi Open  Universitas Indonesia Library
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Sigit Pamungkas
"Sebagaimana telah diketahui secara umum, bahwa exhaust system atau lazim disebut knalpot, merupakan bagian vital dari sebuah kendaraan bermotor.Karena hal itulah di bidang otomotif produk ini mengalami perkembangan pesat dan mempunyai pelanggan yang semakin meningkat. Fungsi knalpot adalah menambah kecepatan, memperindah bentuk dan mendapatkan suara yang enak didengar dan yang paling utama untuk menaikan performa mesin. Namun, hingga saat ini penelitian tentang knalpot masih jarang sehingga orang-orang pada umumnya belum mengetahui parameter apa saja yang mempengaruhi baik-buruknya suatu sistem gas buang.
Penelitian ini dilakukan dengan pengujian langsung model knalpot yang sama dengan tipe mesin yang berbeda tujuannya untuk mengetahui hubungan antara tingkat kebisingan, insertion loss, kecepatan suara, tekanan balik dan debit aliran sehingga nantinya bisa menjadi acuan untuk pengembangan lebih lanjut. Hasil penelitian dicapai pengunaan model knalpot standar lebih cocok dipakai pada mesin motor 125cc dibandingkan pada mesin motor 100cc.

As is well known, that the exhaust system or muffler is a vital part of a motor vehicle. Because it's in the field of automotive products have experienced rapid development and increasing customer. Function of the muffler is picking up speed, shape and beautify a pleasant voice and most of all is to increase engine performance. However, up to date research on the muffler is still rare that people do not know what the parameters affecting the merits of an exhaust system.
The research was conducted by direct testing of the same exhaust model with different types of engines aim to determine the relationship between level of noise, insertion loss, speed of sound, backpressure and flow rate so that later can be could be a reference for further development. The results achieved are standard muffler models more suitable for use on a 125cc motorcycle engine than on a 100cc motorcycle engine.
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Depok: Fakultas Teknik Universitas Indonesia, 2012
S42691
UI - Skripsi Open  Universitas Indonesia Library
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"This book covers a variety of topics in mechanics, with a special emphasis to fluid mechanics and energy transfer. Chapters are based on selected contributions presented during the Algerian Congress of Mechanics (CAM 2017), held on November 26 - 30, 2017, in Constantine, Algeria. The book covers theoretical analysis, modeling, and numerical treatment of performance-related problems of new refrigeration systems, heating and cooling. It reports on experimental research to solve problems related to the flow of microfluids, and relevant applications in the areas of chemical engineering, biochemistry, biomedicine and renewable energy. Further topics include methods for maintenance of mechanical structures, strength, wear, fracture, damage and life of structures, and image processing solutions for the design and 3D manufacturing of mechanical parts. Improvement, control and regulation of urban road traffic are also discussed in this book, thus offering a comprehensive, practice-oriented reference guide for academics and professionals. "
Switzerland: Springer Nature, 2019
e20507358
eBooks  Universitas Indonesia Library
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"This book draws together the most interesting recent results to emerge in mechanical engineering in Russia, providing a fascinating overview of the state of the art in the field in that country which will be of interest to a wide readership. A broad range of topics and issues in modern engineering are discussed, including dynamics of machines, materials engineering, structural strength and tribological behavior, transport technologies, machinery quality and innovations. The book comprises selected papers presented at the 7th conference Modern Engineering: Science and Education, held at the Saint Petersburg State Polytechnic University in May 2018 with the support of the Russian Engineering Union. The authors are experts in various fields of engineering, and all of the papers have been carefully reviewed. "
Switzerland: Springer Nature, 2019
e20505977
eBooks  Universitas Indonesia Library
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"This book offers a collection of original peer-reviewed contributions presented at the 3rd International and 18th National Conference on Machines and Mechanisms (iNaCoMM), organized by Division of Remote Handling & Robotics, Bhabha Atomic Research Centre, Mumbai, India, from December 13th to 15th, 2017 (iNaCoMM 2017).
It reports on various theoretical and practical features of machines, mechanisms and robotics; the contributions include carefully selected, novel ideas on and approaches to design, analysis, prototype development, assessment and surveys. Applications in machine and mechanism engineering, serial and parallel manipulators, power reactor engineering, autonomous vehicles, engineering in medicine, image-based data analytics, compliant mechanisms, and safety mechanisms are covered. Further papers provide in-depth analyses of data preparation, isolation and brain segmentation for focused visualization and robot-based neurosurgery, new approaches to parallel mechanism-based Master-Slave manipulators, solutions to forward kinematic problems, and surveys and optimizations based on historical and contemporary compliant mechanism-based design. The spectrum of contributions on theory and practice reveals central trends and newer branches of research in connection with these topics."
Singapore: Springer Singapore, 2019
e20502488
eBooks  Universitas Indonesia Library
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