Hydrodynamic and energy parameters of gas-liquid media
نویسندگان
چکیده
منابع مشابه
Evolution of hydrodynamic and statistical parameters of gas–liquid slug $ow along inclined pipes
The development of slug $ow along two 10 m long inclined pipes (2–90◦ from the horizontal) with internal diameters of 0.024 and 0:054 m was measured by three optical 4ber probes. The probes were located in a measurement module at axial distances of 0:020 m between the 4ber tips. To measure the evolution of slug $ow, the module was placed at di6erent positions along the pipe. Instantaneous elong...
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شناسایی مخاطرات در واحد 400 پالایشگاه گاز پارسیان. در این پروزه با بکارگیری از تکنیک hazop به شناسا یی مخاطرات ، انحرافات ممکن و در صورت لزوم ارایه راهکارهای مناسب جهت افزایش ایمنی فرا یند پرداخته میگردد. شرایط عملیاتی مخاطره آمیز نظیر فشار و دمای بالا و وجود ترکیبات مختلف سمی و قابل انفجار در واحدهای پالایش گاز، ضرورت توجه به موارد ایمنی در این چنین واحدهایی را مشخص می سازد. مطالعه hazop یک ر...
Simulation of Hydrodynamic Dispersion in Gas/Liquid Microreactors
Dispersion and spreading of concentration signals in gas/liquid microreactors is studied with methods of computational fluid dynamics (CFD). It is shown that conventional reactor designs exhibit a broad residence-time distribution due to convective signal dispersion. This result is supported by experiments monitoring the transport of a liquid plug introduced into the microreactor by a microdisp...
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متن کاملExperimental Investigation on Hydrodynamic and Thermal Performance of a Gas-Liquid Thermosyphon Heat Exchanger in a Pilot Plant
Waste heat recovery is very important, because not only it reduces the expenditure of heat generation, but also it is of high priority in environmental consideration, such as reduction in greenhouse gases. One of the devices is used in waste heat recovery is heat pipe heat exchanger.Anexperimental research has been carried out to investigate the hydrodynamic and thermal performance of a gas...
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ژورنال
عنوان ژورنال: Food Science and Technology
سال: 2018
ISSN: 2409-7004,2073-8684
DOI: 10.15673/fst.v12i3.1047