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【Q&A Question 194】July 19, 2018: Briefly explain what the principle of the hydraulic turbine in a hydrogenation unit is The principle of a hydraulic turbine is that high-pressure liquid flows through the turbine rotor to the low-pressure section; during this pressure release, potential energy is converted into kinetic energy, and the high-speed liquid drives the turbine rotor to rotate, thereby generating torque. (Unless otherwise specified, all questions and answers are based on hydrogenation units.) ) Correct: 3 wealth, Incorrect: 1 wealth ; Mass posting of posts – rated based on the lowest score ; Replies that are unrelated to the answer are considered spam and will be deleted immediately. For management purposes, if you need to view content from a few days ago, please go to https://bbs.hcbbs.com/home.php?mod=space&uid=3862647&do=thread&view=me&from=space through the summary post below. The APP short-video skills competition has begun! https://bbs.hcbbs.com/forum.php?mod=viewthread&tid=1951670
The high-pressure fluid is allowed to flow through the impellers of each stage of the hydraulic turbine, causing the pressure to decrease step by step; the pressure energy is then converted into mechanical energy by the impellers, which in turn causes the rotor of the hydraulic turbine to rotate.
The high-pressure fluid is allowed to flow through the impellers of each stage of the hydraulic turbine, causing the pressure to decrease step by step; the pressure energy is then converted into mechanical energy by the impellers, which in turn causes the rotor of the hydraulic turbine to rotate.
The principle of a hydraulic turbine is that high-pressure fluid flows through the turbine rotor to the low-pressure section; during this pressure release, potential energy is converted into kinetic energy, and the high-speed fluid drives the turbine rotor to rotate, thereby generating torque.
Answer: The principle of a hydraulic turbine is that high-pressure liquid flows through the turbine rotor to the low-pressure section; during this pressure release, potential energy is converted into kinetic energy, and the high-speed liquid drives the turbine rotor to rotate, thereby generating torque.
The principle of a hydraulic turbine is that high-pressure fluid flows through the turbine rotor to the low-pressure section; during this pressure release, potential energy is converted into kinetic energy, and the high-speed fluid drives the turbine rotor to rotate, thereby generating torque.
The principle of a hydraulic turbine is that high-pressure liquid flows through the turbine rotor to the low-pressure section; during this pressure release, potential energy is converted into kinetic energy, and the high-speed liquid drives the turbine rotor to rotate, thereby generating torque.
A turbine is a machine that converts the energy contained in a fluid into mechanical work; it is also known as a turbine or turbocharger. The main component of a turbine is a rotating element, namely the rotor, or impeller, which is mounted on the turbine shaft and has blades arranged evenly around its circumference. The energy possessed by the fluid is converted into kinetic energy as it flows and passes through the nozzle; as the fluid flows over the impeller, it impacts the blades, causing the impeller to rotate and thereby driving the turbine shaft to spin. The turbine shaft drives other machinery directly or through a transmission mechanism to deliver mechanical work.
The principle of a hydraulic turbine is that high-pressure fluid flows through the turbine rotor to the low-pressure section; during this pressure release, potential energy is converted into kinetic energy, and the high-speed fluid drives the turbine rotor to rotate, thereby generating torque.
The high-pressure fluid is allowed to flow through the impellers of each stage of the hydraulic turbine, causing the pressure to decrease step by step; the pressure energy is then converted into mechanical energy by the impellers, which in turn causes the rotor of the hydraulic turbine to rotate.