Centrifugal Pump

A centrifugal pump is a mechanical device that moves fluids by converting rotational energy into flow and pressure, making it fundamental to engineering systems. As an impeller spins, its curved blades accelerate fluid outward through centrifugal action; the surrounding casing then converts much of this velocity into pressure and directs the fluid toward the discharge outlet. Pump performance depends on factors such as impeller speed, flow rate, head, and fluid properties, while proper priming helps prevent air binding and cavitation. Centrifugal pumps support water supply, irrigation, cooling, chemical processing, and industrial fluid transport.

Centrifugal Pump - Related Videos

Education

JoVE Science Education - Basic Biology

Working with Centrifuges

0 Views •

2023

Source: Robert M. Rioux & Suprita Jharimune, Pennsylvania State University, University Park, PA Earth's gravitational force is capable of separating heterogeneous mixtures. However, many systems avert this type of separation owing to the length of time usually required in such cases. Centrifugation is one of the most powerful tools for the separation of heterogeneous mixtures1. It involves the application of centripetal force for sedimentation of the heavier phase, leading to separation of...

Centrifugation

0 Views •

2024

Centrifugation is a separation technique based on differences in density or size. It is commonly used to separate solids from aqueous interferents. During centrifugation, the sample is placed in centrifugation tubes and spun at high angular velocity, which allows centrifugal force to act differentially on the different densities or masses of the components. After spinning, the supernatant liquid is decanted. Depending on the specific application, either the pellet or the supernatant is retained...

An Introduction to the Centrifuge

0 Views •

2023

The centrifuge is an instrument used in nearly every research lab across the globe. Centrifugation is the process by which a centrifuge is used to separate components of a complex mixture. By spinning laboratory samples at very high speeds, the components of a given mixture are subjected to centrifugal force, which causes more dense particles to migrate away from the axis of rotation and lighter ones to move toward it. These particles can sediment at the bottom of the tube into what’s...

ATP Driven Pumps III: V-type Pumps

0 Views •

2023

V-type pumps are ATP-driven pumps found in the vacuolar membranes of plants, yeast, endosomal and lysosomal membranes of animal cells, plasma membranes of a few specialized eukaryotic cells, and some prokaryotes. They are also known as the V1Vo-ATPase, that couple ATP hydrolysis to transport protons against a concentration gradient. The peripheral or cytosolic V1 domain with eight subunits is involved in ATP hydrolysis. The integral or transmembrane V0 domain containing at least five subunits...

ATP Driven Pumps II: P-type Pumps

0 Views •

2023

The P-type pumps are a large family of integral membrane transporter ATPases. They are divided into five major types based on substrate specificity, from I to V. A typical P-type pump has three cytosolic domains: nucleotide-binding (N), phosphorylation (P), and activator (A) domains. These domains are connected to the membrane-spanning helices by short amino acid segments. ATP hydrolysis and covalent phosphoenzyme intermediate formation are crucial parts of the catalytic cycle. At the highly...

View All Results

FAQs

Related Topics