Hydraulic Retention Time

Hydraulic Retention Time (HRT) is the average period that a liquid remains inside a reactor, reservoir, or treatment system, making it a key design parameter in bioengineering. It is calculated by dividing the reactor’s working volume by the volumetric flow rate, and it determines how long microorganisms, enzymes, substrates, or contaminants interact within the system. In bioreactors and biological wastewater treatment, HRT influences substrate conversion, nutrient removal, oxygen transfer, and overall process stability. Adjusting HRT helps researchers balance treatment efficiency, reactor size, and operating cost while evaluating biological processes at laboratory, pilot, and industrial scales.

Hydraulic Retention Time - Related Videos

Education

JoVE Science Education - Engineering
Free Sample

Hydraulic Jumps

0 Views •

2023

Source: Alexander S Rattner and Mahdi Nabil; Department of Mechanical and Nuclear Engineering, The Pennsylvania State University, University Park, PA When liquid flows along an open channel at high velocity, the flow can become unstable, and slight disturbances can cause the liquid upper surface to transition abruptly to a higher level (Fig. 1a). This sharp increase in the liquid level is called a hydraulic jump. The increase in the liquid level causes a reduction in the average flow velocity.

Research

JoVE EoE - Assay Techniques

Soil Core Sample Collection for Water Retention Property Analysis

0 Views •

2026

Source:Alessia J. Marchesan1, Guillermo Hernandez Ramirez11Renewable Resources, University of Alberta. This video demonstrates the technique for collecting a soil sample for hydraulic property analysis. The sampling area is cleared, and the top crust is evacuated. The sampling ring is then placed into the soil to collect the sample. The ring with the sample is then cleaned, labeled, packed, and transferred undisturbed for analysis.

Hydraulic Jump: Problem Solving

0 Views •

2025

To analyze a hydraulic jump in a rectangular channel with a flow speed of 6 meters per second, follow these steps:Calculate Effective Upstream Velocity:When the downstream gate closes, a hydraulic jump forms, traveling upstream at 2 meters per second. This wave speed combines with the initial channel flow velocity, creating an effective upstream velocity.Identify Flow Velocities Before and After the Hydraulic Jump:Upstream of the hydraulic jump, the effective flow velocity includes both the...

Hydraulic Jump

0 Views •

2025

A hydraulic jump is a sudden rise in fluid depth in open channels, occurring when high-velocity (supercritical) flow transitions to low-velocity (subcritical) flow. This phenomenon requires an upstream Froude number greater than 1, as flows with Fr1<1 remain subcritical, making a hydraulic jump impossible due to the need for negative head loss, which violates thermodynamic principles.The characteristics of a hydraulic jump depend on the upstream Froude number and are classified as...

Research

JoVE Journal - Neuroscience
Free Sample

Hydraulic Extrusion of the Spinal Cord and Isolation of Dorsal Root Ganglia in Rodents

0 Views •

Cited by 110 •

2017

Here, we present a protocol for hydraulic extrusion of the spinal cord as well as identification and isolation of specific dorsal root ganglia (DRGs) in the same rodent. Compared to standard spinal cord isolation methods, this method is significantly faster and reduces the risk of tissue damage.

View All Results

FAQs

Related Topics