This paper deals with the design considerations of surface aeration tanks on two basic issues of oxygen transfer coefficient and power requirements for the surface aeration system. Earlier developed simulation equations for simulating the oxygen transfer coefficient with theoretical power per unit volume have been verified by conducting experiments in geometrically similar but differently shaped and sized square tanks, rectangular tanks of length to width ratio (L/W) of 1.5 and 2 as well as circular tanks. Based on the experimental investigations, new simulation criteria to simulate actual power per unit volume have been proposed. Based on such design considerations, it has been demonstrated that it is economical (in terms of energy saving)...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in two rectangular surface aeration tanks of L/B ratios 1.5 and ...
Water is a fundamental need for existence of mankind. Only 0.01 % of total global water is readily a...
Surface aeration experiments were conducted in tanks of length to width ratio (L/W) of 1.0, 1.5 and ...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Experiments were conducted to study the performance of circular and square tank surface aerators on ...
Present investigation is concerned with the development of scale-up equations for oxygen transfer co...
Present investigation is concerned with the development of scale-up equations for oxygen transfer co...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in two rectangular surface aeration tanks of L/B ratios 1.5 and ...
Water is a fundamental need for existence of mankind. Only 0.01 % of total global water is readily a...
Surface aeration experiments were conducted in tanks of length to width ratio (L/W) of 1.0, 1.5 and ...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Oxygen transfer rate and the corresponding power requirement to operate the rotor are vital for desi...
Experiments were conducted to study the performance of circular and square tank surface aerators on ...
Present investigation is concerned with the development of scale-up equations for oxygen transfer co...
Present investigation is concerned with the development of scale-up equations for oxygen transfer co...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in different sized baffled and unbaffled circular surface aerati...
Aeration experiments were conducted in two rectangular surface aeration tanks of L/B ratios 1.5 and ...
Water is a fundamental need for existence of mankind. Only 0.01 % of total global water is readily a...