Design, Optimization and Field Validation of Low Head Hydro Powered Turbine Pumps and Piston Pumps for driving stream flows in the range 40-120 l/s and 5-20 l/s respectively / (Record no. 433800)

MARC details
000 -LEADER
fixed length control field 04616nam a2200265 4500
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 250702b |||||||| |||| 00| 0 eng d
041 ## - LANGUAGE CODE
Language code of text/sound track or separate title en
082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number 621.213
Item number UNN
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Unni, Rohan P.
245 ## - TITLE STATEMENT
Title Design, Optimization and Field Validation of Low Head Hydro Powered Turbine Pumps and Piston Pumps for driving stream flows in the range 40-120 l/s and 5-20 l/s respectively /
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Place of publication, distribution, etc Bengaluru :
Name of publisher, distributor, etc Indian Institute of Science,
Date of publication, distribution, etc 2025
300 ## - PHYSICAL DESCRIPTION
Extent 180 p. :
Other physical details col. ill. ;
Accompanying material e-Thesis
Size of unit 4.239 Mb
500 ## - GENERAL NOTE
General note Includes references
502 ## - DISSERTATION NOTE
Dissertation note PhD ; 2025 ; Divecha Centre for Climate Change (DCCC)
520 ## - SUMMARY, ETC.
Summary, etc This thesis focuses on developing optimized self-operating pumps using flows and head of perennial streams or rivers for decentralized irrigation and drinking water supply needs of local communities living by the river basins. The study identifies two flow zones for the identical head of 2-4 meters, where such hydro-powered pumps are in lacunae both from technological and market perspectives. The first flow zone is relatively higher flows from 40 to 120 l/s, which forms a gap between the capacity handling of classical ram pumps and modern axial flow propeller turbine pumps. The first problem is to design a propeller turbine for a real site in the field (Girdalpara village, Sukma, Chhattisgarh), carrying out lab and field tests in order to get the validation of the design. Further, this problem scales the propeller for flows ranging from 40 l/s to 250 l/s for over 4 site conditions. The first problem also identifies a couple of challenges to optimize the output (delivered) flow from the turbine pumps for identical head conditions (drive head to turbine and delivery head from pump). The first of this challenge is working on the pitch to chord length of the blades of the propeller so that efficiency can be increased for given head and flow, or adopting larger flow capacities for the same drive head and propeller diameter. This is investigated through CFD simulation and validated with lab results. It is found that efficiency can be retained, and overall pumping flow capacity can be increased by 5-10%. This finding has been proved for the village site Neelawaram in Sukma district. The second challenge of the turbine pump is related to the draft tube losses, which can be a serious threat to the efficiency of the pump. The second problem of the thesis is to tackle a flow zone of lower flows in the range of 5-20 l/s, which is currently managed by ram pumps for different sizes starting from 1 inch to 8-inch inlet drive pipes. However, it was evident from the previous field projects that the ram pumps have perpetual problems of repair and maintenance, as far as water hammer in the drive pipe along with the rubber clacks of the impulse/slam valves from previous field projects. that he participated. This led to finding an alternative technology, and one recent invention called the tyre piston pump was subjected to thorough investigation using physical experiments. A comprehensive theoretical framework of analysing this unconventional pump based on dimensional analysis was done, after which the experimental findings were superimposed. It was found that the pump was versatile for different flows for the same geometrical piston diameter and tyre diameter. One of the optimization techniques realized while increasing the piston diameter for the same tyre size, by which not only the output (delivered) flow increased, but also the operating efficiency. The d/D diameter was found to be an effective optimization tool with efficiencies nearing 40-45%, which was comparable with small turbine pumps and large ram pumps. Finally, the thesis concludes with the impact on the downstream ecosystem when a fixed quantity of flow is always taken out of the stream using any of the two technologies. While the hydrology of the stream defines the limiting flow that can be taken out from the given catchment, the author defines a head criterion, i.e. delivery to drive head for these pumps so the delivery flow can be standardized and matched with hydrological effluent behaviour of the river basin. This also adds to the social and economic perspective of water management, which brings with it a holistic essence to the application of hydro powered technologies.
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Pumps
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Drinking water supply
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Turbine pumps
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Flow zone
700 ## - ADDED ENTRY--PERSONAL NAME
Personal name Singh, Punit
Relator term advisor
700 ## - ADDED ENTRY--PERSONAL NAME
Personal name Satheesh, S. K.
Relator term advisor
856 ## - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier https://etd.iisc.ac.in/handle/2005/6970
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type Thesis

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