Matches in SemOpenAlex for { <https://semopenalex.org/work/W787826136> ?p ?o ?g. }
Showing items 1 to 87 of
87
with 100 items per page.
- W787826136 endingPage "1028" @default.
- W787826136 startingPage "1018" @default.
- W787826136 abstract "Abstract Fresh water shortage is a major global problem of this century. Estimates have shown that a large part of the human population will not have access to clean drinking water in a couple of decades from now. Collection of fog can be a useful solution to this concern. Fog, a large source of potable fresh water, has potentials to substitute traditional sources. Attempts have been made over the last few decades to capture fog from nature by installing large fog water collectors along coastal mountains and highlands. However, fog harvesting from artificial fog generators were not envisaged in these studies. In this pilot study, we have explored the possibilities of fog capture from CT (cooling tower) plume in a thermal power plant; CT plume accounts for one of the major sources of industrial water losses. Our study shows that a recovery of about 40 percent water from the drift loss – amounting to a saving of nearly 10.5 m3 of water per hour from a 500 MW unit – could be achieved using the proposed fog harvesting strategy. Unlike the natural fog harvesting schemes where the fog laden flow is predominantly horizontal, fog flow stream in a cooling tower rises against the gravity. Three parameters are found to influence the collection efficiency predominantly: the shade coefficient of the mesh, effective dripping length of water droplets along the fog net, and angle of inclination of the mesh with respect to the vertically rising fog stream. The observed collection efficiency is more than twice as compared to those of other globally operational fog collectors. Results offer the design bases for full-scale fog harvesting systems that can be deployed in power plant cooling towers and a wide range of other artificial fog generators." @default.
- W787826136 created "2016-06-24" @default.
- W787826136 creator A5017886786 @default.
- W787826136 creator A5056080505 @default.
- W787826136 creator A5061448575 @default.
- W787826136 date "2015-09-01" @default.
- W787826136 modified "2023-10-02" @default.
- W787826136 title "Cooling tower fog harvesting in power plants – A pilot study" @default.
- W787826136 cites W1625594280 @default.
- W787826136 cites W1976165461 @default.
- W787826136 cites W1980372512 @default.
- W787826136 cites W1995224160 @default.
- W787826136 cites W2006933189 @default.
- W787826136 cites W2019751715 @default.
- W787826136 cites W2029752376 @default.
- W787826136 cites W2056503091 @default.
- W787826136 cites W2064452050 @default.
- W787826136 cites W2069372110 @default.
- W787826136 cites W2125235560 @default.
- W787826136 cites W2125377050 @default.
- W787826136 cites W2172977538 @default.
- W787826136 cites W2317091803 @default.
- W787826136 doi "https://doi.org/10.1016/j.energy.2015.06.050" @default.
- W787826136 hasPublicationYear "2015" @default.
- W787826136 type Work @default.
- W787826136 sameAs 787826136 @default.
- W787826136 citedByCount "71" @default.
- W787826136 countsByYear W7878261362016 @default.
- W787826136 countsByYear W7878261362017 @default.
- W787826136 countsByYear W7878261362018 @default.
- W787826136 countsByYear W7878261362019 @default.
- W787826136 countsByYear W7878261362020 @default.
- W787826136 countsByYear W7878261362021 @default.
- W787826136 countsByYear W7878261362022 @default.
- W787826136 countsByYear W7878261362023 @default.
- W787826136 crossrefType "journal-article" @default.
- W787826136 hasAuthorship W787826136A5017886786 @default.
- W787826136 hasAuthorship W787826136A5056080505 @default.
- W787826136 hasAuthorship W787826136A5061448575 @default.
- W787826136 hasConcept C121332964 @default.
- W787826136 hasConcept C127413603 @default.
- W787826136 hasConcept C146978453 @default.
- W787826136 hasConcept C147176958 @default.
- W787826136 hasConcept C153294291 @default.
- W787826136 hasConcept C163258240 @default.
- W787826136 hasConcept C171146098 @default.
- W787826136 hasConcept C199104240 @default.
- W787826136 hasConcept C205649164 @default.
- W787826136 hasConcept C2777831296 @default.
- W787826136 hasConcept C2778547687 @default.
- W787826136 hasConcept C39432304 @default.
- W787826136 hasConcept C62520636 @default.
- W787826136 hasConcept C7694927 @default.
- W787826136 hasConceptScore W787826136C121332964 @default.
- W787826136 hasConceptScore W787826136C127413603 @default.
- W787826136 hasConceptScore W787826136C146978453 @default.
- W787826136 hasConceptScore W787826136C147176958 @default.
- W787826136 hasConceptScore W787826136C153294291 @default.
- W787826136 hasConceptScore W787826136C163258240 @default.
- W787826136 hasConceptScore W787826136C171146098 @default.
- W787826136 hasConceptScore W787826136C199104240 @default.
- W787826136 hasConceptScore W787826136C205649164 @default.
- W787826136 hasConceptScore W787826136C2777831296 @default.
- W787826136 hasConceptScore W787826136C2778547687 @default.
- W787826136 hasConceptScore W787826136C39432304 @default.
- W787826136 hasConceptScore W787826136C62520636 @default.
- W787826136 hasConceptScore W787826136C7694927 @default.
- W787826136 hasLocation W7878261361 @default.
- W787826136 hasOpenAccess W787826136 @default.
- W787826136 hasPrimaryLocation W7878261361 @default.
- W787826136 hasRelatedWork W2347359723 @default.
- W787826136 hasRelatedWork W2352756060 @default.
- W787826136 hasRelatedWork W2359015939 @default.
- W787826136 hasRelatedWork W2362946096 @default.
- W787826136 hasRelatedWork W2367009121 @default.
- W787826136 hasRelatedWork W2371395435 @default.
- W787826136 hasRelatedWork W2377665771 @default.
- W787826136 hasRelatedWork W2385068629 @default.
- W787826136 hasRelatedWork W2385496060 @default.
- W787826136 hasRelatedWork W56913507 @default.
- W787826136 hasVolume "89" @default.
- W787826136 isParatext "false" @default.
- W787826136 isRetracted "false" @default.
- W787826136 magId "787826136" @default.
- W787826136 workType "article" @default.