IP Library › Granted Patent US 11,788,772
Granted Patent B2
US 11,788,772 · App. 17/051,888 · Granted Oct 17, 2023

Thermal radiation loss reduction in a parabolic trough receiver by the application of a cavity mirror and a hot mirror coating

Inventors: Khaled Mohamad (Johannesburg, ZA); Phillipe Ferrer (Johannesburg, ZA)
Assignee: UNIVERSITY OF THE WITWATERSRAND, JOHANNESBURG
F24S10/45F24S20/20F24S80/56
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Quick Facts
Patent No.
US 11,788,772
App. No.
17/051,888
Granted
Oct 17, 2023
Kind
B2
Abstract

This invention concerns a receiver unit ( 10 ) for a parabolic trough solar plant. The receiver unit ( 10 ) has a conduit ( 12 ) for conveying a heat transfer fluid ( 14 ) and a cover ( 16 ), which is located about the conduit ( 12 ) such that a vacuum is formed between the conduit and the cover. The conduit ( 12 ) is designed to absorb thermal radiation. The cover ( 16 ) has a first portion ( 26 ) defining a window ( 22 ) through which incoming solar radiation ( 24 ) passes into the vacuum and onto the conduit ( 12 ) and a second portion ( 28 ) carrying a reflective surface ( 20 ) so as to reflect thermal radiation back onto the conduit ( 12 ). The invention also concerns a method of reducing thermal radiation loss from a parabolic trough receiver.

Claims (14)

1. A receiver unit for a parabolic trough solar plant, the receiver unit including:

a conduit for conveying a heat transfer fluid, wherein the conduit is capable of absorbing thermal radiation; and

a cover, which is located about the conduit such that a vacuum is formed between the conduit and the cover;

wherein the cover has a first region, defining a window through which incoming solar radiation passes into the vacuum and onto the conduit, and a second portion carrying a reflective surface so as to reflect thermal radiation back onto the conduit;

wherein the window in the first region of the cover is in the form of an opening in the cover in which a glass window, to which a hot mirror coating for reflecting thermal radiation back onto the conduit is carried;

wherein the cover is in the form of a metal tube such that the reflective surface in the second portion is defined by the internal surface of the metal tube; and

wherein the ratio of the window size to the cover outer circumference is between 0.15 and 0.5, the reflectivity of the reflective surface is between 92% and 98% and a heat transfer fluid temperature ceiling is between 1300K and 1490K.

2. The receiver unit according to claim 1 , wherein the hot mirror coating is applied an internal surface of the window.

3. The receiver unit according to claim 1 , wherein the cover is in the form of an aluminum tube.

4. A method of reducing thermal radiation loss from a parabolic trough receiver having a conduit for conveying a heat transfer fluid, wherein the conduit is capable of absorbing thermal radiation, and a metal tube cover, which is located about the conduit such that a vacuum is formed between the conduit and the cover, the method including:

allowing incoming solar radiation to pass through a glass window carried in an opening in the cover that has a window size of between 0.15 and 0.5 in ratio relative to the outer circumference of the cover, into the vacuum and onto the conduit;

reflecting thermal radiation back onto the conduit by means of a reflective surface defined by an internal surface in a second portion of the cover having a reflectivity of between 92% and 98%;

applying a hot mirror coating to the window to reflect thermal radiation back onto the conduit; and

heating the heat transfer fluid to a temperature up to between 1300K and 1490K.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2021
From: MOHAMAD, KHALED; FERRER, PHILIPPE
To: UNIVERSITY OF THE WITWATERSRAND, JOHANNESBURG
Reel/Frame 056195/0617 →
Priority Claims (1)
ZA 2018/02827 · Apr 30, 2018 · national
Continuity (1)
Related Publication 20210190382A1 · Jun 24, 2021
Cited By (7)
US 12,331,960 US 12,366,381 US 12,366,382 US 12,379,136 US 12,422,137 US 12,451,762 US 12,480,428