Thermosyphon cooling for overheat protection
View Patent ↗This thermosyphon cooling system cools fluid by thermosyphon to prevent overheating at a solar collector when forced circulation stops. The introduction of the fluidic diode in the thermosyphon heat dump flow path affords more design and installation options, higher reliability, and the opportunity to manufacture solar collectors of less expensive alternative materials.
1. A method for cooling fluid at a solar thermal collector in a closed-loop fluidic system by thermosyphoning, comprising:
impeding fluid flow through a heat-dissipating flow path during forced circulation with a fluidic diode;
allowing fluid flow through the heat-dissipating flow path in the absence of forced circulation with the fluidic diode; and
in the absence of forced circulation, dissipating heat acquired by the solar thermal collector along the heat-dissipating flow path to generate a fluid density difference that promotes thermosyphoning.
2. A solar thermal collector system that cools fluid in a closed-loop fluidic system by thermosyphoning, comprising:
a solar thermal collector;
a solar-heat-absorbing flow path of said collector;
an inlet to said path;
an outlet from said path; and
a thermosyphon heat exchange flow path comprising;
a heat-dissipating flow path; and
a fluidic diode;
whereby on the cessation of forced circulation, thermosyphoning begins and the fluid temperature is limited.
3. The solar thermal collector system according to claim 2 wherein the thermosyphon heat exchange flow path is interposed between a) the outlet or an extension of the outlet of the solar-heat-absorbing flow path and b) the inlet or an extension of the inlet of the solar-heat-absorbing flow path.
4. The solar thermal collector system according to claim 3 further including insulation between the solar-heat-absorbing flow path and the thermosyphon heat dump flow path.
5. The apparatus according to claim 3 wherein the heat-dissipating flow path is integrated into the solar collector.
6. The apparatus according to claim 3 wherein the heat-dissipating flow path is separate from the solar collector.