HEATING, VENTILATION, AND AIR CONDITIONING CONTROL SYSTEM
A heating, ventilation, and air conditioning (HVAC) system. The HVAC system includes a sensor that detects a temperature of a heater of a heating component and emits a signal indicative of the temperature. A flow management device controls a flow of electricity or fuel from a power source to the heating component. A controller receives the signal from the sensor and operates the flow management device to block the flow of electricity or fuel to the heating component when the signal is indicative of the temperature being above a set point.
1 . A heating, ventilation, and air conditioning (HVAC) system, comprising:
a heating component configured to heat an airflow directed through the HVAC system;
one or more sensors configured to detect a presence of a refrigerant of the HVAC system and to generate a signal indicative of the presence of the refrigerant;
a switch or valve configured to regulate a flow of electricity or fuel to the heating component; and
a controller configured to:
receive the signal indicative of the presence of the refrigerant; and
in response to the signal, actuate the switch or valve to block the flow of the electricity or fuel to the heating component.
2 . The HVAC system of claim 1 , wherein the one or more sensors comprise an electrochemical sensor, a catalytic bead sensor, a photoionization sensor, a semiconductor sensor, an ultrasonic sensor, or a holographic sensor, or any combination thereof.
3 . The HVAC system of claim 1 , wherein the signal is a first signal, and wherein the HVAC system comprises a temperature sensor communicatively coupled to the controller and configured to measure a temperature of the heating component and communicate a second signal indicative of the temperature to the controller.
4 . The HVAC system of claim 3 , wherein the controller is configured to:
perform a comparison of the temperature and a threshold temperature; and
actuate the switch or valve to block the flow of the electricity or fuel to the heating component in response to the comparison.
5 . The HVAC system of claim 4 , wherein the threshold temperature is based on a reaction temperature of the refrigerant.
6 . The HVAC system of claim 4 , wherein the controller is configured to actuate the switch or valve to block the flow of the electricity or fuel in response to receiving the first signal and determining that the temperature meets or exceeds the threshold temperature.
7 . The HVAC system of claim 1 , wherein the refrigerant comprises an A2L refrigerant.
8 . The HVAC system of claim 1 , wherein a sensor of the one or more sensors is disposed in a furnace compartment of the HVAC system.
9 . The HVAC system of claim 1 , wherein a sensor of the one or more sensors is disposed downstream of the heating component relative to a flow direction of the airflow through the HVAC system.
10 . The HVAC system of claim 1 , wherein the one or more sensors are configured to detect the presence of the refrigerant in the airflow.
11 . A controller of a heating, ventilation, and air conditioning (HVAC) system, wherein the controller configured to perform operations comprising:
receiving a signal indicative of a presence of a refrigerant from a sensor of the HVAC system; and
operating a flow management device to block a flow of electricity or fuel to a heating component of the HVAC system based on the signal indicative of the presence of the refrigerant.
12 . The controller of claim 11 , wherein the signal is indicative of the presence of leaked refrigerant in a heat exchanger compartment of the HVAC system.
13 . The controller of claim 11 , wherein the signal is indicative of a concentration of the refrigerant, and wherein the operations comprise operating the flow management device to block the flow of electricity or fuel to the heating component in response to the concentration meeting or exceeding a threshold concentration.
14 . The controller of claim 13 , wherein the signal is a first signal, and wherein the operations comprise:
receiving a second signal indicative of a temperature of the HVAC system from a temperature sensor of the HVAC system; and
operating the flow management device to block the flow of electricity or fuel to the heating component in response to determining that the temperature is greater than or equal to a temperature threshold and the concentration is greater than or equal to the threshold concentration.
15 . The controller of claim 11 , wherein the sensor is disposed at an inlet or an outlet of a furnace of the HVAC system, and wherein the furnace comprises the heating component.
16 . The controller of claim 11 , wherein the controller is configured to execute processor executable instructions to perform the operations.
17 . A method comprising:
receiving, via a controller of a heating, ventilation, and air conditioning (HVAC) system, a signal indicative of a presence of a refrigerant from a sensor of the HVAC system; and
operating a flow management device to block a flow of electricity or fuel to a heating component of the HVAC system based on the signal indicative of the presence of the refrigerant.
18 . The method of claim 17 , wherein the signal is indicative of a concentration of the refrigerant, and the method comprises operating the flow management device to block the flow of electricity or fuel to the heating component in response to the concentration meeting or exceeding a threshold concentration.
19 . The method of claim 18 , wherein the threshold concentration corresponds to a likelihood of combustion of the refrigerant.
20 . The method of claim 18 , comprising operating the flow management device to enable the flow of electricity or fuel in response to the concentration being less than the threshold concentration.