This invention relates to the field of regulation of gas pressure and more particularly to the field of regulation of gas pressure through the production of useable energy from the pressure of the gas.
Gas under pressure is a source of energy that can be taped without destroying the caloric value of the gas. The pressure of the gas out of the well varies over a wide range. However, the gas pressure come up from the well on average is well above the pressure need for the line. All this pressure above the line pressure can be changed into mechanical/electrical energy. An objective of the invention is to turn the pressure of the gas that comes from the well into useable energy without destroying the caloric value of the gas.
One of the problems for gas producers is that a gas well does not produce gas at constant pressure. This is especially a problem when one is trying to produce power from the gas pressure. The gas varies at such a wide range that at times the gas rise to a pressure where it almost needs to be vented or it can drop to a pressure that liquefies the gas and freezes the gas regulator system. Therefore, these systems may have a net energy loss in that they need an external heating system to prevent freezing. Thus, one of the objectives of this invention is to create an inexpensive device that will even out the gas pressure from the well to one low pressure.
Applicant device is able to even out the pressure of the gas from the well and at the same time produce a useable energy gain. The device also lessens the output of green house gases at the wellhead.
In oil wells gas comes up with the oil. This gas needs to be vented off to allow the oil to flow out of the well. Many picture especially of older well one sees the oil well with a flame. The flame is the gas vented from the well. This is a waste of energy and increases the oil well's carbon footprint. The major problem with recovering the gas from the well is the varying pressure the gas comes from the well. Thus, an objective of this invention is to capture the gas from the oil well and used the pressure of the gas to produce useable energy and to even out the gas pressure so that the gas can be recovered economically.
The means for achieving the objectives of leveling out the gas pressure from the well and the means for capturing the energy within the gas pressure is an air motor attached to a generator. The gas from the well is expanded through the air motor and the air motor drives a generator. The device measures the pressure of the gas flowing from the well and varies the electrical output of the generator to ensure that the gas that is exiting the air motor is at a constant pressure. The electrical output from the generator can be placed back into the electrical grid or can be used to drive other electrical needs at the wellhead.
The invention is a method to regulate gas pressure by controlling the expansion or compression of a gas through an air motor that is attached to an electric motor/generator. The pressure of the gas is measured. With this measurement the load of the motor/generator is modified to ensure that the pressure of the gas exits the air motor at a constant pressure. A device that performs this method consists of four components. The first is a measuring mechanism that measures the pressure of the gas coming into the device. The second is an air motor that changes the pressure of the gas into mechanical energy. The third is a generator that takes the mechanical energy from the air motor and changes it into the electrical energy. Thus the generator can be used to change the pressure of the gas passing through the air motor by varying the electrical load on the generator which will vary the torque on the air motor. By varying the torque on the air motor one can control the output pressure of the air motor. The measuring mechanism measures the incoming gas pressure and communicates that to the forth component, the generator's control. The generator's control takes the information of the pressure of the incoming gas from the measuring device and varies the electrical load on the generator. By applying the proper electrical load to the generator, the generator will cause the torque of the air motor to reduce or raise the pressure of the gas to the designate pressure for the output line.
The key to the invention is the control unit 22. The control unit 22 receives the information as to the gas pressure measured by sensor 20. The control unit 22 varies the electrical load on the generator 24 according to the pressure measured by sensor 20. Since the air motor 18 is attached to the generator 24 through a belt system 26 the varying of the electrical load on the generator 24 will vary torque on the air motor 18. By varying the torque on the air motor 18 one can control the pressure of the gas exiting the air motor 18.
The gas comes from a gas or oil well in varying pressures. Those pressures are measured by the sensor 20 just before the air motor 18. The sensor 20 sends the information to the control unit 22 and the control unit 22 varies the load on the generator 24 according to the pressure it received from the sensor 20. The varying load causes the air motor 18 to work at a varying torques. By varying the torque on the air motor 18, one can control the pressure at which the gas exits from the air motor 18. If the gas pressure is too low the motor generator 24 turns the air motor 18 to raise the pressure. If the gas pressure is too high the air motor 18 turns the motor generator 24 to produce electric power that is transferred to an external load.
Additionally the heat from the operation of the generator 24 is exhausted over the air motor 18. This ensures that the air motor will not freeze if the pressure of the gas drops quickly.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US12/46525 | 7/12/2012 | WO | 00 | 4/21/2014 |
Number | Date | Country | |
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61507924 | Jul 2011 | US |