System for energy storage, compression and recovery
A hydraulic compressor configured to increase the mass of gas to be compressed for a given flow of liquid and a method of the same. The gas can be pre-compressing in a compressor arranged upstream of an inlet system such that compressed air enters the inlet system before mixing with the liquid, thereby permitting an increased mass of gas per unit volume of liquid to be compressed by the hydraulic compressor arranged upstream of the inlet system. The compressed gas can be collected and stored, which can then be used to drive an expander to produce work.
1 . A hydraulic compression system, comprising:
a compressor configured to compress gas entering the compression system;
an inlet system arranged in fluid communication with the compressor such that the gas is compressed prior to entering the inlet system by the compressor;
a first reservoir in fluid communication with the inlet system, downstream of the inlet system and vertically offset from the inlet system;
a second reservoir system arranged in fluid communication with the first reservoir system and upstream of the first reservoir system such that the first reservoir and the second reservoir are vertically offset from each other;
a pump configured to aid in circulation of liquid about the compression system between the second reservoir and the inlet system; and
a mixer head, which is part of the inlet system, that is configured to mix the liquid with the gas that has been compressed prior to mixture of the liquid and the gas being transferred to the last least one reservoir arranged vertically upstream from the second reservoir.
2 . The hydraulic compression system of claim 1 , wherein the compressor is in an open body of water.
3 . The hydraulic compression system of claim 1 , wherein the gas is admitted to the compressor at any pressure.
4 . The hydraulic compression system of claim 1 , wherein the compression system is a closed-loop system with liquid arranged therein.
5 . The hydraulic compression system of claim 1 , wherein the gas is air and the liquid is water.
6 . The hydraulic compression system of claim 1 , wherein the gas that is compressed prior to being admitted to the inlet system collects in a pocket within the inlet system, above liquid in the inlet system.
7 . The hydraulic compression system of claim 1 , wherein the compressed gas in inlet system is injected directly into the liquid in the inlet system.
8 . The hydraulic compressor of claim 1 , wherein the gas in inlet system is delivered directly at a pressure.
9 . The hydraulic compression system of claim 1 , wherein the gas in the compression system is at a pressure higher than ambient.
10 . The hydraulic compression system of claim 1 , wherein the gas in the compression system is at a pressure lower than ambient.
11 . The hydraulic compression system of claim 1 , further comprising a heat source and at least one expander train in fluid communication with the inlet system.
12 . A hydraulic compression system, comprising:
a compressor configured to compress gas entering the compression system;
an inlet system arranged in fluid communication with the compressor such that the gas entering the inlet system is the gas that has been compressed;
a first reservoir in fluid communication with the inlet system, downstream of the inlet system and vertically offset from the inlet system;
a second reservoir in fluid communication with the first inlet system and upstream of the first reservoir system such that the first reservoir and the second reservoir are vertically offset from each other;
a second reservoir system arranged in fluid communication with the first reservoir system and upstream of the first reservoir system such that the first reservoir and the second reservoir are offset from each other;
a pump configured to aid in in circulation of liquid about the compression system between the second reservoir and the inlet system; and
a mixer head, which is part of the inlet system, that is configured to mix the liquid with the gas that has been compressed prior to mixture of the liquid and the gas being transferred to the last least one reservoir arranged vertically upstream from the second reservoir.
13 . The hydraulic compression system of claim 12 , wherein the gas in the compression system is at a pressure higher than ambient.
14 . The hydraulic compression system of claim 12 , wherein the gas in the compression system is at a pressure lower than ambient.
15 . The hydraulic compression system of claim 12 , wherein the gas that has been compressed by the compressor is resides in the inlet system in a volume above the liquid.
16 . The hydraulic compression system of claim 12 , wherein the gas that has been compressed by the compressor is injected directly into the liquid in the inlet system.
17 . The hydraulic compression system of claim 12 , wherein the gas that has been compressed is admitted at a pressure to the inlet system.
18 . The hydraulic compression system of claim 12 , wherein the second reservoir is open to atmosphere.
19 . The hydraulic compression system of claim 12 , wherein the gas is air and the liquid is water.