A regenerative combustion device having a combustion zone, and chemicals contained within the combustion zone, such as water, having a first equilibrium state, and a second combustible state. Means for transforming the chemicals from the first equilibrium state to the second combustible state, such
A regenerative combustion device having a combustion zone, and chemicals contained within the combustion zone, such as water, having a first equilibrium state, and a second combustible state. Means for transforming the chemicals from the first equilibrium state to the second combustible state, such as electrodes, are disposed within the chemicals. An igniter, such as a spark plug or similar device, is disposed within the combustion zone for igniting combustion of the chemicals in the second combustible state. The combustion products are contained within the combustion zone, and the chemicals are selected such that the combustion products naturally chemically revert into the chemicals in the first equilibrium state following combustion. The combustion device may thus be repeatedly reused, requiring only a brief wait after each ignition to allow the regeneration of combustible gasses within the head space.
대표청구항▼
A regenerative combustion device having a combustion zone, and chemicals contained within the combustion zone, such as water, having a first equilibrium state, and a second combustible state. Means for transforming the chemicals from the first equilibrium state to the second combustible state, such
A regenerative combustion device having a combustion zone, and chemicals contained within the combustion zone, such as water, having a first equilibrium state, and a second combustible state. Means for transforming the chemicals from the first equilibrium state to the second combustible state, such as electrodes, are disposed within the chemicals. An igniter, such as a spark plug or similar device, is disposed within the combustion zone for igniting combustion of the chemicals in the second combustible state. The combustion products are contained within the combustion zone, and the chemicals are selected such that the combustion products naturally chemically revert into the chemicals in the first equilibrium state following combustion. The combustion device may thus be repeatedly reused, requiring only a brief wait after each ignition to allow the regeneration of combustible gasses within the head space. ective index, said parameters modifying said optional code sequences. 10. A linker according to claim 8, wherein the relocation module comprises means for implementing calculations conveyed by the relocation instructions using the values on the stack. 11. A linker according to claim 8, which comprises a symbol table which holds values in association with symbols, said symbols being conveyed by the relocation instructions. 12. A computer readable medium having recorded thereon an object code module comprising section data specifying a plurality of code sequences each having relocation instructions associated therewith, the object code module provided for processing by a linker to resolve conditions conveyed by the relocation instructions based on values held at the linker in order to determine which of said code sequences is to be included in a final executable program formed by the linker. 13. A method of assembling an object code module for linking to form an executable program, said object code module including section data for inclusion in the executable program and relocation instructions for controlling relocation operation at link time, the method comprising: executing a set of assembler directives and generating said relocation instructions responsive to the assembler directives, said directives including a conditional directive; responsive to the conditional directive, marking a plurality of code sequences in the section data as optional code sequences for conditional inclusion in the executable program, said marking step including generating relocation instructions identifying conditions resolvable at link time to determine which of said code sequences is to be included in the executable program. non-specific data processing system instructions for a method are received. Addresses are placed into a set of functions. The set of non-specific data processing system instructions are processed using an intermediate code generation process to generate a set of instructions for execution using a particular mode of addressing.
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