Environmental Technology Verification Report

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Environmental Technology Verification Report ( environmental-technology-verification-report )

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SRI/USEPA-GHG-VR-27 September 2003 The errors in heat-recovery rate and heat input for the heat-recovery efficiency determination compound similarly to Equation 10 as follows: 22 Error in Heat Re cov ery Efficiency = (0.0055) + (0.0102) = 0.0116 (Eqn. 11) Average heat recovery rate (thermal) efficiency was 52.2 ± 0.61 percent, or a relative compounded error of 1.16 percent for the full-load tests with maximized heat recovery. This compounded relative error meets the data quality objective for this verification parameter. 3.2.4. Total Efficiency Total efficiency is the sum of the electrical power and heat-recovery efficiencies. Total efficiency is defined as 26.2 ± 0.37 percent (± 1.43-percent relative error) plus 52.2 ± 0.61 percent (± 1.16-percent relative error). This is based on the determined errors in electrical and thermal efficiency at full load. The absolute errors compound as follows: where: 26.2 + 52.2 compounded error, absolute error in first added value, absolute value error in second added value, absolute value compounded error, relative first added value second added value err = err2 +err2 (Eqn.12) (Eqn. 13) errc,rel = = 0.71 = 0.91 -percent relative error c,abs 1 2 = Relative error, is: 0.37 2 + 0.612 = 0.71 -percent absolute error errc,abs = err1 = err2 = errc,rel = value1 = value2 = errc,abs Value1 +Value2 The total efficiency with heat recovery maximized is then 78.4 ± 0.71 percent, or 0.9-percent relative error. This compounded relative error meets the data quality objective for this parameter. 3.2.5. Exhaust Stack Emission Measurements EPA reference methods were used to quantify emission rates of criteria pollutants and greenhouse gases. The reference methods specify the sampling and calibration procedures and data quality checks that must 3-11

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